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TWM598364U - Valve spool driving device - Google Patents

Valve spool driving device Download PDF

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Publication number
TWM598364U
TWM598364U TW109200539U TW109200539U TWM598364U TW M598364 U TWM598364 U TW M598364U TW 109200539 U TW109200539 U TW 109200539U TW 109200539 U TW109200539 U TW 109200539U TW M598364 U TWM598364 U TW M598364U
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TW
Taiwan
Prior art keywords
gear member
output shaft
valve core
gear
device body
Prior art date
Application number
TW109200539U
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Chinese (zh)
Inventor
林旻益
Original Assignee
欣達企業有限公司
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Application filed by 欣達企業有限公司 filed Critical 欣達企業有限公司
Priority to TW109200539U priority Critical patent/TWM598364U/en
Priority to CN202021224441.7U priority patent/CN212690992U/en
Publication of TWM598364U publication Critical patent/TWM598364U/en

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Abstract

一種閥芯驅動裝置,其包括裝置本體、輸入軸件、輸出軸件、動力傳遞模組以及止擋件。裝置本體設置於閥裝置。輸入軸件可旋轉地設置於裝置本體內。輸出軸件可旋轉地穿設於裝置本體。動力傳遞模組設置在裝置本體,輸入軸件由動力傳遞模組可相對旋轉地結合於輸出軸件。止擋件設於該裝置本體且止擋動力傳遞模組,動力傳遞模組可施力移動止擋件而相對於裝置本體旋轉。藉此本申請的閥芯驅動裝置不需要進行離合操作,而可在自動驅動的驅動裝置無法運作時直接以手動驅動的方式驅動輸出軸件轉動。A valve core driving device includes a device body, an input shaft, an output shaft, a power transmission module, and a stopper. The device body is arranged on the valve device. The input shaft is rotatably arranged in the device body. The output shaft is rotatably penetrated through the device body. The power transmission module is arranged on the device body, and the input shaft is relatively rotatably coupled to the output shaft by the power transmission module. The stopper is arranged on the device body and stops the power transmission module. The power transmission module can force the stopper to rotate relative to the device body. Therefore, the valve core driving device of the present application does not need to perform a clutch operation, and can directly drive the output shaft to rotate in a manual driving manner when the automatically driven driving device cannot operate.

Description

閥芯驅動裝置Spool drive device

本申請係有關於一種閥芯驅動的技術領域,特別是有關於一種可以切換自動或手動驅動閥芯的閥芯驅動裝置。This application relates to the technical field of a spool drive, in particular to a spool drive device that can switch between automatically or manually driving the spool.

現有閥裝置的閥芯為電力驅動,但是遇到停電或驅動裝置故障時,需要手動操作閥芯,因此現有的電動閥裝置多半會附加手動操作裝置,以便在電力驅動裝置無法使用時,可以手動操作閥芯。但是現有的手動操作裝置多為離合裝置,在手動操作閥芯時,需要額外的離合操作。The spool of the existing valve device is electrically driven, but in the event of a power outage or a failure of the drive device, the spool needs to be manually operated. Therefore, most of the existing electric valve device will be equipped with a manual operation device so that it can be manually operated when the electric drive device cannot be used. Operate the spool. However, most of the existing manual operating devices are clutch devices, and additional clutch operations are required when manually operating the spool.

有鑑於此,本申請提供一種閥芯驅動裝置,作為自動驅動的第一驅動模組以及作為手動驅動的第二驅動模組均連接於動力傳遞模組,在第一驅動模組停止運轉時,動力傳遞模組可自動脫離第一驅動模組,由第二驅動模組手動驅動動力傳遞模組而操作閥芯,藉此解決現有技術必須進行離合操作的問題。In view of this, the present application provides a valve core drive device. The first drive module that is automatically driven and the second drive module that is manually driven are both connected to the power transmission module. When the first drive module stops running, The power transmission module can be automatically separated from the first drive module, and the second drive module manually drives the power transmission module to operate the valve core, thereby solving the problem that the prior art must perform a clutch operation.

本申請一實施例的閥芯驅動裝置包括裝置本體、輸入軸件、輸出軸件、動力傳遞模組、第一驅動模組、第二驅動模組以及止擋件。裝置本體設置於閥裝置。輸入軸件可旋轉地設置於裝置本體內。輸出軸件可旋轉地穿設於裝置本體。動力傳遞模組設置在裝置本體,且包括第一齒輪件、偏心結合件及第二齒輪件,第一齒輪件結合於輸出軸件,輸入軸體與第一齒輪件彼此可相對旋轉且偏心地結合於偏心結合件,第二齒輪件設於裝置本體且環繞並嚙合於第一齒輪件。第一驅動模組旋轉輸入軸件。第二驅動模組旋轉輸出軸件。止擋件設於該裝置本體且止擋第二齒輪件,第二齒輪件可受力移動止擋件而相對於裝置本體旋轉。The valve core drive device of an embodiment of the present application includes a device body, an input shaft, an output shaft, a power transmission module, a first drive module, a second drive module, and a stopper. The device body is arranged on the valve device. The input shaft is rotatably arranged in the device body. The output shaft is rotatably penetrated through the device body. The power transmission module is arranged on the device body and includes a first gear member, an eccentric coupling member, and a second gear member. The first gear member is coupled to the output shaft member. The input shaft body and the first gear member are rotatable relative to each other and eccentrically Combined with the eccentric coupling member, the second gear member is arranged on the device body and surrounds and meshes with the first gear member. The first driving module rotates the input shaft. The second driving module rotates the output shaft. The stopper is arranged on the device body and stops the second gear member. The second gear member can be forced to move the stopper to rotate relative to the device body.

