WO2019184353A1 - 一种用于手机触摸屏的生产检测装置 - Google Patents
一种用于手机触摸屏的生产检测装置 Download PDFInfo
- Publication number
- WO2019184353A1 WO2019184353A1 PCT/CN2018/113848 CN2018113848W WO2019184353A1 WO 2019184353 A1 WO2019184353 A1 WO 2019184353A1 CN 2018113848 W CN2018113848 W CN 2018113848W WO 2019184353 A1 WO2019184353 A1 WO 2019184353A1
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- Prior art keywords
- sets
- detecting
- ball bearing
- plate
- detection
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Classifications
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- G—PHYSICS
- G01—MEASURING; TESTING
- G01B—MEASURING LENGTH, THICKNESS OR SIMILAR LINEAR DIMENSIONS; MEASURING ANGLES; MEASURING AREAS; MEASURING IRREGULARITIES OF SURFACES OR CONTOURS
- G01B11/00—Measuring arrangements characterised by the use of optical techniques
- G01B11/30—Measuring arrangements characterised by the use of optical techniques for measuring roughness or irregularity of surfaces
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- G—PHYSICS
- G01—MEASURING; TESTING
- G01D—MEASURING NOT SPECIALLY ADAPTED FOR A SPECIFIC VARIABLE; ARRANGEMENTS FOR MEASURING TWO OR MORE VARIABLES NOT COVERED IN A SINGLE OTHER SUBCLASS; TARIFF METERING APPARATUS; MEASURING OR TESTING NOT OTHERWISE PROVIDED FOR
- G01D21/00—Measuring or testing not otherwise provided for
- G01D21/02—Measuring two or more variables by means not covered by a single other subclass
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- G—PHYSICS
- G01—MEASURING; TESTING
- G01N—INVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
- G01N3/00—Investigating strength properties of solid materials by application of mechanical stress
- G01N3/40—Investigating hardness or rebound hardness
Definitions
- the utility model relates to the technical field of a mobile phone touch screen accessory device, in particular to a production detecting device for a mobile phone touch screen.
- the production detection device for mobile phone touch screen is a kind of touch screen for mobile phones.
- the front transmittance, thickness, hardness, flaw and smoothness are detected to better produce a qualified accessory for a mobile phone touch screen, which is widely used in the field of electronics; existing for mobile phones
- the production detection device of the touch screen includes a detection table, a detection box, and various detector detection boxes mounted on the inspection table, and various detectors are located inside the detection box.
- the existing production detection device for a mobile phone touch screen When the existing production detection device for a mobile phone touch screen is used, the mobile phone touch screen that needs to be detected is manually placed in the detection box, and then detected by various detectors; the existing production for the touch screen of the mobile phone In the use of the detecting device, it is found that the various detectors are independent of each other, the detecting operation cannot be continuously performed, and the artificial hand-held detector performs the detection, which wastes a lot of manpower, and the detection effect is poor, the use limitation is high; and the detection table height is fixed, cannot The height adjustment is not suitable for employees of different heights to carry out inspection work, and the adaptability is poor.
- the utility model provides a plurality of detection operations that can be continuously performed, reduces manpower, improves detection effect, and reduces use limitations; and the height of the detection platform is adjustable, and can be adapted to employees of different heights to perform detection operations and improve Adaptable production detection device for mobile phone touch screen.
- the utility model relates to a production detecting device for a touch screen of a mobile phone, comprising a detecting station and a detecting box; comprising a rotating electric machine, a detecting cover, a plurality of sets of smoothness detectors, a partition plate, a flaw detection camera, a beam, a skateboard and a driving screw , first ball bearing, second ball bearing, traveling motor, support block, detection plate, rotating shaft, third ball bearing, placing plate, left clamping plate, right clamping plate, multiple sets of hardness detecting probes, multiple sets of thickness sensors, transmittance a detecting strip, a control box and a display, wherein the detecting box is internally provided with a detecting chamber, the cross beam is laterally disposed inside the detecting chamber, and the left end of the beam is connected to the left inner wall of the detecting chamber, and the right end of the beam and the right side of the detecting chamber The front side wall is connected to the front end of the beam, the front end of the beam is laterally disposed with
- the plurality of sets of thickness sensors are located below the plurality of sets of hardness detecting heads, and the plurality of sets of thickness sensors are uniformly disposed at the lower right end and the right splint of the left cleat
- the lower end of the left end, the transmittance detecting strip is mounted on the inner wall of the rear side of the detecting chamber, and the transmittance detecting strip is located at the same height as the left and right cleats
- the control box is mounted on the outer wall of the right side of the detecting box
- the control box is internally provided with a control processor, the display is installed at an upper part of the front end of the control box, and a plurality of sets of switches are arranged at a lower end of the front end of the control box, the plurality of groups of lights
- the slip detector, the flaw detection camera, the plurality of sets of hardness detecting probes, the plurality of sets of thickness sensors, and the transmittance detecting strips are all electrically connected to the control processor, and the control processor is electrically
- the top ends of the four sets of threaded rods are respectively connected to the left front side, the left rear side, the right front side and the right rear side of the bottom end of the test stand, and the bottom ends of the four sets of threaded rods are respectively inserted and screwed into the top ends of the four sets of threaded tubes.
