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TWI712488B - Manufacturing device and method of thermoplastic composite pipe - Google Patents

Manufacturing device and method of thermoplastic composite pipe Download PDF

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TWI712488B
TWI712488B TW108144737A TW108144737A TWI712488B TW I712488 B TWI712488 B TW I712488B TW 108144737 A TW108144737 A TW 108144737A TW 108144737 A TW108144737 A TW 108144737A TW I712488 B TWI712488 B TW I712488B
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Taiwan
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mandrel
inner diameter
thermoplastic composite
internal pressure
heating
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TW108144737A
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Chinese (zh)
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TW202122251A (en
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莊志宇
姜志華
李明富
王俊傑
魏嘉民
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財團法人金屬工業研究發展中心
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Abstract

本發明包括:一心軸為內模仁具有管狀表面及內徑,內徑靠近兩端處設有外低內高的斜面,內徑中間具有多邊形的制動孔,心軸係由多片縱軸走向的組合片拼成並於心軸表面包覆碳纖預浸材;一內部加壓機構設置於心軸之內徑,可由內徑徑向地向外對該些組合片施加壓力;一加熱機構設置於內部加壓機構;及一對上、下模具,於合模後具有對應於心軸之模穴,可供心軸置入並緊固上、下模具,上、下模具分別設有複數水路孔,用以灌入流通的液體,使上、下模具冷卻降溫,經由加壓加熱使碳纖預浸材之樹脂融化接合,產生具有厚度之熱塑複材管。 The invention includes: a mandrel is an inner mold core with a tubular surface and an inner diameter, the inner diameter is provided with an outer low and inner high inclined surface near the two ends, a polygonal brake hole is arranged in the middle of the inner diameter, and the mandrel runs from a plurality of longitudinal axes The composite pieces are assembled and covered with carbon fiber prepreg on the surface of the mandrel; an internal pressure mechanism is set on the inner diameter of the mandrel, and pressure can be applied to these composite sheets radially outward from the inner diameter; a heating mechanism is provided In the internal pressure mechanism; and a pair of upper and lower molds. After the molds are closed, there is a cavity corresponding to the mandrel, which can be used for the mandrel to be inserted and fastened to the upper and lower molds. The upper and lower molds are respectively provided with multiple water channels The hole is used to pour the circulating liquid to cool the upper and lower molds, and the resin of the carbon fiber prepreg is melted and joined by pressure and heating to produce a thick thermoplastic composite pipe.

Description

熱塑複材管之製造裝置及方法 Manufacturing device and method of thermoplastic composite pipe

本發明係涉及熱塑複材管的製造裝置及方法,特別涉及一種內模仁可埋入加熱棒,使上、下模具無須設置加熱源,可簡化模具,提升模具結構強度及提升加熱能源者。 The invention relates to a manufacturing device and method of a thermoplastic composite pipe, in particular to an inner mold core that can be embedded with a heating rod, so that the upper and lower molds do not need to be provided with a heating source, can simplify the mold, improve the structural strength of the mold and increase the heating energy .

中國專利CN107081922A揭露一種大口徑熱塑性複合材料長輸管及其製造方法和裝置,熱塑性聚合物絲和增強纖維盤繞在捲筒或料盤上,驅動電機驅動捲筒和料盤放絲,經過張緊輥保持適當的張力,然後通過送絲電機分別經過兩個導向管將二者導入3D打印機頭內,其中將增強纖維導入3D打印機頭內部中空螺桿通道,將聚合物絲導入機頭腔體並纏繞於螺桿上。通過動態扭矩傳感器組建的自動控制系統調節張緊裝置和送絲電機轉速,從而精准控制3D打印機頭內的送絲量,提高管道成型的精度,聚合物絲在打印機頭內部受熱熔融,熔融樹脂在螺桿和絲材推力作用下到達噴嘴。增強纖維在噴嘴處被熔融樹脂浸漬包覆,然後從噴嘴處擠出,形成複合纖維絲。3D打印機頭整體裝置及捲筒固定於一個可以繞管道軸向旋轉的轉盤裝置上,打印機頭可以在轉盤上沿管道徑向做一定幅度的運動。芯軸可以沿管道軸向前後往復移動。通過調節大盤旋轉,打印機頭和芯軸移動速率等參數控制複合纖維絲在內襯層上的打印過程。在整個管道增強層生產線上有兩台甚至多台相同的轉盤打印設備。然後逐層打印,最後得 到增強管件。 Chinese patent CN107081922A discloses a large-caliber thermoplastic composite material long-distance pipe and its manufacturing method and device. Thermoplastic polymer filaments and reinforcing fibers are coiled on a reel or tray, and a motor is driven to drive the reel and tray to discharge the filaments. The roller maintains proper tension, and then the wire feed motor guides the two into the 3D printer head through the two guide tubes, where the reinforcing fiber is introduced into the hollow screw channel inside the 3D printer head, and the polymer filament is introduced into the head cavity and wound On the screw. The automatic control system established by the dynamic torque sensor adjusts the tensioning device and the speed of the wire feeding motor, so as to precisely control the wire feeding amount in the 3D printer head and improve the accuracy of pipe molding. The polymer wire is heated and melted inside the printer head, and the molten resin is The thrust of the screw and wire reaches the nozzle. The reinforcing fiber is impregnated and coated with molten resin at the nozzle, and then extruded from the nozzle to form a composite fiber yarn. The overall device and reel of the 3D printer head are fixed on a turntable device that can rotate around the pipe axis, and the printer head can move to a certain extent along the pipe radial direction on the turntable. The mandrel can move back and forth along the pipe axis. By adjusting the rotation of the large plate, the moving speed of the printer head and the mandrel and other parameters control the printing process of the composite fiber yarn on the inner liner. There are two or more identical rotary printing devices on the entire pipeline enhancement layer production line. Then print layer by layer, and finally get To reinforced pipe fittings.