藉由本申請的閥芯驅動裝置,當驅動力施加在輸入軸件時(自動驅動),動力傳遞模組由止擋件所止擋,輸入軸件經由動力傳遞模組將驅動力傳遞至輸出軸件而使輸出軸件轉動。當輸入軸件被固定時(自動驅動無法運轉),由於輸入軸件與輸出軸件間可相對轉動,驅動力可直接施加在輸出軸件,驅動輸出軸件並連帶驅動動力傳遞模組施力於止擋件而移動止擋件,使動力傳遞模組可隨著輸出軸件轉動。藉此本申請的閥芯驅動裝置不需要進行離合操作,而可在自動驅動的驅動裝置無法運作時直接以手動驅動的方式驅動輸出軸件轉動。With the spool drive device of the present application, when a driving force is applied to the input shaft (automatic drive), the power transmission module is stopped by the stopper, and the input shaft transmits the driving force to the output shaft through the power transmission module The output shaft rotates. When the input shaft is fixed (automatic drive cannot run), because the input shaft and the output shaft can rotate relative to each other, the driving force can be directly applied to the output shaft, and the output shaft is driven and the power transmission module is also driven. Move the stopper on the stopper so that the power transmission module can rotate with the output shaft. Therefore, the valve core driving device of the present application does not need to perform a clutch operation, and can directly drive the output shaft to rotate in a manual driving manner when the automatically driven driving device cannot operate.

請參閱圖1、圖2、圖3、圖4及圖5,其為本申請一實施例的閥芯驅動裝置的立體圖、前視圖及三個不同視角的立體分解圖。本申請一實施例的閥芯驅動裝置100包括裝置本體10、輸入軸件20、輸出軸件30、動力傳遞模組40、止擋件50、第一驅動模組60以及第二驅動模組70。裝置本體10設置於閥裝置(未圖示)。輸入軸件20可旋轉地設置於裝置本體10內。輸出軸件30可旋轉地穿設於裝置本體10。動力傳遞模組40設置在裝置本體10,動力傳遞模組40且包括第一齒輪件41、偏心結合件42及第二齒輪件43,第一齒輪件41結合於輸出軸件30,輸入軸件20與第一齒輪件41彼此可相對旋轉且偏心地結合於偏心結合件42,第二齒輪件43設於裝置本體10且環繞並嚙合於第一齒輪件41。第一驅動模組60使輸入軸件20旋轉。第二驅動模組70使輸出軸件30旋轉。止擋件50設於裝置本體10且止擋第二齒輪件43,第二齒輪件43可受力移動止擋件50而相對於裝置本體10旋轉。Please refer to FIG. 1, FIG. 2, FIG. 3, FIG. 4, and FIG. 5, which are a three-dimensional view, a front view, and a three-dimensional exploded view of a valve core driving device according to an embodiment of the application. The valve core driving device 100 of an embodiment of the present application includes a device body 10, an input shaft member 20, an output shaft member 30, a power transmission module 40, a stop member 50, a first drive module 60, and a second drive module 70 . The device body 10 is provided in a valve device (not shown). The input shaft 20 is rotatably disposed in the device body 10. The output shaft 30 rotatably penetrates the device body 10. The power transmission module 40 is disposed on the device body 10. The power transmission module 40 includes a first gear member 41, an eccentric coupling member 42, and a second gear member 43. The first gear member 41 is coupled to the output shaft 30 and the input shaft 20 and the first gear member 41 are relatively rotatable and eccentrically coupled to the eccentric coupling member 42. The second gear member 43 is disposed on the device body 10 and surrounds and meshes with the first gear member 41. The first driving module 60 rotates the input shaft 20. The second driving module 70 rotates the output shaft 30. The stopper 50 is disposed on the device body 10 and stops the second gear member 43. The second gear member 43 can move the stopper 50 under force to rotate relative to the device body 10.

裝置本體10可安裝於閥裝置的殼體(未圖示)。輸出軸件30、動力傳遞模組40以及輸入軸件20依序設置於裝置本體10中。輸出軸件30可旋轉地設置在裝置本體10的底部並經由開口延伸至裝置本體10的外部,輸出軸件30可連接於閥裝置的閥芯(未圖示)。輸入軸件20可連接於第一驅動模組60,輸入軸件20經由動力傳遞模組40結合於輸出軸件30。第一驅動模組驅動輸入軸件20旋轉,並經由動力傳遞模組40將驅動力傳遞至輸出軸件30,藉此連動輸出軸件30。在本實施例中,輸入軸件20與輸出軸件30彼此間可相對旋轉。止擋件50設置於裝置本體10底部的第一容置槽S3中,且藉由卡合於動力傳遞模組40而止擋動力傳遞模組40。當對動力傳遞模組40施加大於既定值的扭力時,動力傳遞模組40可推移止擋件50而相對於裝置本體10旋轉。以下分別說明各元件的結構及連接關係。The device body 10 can be installed in a housing (not shown) of a valve device. The output shaft 30, the power transmission module 40 and the input shaft 20 are sequentially arranged in the device body 10. The output shaft 30 is rotatably disposed at the bottom of the device body 10 and extends to the outside of the device body 10 through the opening. The output shaft 30 can be connected to a valve core (not shown) of the valve device. The input shaft 20 can be connected to the first drive module 60, and the input shaft 20 is coupled to the output shaft 30 via the power transmission module 40. The first driving module drives the input shaft 20 to rotate, and transmits the driving force to the output shaft 30 through the power transmission module 40, thereby linking the output shaft 30. In this embodiment, the input shaft member 20 and the output shaft member 30 can rotate relative to each other. The stopper 50 is disposed in the first accommodating slot S3 at the bottom of the device body 10 and stops the power transmission module 40 by being engaged with the power transmission module 40. When a torque greater than a predetermined value is applied to the power transmission module 40, the power transmission module 40 can push the stopper 50 and rotate relative to the device body 10. The structure and connection relationship of each element are described below.