- the utility model relates to a production detecting device for a touch screen of a mobile phone, which further comprises four groups of hydraulic cylinders, four groups of rollers, four groups of branches and a hydraulic station, and the left front side, the left rear side, the right front side and the right side of the bottom end of the bottom plate
- the rear side is respectively provided with four sets of placement cavities, and the top ends of the four sets of hydraulic cylinders are respectively connected with the top inner walls of the four sets of placement cavities, and the bottom ends of the telescopic rods inside the four sets of hydraulic cylinders are respectively associated with the four sets of rollers a top end connection
- the hydraulic station is mounted on a left side of the bottom plate
- the four sets of hydraulic cylinders are all in communication with the hydraulic station through the hydraulic oil pipe
- a hydraulic switch is disposed on the hydraulic station
- the top ends of the four sets of support blocks They are respectively connected to the left front side, the left rear side, the right front side and the right rear side of the bottom end of the bottom plate,
- the utility model relates to a production detecting device for a touch screen of a mobile phone, which further comprises a left boom, a right boom, a left screw, a right screw, a left lock and a right lock, and the left boom and the right boom Located at the left and right sides of the ⁇ detecting camera, respectively, the top ends of the left and right booms are connected to the inner top wall of the detecting chamber, and the bottom ends of the left and right booms are respectively Fixedly provided with a fifth ball bearing and a sixth ball bearing, the right end of the left screw rod passes through the fifth ball bearing and protrudes to the outside to be connected with the left outer wall of the flaw detection camera, the left end of the right screw Passing through the sixth ball bearing and extending to the outside to be connected to the right outer wall of the cymbal detecting camera, the left locking nut is set at the left end of the left screw, and the left locking nut is screwed with the left screw,
- the right lock female set is at the right end of the
- the utility model relates to a production detecting device for a touch screen of a mobile phone, which further comprises a left baffle, a right baffle, a plurality of sets of buffer springs, a left threaded rod and a right threaded rod, wherein the left baffle is located on the left side of the left cleat, The right baffle is located at a right side of the right cleat, a first space exists between the left baffle and the left cleat, and a second space exists between the right baffle and the right splint, and the plurality of sets of buffer springs are respectively fixed Installed inside the first interval and the second interval, the bottom end of the left baffle is provided with a left sliding block, the bottom end of the right baffle is provided with a right sliding block, and the top end of the placing plate is left and right The side is respectively provided with a left sliding slot and a right sliding slot, the left sliding block is located inside the left sliding slot, and the left sliding block is slidingly engaged with the left sliding slot,
- the utility model relates to a production detecting device for a touch screen of a mobile phone, which further comprises a gear motor, wherein the outer side wall of the rotating shaft is provided with a driven ring gear, the gear motor is mounted on the left side of the rotating shaft side, and the gear motor is A bottom end is coupled to the top end of the detecting plate, a top output end of the gear motor is provided with a driving gear, and a driving gear meshes with the driven ring gear.
- the utility model has the beneficial effects that: through the above arrangement, the touch screen of the mobile phone to be detected can be clamped by the left and right splints, and then the touch screen of the mobile phone to be detected is driven from left to right by the rotation of the traveling motor.
- the operation passes through a plurality of sets of smoothness detectors, and a flaw detection camera, which can drive multiple sets of smoothness detectors to rotate through the rotating motor, and perform all-round smoothness detection on the touch screen of the mobile phone, and then can pass through the left and right splints.
- Multiple sets of hardness detecting probes and multiple sets of thickness sensors perform hardness detection and thickness detection on the touch screen of the mobile phone, and can rotate the rotating screen of the mobile phone to rotate the touch screen of the mobile phone, and detect all directions under the detection of the detecting camera and the transmittance detecting strip.
- Defects such as impurities, cracks and bright spots inside the touch screen of the mobile phone enable multiple inspection operations to be carried out continuously, reducing manpower, improving detection results, and reducing the use limitations; and the inspection table can rotate the four sets of threaded tubes to height the inspection table. Adjustment, can adapt to the inspection of employees of different heights Improve the ability to adapt.
- Figure 1 is a schematic view of the structure of the present invention
- Figure 2 is a partial enlarged structural view of the utility model A
- Figure 3 is a partial enlarged structural view of the utility model B
- a production detecting device for a touch screen of a mobile phone includes a detecting station 1 and a detecting box 2; and includes a rotating electric machine 3, a detecting cover 4, and a plurality of sets of smoothness detectors 5, Separator 6, tamper detecting camera 7, cross member 8, slide plate 9, driving screw 10, first ball bearing 11, second ball bearing, traveling motor 12, support block 13, detecting plate 14, rotating shaft 15, third ball bearing 16.
- the front end of the beam is laterally provided with a sliding rail, and the rear end of the sliding plate is provided with a slider.
- the slider is slidably engaged with the slide rail, and the left inner wall and the right inner wall of the detection chamber are respectively provided with a left placement groove and a right placement groove, and the first ball bearing and the second ball bearing are respectively installed in the left placement groove and the right placement groove inside.
- drive The bar is located on the front side of the beam, and the left end of the driving screw is inserted into the inside of the first ball bearing, and the right end of the lead screw is driven through the second ball bearing and protrudes to the outside of the right end of the detecting box, and the inner side of the sliding plate is threadedly disposed.
- the traveling motor is mounted on the right outer wall of the detecting box, and the left end of the traveling motor is connected with the right end of the driving screw, the rotating motor Installed on the top of the detection box, the detection cover is located inside the detection chamber, the bottom output end of the rotary motor is provided with a transmission shaft, and the bottom end of the transmission shaft extends through the outer wall of the top end of the detection box into the interior of the detection chamber and the middle of the detection cover
- the plurality of sets of smoothness detectors are circumferentially mounted on the outer edge of the bottom end of the detecting cover, the partition is located inside the detecting cavity, and the top end of the partition is connected with the middle of the bottom end of the inner top wall of the detecting cavity, and the detecting camera is set.
- the bottom end of the support block is connected to the top end of the slide plate, and the bottom end of the test plate is connected to the top end of the support block, and the top end of the test plate is disposed.
- the groove is placed on the upper side, and the third ball bearing is installed inside the upper groove.
- the bottom end of the rotating shaft is inserted into the third ball bearing, and the bottom end of the placing plate is connected with the top end of the rotating shaft, and the left and right clamping plates are slidably disposed.
- the top of the board is provided with a gap between the left and right side plates, and the plurality of sets of hardness detecting probes are uniformly disposed on the upper part of the right end of the left side plate and the upper part of the left side of the right side plate, and the plurality of sets of thickness sensors are located below the plurality of sets of hardness detecting heads.
- the control box is installed on the right outer wall of the detection box.
- the control box is internally provided with a control processor.
- the display is installed on the upper part of the front end of the control box.
- the lower part of the front end of the control box is provided with multiple sets of switches, and multiple sets of smoothness detectors.