前述技術存在不需要使用金屬材料,具有輕量化、耐高溫、耐腐蝕、柔韌性好、氣密性好、內外壓力等級高、安裝方便等特點,其內壁光滑、大口徑、高內外壓力等級可以獲得高的流速率與流量,特別適合於長輸油氣管道方面的應用,惟不適於很短的製件成型周期和高衝擊強度領域的應用。 The aforementioned technology does not require the use of metal materials, and has the characteristics of light weight, high temperature resistance, corrosion resistance, good flexibility, good air tightness, high internal and external pressure levels, and convenient installation. Its inner wall is smooth, large diameter, and high internal and external pressure levels. High flow rate and flow rate can be obtained, which is especially suitable for applications in long-distance oil and gas pipelines, but not suitable for applications in the fields of short molding cycles and high impact strength.

本發明的主要目的,係在內模仁心軸可埋入加熱機構,而外包覆之上、下模具無須加設熱源可減化模具,提升模具結構強度及節省加熱能源。 The main purpose of the present invention is that the inner mold core shaft can be embedded in the heating mechanism, and the upper and lower molds of the outer covering can reduce the mold, improve the structural strength of the mold and save heating energy without adding a heat source.

本發明的另一目的,係可對包覆在內模仁心軸外周面的碳纖預浸材施加內壓力,且壓力可作調整,以應對不同的造管製程。 Another object of the present invention is to apply internal pressure to the carbon fiber prepreg covering the outer peripheral surface of the inner mold core mandrel, and the pressure can be adjusted to cope with different manufacturing processes.

本發明的再一目的,在於以複數組合片拼接構成心軸,該些組合片可徑向移動,除了可向外移動以對碳纖預浸材施加內壓外,也可向內移動以易於分離脫模,取出管料。 Another object of the present invention is to splice a plurality of composite pieces to form a mandrel. These composite pieces can move radially. In addition to moving outward to apply internal pressure to the carbon fiber prepreg, they can also move inward to facilitate separation. Demould and take out the pipe material.

為達上述目的,本發明揭露一種熱塑複材管之製造裝置,係包括:一心軸、一內部加壓機構、一加熱機構及一對上、下模具,該心軸為內模仁具有一管狀表面及一內徑,該內徑靠近兩端處設有外低內高的斜面,該內徑具有多邊形的一制動孔,該心軸係由多片縱軸走向的組合片圍設拼成;該內部加壓機構係設置於該心軸之內徑,可由該內徑徑向地向外對該些組合片施加壓力;該加熱機構係設置於該內部加壓機構;該對上、下模具,於合模後具有對應於該心軸之管狀表面的一模穴,可供該心軸、 置於該心軸內的該內部加壓機構、置於該內部加壓機構內的該加熱機構置入並緊固該上、下模具,該上模具與該下模具分別設有複數水路孔,用以灌入流通的液體,使上、下模具冷卻降溫。 To achieve the above objective, the present invention discloses a thermoplastic composite pipe manufacturing device, which includes: a mandrel, an internal pressure mechanism, a heating mechanism and a pair of upper and lower molds, the mandrel is an inner mold core with a Tubular surface and an inner diameter, the inner diameter is provided with an outer low and inner high slope near the two ends, the inner diameter has a polygonal brake hole, and the mandrel is assembled by a plurality of longitudinally-oriented composite sheets. The internal pressure mechanism is set on the inner diameter of the mandrel, the inner diameter can be used to apply pressure to the composite pieces radially outward; the heating mechanism is set on the internal pressure mechanism; the pair of upper and lower The mold has a cavity corresponding to the tubular surface of the mandrel after the mold is closed, which can be used for the mandrel, The internal pressure mechanism placed in the mandrel and the heating mechanism placed in the internal pressure mechanism are inserted and fastened to the upper and lower molds, the upper mold and the lower mold are respectively provided with a plurality of water passage holes, It is used to pour the circulating liquid to cool the upper and lower molds.

其中,該內部加壓機構包含:組配在該心軸之制動孔的一固鎖桿、二錐形桿分別設置在該心軸之內徑的兩端及穿過該錐形桿的一螺桿,該螺桿與該固鎖桿螺合,當該螺桿向內螺入時,會推動該錐形桿朝向該固鎖桿移動,以向外撐大該心軸之內徑。 Wherein, the internal pressurizing mechanism includes: a fixed lock rod assembled in the brake hole of the spindle, two tapered rods respectively arranged at both ends of the inner diameter of the spindle, and a screw thread passing through the tapered rod , The screw is screwed with the fixed locking rod, and when the screw is screwed inward, it will push the conical rod to move toward the fixed locking rod to expand the inner diameter of the mandrel outwards.

其中,該心軸的管狀表面的斷面可為長錐形及水滴形的任一種。 Wherein, the cross section of the tubular surface of the mandrel can be any of a long cone shape and a drop shape.

本發明並揭露一種熱塑複材管之製造方法,包括: The present invention also discloses a method for manufacturing a thermoplastic composite pipe, which includes:

A:提供如前述的熱塑複材管之製造裝置; A: Provide the manufacturing device of the above-mentioned thermoplastic composite pipe;

B:將該些組合片圍設拼接成一心軸; B: Surround and splice these composite pieces into a mandrel;

C:該內部加壓機構置入於該心軸的內徑; C: The internal pressure mechanism is inserted into the inner diameter of the mandrel;

D:將一碳纖預浸材以攝氏溫度80°~130°加溫使其軟化後,沿著該心軸先包覆於該心軸表面而形成管料形狀; D: After heating a carbon fiber prepreg at a temperature of 80°~130° Celsius to soften it, it is first wrapped on the surface of the mandrel along the mandrel to form a tube shape;

E:將該心軸置入於該上、下模具之模穴內,並合模鎖緊該上、下模具; E: Put the mandrel into the cavity of the upper and lower molds, and close the molds to lock the upper and lower molds;