如圖3、圖4及圖5所示,在本實施例中,裝置本體10包括四個側壁11以及一個底壁12。四個側壁11以及底壁12連接形成第一容置空間S1,從底壁12形成圓筒狀的突出部13,在圓筒狀的突出部13中形成壁面呈階梯狀的第二容置空間S2。第二容置空間S2包括相互連通的第一容置槽S3、第二容置槽S4以及第三容置槽S5,其中第一容置槽S3的直徑大於第二容置槽S4的直徑,且第二容置槽S4的直徑大於第三容置槽S5的直徑。在第三容置槽S5的底部形成開孔。在第一容置槽S3的內周壁上設有容置凹部S6。As shown in FIGS. 3, 4 and 5, in this embodiment, the device body 10 includes four side walls 11 and a bottom wall 12. The four side walls 11 and the bottom wall 12 are connected to form a first accommodating space S1, a cylindrical protrusion 13 is formed from the bottom wall 12, and a second accommodating space with a stepped wall surface is formed in the cylindrical protrusion 13 S2. The second accommodating space S2 includes a first accommodating groove S3, a second accommodating groove S4, and a third accommodating groove S5 that communicate with each other, wherein the diameter of the first accommodating groove S3 is larger than the diameter of the second accommodating groove S4, And the diameter of the second accommodating groove S4 is greater than the diameter of the third accommodating groove S5. An opening is formed at the bottom of the third accommodating groove S5. An accommodating recess S6 is provided on the inner peripheral wall of the first accommodating groove S3.

如圖3所示,輸入軸件20包括結合部21以及承靠部22,結合部21包括軸體211以及凸塊212。軸體211呈圓柱狀且內部形成通孔213,通孔213是用於供後述的輸出軸件30的輸出軸本體31穿設。凸塊212設於軸體211的外周壁。承靠部22為形成於軸體211的突緣。輸入軸件20可結合於第一驅動模組60,第一驅動模組60驅動輸入軸件20旋轉。第一驅動模組60包括驅動件61以及動力傳遞/變速組件62。動力傳遞/變速組件62連接於驅動件61。在本實施例中,驅動件61可以是電動馬達,動力傳遞/變速組件62可以是齒輪組,齒輪組包括驅動齒輪63。齒輪組的驅動齒輪63可結合於結合部21的軸體211,並在驅動齒輪63的內孔邊緣形成凹口631,藉由凹口631結合於結合部21的凸塊212,且承靠於承靠部22可使輸入軸件20旋轉。As shown in FIG. 3, the input shaft 20 includes a coupling portion 21 and a supporting portion 22, and the coupling portion 21 includes a shaft 211 and a protrusion 212. The shaft body 211 has a cylindrical shape and a through hole 213 is formed inside. The through hole 213 is used for penetrating the output shaft body 31 of the output shaft 30 described later. The bump 212 is provided on the outer peripheral wall of the shaft body 211. The supporting portion 22 is a flange formed on the shaft body 211. The input shaft 20 can be combined with the first driving module 60, and the first driving module 60 drives the input shaft 20 to rotate. The first driving module 60 includes a driving member 61 and a power transmission/shift assembly 62. The power transmission/shift assembly 62 is connected to the driving member 61. In this embodiment, the driving member 61 may be an electric motor, and the power transmission/shift assembly 62 may be a gear set, and the gear set includes a driving gear 63. The driving gear 63 of the gear set can be coupled to the shaft 211 of the coupling portion 21, and a notch 631 is formed on the edge of the inner hole of the driving gear 63. The notch 631 is coupled to the protrusion 212 of the coupling portion 21 and bears against The supporting portion 22 can rotate the input shaft 20.

如圖3所示,輸出軸件30包括輸出軸本體31以及突緣部32,突緣部32環設於輸出軸本體31且結合於第一齒輪件41的內周壁。輸出軸件30還包括閥芯結合部33。輸出軸本體31呈圓柱狀且內部形成穿孔311,供結合第二驅動模組70的連接件71。突緣部32自輸出軸本體31的外周壁徑向延伸並在周緣等距離地設有複數個卡合缺口321,卡合缺口321用於結合於第一齒輪件41的凸塊411(如圖5所示)。閥芯結合部33連接於突緣部32,並自裝置本體10的第三容置槽S5的開孔延伸至裝置本體10的下方,用於連接閥裝置的閥芯。As shown in FIG. 3, the output shaft 30 includes an output shaft body 31 and a flange portion 32, and the flange portion 32 is arranged around the output shaft body 31 and coupled to the inner peripheral wall of the first gear member 41. The output shaft 30 also includes a valve core joint 33. The output shaft body 31 has a cylindrical shape and a through hole 311 is formed inside for coupling with the connecting member 71 of the second driving module 70. The flange portion 32 extends radially from the outer peripheral wall of the output shaft body 31 and is equidistantly provided with a plurality of engagement notches 321 at the periphery. The engagement notches 321 are used for coupling to the protrusion 411 of the first gear member 41 (as shown in FIG. 5). The valve core connecting portion 33 is connected to the flange portion 32 and extends from the opening of the third receiving groove S5 of the device body 10 to below the device body 10 for connecting the valve core of the valve device.

突緣部32及閥芯結合部33分別被容置於第二容置槽S4以及第三容置槽S5中,且受第二容置槽S4以及第三容置槽S5的限制繞第一軸心L1旋轉,藉此使得輸出軸件30繞第一軸心L1旋轉(如圖6及圖7所示)。輸入軸件20的結合部21的軸體211內的通孔213配合於輸出軸件30的輸出軸本體31,且輸出軸本體31的軸心與通孔213的軸線重合,藉此輸入軸件20也繞第一軸心L1旋轉。因此輸入軸件20及輸出軸件30都繞第一軸心L1旋轉。The flange portion 32 and the valve core coupling portion 33 are respectively accommodated in the second accommodating groove S4 and the third accommodating groove S5, and are restricted by the second accommodating groove S4 and the third accommodating groove S5. The axis L1 rotates, thereby causing the output shaft 30 to rotate around the first axis L1 (as shown in FIGS. 6 and 7). The through hole 213 in the shaft body 211 of the coupling portion 21 of the input shaft member 20 is fitted to the output shaft body 31 of the output shaft member 30, and the axis of the output shaft body 31 coincides with the axis of the through hole 213, thereby the input shaft member 20 also rotates around the first axis L1. Therefore, both the input shaft 20 and the output shaft 30 rotate around the first axis L1.