- ⁇ detection camera, multiple sets of hardness detection probes, multiple sets of thickness sensors, transmittance detection strips are electrically connected to the control processor, and control The processor is electrically connected to the display, and the plurality of switches are electrically connected to the rotating motor and the traveling motor respectively; further comprising a bottom plate 25, four sets of threaded tubes 26 and four sets of threaded rods 27, the bottom plate is located below the detecting table, and the left front side of the top end of the bottom plate Four sets of placement slots are respectively arranged on the left rear side, the right front side and the right rear side, and four sets of fourth ball bearings are respectively arranged inside the four sets of placement slots, and the bottom ends of the four sets of threaded tubes are respectively inserted into the four sets of fourth ball bearings.
- top ends of the four sets of threaded rods are respectively connected to the left front side, the left rear side, the right front side and the right rear side of the bottom end of the test stand, and the bottom ends of the four sets of threaded rods are respectively inserted and screwed into the top end of the four sets of threaded tubes.
- the touch screen of the mobile phone to be detected can be clamped by the left and right splints, and then the rotation of the traveling motor drives the touch screen of the mobile phone to be detected to run from left to right, and then passes through multiple sets of smoothness detectors, and
- the detection camera can rotate the motor to drive multiple sets of smoothness detectors to perform a full range of smoothness detection on the touch screen of the mobile phone, and then pass through the left splint and Multiple sets of hardness detecting probes and multiple sets of thickness sensors on the splint perform hardness testing and thickness detection on the touch screen of the mobile phone, and can rotate the rotating screen of the mobile phone by rotating the rotating shaft, and under the detection of the detecting camera and the transmittance detecting strip, Azimuth detection of defects such as impurities, cracks and bright spots inside the touch screen of the mobile phone, so that multiple inspection operations are continuously performed, reducing manpower, improving detection results, and reducing the use limitations; and the inspection table can rotate the four sets of threaded tubes to perform
- the utility model relates to a production detecting device for a mobile phone touch screen, which further comprises four hydraulic cylinders 28, four sets of rollers 29, four sets of support blocks 30 and a hydraulic station 31, and the left front side, the left rear side and the right front side of the bottom end of the bottom plate
- the station is installed on the left side of the bottom plate, and the four sets of hydraulic cylinders are connected to the hydraulic station through the hydraulic oil pipe, and the hydraulic station is provided with a hydraulic switch.
- the top ends of the four sets of support blocks are respectively respectively on the left front side, the left rear side and the right front side of the bottom end of the bottom plate. It is connected to the right rear side, and the four sets of the blocks are located on the outer side of the four sets of placement chambers; through the above arrangement, the four sets of rollers can be adjusted up and down by four sets of hydraulic cylinders, and when the movement is required, the four sets of hydraulic cylinders will have four sets of rollers. Ejecting, easy to move, when moving to the working position, the four groups of hydraulic cylinders contract, using four sets of supports to support the whole, to prevent the sliding of the roller and the unevenness of the soft rubber of the roller belt Monitoring the effect of supporting the overall impact, and improve the stability detection accuracy.
- the utility model relates to a production detecting device for a touch screen of a mobile phone, which further comprises a left boom 32, a right boom, a left screw 33, a right screw, a left lock 34 and a right lock, a left boom and a right crane.
- the rods are respectively located on the left and right sides of the detection camera, and the top ends of the left and right booms are connected to the inner top wall of the detection chamber, and the bottom ends of the left and right booms are respectively fixed with a fifth ball bearing.
- the right end of the left screw passes through the fifth ball bearing and extends to the outside to connect with the left outer wall of the ⁇ detecting camera, and the left end of the right screw passes through the sixth ball bearing and extends to the outside and ⁇ Detecting the right outer wall connection of the camera, the left lock female set is at the left end of the left lead screw, and the left lock female is screwed with the left lead screw, the right lock female set is at the right end of the right lead screw, and the right lock female and the right lead screw.
- the angle of the illumination position of the detection camera can be adjusted by the rotation of the left screw and the right screw, which facilitates the adjustment of the detection angle according to the touch screen of different sizes, improving the practicality and adaptability.
- the locking angle of the conditioned through the left and right lock nut locking lock nut left screw and right screw to improve stability.
- the utility model relates to a production detecting device for a touch screen of a mobile phone, which further comprises a left baffle 35, a right baffle, a plurality of sets of buffer springs 36, a left threaded rod 37 and a right threaded rod, and the left baffle is located on the left side of the left cleat
- the right baffle is located on the right side of the right cleat.
- the plurality of sets of buffer springs are respectively fixedly installed in the first interval and the first interval.
- the left end of the left baffle is provided with a left sliding block
- the bottom end of the right baffle is provided with a right sliding block
- the left and right sides of the top of the placing plate are respectively provided with a left chute and a right chute
- left The sliding block is located inside the left chute
- the left sliding block is slidably engaged with the left chute
- the right sliding block is located inside the right chute
- the right sliding block is slidably engaged with the right chute
- the left threaded rod is disposed inside the left chute
- the seventh end of the left chute and the left end of the left chute are respectively provided with a seventh ball bearing and an eighth ball bearing
- the right end of the left threaded rod is inserted into the inside of the seventh ball bearing
- the left end of the left threaded rod passes through the eighth ball bearing and Extend to the outside
- right The rod is disposed inside the right chute, and the left end of the right chute and the right end of the right chute are respectively provided with a ninth ball bearing and a ten
- the utility model relates to a production detecting device for a touch screen of a mobile phone, which further comprises a gear motor 38.
- the outer side wall of the rotating shaft is provided with a driven ring gear
- the gear motor is mounted on the left side of the rotating shaft side
- the bottom end of the gear motor is
- the top end of the detecting plate is connected
- the top output end of the gear motor is provided with a driving gear
- the driving gear meshes with the driven ring gear
- the utility model relates to a production detecting device for a touch screen of a mobile phone.
- a production detecting device for a touch screen of a mobile phone.