F:扭緊該內部加壓機構之螺桿朝該心軸的內部的固鎖桿移動而對該碳纖預浸材產生內壓; F: Tighten the screw of the internal pressure mechanism and move toward the fixed lock rod inside the mandrel to generate internal pressure on the carbon fiber prepreg;

G:升溫該加熱機構,以加熱該碳纖預浸材,該加熱機構以攝氏溫度150°~250°加熱5分鐘~10分鐘; G: Raise the heating mechanism to heat the carbon fiber prepreg. The heating mechanism heats at a temperature of 150°~250°C for 5 minutes to 10 minutes;

H:在合模狀態下,在該些水路孔灌入流通的液體,使 該上、下模具及該碳纖預浸材降溫; H: In the clamping state, pour the circulating liquid into these waterway holes to make Cooling of the upper and lower molds and the carbon fiber prepreg;

I:該上、下模具的溫度降至常溫後,開模並取出形成管料形狀之該熱塑複材管。 I: After the temperature of the upper and lower molds are lowered to room temperature, the molds are opened and the thermoplastic composite pipe formed into the shape of the pipe material is taken out.

本發明至少具有下列之優點: The present invention has at least the following advantages:

1.本發明可利用扭力扳手旋轉螺桿以驅動錐形桿移動以抵壓組合片向外擴,其壓制力可作調整,以應對不同的造管製程,且對管壁之持壓壓力均勻,壓力大小可藉由旋轉螺桿的扭力扳手工具推算量測。 1. The present invention can use the torque wrench to rotate the screw to drive the tapered rod to move to resist the combined sheet to expand outward. The pressing force can be adjusted to cope with different manufacturing processes and the pressure holding pressure on the pipe wall is uniform. The pressure can be calculated and measured by the torque wrench tool of the rotating screw.

2.由於本發明加熱機構的加熱棒係埋入於錐形桿之第一凹槽與組合片之第二凹槽對合形成的孔洞內並通到該組合片的內部,該上模具與該下模具可不必再增設加熱源,可減化模具的結構,並提升模具的結構強度,以及由內往外傳熱,直接接觸管材,加熱體積小,可節省加熱能源,達到快速加熱效果。 2. Because the heating rod of the heating mechanism of the present invention is embedded in the hole formed by the first groove of the tapered rod and the second groove of the composite sheet, and leads to the inside of the composite sheet, the upper mold and the The lower mold does not need to add a heating source, which can reduce the structure of the mold and improve the structural strength of the mold, as well as heat transfer from the inside to the outside, direct contact with the pipe, small heating volume, saving heating energy, and achieving rapid heating effect.

3.本發明可在碳纖預浸材沿著心軸包覆成管料形狀時,順便在局部區域埋入金屬片、金屬環,將可使熱塑複材管之局部區域作強度補強功能。 3. The present invention can embed metal sheets and metal rings in local areas when the carbon fiber prepreg is wrapped along the mandrel into a tube shape, which will enable the local area of the thermoplastic composite tube to have a strength reinforcement function.

4.本發明由於上、下模具無須設置有加熱源,因此上、下模具有足夠的空間可設置冷卻水路孔,且其數量密度可更為密集,以提升冷卻速度及效果。 4. In the present invention, since the upper and lower molds do not need to be provided with heating sources, the upper and lower molds have enough space for cooling water passage holes, and the number density can be more dense to improve the cooling speed and effect.

5.本發明除可用於實驗試作外,因其對管壁之加壓壓力可持續調控,且壓力大小≧30~50kg/cm2,比一般氣壓(≦10kg/cm2)還要來的大,不用擔心高壓氣體外洩傷人之安全因素。 5. The present invention can be used in experimental trials, because it can continuously control the pressure of the pipe wall, and the pressure is ≧30~50kg/cm 2 , which is larger than the general air pressure (≦10kg/cm 2 ) , Don’t worry about the safety factor of high-pressure gas leakage and injury.

6.藉由本發明製作出的熱塑複材管件其層與層無氣泡產 生,貼合緻密性佳,可有效提升強度性能。 6. The layer and layer of the thermoplastic composite pipe made by the present invention have no bubble production Raw, good fit and compactness, which can effectively improve the strength performance.

7.本發明之心軸係由複數組合片圍設拼接構成,該些組合片受錐形桿的移動可徑向移動,使成形後的管件成品容易脫模。 7. The mandrel system of the present invention is formed by surrounding and splicing a plurality of composite pieces, which can be moved radially by the movement of the tapered rod, so that the finished pipe after forming is easy to demold.

8.本發明採用鋼模設計,具有耐熱不易損壞,適用於實作生產,並透過異形截面之心軸,可適合不同異形截面形狀之熱塑複材管之生產製造。 8. The invention adopts a steel mold design, has heat resistance and is not easily damaged, and is suitable for practical production. Through the mandrel with special-shaped cross-section, it can be suitable for the production of thermoplastic composite pipes with different special-shaped cross-section shapes.