如圖3、圖4及圖5所示,動力傳遞模組40包括第一齒輪件41、偏心結合件42以及第二齒輪件43。第一齒輪件41結合於輸出軸件30且繞第二軸心L2旋轉,且第二軸心L2平行且偏離第一軸心L1。輸入軸件20與第一齒輪41件彼此可相對旋轉且偏心地結合於偏心結合件42。第二齒輪件43設於裝置本體10且環繞並嚙合於第一齒輪件41,止擋件50止擋第二齒輪件43,第二齒輪件43可受力移動止擋件50而繞第一軸心L1旋轉。As shown in FIGS. 3, 4 and 5, the power transmission module 40 includes a first gear member 41, an eccentric coupling member 42 and a second gear member 43. The first gear 41 is coupled to the output shaft 30 and rotates around the second axis L2, and the second axis L2 is parallel and deviated from the first axis L1. The input shaft 20 and the first gear 41 are relatively rotatable and eccentrically coupled to the eccentric coupling member 42. The second gear member 43 is disposed on the device body 10 and surrounds and meshes with the first gear member 41. The stopper 50 stops the second gear member 43. The second gear member 43 can move the stopper 50 by force to move around the first gear member. The axis L1 rotates.

本實施例的偏心結合件42與輸入軸件20為一體成形,即偏心結合件42連接於輸入軸件20的承靠部22。在本實施例中,偏心結合件42為圓柱體,且第二軸心L2通過偏心結合件42的軸心,偏心結合件42與結合部21的軸體211彼此為偏心設置,如前所述,軸體211配合於輸出軸件30的輸出軸本體31且繞第一軸心L1旋轉,而偏心結合件42本身的軸心為第二軸心L2,藉由偏心結合件42與結合部21的軸體211形成偏心設置,第二軸心L2與第一軸心L1形成偏心設置。如此,輸入軸件20與偏心結合件42為一體成形,而第一齒輪件41經由軸承44可旋轉地套設於偏心結合件42,使得輸入軸件20與第一齒輪件41彼此偏心設置且可相對旋轉。In this embodiment, the eccentric coupling member 42 and the input shaft member 20 are integrally formed, that is, the eccentric coupling member 42 is connected to the supporting portion 22 of the input shaft member 20. In this embodiment, the eccentric coupling member 42 is a cylinder, and the second axis L2 passes through the axis of the eccentric coupling member 42, and the eccentric coupling member 42 and the shaft 211 of the coupling portion 21 are eccentrically arranged with each other, as described above , The shaft 211 is fitted to the output shaft body 31 of the output shaft 30 and rotates around the first axis L1, and the axis of the eccentric coupling 42 itself is the second axis L2, and the eccentric coupling 42 and the coupling 21 The shaft body 211 is eccentrically arranged, and the second shaft center L2 and the first shaft center L1 are eccentrically arranged. In this way, the input shaft member 20 and the eccentric coupling member 42 are integrally formed, and the first gear member 41 is rotatably sleeved on the eccentric coupling member 42 via the bearing 44, so that the input shaft member 20 and the first gear member 41 are eccentrically arranged with respect to each other. Can be rotated relatively.

第二齒輪件43設置於第二容置空間S2的第一容置槽S3中,如前所述,止擋件50設置於第一容置槽S3的內周壁的容置凹部S6中,因此止擋件50止擋第二齒輪件43,使第二齒輪件43不旋轉地定位在第一容置槽S3中。在本實施例中,第二齒輪件43的外周壁設有複數個凹部431,止擋件50卡合於該等凹部431的其中之一。藉此,第二齒輪件43的軸心與第一軸心L1重合。第二齒輪件43呈環狀,第二齒輪件43齒設置在內周壁而形成內環齒。第一齒輪件41的直徑小於第二齒輪件43的直徑,因此第二齒輪件43環繞第一齒輪件41設置。而如前所述,第一齒輪件41的軸心與第二軸心L2重合,而第二軸心L2與第一軸心L1呈偏心設置,因此第一齒輪件41藉由第二軸心L2與第一軸心L1偏心設置的結構而嚙合於第二齒輪件43的內環齒。The second gear member 43 is disposed in the first accommodating groove S3 of the second accommodating space S2. As described above, the stopper 50 is disposed in the accommodating recess S6 of the inner peripheral wall of the first accommodating groove S3. The stopper 50 stops the second gear member 43 so that the second gear member 43 is positioned in the first accommodating groove S3 without rotating. In this embodiment, the outer peripheral wall of the second gear member 43 is provided with a plurality of recesses 431, and the stopper 50 is engaged with one of the recesses 431. Thereby, the axis of the second gear member 43 coincides with the first axis L1. The second gear member 43 is ring-shaped, and the second gear member 43 has teeth provided on the inner peripheral wall to form inner ring teeth. The diameter of the first gear piece 41 is smaller than the diameter of the second gear piece 43, so the second gear piece 43 is arranged around the first gear piece 41. As mentioned above, the axis of the first gear member 41 coincides with the second axis L2, and the second axis L2 is eccentrically arranged with the first axis L1. Therefore, the first gear member 41 passes through the second axis L1. L2 is eccentrically arranged with the first axis L1 to mesh with the inner ring teeth of the second gear 43.