- the rotating button is turned, the distance between the left and right plates is adjusted, the touch screen of the mobile phone to be detected is clamped, and then the walking motor is turned on, and the touch screen of the mobile phone is operated from left to right, followed by Multiple sets of smoothness detectors, and ⁇ detection cameras, simultaneously turn on the rotating motor to drive multiple sets of smoothness detectors to rotate, perform all-round smoothness detection on the mobile phone touch screen, and multiple sets of hardness detecting probes on the left and right splints
- Multiple sets of thickness sensors perform hardness detection and thickness detection on the touch screen of the mobile phone, and simultaneously turn the rotating shaft of the gear motor to rotate the touch screen of the mobile phone, and detect the impurities inside the touch screen of the mobile phone
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Abstract
本实用新型涉及手机触摸屏附属装置的技术领域,特别是涉及一种用于手机触摸屏的生产检测装置,其可以多项检测作业连续进行,减少人力,提高检测效果,降低使用局限性;检测台高度可调,可以适应不同身高的员工进行检测作业,提高适应能;包括检测台和检测箱;包括旋转电机、检测罩、多组光滑度检测器、隔板、瑕疵检测相机、横梁、滑板、带动丝杠、第一滚珠轴承、第二滚珠轴承、行走电机、支撑块、检测板、转轴、第三滚珠轴承、放置板、左夹板、右夹板、多组硬度检测探头、多组厚度传感器、透光度检测条、控制箱和显示器;还包括底板、四组螺纹管和四组螺纹杆,底板位于检测台的下方,底板顶端的左前侧、左后侧、右前侧和右后侧分别设置有四组放置槽。
Description
本实用新型涉及手机触摸屏附属装置的技术领域,特别是涉及一种用于手机触摸屏的生产检测装置。
众所周知,随着社会的高速发展,人们的生活水平越来越高,对日常所用的电子产品的要求也越来越高,用于手机触摸屏的生产检测装置是一种用于手机触摸屏,进行出厂前的透光度、厚度、硬度、瑕疵和光滑度进行检测,以便于更好的生产出合格的手机触摸屏的附属装置,其在电子的领域中得到了广泛的使用;现有的用于手机触摸屏的生产检测装置包括检测台、检测箱和各种检测器检测箱安装在检测台上,并且各种检测器位于检测箱内部。
现有的用于手机触摸屏的生产检测装置使用时,首先人工将需要检测的手机触摸屏放置在检测箱中,然后用各种检测器对其进行检测即可;现有的用于手机触摸屏的生产检测装置使用中发现,各种检测器相互独立,检测作业不能连续进行,同时人工手持检测器进行检测,浪费大量人力,并且检测效果较差,使用局限性较高;并且检测台高度固定,不能进行高度上的调整,无法适应不同身高的员工进行检测作业,适应能力较差。
为解决上述技术问题,本实用新型提供一种可以多项检测作业连续进行,减少人力,提高检测效果,降低使用局限性;并且检测台高度可调,可以适应不同身高的员工进行检测作业,提高适应能力的用于手机触摸屏的生产检测装置。
本实用新型的一种用于手机触摸屏的生产检测装置,包括检测台和检测箱;包括旋转电机、检测罩、多组光滑度检测器、隔板、瑕疵检测相机、横梁、滑板、带动丝杠、第一滚珠轴承、第二滚珠轴承、行走电机、支撑块、检测板、转轴、第三滚珠轴承、放置板、左夹板、右夹板、多组硬度检测探头、多组厚度传感器、透光度检测条、控制箱和显示器,所述检测箱内部设置有检测腔,所述横梁横向设置在检测腔的内部,并且横梁的左端与检测腔的左侧内壁连接,横梁的右端与检测腔的右侧内壁连接,所述横梁的前端横向设置有滑轨,所述滑板的后端设置有滑块,并且滑块与滑轨滑动配合,所述检测腔的左侧内壁与右侧内壁分别设置有左放置槽和右放置槽,所述第一滚珠轴承和第二滚珠轴承分别安装在左放置槽和右放置槽内部,所述带动丝杠位于横梁的前侧,并且带动丝杠的左端插入至第一滚珠轴承内部,带动丝杠的右端穿过第二滚珠轴承并伸出至检测箱的右端外界,所述滑板的内部横向设置有螺纹通孔,并且滑板套装在带动丝杠上,并且螺纹通孔与带动丝杠螺装配合,所述行走电机安装在检测箱的右侧外壁上,并且行走电机的左端与所述带动丝杠的右端连接,所述旋转