10‧‧‧心軸 10‧‧‧Mandrel

11‧‧‧管狀表面 11‧‧‧Tube surface

12‧‧‧內徑 12‧‧‧Inner diameter

121‧‧‧制動孔 121‧‧‧Brake hole

13‧‧‧斜面 13‧‧‧Slope

14‧‧‧組合片 14‧‧‧Combination film

141‧‧‧第二凹槽 141‧‧‧Second groove

20‧‧‧內部加壓機構 20‧‧‧Internal pressure mechanism

21‧‧‧錐形桿 21‧‧‧Conical rod

22‧‧‧固鎖桿 22‧‧‧Fixed lock lever

221‧‧‧第一凹槽 221‧‧‧First groove

222‧‧‧穿孔 222‧‧‧Perforation

23‧‧‧孔洞 23‧‧‧Hole

24‧‧‧螺桿 24‧‧‧Screw

241‧‧‧頭部 241‧‧‧Head

30‧‧‧加熱機構 30‧‧‧Heating mechanism

31‧‧‧加熱棒 31‧‧‧Heating Rod

40‧‧‧上模具 40‧‧‧Upper mold

41‧‧‧水路孔 41‧‧‧Waterway hole

42‧‧‧貫孔 42‧‧‧Through hole

50‧‧‧下模具 50‧‧‧Lower mold

51‧‧‧水路孔 51‧‧‧Waterway hole

52‧‧‧螺孔 52‧‧‧Screw hole

60‧‧‧碳纖預浸材 60‧‧‧Carbon fiber prepreg

a‧‧‧模穴 a‧‧‧Mould cavity

100‧‧‧金屬片 100‧‧‧Metal sheet

200‧‧‧金屬環 200‧‧‧Metal Ring

步驟A至I‧‧‧本發明之熱塑複材管之製造方法 Steps A to I‧‧‧The manufacturing method of the thermoplastic composite pipe of the present invention

圖1為本發明第一實施例心軸與內部加壓機構的分解立體圖。 Fig. 1 is an exploded perspective view of a mandrel and an internal pressing mechanism according to a first embodiment of the present invention.

圖2A為本發明第一實施例心軸與內部加壓機構的組合立體圖。 Fig. 2A is a combined perspective view of the mandrel and the internal pressing mechanism according to the first embodiment of the present invention.

圖2B為圖2A的A-A割面線的斷面圖。 Fig. 2B is a cross-sectional view of the A-A cutting line of Fig. 2A.

圖3為本發明第一實施例心軸與內部加壓機構間組配有加熱棒的示意圖。 Fig. 3 is a schematic diagram of a heating rod assembled between the mandrel and the internal pressure mechanism in the first embodiment of the present invention.

圖4為本發明第一實施例心軸置入於下模具的示意圖。 4 is a schematic diagram of the mandrel placed in the lower mold according to the first embodiment of the present invention.

圖5A為本發明第一實施例上、下模具合模後的示意圖。 5A is a schematic diagram of the upper and lower molds after they are closed in the first embodiment of the present invention.

圖5B為圖5A的B-B割面線的斷面圖。 Fig. 5B is a cross-sectional view of the B-B cutting line of Fig. 5A.

圖6為本發明第二實施例的立體示意圖。 Fig. 6 is a perspective view of a second embodiment of the invention.

圖7為本發明第三實施例的立體示意圖。 Fig. 7 is a three-dimensional schematic diagram of a third embodiment of the present invention.

圖8為本發明第四實施例的立體示意圖。 Fig. 8 is a perspective view of a fourth embodiment of the present invention.

圖9為本發明的流程圖。 Figure 9 is a flowchart of the present invention.

茲有關本發明之詳細內容及技術說明,現以實施例來進一步說明,但應瞭解的是,該等實施例僅為例示說明之用,而不應被解釋為本 發明實施之限制。 With regard to the detailed content and technical description of the present invention, examples are now used for further description, but it should be understood that these examples are for illustrative purposes only and should not be interpreted as Restrictions on the implementation of the invention.

請參閱圖1、圖2A、圖2B、圖3、圖4、圖5A、圖5B,為本發明熱塑複材管之製造裝置的第一實施例,係包括:一心軸10、一內部加壓機構20、一加熱機構30及一上模具40、一下模具50。該心軸10為內模仁,具有圓形的一管狀表面11及多邊形的一內徑12,該內徑12靠近該心軸10的兩端面處設有外低內高的斜面13,該內徑12中段設有多邊形如六邊形的一制動孔121,該心軸10係由複數片縱軸走向的組合片14圍設拼接而成,該心軸10的管狀表面11包覆有一層碳纖預浸材60。 Please refer to Figure 1, Figure 2A, Figure 2B, Figure 3, Figure 4, Figure 5A, Figure 5B, the first embodiment of the manufacturing apparatus of the thermoplastic composite pipe of the present invention, including: a mandrel 10, an internal plus The pressing mechanism 20, a heating mechanism 30, an upper mold 40 and a lower mold 50. The mandrel 10 is an inner mold core with a circular tubular surface 11 and a polygonal inner diameter 12. The inner diameter 12 is provided with an outer low and inner high inclined surface 13 near the two end faces of the mandrel 10. The middle section of the diameter 12 is provided with a brake hole 121 in a polygonal shape such as a hexagon. The mandrel 10 is formed by surrounding and splicing a plurality of composite sheets 14 with the longitudinal axis direction. The tubular surface 11 of the mandrel 10 is covered with a layer of carbon fiber Prepreg 60.