請參閱圖6,其為圖2的閥芯驅動裝置沿A-A線的剖視圖。如圖所示,偏心結合件42繞第一軸心L1旋轉,且第一齒輪件41沿軌跡繞第一軸心L1公轉且第一齒輪件41繞第二軸心L2自轉。由於第一齒輪件41經由軸承44結合於偏心結合件42,因此第一齒輪件41可相對於偏心結合件42旋轉,而由於偏心結合件42相對於第一軸心L1偏心設置,因此第一齒輪件41會保持嚙合於第二齒輪件43,而第二齒輪件43由止擋件50卡合止擋而保持不轉動。當偏心結合件42繞第一軸心L1旋轉時,第一齒輪件41會繞第一軸心L1公轉,由於偏心結合件42會繞第一軸心L1旋轉,由偏心結合件42形成的第一齒輪件41嚙合於第二齒輪件43的位置也會隨著旋轉而不斷的改變。Please refer to FIG. 6, which is a cross-sectional view of the valve core driving device of FIG. 2 along the line A-A. As shown in the figure, the eccentric coupling member 42 rotates around the first axis L1, the first gear member 41 revolves around the first axis L1 along the track, and the first gear member 41 rotates around the second axis L2. Since the first gear member 41 is coupled to the eccentric coupling member 42 via the bearing 44, the first gear member 41 can rotate relative to the eccentric coupling member 42. Since the eccentric coupling member 42 is eccentrically arranged with respect to the first axis L1, the first The gear member 41 keeps meshing with the second gear member 43, and the second gear member 43 is blocked by the stopper 50 to keep it from rotating. When the eccentric coupling member 42 rotates around the first axis L1, the first gear member 41 will revolve around the first axis L1. Since the eccentric coupling member 42 will rotate around the first axis L1, the first gear member 42 is formed by the eccentric coupling member 42. The position where a gear member 41 meshes with the second gear member 43 will also change continuously as it rotates.

請參閱圖7,其為圖2的閥芯驅動裝置沿B-B線的剖視圖。復請參閱圖4,在第一齒輪件41的內周壁設有複數個凸塊411,第一齒輪件41的凸塊411卡合於輸出軸件30的突緣部32的卡合缺口321,但是卡合缺口321容許凸塊411於第一齒輪件41的徑向產生相對移動。如前所述,第一齒輪41在繞第一軸心L1公轉時,第一齒輪件41本身會繞第二軸心L2自轉,因此第一齒輪41的自轉可藉由凸塊411與卡合缺口321的卡合結構而使輸出軸件30產生旋轉。由於輸出軸件30是繞第一軸心L1旋轉,而第一齒輪件41本身會繞第二軸心L2自轉,因此卡合缺口321容許凸塊411於第一齒輪件41的徑向產生相對移動的餘裕,使得輸出軸件30可由第一齒輪件41帶動旋轉。Please refer to FIG. 7, which is a cross-sectional view of the valve core driving device of FIG. 2 along the line B-B. 4 again, a plurality of protrusions 411 are provided on the inner peripheral wall of the first gear member 41, and the protrusions 411 of the first gear member 41 are engaged with the engagement notches 321 of the flange portion 32 of the output shaft member 30, However, the engaging notch 321 allows the protrusion 411 to move relative to the radial direction of the first gear member 41. As mentioned above, when the first gear 41 revolves around the first axis L1, the first gear 41 itself will rotate around the second axis L2, so the rotation of the first gear 41 can be engaged with by the protrusion 411 The engagement structure of the notch 321 causes the output shaft 30 to rotate. Since the output shaft 30 rotates around the first axis L1, and the first gear 41 itself rotates around the second axis L2, the engagement notch 321 allows the protrusion 411 to be opposed in the radial direction of the first gear 41 With the margin of movement, the output shaft 30 can be rotated by the first gear 41.

復請參閱圖1、圖2及圖3,本申請的閥芯驅動裝置100更包括第二驅動模組70,其連接於輸出軸件30。第二驅動模組70包括連接件71以及旋轉操作件72,連接件71連接於輸出軸件30,旋轉操作件72固定於連接件71。在本實施例中,連接件71為長桿狀的旋桿,旋轉操作件72為把手。如前所述,輸出軸件30的輸出軸本體31配合輸入軸件20的結合部21的軸體211內的通孔213,因此連接件71直接延伸進入輸出軸件30的輸出軸本體31的穿孔311並與穿孔311結合。連接件71可以是D形軸桿,穿孔311可以是D形軸孔,連接件71結合於穿孔311後,經由轉動旋轉操作件72可以由連接件71旋轉輸出軸件30。Please refer to FIGS. 1, 2 and 3 again. The valve core driving device 100 of the present application further includes a second driving module 70 connected to the output shaft 30. The second driving module 70 includes a connecting piece 71 and a rotating operating piece 72. The connecting piece 71 is connected to the output shaft 30, and the rotating operating piece 72 is fixed to the connecting piece 71. In this embodiment, the connecting member 71 is a long rod-shaped rotating rod, and the rotating operating member 72 is a handle. As mentioned above, the output shaft body 31 of the output shaft member 30 fits the through hole 213 in the shaft body 211 of the coupling portion 21 of the input shaft member 20, so the connecting member 71 directly extends into the output shaft body 31 of the output shaft member 30 The through hole 311 is combined with the through hole 311. The connecting member 71 may be a D-shaped shaft, and the through hole 311 may be a D-shaped shaft hole. After the connecting member 71 is coupled to the through hole 311, the output shaft 30 can be rotated by the connecting member 71 via the rotating operating member 72.

當第一驅動裝置60因停電或故障無法運轉時,可將連接件71穿置於穿孔311中,使用者以手動的方式操作旋轉操作件72使連接件71帶動輸出軸件30旋轉。如圖6所示,由於輸入軸件20是與第一驅動裝置60結合,因此當第一驅動裝置60無法運轉時,輸入軸件20無法轉動,但是偏心結合件42的偏心結構使第一齒輪41與第二齒輪43保持在恆定的嚙合位置。另外如圖7所示,使用者手動的方式操作第二驅動模組70,提供輸出軸件30旋轉所需要的扭力,輸出軸件30藉由卡合缺口321與第一齒輪件41的凸塊411的卡合結構,將扭力傳遞至第一齒輪件41。請復參閱圖6,由於第一齒輪41與第二齒輪43嚙合,因此扭力再由第一齒輪41傳遞至第二齒輪43,藉此使第二齒輪43推壓止擋件50。當施加的扭力大於一既定值時,第二齒輪43推壓止擋件50後退而成為可相對於裝置本體10轉動的狀態,藉此輸出軸件30可被手動旋轉而旋轉閥芯。When the first driving device 60 cannot be operated due to a power failure or malfunction, the connecting member 71 can be inserted into the perforation 311, and the user manually operates the rotating operating member 72 to make the connecting member 71 drive the output shaft 30 to rotate. As shown in FIG. 6, because the input shaft 20 is combined with the first driving device 60, when the first driving device 60 cannot operate, the input shaft 20 cannot rotate, but the eccentric structure of the eccentric coupling 42 makes the first gear 41 and the second gear 43 are maintained at a constant meshing position. In addition, as shown in FIG. 7, the user manually operates the second drive module 70 to provide the torque required for the rotation of the output shaft 30. The output shaft 30 engages the notch 321 with the protrusion of the first gear 41 The engaging structure of 411 transmits the torsion force to the first gear member 41. Please refer to FIG. 6 again. Since the first gear 41 meshes with the second gear 43, the torsion force is transmitted from the first gear 41 to the second gear 43, so that the second gear 43 pushes the stopper 50. When the applied torque is greater than a predetermined value, the second gear 43 pushes the stopper 50 back and becomes a state capable of rotating relative to the device body 10, whereby the output shaft 30 can be manually rotated to rotate the valve core.