电机安装在检测箱的顶端,所述检测罩位于检测腔内部,所述旋转电机的底部输出端设置有传动轴,并且传动轴的底端穿过检测箱的顶端外壁伸入至检测腔内部与所述检测罩的顶端中部连接,所述多组光滑度检测器均布圆周安装在检测罩的底端外侧边缘,所述隔板位于检测腔内部,并且隔板的顶端与检测腔的内顶壁的底端中部连接,所述瑕疵检测相机设置在隔板的右侧,所述支撑块的底端与所述滑板的顶端连接,所述检测板的底端与所述支撑块的顶端连接,所述检测板的顶端设置有上放置槽,所述第三滚珠轴承安装在上放置槽内部,所述转轴的底端插入至第三滚珠轴承内部,所述放置板的底端与所述转轴的顶端连接,所述左夹板与右夹板均可滑动的设置在放置板的顶端,并且左夹板与右夹板之间设置有间隙,所述多组硬度检测探头分别均布设置在左夹板的右端上部与右夹板的左端上部,所述多组厚度传感器位于多组硬度检测头的下方,并且多组厚度传感器均布设置在左夹板的右端下部与右夹板的左端下部,所述透光度检测条安装在检测腔的后侧内壁上,并且透光度检测条与左夹板和右夹板位于同一高度,所述控制箱安装在检测箱的右侧外壁上,所述控制箱内部设置有控制处理器,所述显示器安装在控制箱的前端上部,所述控制箱的前端下部设置有多组开关,所述多组光滑度检测器、瑕疵检测相机、多组硬度检测探头、多组厚度传感器、透光度检测条均与所述控制处理器电连接,并且控制处理器与所述显示器电连接,所述多组开关分别与所述旋转电机和行走电机电连接;还包括底板、四组螺纹管和四组螺纹杆,所述底板位于检测台的下方,所述底板顶端的左前侧、左后侧、右前侧和右后侧分别设置有四组放置槽,所述四组放置槽内部分别设置有四组第四滚珠轴承,所述四组螺纹管的底端分别插入至四组第四滚珠轴承内部,所述四组螺纹杆的顶端分别与检测台底端的左前侧、左后侧、右前侧和右后侧连接,并且四组螺纹杆的底端分别插入并螺装至四组螺纹管的顶端内部。
本实用新型的一种用于手机触摸屏的生产检测装置,还包括四组液压缸、四组滚轮、四组支块和液压站,所述底板底端的左前侧、左后侧、右前侧和右后侧分别设置有四组放置腔,所述四组液压缸的顶端分别与四组放置腔的顶端内壁连接,所述四组液压缸内部的伸缩杆的底端分别与所述四组滚轮的顶端连接,所述液压站安装在底板的左侧,所述四组液压缸均通过所述液压油管与所述液压站连通,并且液压站上设置有液压开关,所述四组支块的顶端分别与底板底端的左前侧、左后侧、右前侧和右后侧连接,并且四组支块位于四组放置腔的外侧。
本实用新型的一种用于手机触摸屏的生产检测装置,还包括左吊杆、右吊杆、左丝杠、右丝杠、左锁母和右锁母,所述左吊杆和右吊杆分别位于所述瑕疵检测相机的左侧和右侧,所述左吊杆和右吊杆的顶端均与所述检测腔的内顶壁连接,所述左吊杆和右吊杆的底端分别固定设置有第五滚珠轴承和第六滚珠轴承,所述左丝杠的右端穿过第五滚珠轴承并伸出至外界与所述瑕疵检测相机的左侧外壁连接,所述右丝杠的左端穿过第六滚珠轴承并伸出至外界与所述瑕疵检测相机的右侧外壁连接,所述左锁母套装在左丝杠的左端,并且左锁母与左丝杠螺装配合,所述右锁母套装在右丝杠的右端,并且右锁母与右丝杠螺装配合。
本实用新型的一种用于手机触摸屏的生产检测装置,还包括左挡板、右挡板、多组缓冲弹簧、左螺纹杆和右螺纹杆,所述左挡板位于左夹板的左侧、所述右挡板位于右夹板的右侧,所述左挡板与左夹板之间存在第一间隔,所述右挡板与右夹板之间存在第二间隔,所述多组缓冲弹簧分别固定安装在第一间隔与第二间隔内部,所述左挡板的底端设置有左滑动块、所述右挡板的底端设置有右滑动块,并且所述放置板的顶端左侧和右侧分别设置有左滑槽和右滑槽,所述左滑动块位于左滑槽内部,并且左滑动块与左滑槽滑动配合,所述右滑动块位于右滑槽内部,并且右滑动块与右滑槽滑动配合,所述左螺纹杆设置在左滑槽内部,并且左滑槽的右端和左滑槽的左端分别设置有第七滚珠轴承和第八滚珠轴承,所述左螺纹杆的右端插入至第七滚珠轴承内部,并且左螺纹杆的左端穿过第八滚珠轴承并伸出至外界,所述右螺纹杆设置在右滑槽内部,并且右滑槽的左端和右滑槽的右端分别设置有第九滚珠轴承和第十滚珠轴承,所述右螺纹杆的左端插入至第九滚珠轴承内部,并且左螺纹杆的左端穿过第十滚珠轴承并伸出至外界,所述左螺纹杆的左端与右螺纹杆的右端均设置有旋转钮。
本实用新型的一种用于手机触摸屏的生产检测装置,还包括齿轮电机,所述转轴的外侧壁上套装设置有从动齿圈,所述齿轮电机安装在转轴侧左侧,并且齿轮电机的底端与所述检测板的顶端连接,所述齿轮电机的顶部输出端设置有主动齿轮,并且主动齿轮与所述从动齿圈啮合。
与现有技术相比本实用新型的有益效果为:通过上述设置,可以通过左夹板和右夹板夹住待检测的手机触摸屏,然后通过行走电机的转动,带动待检测的手机触摸屏由左向右运行,依次经过多组光滑度检测器、和瑕疵检测相机,可以通过旋转电机带动多组光滑度检测器转动,对手机触摸屏进行全方位的光滑度检测,然后可以通过左夹板和右夹板上的多组硬度检测探头和多组厚度传感器对手机触摸屏进行硬度检测和厚度检测,同时可以通过旋转转轴,使手机触摸屏进行旋转,在瑕疵检测相机和透光度检测条的检测下,全方位的检测手机触摸屏内部的杂质、裂痕和亮点等缺陷,使多项检测作业连续进行,减少人力,提高检测效果,降低使用局限性;并且检测台可以通过旋转四组螺纹管,对检测台进行高度上的调节,可以适应不同身高的员工进行检测作业,提高适应能力。
图1是本实用新型的结构示意图;
图2是本实用新型A处的局部放大结构示意图;