該內部加壓機構20,係設置於心軸10的內徑,可由心軸10之內徑12徑向地向外對該些組合片14施加壓力。該內部加壓機構20,包含套接在該心軸10兩端內徑12的二錐形桿21及介於該二錐形桿21之間的一多邊形的固鎖桿22,該固鎖桿22的外形與心軸10之制動孔121相配合並組配在制動孔121位置,該錐形桿21為多邊形且遠離該固鎖桿22的外端直徑大於該錐形桿21鄰近固鎖桿22之內端的直徑,錐形桿21的外端環形排列有半圓形的複數第一凹槽221,錐形桿21軸向中心設有一穿孔222;該組合片14面對該第一凹槽221方向設有半圓形的一第二凹槽141,第一凹槽221與第二凹槽141對合形成一孔洞23,孔洞23貫通到組合片14的中間,該固鎖桿22的二側各螺接一螺桿24,螺桿24具有一大於螺桿24直徑的一頭部241,該螺桿24穿過錐形桿21的穿孔222再與固鎖桿22螺合,螺桿24的頭部241緊頂著該錐形桿21的端面,當旋轉鎖緊螺桿24向內螺入時,會推動錐形桿21往該固鎖桿22方向移動,以向外撐大該心軸10之內徑12,使錐形桿21的外壁對組合片14施加壓力。 The internal pressure mechanism 20 is arranged on the inner diameter of the mandrel 10, and the inner diameter 12 of the mandrel 10 can apply pressure to the composite pieces 14 radially outward. The internal pressure mechanism 20 includes two tapered rods 21 sleeved on the inner diameter 12 at both ends of the mandrel 10 and a polygonal locking rod 22 between the two tapered rods 21. The fixed locking rod The shape of 22 matches with the brake hole 121 of the spindle 10 and is assembled at the position of the brake hole 121. The tapered rod 21 is polygonal and has a larger diameter than the outer end of the tapered rod 21 adjacent to the fixed lock rod. The diameter of the inner end of the tapered rod 21 is the diameter of the inner end of the tapered rod 21. The outer end of the tapered rod 21 is annularly arranged with a plurality of semicircular first grooves 221. The axial center of the tapered rod 21 is provided with a through hole 222; the composite piece 14 faces the first groove A semicircular second groove 141 is provided in the 221 direction. The first groove 221 and the second groove 141 are aligned to form a hole 23. The hole 23 penetrates into the middle of the composite sheet 14. The two fixing rods 22 Each side is screwed with a screw 24. The screw 24 has a head 241 larger than the diameter of the screw 24. The screw 24 passes through the hole 222 of the conical rod 21 and then is screwed with the locking rod 22. The head 241 of the screw 24 is tight Against the end surface of the tapered rod 21, when the rotating locking screw 24 is screwed inward, the tapered rod 21 will be pushed to move toward the fixed locking rod 22 to expand the inner diameter 12 of the spindle 10 outwards. , The outer wall of the tapered rod 21 exerts pressure on the composite sheet 14.

該加熱機構30,包含有複數環形排列的加熱棒31,該加熱棒31係埋入於錐形桿21之第一凹槽221與組合片14之第二凹槽141對合形成的孔洞23內,並伸入到組合片14的中間。 The heating mechanism 30 includes a plurality of ring-shaped heating rods 31, which are embedded in the holes 23 formed by the first groove 221 of the tapered rod 21 and the second groove 141 of the composite sheet 14 , And extend into the middle of the composite sheet 14.

該上模具40與該下模具50分別設有複數水路孔41、51可灌入流通的液體,使上、下模具40、50冷卻降溫,上模具40與下模具50於合模後具有對應於該心軸10之管狀表面的一模穴a,該模穴a係供該心軸10置入。於本實施例中,上模具40與下模具50係藉由複數螺絲70由上模具40之貫孔42穿入再與下模具50之螺孔52螺合,藉此使上模具40與下模具50結合一起,而心軸10置入於下模具50之前,心軸10的內部已裝設有內部加壓機構20,內部加壓機構20與心軸10之間已裝設有加熱機構30。 The upper mold 40 and the lower mold 50 are respectively provided with a plurality of water passage holes 41, 51 that can be filled with circulating liquid to cool the upper and lower molds 40, 50. The upper mold 40 and the lower mold 50 have corresponding A mold cavity a on the tubular surface of the mandrel 10 is provided for the mandrel 10 to be placed in. In this embodiment, the upper mold 40 and the lower mold 50 are inserted through the through holes 42 of the upper mold 40 by a plurality of screws 70, and then screwed with the screw holes 52 of the lower mold 50, thereby making the upper mold 40 and the lower mold 50 is combined together, and before the mandrel 10 is placed in the lower mold 50, an internal pressure mechanism 20 has been installed inside the mandrel 10, and a heating mechanism 30 has been installed between the internal pressure mechanism 20 and the mandrel 10.

藉上述之結構,使用操作時,固鎖桿22係位於心軸10之內徑12中間處,二錐形桿21並分別套在心軸10之內徑11的兩端,二該錐形桿21的穿孔222分別穿接螺桿24,螺桿24再與固鎖桿22螺合。 With the above structure, during operation, the locking rod 22 is located in the middle of the inner diameter 12 of the mandrel 10, and the two tapered rods 21 are respectively sleeved on the two ends of the inner diameter 11 of the mandrel 10. The two tapered rods 21 The through holes 222 respectively penetrate the screw rod 24, and the screw rod 24 is screwed with the locking rod 22.

該碳纖預浸材60先以攝氏溫度80°~130°加溫使其軟化後,沿著心軸10包覆在心軸10的外周面成管狀。 The carbon fiber prepreg 60 is heated at a temperature of 80°-130° Celsius to soften it, and then wraps the outer peripheral surface of the mandrel 10 along the mandrel 10 into a tubular shape.

該心軸10再置入於下模具50的半模穴,再將上模具50蓋設在心軸10的上方且上模具40並與下模具50對合,接著藉複數螺絲70分別由上模具40的貫孔42穿入再與下模具50的螺孔52螺合鎖緊。接著藉一扭力扳手旋轉螺桿24,螺桿24的頭部241推動錐形桿21朝向固鎖桿22方向位移,以向外撐大該心軸10之內徑,而對碳纖預浸材60產生內壓,並且加熱機構30的加熱棒31藉由電力升溫到攝氏150°~250°,經過一段時間約5分鐘~10分鐘後,使碳纖預浸材60之樹脂融化接合,再對上模具40與下模具50的水路孔 41、51灌入流通的液體,使上、下模具40、50冷卻。當溫度降到常溫後,可打開上、下模具40、50取出管料。 The mandrel 10 is then placed in the half cavity of the lower mold 50, and then the upper mold 50 is placed above the mandrel 10 and the upper mold 40 is aligned with the lower mold 50, and then the upper mold 40 is separated by a plurality of screws 70 The through hole 42 is inserted into the screw hole 52 of the lower mold 50 and locked. Next, a torque wrench is used to rotate the screw 24. The head 241 of the screw 24 pushes the tapered rod 21 to move toward the fixed lock rod 22 to expand the inner diameter of the mandrel 10 outwards, thereby creating an inner diameter for the carbon fiber prepreg 60 The heating rod 31 of the heating mechanism 30 is heated to 150°~250° Celsius by electric power. After a period of about 5 minutes to 10 minutes, the resin of the carbon fiber prepreg 60 is melted and joined, and then the mold 40 and Waterway hole of lower mold 50 41 and 51 are filled with circulating liquid to cool the upper and lower molds 40 and 50. When the temperature drops to normal temperature, the upper and lower molds 40 and 50 can be opened to take out the pipe material.