止擋件50為了達成上述可止擋第二齒輪件43而且又可在既定的力的作用下被移動的作動方式,止擋件50包括卡合部51以及彈性部52,卡合部51卡合動力傳遞模組40,彈性部52可彈性變形地結合於裝置本體10及卡合部51。請參閱圖8,其為本申請止擋件一實施例的剖視圖。如圖所示,在本實施例中,止擋件50具有圓筒形的殼體53,卡合部51為球體,彈性部52為彈簧,殼體53具有開口,開口的直徑略小於卡合部51的直徑,因此卡合部51可經由開口露出但是仍會被限制在殼體53中,彈性部52壓抵卡合部51並對卡合部51施加彈力。止擋件50的殼體53卡合於第一容置槽S3的容置凹部S6中,作為卡合部51的球體藉由彈性部52的彈力抵接且卡合於第二齒輪件43的凹部431,藉此止擋第二齒輪件43。當傳遞至第二齒輪43的扭力大於既定值而克服彈性部52的彈力時,卡合部51被推壓後退進入殼體53,第二齒輪43可以相對於裝置本體10旋轉。In order to achieve the above-mentioned operation mode of the stopper 50 that can stop the second gear member 43 and can be moved under the action of a predetermined force, the stopper 50 includes an engaging portion 51 and an elastic portion 52, and the engaging portion 51 is locked. With the power transmission module 40, the elastic portion 52 is coupled to the device body 10 and the engaging portion 51 in an elastically deformable manner. Please refer to FIG. 8, which is a cross-sectional view of an embodiment of a stopper of the present application. As shown in the figure, in this embodiment, the stopper 50 has a cylindrical housing 53, the engaging portion 51 is a sphere, the elastic portion 52 is a spring, and the housing 53 has an opening whose diameter is slightly smaller than that of the engaging portion. The diameter of the portion 51 is such that the engaging portion 51 can be exposed through the opening but is still restricted in the housing 53. The elastic portion 52 presses against the engaging portion 51 and applies elastic force to the engaging portion 51. The housing 53 of the stopper 50 is engaged with the accommodating recess S6 of the first accommodating groove S3, and the ball as the engaging portion 51 is abutted by the elastic force of the elastic portion 52 and engaged with the second gear member 43 The recess 431 thereby blocks the second gear member 43. When the torsion force transmitted to the second gear 43 is greater than a predetermined value and overcomes the elastic force of the elastic portion 52, the engaging portion 51 is pushed back into the casing 53 and the second gear 43 can rotate relative to the device body 10.

請參閱圖9,其為本申請止擋件另一實施例的剖視圖。如圖所示,止擋件50由金屬片彎折形成,卡合部51為突起,彈性部52為彈片。卡合部51抵接且卡合於第二齒輪件43的凹部431,藉此止擋第二齒輪43。當傳遞至第二齒輪43的扭力大於既定值時,卡合部51被推壓使彈性部52產生彈性變形而使卡合部51後退,第二齒輪43可以相對於裝置本體10旋轉。Please refer to FIG. 9, which is a cross-sectional view of another embodiment of the stopper of the present application. As shown in the figure, the stopper 50 is formed by bending a metal sheet, the engaging portion 51 is a protrusion, and the elastic portion 52 is an elastic sheet. The engaging portion 51 abuts and engages with the concave portion 431 of the second gear member 43 to thereby stop the second gear 43. When the torque transmitted to the second gear 43 is greater than a predetermined value, the engaging portion 51 is pressed to elastically deform the elastic portion 52 to cause the engaging portion 51 to retreat, and the second gear 43 can rotate relative to the device body 10.

本申請的閥芯驅動裝置100,藉由設置止擋件50止擋第二齒輪43,第一驅動模組60提供扭力於輸入軸件20,藉由第一齒輪42驅動輸出軸件30旋轉。在第一驅動模組60無法運轉時,第二驅動模組70直接提供扭力於輸出軸件30,藉由第一齒輪42嚙合於第二齒輪43於既定位置的結構,將扭力傳遞至使第二齒輪件43克服止擋件50產生旋轉,使第二驅動模組70可直接旋轉輸出軸件30。因此本申請的閥芯驅動裝置100在自動驅動轉成手動驅動時,不需要進行離合操作。In the valve core driving device 100 of the present application, the second gear 43 is stopped by the stopper 50, the first driving module 60 provides torque to the input shaft 20, and the first gear 42 drives the output shaft 30 to rotate. When the first drive module 60 is unable to operate, the second drive module 70 directly provides torque to the output shaft 30. The first gear 42 is engaged with the second gear 43 at a predetermined position to transmit the torque to the The second gear member 43 overcomes the stop member 50 to rotate, so that the second driving module 70 can directly rotate the output shaft member 30. Therefore, the valve core driving device 100 of the present application does not need to perform a clutch operation when the automatic driving is changed to manual driving.