图3是本实用新型B处的局部放大结构示意图;
附图中标记:1、检测台;2、检测箱;3、旋转电机;4、检测罩;5、光滑度检测器;6、隔板;7、瑕疵检测相机;8、横梁;9、滑板;10、带动丝杠;11、第一滚珠轴承;12、行走电机;13、支撑块;14、检测板;15、转轴;16、第三滚珠轴承;17、放置板;18、左夹板;19、硬度检测探头;20、厚度传感器;21、透光度检测条;22、控制箱;23、显示器;24、底板;25、螺纹管;26、螺纹杆;27、液压缸;28、滚轮;29、支块;30、液压站;31、左吊杆;32、左丝杠;33、左锁母;34、左挡板;35、缓冲弹簧;36、左螺纹杆;37、齿轮电机。
下面结合附图和实施例,对本实用新型的具体实施方式作进一步详细描述。以下实施例用于说明本实用新型,但不用来限制本实用新型的范围。
如图1至图3所示,本实用新型的一种用于手机触摸屏的生产检测装置,包括检测台1和检测箱2;包括旋转电机3、检测罩4、多组光滑度检测器5、隔板6、瑕疵检测相机7、横梁8、滑板9、带动丝杠10、第一滚珠轴承11、第二滚珠轴承、行走电机12、支撑块13、检测板14、转轴15、第三滚珠轴承16、放置板17、左夹板18、右夹板、多组硬度检测探头19、多组厚度传感器20、透光度检测条21、控制箱22和显示器23,检测箱内部设置有检测腔,横梁横向设置在检测腔的内部,并且横梁的左端与检测腔的左侧内壁连接,横梁的右端与检测腔的右侧内壁连接,横梁的前端横向设置有滑轨,滑板的后端设置有滑块,并且滑块与滑轨滑动配合,检测腔的左侧内壁与右侧内壁分别设置有左放置槽和右放置槽,第一滚珠轴承和第二滚珠轴承分别安装在左放置槽和右放置槽内部,带动丝杠位于横梁的前侧,并且带动丝杠的左端插入至第一滚珠轴承内部,带动丝杠的右端穿过第二滚珠轴承并伸出至检测箱的右端外界,滑板的内部横向设置有螺纹通孔,并且滑板套装在带动丝杠上,并且螺纹通孔与带动丝杠螺装配合,行走电机安装在检测箱的右侧外壁上,并且行走电机的左端与带动丝杠的右端连接,旋转电机安装在检测箱的顶端,检测罩位于检测腔内部,旋转电机的底部输出端设置有传动轴,并且传动轴的底端穿过检测箱的顶端外壁伸入至检测腔内部与检测罩的顶端中部连接,多组光滑度检测器均布圆周安装在检测罩的底端外侧边缘,隔板位于检测腔内部,并且隔板的顶端与检测腔的内顶壁的底端中部连接,瑕疵检测相机设置在隔板的右侧,支撑块的底端与滑板的顶端连接,检测板的底端与支撑块的顶端连接,检测板的顶端设置有上放置槽,第三滚珠轴承安装在上放置槽内部,转轴的底端插入至第三滚珠轴承内部,放置板的底端与转轴的顶端连接,左夹板与右夹板均可滑动的设置在放置板的顶端,并且左夹板与右夹板之间设置有间隙,多组硬度检测探头分别均布设置在左夹板的右端上部与右夹板的左端上部,多组厚度传感器位于多组硬度检测头的下方,并且多组厚度传感器均布设置在左夹板的右端下部与右夹板的左端下部,透光度检测条安装在检测腔的后侧内壁上,并且透光度检测条与左夹板和右夹板位于同一高度,控制箱安装在检测箱的右侧外壁上,控制箱内部设置有控制处理器,显示器安装在控制箱的前端上部,控制箱的前端下部设置有多组开关,多组光滑度检测器、瑕疵检测相机、多组硬度检测探头、多组厚度传感器、透光度检测条均与控制处理器电连接,并且控制处理器与显示器电连接,多组开关分别与旋转电机和行走电机电连接;还包括底板25、四组螺纹管26和四组螺纹杆27,底板位于检测台的下方,底板顶端的左前侧、左后侧、右前侧和右后侧分别设置有四组放置槽,四组放置槽内部分别设置有四组第四滚珠轴承,四组螺纹管的底端分别插入至四组第四滚珠轴承内部,四组螺纹杆的顶端分别与检测台底端的左前侧、左后侧、右前侧和右后侧连接,并且四组螺纹杆的底端分别插入并螺装至四组螺纹管的顶端内部;通过上述设置,可以通过左夹板和右夹板夹住待检测的手机触摸屏,然后通过行走电机的转动,带动待检测的手机触摸屏由左向右运行,依次经过多组光滑度检测器、和瑕疵检测相机,可以通过旋转电机带动多组光滑度检测器转动,对手机触摸屏进行全方位的光滑度检测,然后可以通过左夹板和右夹板上的多组硬度检测探头和多组厚度传感器对手机触摸屏进行硬度检测和厚度检测,同时可以通过旋转转轴,使手机触摸屏进行旋转,在瑕疵检测相机和透光度检测条的检测下,全方位的检测手机触摸屏内部的杂质、裂痕和亮点等缺陷,使多项检测作业连续进行,减少人力,提高检测效果,降低使用局限性;并且检测台可以通过旋转四组螺纹管,对检测台进行高度上的调节,可以适应不同身高的员工进行检测作业,提高适应能力。
本实用新型的一种用于手机触摸屏的生产检测装置,还包括四组液压缸28、四组滚轮29、四组支块30和液压站31,底板底端的左前侧、左后侧、右前侧和右后侧分别设置有四组放置腔,四组液压缸的顶端分别与四组放置腔的顶端内壁连接,四组液压缸内部的伸缩杆的底端分别与四组滚轮的顶端连接,液压站安装在底板的左侧,四组液压缸均通过液压油管与液压站连通,并且液压站上设置有液压开关,四组支块的顶端分别与底板底端的左前侧、左后侧、右前侧和右后侧连接,并且四组支块位于四组放置腔的外侧;通过上述设置,可以通过四组液压缸对四组滚轮进行上下调节,在需要移动时,四组液压缸将四组滚轮顶出,方便移动,当移动至工作位置时,四组液压缸收缩,使用四组支块对整体进行支撑,防止滚轮的滑动性和滚轮皮带柔软橡胶的不平整性支撑整体影响监测效果,提高稳固性和检测精度。