請再參閱圖6,為本發明熱塑複材管之製造裝置的第二實施例,可在碳纖預浸材60沿著該心軸10的管狀表面11包覆成管料形狀時,順便在管狀表面11的表面的局部區域埋入金屬片100、金屬環200等物件,將可使熱塑複材管之局部區域作強度補強。 Please refer to FIG. 6 again, which is a second embodiment of the manufacturing device of the thermoplastic composite pipe of the present invention. When the carbon fiber prepreg 60 is wrapped into a pipe shape along the tubular surface 11 of the mandrel 10, by the way The partial area of the surface of the tubular surface 11 is embedded with the metal sheet 100, the metal ring 200 and other objects, which can strengthen the local area of the thermoplastic composite pipe.

請再參閱圖7,為本發明熱塑複材管之製造裝置的第三實施例,其中該心軸10的管狀表面11的斷面可為長錐形。 Please refer to FIG. 7 again, which is the third embodiment of the manufacturing device of the thermoplastic composite pipe of the present invention, wherein the tubular surface 11 of the mandrel 10 may be a long tapered section.

請再參閱圖8,為本發明熱塑複材管之製造裝置的第四實施例,其中該心軸10的管狀表面11的斷面可為水滴形。 Please refer to FIG. 8 again, which is a fourth embodiment of the manufacturing device of the thermoplastic composite pipe of the present invention, wherein the cross section of the tubular surface 11 of the mandrel 10 may be a drop shape.

本發明至少具有下列之優點: The present invention has at least the following advantages:

1.本發明可利用扭力扳手旋轉螺桿24以驅動錐形桿21移動以抵壓組合片14向外擴,其壓制力可作調整,以應對不同的造管製程,且對管壁之持壓壓力均勻,壓力大小可藉由旋轉螺桿24的扭力扳手工具推算量測。 1. The present invention can use a torque wrench to rotate the screw 24 to drive the tapered rod 21 to move to resist the combined sheet 14 to expand outward, and its pressing force can be adjusted to cope with different manufacturing processes and hold pressure on the pipe wall The pressure is uniform, and the pressure can be calculated and measured by the torque wrench tool of the rotating screw 24.

2.由於本發明加熱機構30的加熱棒31係埋入於錐形桿21之第一凹槽221與組合片14之第二凹槽141對合形成的孔洞23內並伸到組合片14的中間,上模具40與下模具50可不必再增設加熱源,可減化模具的結構,並提升模具的結構強度,以及由內往外傳熱,直接接觸管材,加熱體積小,可節省加熱能源,達到快速加熱效果。 2. Because the heating rod 31 of the heating mechanism 30 of the present invention is embedded in the hole 23 formed by the first groove 221 of the tapered rod 21 and the second groove 141 of the composite sheet 14 and extends to the composite sheet 14 In the middle, the upper mold 40 and the lower mold 50 do not need to add a heating source, which can reduce the structure of the mold and improve the structural strength of the mold, as well as heat transfer from the inside to the outside, direct contact with the pipe, small heating volume, and saving heating energy. Achieve rapid heating effect.

3.本發明可在碳纖預浸材60沿著心軸10包覆成管料形狀時,順便在局部區域埋入金屬片100、金屬環200,將可使熱塑複材管之局 部區域作強度補強功能。 3. The present invention can embed the metal sheet 100 and the metal ring 200 in a local area when the carbon fiber prepreg 60 is wrapped along the mandrel 10 into a tube shape, which will make the thermoplastic composite tube localized The partial area is used for strength reinforcement.

4.本發明由於上、下模具40、50無須設置有加熱源,因此具有足夠的空間可設置冷卻水路孔41、51,甚至其可設置的數量密度可更為提高,以提升冷卻速度及效果。 4. In the present invention, since the upper and lower molds 40 and 50 do not need to be provided with heating sources, there is enough space for cooling water passage holes 41 and 51, and even the number density that can be set can be increased to improve the cooling speed and effect .

5.本發明除可用於實驗試作外,因其對管壁之加壓壓力可持續調控,且壓力大小≧30~50kg/cm2,比一般氣壓(≦10kg/cm2)還要來的大,不用擔心高壓氣體外洩傷人之安全因素。 5. The present invention can be used in experimental trials, because it can continuously control the pressure of the pipe wall, and the pressure is ≧30~50kg/cm 2 , which is larger than the general air pressure (≦10kg/cm 2 ) , Don’t worry about the safety factor of high-pressure gas leakage and injury.

6.藉由本發明製作出的熱塑複材管件其層與層無氣泡產生,貼合緻密性佳,可有效提升強度性能。 6. The thermoplastic composite pipe made by the present invention has no air bubbles in the layers and layers, has good adhesion and compactness, and can effectively improve the strength performance.

7.本發明之心軸10係由複數組合片14圍設拼接構成,該些組合片14受錐形桿21的移動可徑向位移,使成形後的管件成品容易脫模。 7. The mandrel 10 of the present invention is formed by surrounding and splicing a plurality of composite pieces 14, which can be radially displaced by the movement of the tapered rod 21, so that the finished pipe after forming is easy to demold.