需要說明的是,在本文中,術語“包括”、“包含”或者其任何其他變體意在涵蓋非排他性的包含,從而使得包括一系列要素的過程、方法、物品或者裝置不僅包括那些要素,而且還包括沒有明確列出的其他要素,或者是還包括為這種過程、方法、物品或者裝置所固有的要素。在沒有更多限制的情況下,由語句“包括一個……”限定的要素,並不排除在包括該要素的過程、方法、物品或者裝置中還存在另外的相同要素。It should be noted that in this article, the terms "include", "include" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements, It also includes other elements not explicitly listed, or elements inherent to the process, method, article, or device. If there are no more restrictions, the element defined by the sentence "including a..." does not exclude the existence of other identical elements in the process, method, article or device that includes the element.

上面結合附圖對本申請的實施例進行了描述,但是本申請並不局限於上述的具體實施方式,上述的具體實施方式僅僅是示意性的,而不是限制性的,所屬領域中具有通常知識者在本申請的啟示下,在不脫離本申請宗旨和申請專利範圍所保護的範圍情況下,還可做出很多形式,均屬於本申請的保護之內。The embodiments of the present application are described above in conjunction with the drawings, but the present application is not limited to the above-mentioned specific implementations. The above-mentioned specific implementations are only illustrative and not restrictive. Those with ordinary knowledge in the field Under the enlightenment of this application, without departing from the scope of protection of the purpose of this application and the scope of the patent application, many forms can be made, all of which fall within the protection of this application.

10:裝置本體 11:側壁 12:底壁 13:突出部 20:輸入軸件 21:結合部 22:承靠部 30:輸出軸件 31:輸出軸本體 32:突緣部 33:閥芯結合部 40:動力傳遞模組 41:第一齒輪件 42:偏心結合件 43:第二齒輪件 44:軸承 50:止擋件 51:卡合部 52:彈性部 53:殼體 60:第一驅動模組 61:驅動件 62:動力傳遞/變速組件 63:驅動齒輪 70:第二驅動模組 71:連接件 72:旋轉操作件 100:閥芯驅動裝置 211:軸體 212:凸塊 213:通孔 311:穿孔 321:卡合缺口 411:凸塊 431:凹部 631:凹口 L1:第一軸心 L2:第二軸心 S1:第一容置空間 S2:第二容置空間 S3:第一容置槽 S4:第二容置槽 S5:第三容置槽 S6:容置凹部 10: Device body 11: side wall 12: bottom wall 13: protrusion 20: Input shaft 21: Joint 22: Support Department 30: output shaft 31: Output shaft body 32: flange 33: Spool joint 40: Power Transmission Module 41: The first gear piece 42: eccentric coupling 43: second gear piece 44: Bearing 50: stop 51: card joint 52: Elastic part 53: shell 60: The first drive module 61: Driver 62: Power transmission/shift assembly 63: drive gear 70: The second drive module 71: connector 72: Rotating operating part 100: Spool drive device 211: Shaft 212: bump 213: Through hole 311: Piercing 321: snap gap 411: bump 431: Concave 631: Notch L1: first axis L2: second axis S1: The first housing space S2: The second housing space S3: The first containing tank S4: The second holding tank S5: The third holding tank S6: receiving recess

圖1為本申請一實施例的閥芯驅動裝置的立體圖。 圖2為圖1的閥芯驅動裝置的前視圖。 圖3為圖1的閥芯驅動裝置的立體分解圖。 圖4為圖1的閥芯驅動裝置的另一視角的立體分解圖。 圖5為圖1的閥芯驅動裝置的又另一視角的立體分解圖。 圖6為圖2的閥芯驅動裝置沿A-A線的剖視圖。 圖7為圖2的閥芯驅動裝置沿B-B線的剖視圖。 圖8為本申請止擋件一實施例的剖視圖。 圖9為本申請止擋件另一實施例的剖視圖。 Fig. 1 is a perspective view of a valve core driving device according to an embodiment of the application. Fig. 2 is a front view of the valve core driving device of Fig. 1. Fig. 3 is an exploded perspective view of the valve core driving device of Fig. 1. 4 is an exploded perspective view of the valve core driving device of FIG. 1 from another perspective. Fig. 5 is an exploded perspective view of the valve core driving device of Fig. 1 from another perspective. Fig. 6 is a cross-sectional view of the valve core driving device of Fig. 2 along line A-A. Fig. 7 is a cross-sectional view of the valve core driving device of Fig. 2 along the line B-B. Fig. 8 is a cross-sectional view of an embodiment of a stopper of the present application. Figure 9 is a cross-sectional view of another embodiment of a stopper of the present application.

10:裝置本體 10: Device body

11:側壁 11: side wall

13:突出部 13: protrusion

20:輸入軸件 20: Input shaft

21:結合部 21: Joint

22:承靠部 22: Support Department

30:輸出軸件 30: output shaft

31:輸出軸本體 31: Output shaft body

32:突緣部 32: flange

33:閥芯結合部 33: Spool joint

40:動力傳遞模組 40: Power Transmission Module

41:第一齒輪件 41: The first gear piece

42:偏心結合件 42: eccentric coupling

43:第二齒輪件 43: second gear piece

44:軸承 44: Bearing

50:止擋件 50: stop

60:第一驅動模組 60: The first drive module

61:驅動件 61: Driver

62:動力傳遞/變速組件 62: Power transmission/shift assembly

63:驅動齒輪 63: drive gear

70:第二驅動模組 70: The second drive module

71:連接件 71: connector

72:旋轉操作件 72: Rotating operating part

211:軸體 211: Shaft

212:凸塊 212: bump

213:通孔 213: Through hole

311:通孔 311: Through hole

321:卡合缺口 321: snap gap

431:凹部 431: Concave

631:凹口 631: Notch

Claims (14)