本实用新型的一种用于手机触摸屏的生产检测装置,还包括左吊杆32、右吊杆、左丝杠33、右丝杠、左锁母34和右锁母,左吊杆和右吊杆分别位于瑕疵检测相机的左侧和右侧,左吊杆和右吊杆的顶端均与检测腔的内顶壁连接,左吊杆和右吊杆的底端分别固定设置有第五滚珠轴承和第六滚珠轴承,左丝杠的右端穿过第五滚珠轴承并伸出至外界与瑕疵检测相机的左侧外壁连接,右丝杠的左端穿过第六滚珠轴承并伸出至外界与瑕疵检测相机的右侧外壁连接,左锁母套装在左丝杠的左端,并且左锁母与左丝杠螺装配合,右锁母套装在右丝杠的右端,并且右锁母与右丝杠螺装配合;通过上述设置,可以通过左丝杠和右丝杠的旋转,对瑕疵检测相机的照射位置进行角度上的调整,方便根据不同尺寸的手机触摸屏进行探测角度调节,提高实用性和适应能力,同时可以通过左锁母和右锁母锁紧左丝杠和右丝杠,将调节后的角度进行锁紧,提高稳固性。
本实用新型的一种用于手机触摸屏的生产检测装置,还包括左挡板35、右挡板、多组缓冲弹簧36、左螺纹杆37和右螺纹杆,左挡板位于左夹板的左侧、右挡板位于右夹板的右侧,左挡板与左夹板之间存在第一间隔,右挡板与右夹板之间存在第二间隔,多组缓冲弹簧分别固定安装在第一间隔与第二间隔内部,左挡板的底端设置有左滑动块、右挡板的底端设置有右滑动块,并且放置板的顶端左侧和右侧分别设置有左滑槽和右滑槽,左滑动块位于左滑槽内部,并且左滑动块与左滑槽滑动配合,右滑动块位于右滑槽内部,并且右滑动块与右滑槽滑动配合,左螺纹杆设置在左滑槽内部,并且左滑槽的右端和左滑槽的左端分别设置有第七滚珠轴承和第八滚珠轴承,左螺纹杆的右端插入至第七滚珠轴承内部,并且左螺纹杆的左端穿过第八滚珠轴承并伸出至外界,右螺纹杆设置在右滑槽内部,并且右滑槽的左端和右滑槽的右端分别设置有第九滚珠轴承和第十滚珠轴承,右螺纹杆的左端插入至第九滚珠轴承内部,并且左螺纹杆的左端穿过第十滚珠轴承并伸出至外界,左螺纹杆的左端与右螺纹杆的右端均设置有旋转钮;通过上述设置,可以通过旋转钮旋转左螺纹杆和右螺纹杆带动左夹板和右夹板进行运动,方便改变左夹板和右夹板之间的距离,对不同厚度的手机触摸屏进行夹取,可以通过多组缓冲弹簧对手机触摸屏的夹取力进行缓冲,防止因外力造成手机触摸屏破碎,操作方便,并且提高安全性。
本实用新型的一种用于手机触摸屏的生产检测装置,还包括齿轮电机38,转轴的外侧壁上套装设置有从动齿圈,齿轮电机安装在转轴侧左侧,并且齿轮电机的底端与检测板的顶端连接,齿轮电机的顶部输出端设置有主动齿轮,并且主动齿轮与从动齿圈啮合;通过上述设置,可以通过齿轮电机的转动带动待检测的手机触摸屏转动,提高自动化程度。
本实用新型的一种用于手机触摸屏的生产检测装置,其在工作时,在完成上述动作之前,首先将其移动到用户需要的位置,让后打开液压缸,将四组滚轮收起,使四组支块对整体稳固支撑,然后拧动旋转钮,调节左夹板和右夹板之间的距离,夹住待检测的手机触摸屏,然后打开行走电机,带动手机触摸屏由左向右运行,依次经过多组光滑度检测器、和瑕疵检测相机,同时打开旋转电机带动多组光滑度检测器转动,对手机触摸屏进行全方位的光滑度检测,并且左夹板和右夹板上的多组硬度检测探头和多组厚度传感器对手机触摸屏进行硬度检测和厚度检测,同时打开齿轮电机旋转转轴,使手机触摸屏进行旋转,在瑕疵检测相机和透光度检测条的检测下,全方位的检测手机触摸屏内部的杂质、裂痕和亮点等缺陷,然后将检测的结果通过显示器显示,进行数据分析处理即可。
以上所述仅是本实用新型的优选实施方式,应当指出,对于本技术领域的普通技术人员来说,在不脱离本实用新型技术原理的前提下,还可以做出若干改进和变型,这些改进和变型也应视为本实用新型的保护范围。
Claims (5)
- 一种用于手机触摸屏的生产检测装置,包括检测台(1)和检测箱(2);其特征在于,包括旋转电机(3)、检测罩(4)、多组光滑度检测器(5)、隔板(6)、瑕疵检测相机(7)、横梁(8)、滑板(9)、带动丝杠(10)、第一滚珠轴承(11)、第二滚珠轴承、行走电机(12)、支撑块(13)、检测板(14)、转轴(15)、第三滚珠轴承(16)、放置板(17)、左夹板(18)、右夹板、多组硬度检测探头(19)、多组厚度传感器(20)、透光度检测条(21)、控制箱(22)和显示器(23),所述检测箱(2)内部设置有检测腔,所述横梁(8)横向设置在检测腔的内部,并且横梁(8)的左端与检测腔的左侧内壁连接,横梁(8)的右端与检测腔的右侧内壁连接,所述横梁(8)的前端横向设置有滑轨,所述滑板(9)的后端设置有滑块,并且滑块与滑轨滑动配合,所述检测腔的左侧内壁与右侧内壁分别设置有左放置槽和右放置槽,所述第一滚珠轴承(11)和第二滚珠轴承分别安装在左放置槽和右放置槽内部,所述带动丝杠(10)位于横梁(8)的前侧,并且带动丝杠(10)的左端插入至第一滚珠轴承(11)内部,带动丝杠(10)的右端穿过第二滚珠轴承并伸出至检测箱(2)的右端外界,所述滑板(9)的内部横向设置有螺纹通孔,并且滑板(9)套装在带动丝杠(10)上,并且螺纹通孔与带动丝杠(10)螺装配合,所述行走电机(12)安装在检测箱(2)的右侧外壁上,并且行走电机(12)的左端与所述带动丝杠(10)的右端连接,所述旋转电机(3)安装在检测箱(2)的顶端,所述检测罩(4)位于检测腔内部,所述旋转电机(3)的底部输出端设置有传动轴,并且传动轴的底端穿过检测箱(2)的顶端外壁伸入至检测腔内部与所述检测罩(4)的顶端中部连接,所述多组光滑度检测器(5)均布圆周安装在检测罩(4