8.本發明採用鋼模設計,具有耐熱不易損壞,適用於實作生產,並透過異形截面之心軸,可適合不同異形截面形狀之熱塑複材管之生產製造。 8. The invention adopts a steel mold design, has heat resistance and is not easily damaged, and is suitable for practical production. Through the mandrel with special-shaped cross-section, it can be suitable for the production of thermoplastic composite pipes with different special-shaped cross-section shapes.

請參閱圖9,本發明係揭露熱塑複材管之製造方法,包括: Please refer to Figure 9, the present invention discloses a method for manufacturing a thermoplastic composite pipe, including:

A:提供如前述之熱塑複材管之製造裝置; A: Provide the manufacturing device of the above-mentioned thermoplastic composite pipe;

B:將該些組合片14圍設拼接成一心軸10; B: Surround and splice these composite pieces 14 into a mandrel 10;

C:將內部加壓機構20置入於該心軸10的內徑12; C: Insert the internal pressure mechanism 20 into the inner diameter 12 of the mandrel 10;

D:將一碳纖預浸材60先以攝氏溫度80°~130°加溫使其軟化後,沿著該心軸10包覆於該心軸10的管狀表面11而形成管料形狀; D: A carbon fiber prepreg material 60 is heated at a temperature of 80°-130° Celsius to soften it, and then wraps the tubular surface 11 of the mandrel 10 along the mandrel 10 to form a tube shape;

E:將該心軸10置入於上、下模具40、50之模穴a內,並合模鎖緊該上、下模具40、50; E: Place the mandrel 10 in the cavity a of the upper and lower molds 40, 50, and close the molds to lock the upper and lower molds 40, 50;

F:扭緊該內部加壓機構20之螺桿24,使螺桿24朝該心軸10內徑12的固鎖桿22移動而對該碳纖預浸材60產生內壓; F: Tighten the screw 24 of the internal pressure mechanism 20 to move the screw 24 toward the locking rod 22 of the inner diameter 12 of the mandrel 10 to generate internal pressure on the carbon fiber prepreg 60;

G:升溫該加熱機構30,以加熱該碳纖預浸材60,其係以該加熱機構30對形成管料形狀的該碳纖預浸材60的管內加熱,加熱方式為以攝氏溫度150°~250°加熱5分鐘~10分鐘; G: Raise the heating mechanism 30 to heat the carbon fiber prepreg 60. The heating mechanism 30 heats the inside of the tube of the carbon fiber prepreg 60 in the shape of a tube. The heating method is at a temperature of 150°C. Heating at 250° for 5 minutes to 10 minutes;

H:在合模狀態下,在該些水路孔灌入流通的液體,使該上、下模具及該碳纖預浸材降溫; H: In the clamping state, pour the circulating liquid into the waterway holes to cool the upper and lower molds and the carbon fiber prepreg;

I:該上、下模具的溫度降至常溫後,開模並取出形成管料形狀之該熱塑複材管。 I: After the temperature of the upper and lower molds are lowered to room temperature, the molds are opened and the thermoplastic composite pipe formed into the shape of the pipe material is taken out.

上述步驟G進行加熱完成後,係先經一段時間後(例如經過5分鐘~10分鐘後),再開始進行步驟H。 After the heating in the above step G is completed, after a period of time (for example, after 5 minutes to 10 minutes), then the step H is started.

惟以上該者,僅為本發明之較佳實施例而已,當不能以此限定本發明實施之範圍,即凡依本發明申請專利範圍及發明說明內容所作之簡單的等效變化與修飾,皆仍屬本發明專利涵蓋之範圍內。 However, the above are only preferred embodiments of the present invention, and should not be used to limit the scope of implementation of the present invention, that is, all simple equivalent changes and modifications made in accordance with the scope of the patent application and the description of the invention are all It is still within the scope of the invention patent.

10‧‧‧心軸 10‧‧‧Mandrel

11‧‧‧管狀表面 11‧‧‧Tube surface

12‧‧‧內徑 12‧‧‧Inner diameter

121‧‧‧制動孔 121‧‧‧Brake hole

13‧‧‧斜面 13‧‧‧Slope

14‧‧‧組合片 14‧‧‧Combination film

141‧‧‧第二凹槽 141‧‧‧Second groove

20‧‧‧內部加壓機構 20‧‧‧Internal pressure mechanism

21‧‧‧錐形桿 21‧‧‧Conical rod

22‧‧‧固鎖桿 22‧‧‧Fixed lock lever

221‧‧‧第一凹槽 221‧‧‧First groove

24‧‧‧螺桿 24‧‧‧Screw

241‧‧‧頭部 241‧‧‧Head

31‧‧‧加熱棒 31‧‧‧Heating Rod

Claims (7)