一種閥芯驅動裝置,其包括:裝置本體,設置於閥裝置;輸入軸件,可旋轉地設置於該裝置本體內;輸出軸件,可旋轉地穿設於該裝置本體;動力傳遞模組,設置在該裝置本體,該動力傳遞模組包括第一齒輪件、偏心結合件及第二齒輪件,該第一齒輪件結合於該輸出軸件,該輸入軸件與該第一齒輪件彼此可相對旋轉且偏心地結合於該偏心結合件,該第二齒輪件設於該裝置本體且環繞並嚙合於該第一齒輪件;第一驅動模組,旋轉該輸入軸件;第二驅動模組,旋轉該輸出軸件;以及止擋件,設於該裝置本體且止擋該第二齒輪件,該第二齒輪件受力移動該止擋件而使該第二齒輪件相對於該裝置本體旋轉。 A valve core driving device, comprising: a device body, which is arranged in the valve device; an input shaft, which is rotatably arranged in the device body; an output shaft, which is rotatably penetrated in the device body; a power transmission module, Set in the device body, the power transmission module includes a first gear member, an eccentric coupling member, and a second gear member. The first gear member is coupled to the output shaft member, and the input shaft member and the first gear member are mutually compatible. Relatively rotating and eccentrically coupled to the eccentric coupling member, the second gear member is disposed on the device body and surrounds and meshes with the first gear member; a first drive module that rotates the input shaft member; a second drive module , Rotate the output shaft; and a stopper, arranged on the device body and stop the second gear member, the second gear member is forced to move the stopper to make the second gear member relative to the device body Spin. 如請求項1所述之閥芯驅動裝置,其中該輸入軸件及該輸出軸件都繞一第一軸心旋轉。 The valve core drive device according to claim 1, wherein the input shaft and the output shaft both rotate around a first axis. 如請求項2所述之閥芯驅動裝置,其中該輸入軸件共軸心地與該輸出軸件結合。 The spool drive device according to claim 2, wherein the input shaft is coaxially coupled with the output shaft. 如請求項2所述之閥芯驅動裝置,其中該第一齒輪件繞一第二軸心旋轉,且該第二軸心平行且偏離該第一軸心。 The valve core driving device according to claim 2, wherein the first gear member rotates around a second axis, and the second axis is parallel and deviated from the first axis. 如請求項4所述之閥芯驅動裝置,其中該偏心結合件繞該第一軸心旋轉,且該第一齒輪件繞該第一軸心公轉且該第一齒輪件繞該第二軸心自轉。 The valve core drive device according to claim 4, wherein the eccentric coupling member rotates around the first axis, and the first gear member revolves around the first axis and the first gear member rotates around the second axis rotation. 如請求項4所述之閥芯驅動裝置,其中該第二齒輪件的外周壁設有複數個凹部,該止擋件卡合於該等凹部的其中之一。 The valve core driving device according to claim 4, wherein the outer peripheral wall of the second gear member is provided with a plurality of recesses, and the stopper is engaged with one of the recesses. 如請求項4所述之閥芯驅動裝置,其中該輸出軸件包括輸出軸本體以及突緣部,該突緣部環設於該輸出軸本體且結合於該第一齒輪件的內周壁。 The valve core driving device according to claim 4, wherein the output shaft member includes an output shaft body and a flange portion, the flange portion is arranged around the output shaft body and is coupled to the inner peripheral wall of the first gear member. 如請求項7所述之閥芯驅動裝置,其中該突緣部與該第一齒輪件可於該第一齒輪件的徑向產生相對移動。 The valve core driving device according to claim 7, wherein the flange portion and the first gear member can move relative to each other in a radial direction of the first gear member. 如請求項7所述之閥芯驅動裝置,其中該突緣部沿周緣設有複數個缺口,該第一齒輪件的該內周壁設有複數個凸塊,該等凸塊結合於該等缺口。 The valve core drive device according to claim 7, wherein the flange portion is provided with a plurality of notches along the periphery, the inner peripheral wall of the first gear member is provided with a plurality of protrusions, and the protrusions are combined with the notches . 如請求項1所述之閥芯驅動裝置,其中該止擋件包括卡合部以及彈性部,該卡合部卡合該動力傳遞模組,該彈性部可彈性變形地結合於該裝置本體及該卡合部。 The valve core driving device according to claim 1, wherein the stopper includes an engaging portion and an elastic portion, the engaging portion is engaged with the power transmission module, and the elastic portion is elastically deformable and coupled to the device body and The card joint. 如請求項10所述之閥芯驅動裝置,其中該卡合部為突起,該彈性部為彈片。 The valve core driving device according to claim 10, wherein the engaging portion is a protrusion, and the elastic portion is an elastic piece. 如請求項10所述之閥芯驅動裝置,其中該卡合部為球體,該彈性部為彈簧。 The valve core driving device according to claim 10, wherein the engaging portion is a ball, and the elastic portion is a spring. 如請求項1所述之閥芯驅動裝置,其中該第一驅動模組包括驅動件以及動力傳遞/變速組件,該動力傳遞/變速組件連接於該輸入軸件。 The valve core driving device according to claim 1, wherein the first driving module includes a driving member and a power transmission/speed change assembly, and the power transmission/speed change assembly is connected to the input shaft member. 如請求項1所述之閥芯驅動裝置,其中該第二驅動模組包括連接件以及旋轉操作件,該連接件連接於該輸出軸件,該旋轉操作件連接於該連接件。 The valve core driving device according to claim 1, wherein the second driving module includes a connecting piece and a rotating operating piece, the connecting piece is connected to the output shaft piece, and the rotating operating piece is connected to the connecting piece.
TW109200539U 2020-01-14 2020-01-14 Valve spool driving device TWM598364U (en)

Priority Applications (2)

Application Number Priority Date Filing Date Title
TW109200539U TWM598364U (en) 2020-01-14 2020-01-14 Valve spool driving device
CN202021224441.7U CN212690992U (en) 2020-01-14 2020-06-29 Valve element driving device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
TW109200539U TWM598364U (en) 2020-01-14 2020-01-14 Valve spool driving device

Publications (1)

Publication Number Publication Date
TWM598364U true TWM598364U (en) 2020-07-11

Family

ID=72602410

Family Applications (1)

Application Number Title Priority Date Filing Date
TW109200539U TWM598364U (en) 2020-01-14 2020-01-14 Valve spool driving device

Country Status (2)

Country Link
CN (1) CN212690992U (en)
TW (1) TWM598364U (en)

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Publication number Publication date
CN212690992U (en) 2021-03-12

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