)的底端外侧边缘,所述隔板(6)位于检测腔内部,并且隔板(6)的顶端与检测腔的内顶壁的底端中部连接,所述瑕疵检测相机(7)设置在隔板(6)的右侧,所述支撑块(13)的底端与所述滑板(9)的顶端连接,所述检测板(14)的底端与所述支撑块(13)的顶端连接,所述检测板(14)的顶端设置有上放置槽,所述第三滚珠轴承(16)安装在上放置槽内部,所述转轴(15)的底端插入至第三滚珠轴承(16)内部,所述放置板(17)的底端与所述转轴(15)的顶端连接,所述左夹板(18)与右夹板均可滑动的设置在放置板(17)的顶端,并且左夹板(18)与右夹板之间设置有间隙,所述多组硬度检测探头(19)分别均布设置在左夹板(18)的右端上部与右夹板的左端上部,所述多组厚度传感器(20)位于多组硬度检测头的下方,并且多组厚度传感器(20)均布设置在左夹板(18)的右端下部与右夹板的左端下部,所述透光度检测条(21)安装在检测腔的后侧内壁上,并且透光度检测条(21)与左夹板(18)和右夹板位于同一高度,所述控制箱(22)安装在检测箱(2)的右侧外壁上,所述控制箱(22)内部设置有控制处理器,所述显示器(23)安装在控制箱(22)的前端上部,所述控制箱(22)的前端下部设置有多组开关,所述多组光滑度检测器(5)、瑕疵检测相机(7)、多组硬度检测探头(19)、多组厚度传感器(20)、透光度检测条(21)均与所述控制处理器电连接,并且控制处理器与所述显示器(23)电连接,所述多组开关分别与所述旋转电机(3)和行走电机(12)电连接;还包括底板(24)、四组螺纹管(25)和四组螺纹杆(26),所述底板(24)位于检测台(1)的下方,所述底板(24)顶端的左前侧、左后侧、右前侧和右后侧分别设置有四组放置槽,所述四组放置槽内部分别设置有四组第四滚珠轴承,所述四组螺纹管(25)的底端分别插入至四组第四滚珠轴承内部,所述四组螺纹杆(26)的顶端分别与检测台(1)底端的左前侧、左后侧、右前侧和右后侧连接,并且四组螺纹杆(26)的底端分别插入并螺装至四组螺纹管(25)的顶端内部。
- 如权利要求1所述的一种用于手机触摸屏的生产检测装置,其特征在于,还包括四组液压缸(27)、四组滚轮(28)、四组支块(29)和液压站(30),所述底板(24)底端的左前侧、左后侧、右前侧和右后侧分别设置有四组放置腔,所述四组液压缸(27)的顶端分别与四组放置腔的顶端内壁连接,所述四组液压缸(27)内部的伸缩杆的底端分别与所述四组滚轮(28)的顶端连接,所述液压站(30)安装在底板(24)的左侧,所述四组液压缸(27)均通过所述液压油管与所述液压站(30)连通,并且液压站(30)上设置有液压开关,所述四组支块(29)的顶端分别与底板(24)底端的左前侧、左后侧、右前侧和右后侧连接,并且四组支块(29)位于四组放置腔的外侧。
- 如权利要求2所述的一种用于手机触摸屏的生产检测装置,其特征在于,还包括左吊杆(31)、右吊杆、左丝杠(32)、右丝杠、左锁母(33)和右锁母,所述左吊杆(31)和右吊杆分别位于所述瑕疵检测相机(7)的左侧和右侧,所述左吊杆(31)和右吊杆的顶端均与所述检测腔的内顶壁连接,所述左吊杆(31)和右吊杆的底端分别固定设置有第五滚珠轴承和第六滚珠轴承,所述左丝杠(32)的右端穿过第五滚珠轴承并伸出至外界与所述瑕疵检测相机(7)的左侧外壁连接,所述右丝杠的左端穿过第六滚珠轴承并伸出至外界与所述瑕疵检测相机(7)的右侧外壁连接,所述左锁母(33)套装在左丝杠(32)的左端,并且左锁母(33)与左丝杠(32)螺装配合,所述右锁母套装在右丝杠的右端,并且右锁母与右丝杠螺装配合。
- 如权利要求3所述的一种用于手机触摸屏的生产检测装置,其特征在于,还包括左挡板(34)、右挡板、多组缓冲弹簧(35)、左螺纹杆(36)和右螺纹杆,所述左挡板(34)位于左夹板(18)的左侧、所述右挡板位于右夹板的右侧,所述左挡板(34)与左夹板(18)之间存在第一间隔,所述右挡板与右夹板之间存在第二间隔,所述多组缓冲弹簧(35)分别固定安装在第一间隔与第二间隔内部,所述左挡板(34)的底端设置有左滑动块、所述右挡板的底端设置有右滑动块,并且所述放置板(17)的顶端左侧和右侧分别设置有左滑槽和右滑槽,所述左滑动块位于左滑槽内部,并且左滑动块与左滑槽滑动配合,所述右滑动块位于右滑槽内部,并且右滑动块与右滑槽滑动配合,所述左螺纹杆(36)设置在左滑槽内部,并且左滑槽的右端和左滑槽的左端分别设置有第七滚珠轴承和第八滚珠轴承,所述左螺纹杆(36)的右端插入至第七滚珠轴承内部,并且左螺纹杆(36)的左端穿过第八滚珠轴承并伸出至外界,所述右螺纹杆设置在右滑槽内部,并且右滑槽的左端和右滑槽的右端分别设置有第九滚珠轴承和第十滚珠轴承,所述右螺纹杆的左端插入至第九滚珠轴承内部,并且左螺纹杆(36)的左端穿过第十滚珠轴承并伸出至外界,所述左螺纹杆(36)的左端与右螺纹杆的右端均设置有旋转钮。
- 如权利要求4所述的一种用于手机触摸屏的生产检测装置,其特征在于,还包括齿轮电机(37),所述转轴(15)的外侧壁上套装设置有从动齿圈,所述齿轮电机(37)安装在转轴(15)侧左侧,并且齿轮电机(37)的底端与所述检测板(14)的顶端连接,所述齿轮电机(37)的顶部输出端设置有主动齿轮,并且主动齿轮与所述从动齿圈啮合。
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