一種熱塑複材管之製造裝置,係包括:一心軸,係為內模仁,具有一管狀表面及一內徑,該內徑靠近兩端處的斜面,該內徑具有多邊形的一制動孔,該心軸係由多片縱軸走向的組合片圍設拼成;一內部加壓機構,係設置於該心軸之內徑,可由該內徑徑向地向外對該些組合片施加壓力,該內部加壓機構包含:一組配在該心軸之制動孔的固鎖桿、二錐形桿分別設置在該心軸之內徑的兩端及穿過該錐形桿的一螺桿,該螺桿與該固鎖桿螺合,當該螺桿向內螺入時,會推動該錐形桿朝向該固鎖桿移動,以向外撐大該心軸之內徑;一加熱機構,係設置於該內部加壓機構;一對上、下模具,於合模後具有對應於該心軸之管狀表面的一模穴,供該心軸、置於該心軸內的該內部加壓機構、置於該內部加壓機構內的該加熱機構置入並緊固該上、下模具,該上模具與該下模具分別設有複數水路孔,用以灌入流通的液體,使上、下模具冷卻降溫。 A manufacturing device for a thermoplastic composite pipe includes: a mandrel, which is an inner mold core, has a tubular surface and an inner diameter, the inner diameter is close to the slopes at both ends, and the inner diameter has a polygonal brake hole , The mandrel is surrounded by a plurality of longitudinally-oriented composite sheets; an internal pressure mechanism is arranged on the inner diameter of the mandrel, and the inner diameter can be applied to the composite sheets radially outward Pressure, the internal pressure mechanism includes: a set of fixed locking rods fitted in the brake hole of the mandrel, two tapered rods respectively arranged at both ends of the inner diameter of the mandrel, and a screw passing through the tapered rod , The screw threaded with the fixed locking rod, when the screw is screwed in, it will push the conical rod to move toward the fixed locking rod to expand the inner diameter of the spindle outwards; a heating mechanism, Set in the internal pressure mechanism; a pair of upper and lower molds have a cavity corresponding to the tubular surface of the mandrel after the molds are closed, for the mandrel and the internal pressure mechanism placed in the mandrel , The heating mechanism placed in the internal pressure mechanism is inserted and fastened the upper and lower molds. The upper mold and the lower mold are respectively provided with a plurality of water passage holes for filling the circulating liquid to make the upper and lower molds. The mold is cooled down. 如申請專利範圍第1項所述之熱塑複材管之製造裝置,其中,該錐形桿的外端環形排列有半圓形的複數個第一凹槽,每一組合片面對該第一凹槽方向設有半圓形的一第二凹槽,該第一凹槽與該第二凹槽對合形成一孔洞,該孔洞貫通到組合片的中間,該加熱機構包含有複數環形排列的加熱棒,該些加熱棒係埋入於該錐形桿之該第一凹槽與該組合片之該第二凹槽對合形成的孔洞內,並伸入到組合片的中間。 According to the manufacturing device of the thermoplastic composite pipe described in item 1 of the scope of patent application, wherein the outer end of the tapered rod is annularly arranged with a plurality of semicircular first grooves, and each composite piece faces the first groove A semicircular second groove is provided in the direction of a groove, the first groove and the second groove are aligned to form a hole, the hole penetrates into the middle of the composite sheet, and the heating mechanism includes a plurality of annular arrangements The heating rods are embedded in the holes formed by the first groove of the tapered rod and the second groove of the composite sheet, and extend into the middle of the composite sheet. 如申請專利範圍第1項所述之熱塑複材管之製造裝置,其中,該心軸的管 狀表面的斷面為長錐形或水滴形。 The manufacturing device of the thermoplastic composite pipe as described in item 1 of the scope of patent application, wherein the pipe of the mandrel The cross-section of the surface is long cone or drop shape. 一種熱塑複材管之製造方法,包括下列現驟:A:提供如專利請求項1的熱塑複材管之製造裝置;B:將該些組合片圍設拼接成一心軸;C:將該內部加壓機構置入於該心軸的內徑;D:將一碳纖預浸材加溫使其軟化後,沿著該心軸包覆於該心軸表面而形成管料形狀:E:將該心軸置入於一上、下模具之模穴內,並合模鎖緊該上、下模具;F:扭轉該內部加壓機構之螺桿,使該錐形桿朝該心軸內部的固鎖桿移動,而對該碳纖預浸材產生內壓;G:升溫該加熱機構,以加熱該碳纖預浸材;以及H:在合模狀態下,在該些水路孔灌入流通的液體,使該上、下模具及該碳纖預浸材降溫;以及I:該上、下模具的溫度降至常溫後,開模並取出形成管料形狀之該熱塑複材管。 A method for manufacturing a thermoplastic composite pipe includes the following steps: A: Provide a manufacturing device for a thermoplastic composite pipe as in Patent Claim 1; B: Surround and splice the composite sheets into a mandrel; C: The internal pressure mechanism is inserted into the inner diameter of the mandrel; D: After heating a carbon fiber prepreg material to soften it, it wraps the surface of the mandrel along the mandrel to form a tube shape: E: Place the mandrel into the cavity of an upper and lower mold, and close the mold to lock the upper and lower molds; F: twist the screw of the internal pressure mechanism so that the conical rod faces the inner part of the mandrel The fixed lock rod moves to generate internal pressure on the carbon fiber prepreg; G: heating up the heating mechanism to heat the carbon fiber prepreg; and H: in the clamping state, pour the circulating liquid into the water passage holes , Cooling the upper and lower molds and the carbon fiber prepreg; and I: After the temperature of the upper and lower molds is lowered to normal temperature, the mold is opened and the thermoplastic composite tube formed into a tube shape is taken out. 如申請專利範圍第4項所述之熱塑複材管之製造方法,其中,該碳纖預浸材係以攝氏溫度80°~130°加溫使其軟化。 The method for manufacturing a thermoplastic composite pipe described in item 4 of the scope of patent application, wherein the carbon fiber prepreg is heated at a temperature of 80°~130°C to soften it. 如申請專利範圍第4項或第5項所述之熱塑複材管之製造方法,其中,於步驟G中,該加熱溫度係以攝氏溫度150°~250°加熱5分鐘~10分鐘。 The method for manufacturing a thermoplastic composite pipe described in item 4 or item 5 of the scope of the patent application, wherein in step G, the heating temperature is 150°-250° Celsius for 5 minutes to 10 minutes. 如申請專利範圍第4項所述之熱塑複材管之製造方法,其中,於步驟D中,在將一碳纖預浸材加溫使其軟化後,沿著該心軸包覆於該心軸表面而形成管料形狀時,可同時在該管料形狀的表面的局部區域埋入金屬 片、金屬環,將可使熱塑複材管之局部區域作強度補強功能。 The method for manufacturing a thermoplastic composite pipe as described in item 4 of the scope of patent application, wherein in step D, after a carbon fiber prepreg is heated to soften it, the core is covered along the mandrel When forming a tube shape on the shaft surface, metal can be embedded in a partial area of the tube shape at the same time The sheet and metal ring will strengthen the local area of the thermoplastic composite pipe.
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