CN111361174A - High-stability glass fiber reinforced plastic pipeline processing equipment - Google Patents

High-stability glass fiber reinforced plastic pipeline processing equipment Download PDF

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Publication number
CN111361174A
CN111361174A CN202010204490.2A CN202010204490A CN111361174A CN 111361174 A CN111361174 A CN 111361174A CN 202010204490 A CN202010204490 A CN 202010204490A CN 111361174 A CN111361174 A CN 111361174A
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China
Prior art keywords
transmission shaft
rotation stopping
groove
matched
shaft
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CN202010204490.2A
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Chinese (zh)
Inventor
林欢
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Individual
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Individual
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Priority to CN202010204490.2A priority Critical patent/CN111361174A/en
Publication of CN111361174A publication Critical patent/CN111361174A/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29CSHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
    • B29C70/00Shaping composites, i.e. plastics material comprising reinforcements, fillers or preformed parts, e.g. inserts
    • B29C70/04Shaping composites, i.e. plastics material comprising reinforcements, fillers or preformed parts, e.g. inserts comprising reinforcements only, e.g. self-reinforcing plastics
    • B29C70/28Shaping operations therefor
    • B29C70/30Shaping by lay-up, i.e. applying fibres, tape or broadsheet on a mould, former or core; Shaping by spray-up, i.e. spraying of fibres on a mould, former or core
    • B29C70/32Shaping by lay-up, i.e. applying fibres, tape or broadsheet on a mould, former or core; Shaping by spray-up, i.e. spraying of fibres on a mould, former or core on a rotating mould, former or core
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29CSHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
    • B29C70/00Shaping composites, i.e. plastics material comprising reinforcements, fillers or preformed parts, e.g. inserts
    • B29C70/04Shaping composites, i.e. plastics material comprising reinforcements, fillers or preformed parts, e.g. inserts comprising reinforcements only, e.g. self-reinforcing plastics
    • B29C70/28Shaping operations therefor
    • B29C70/54Component parts, details or accessories; Auxiliary operations, e.g. feeding or storage of prepregs or SMC after impregnation or during ageing
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29LINDEXING SCHEME ASSOCIATED WITH SUBCLASS B29C, RELATING TO PARTICULAR ARTICLES
    • B29L2023/00Tubular articles
    • B29L2023/22Tubes or pipes, i.e. rigid

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  • Chemical & Material Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Composite Materials (AREA)
  • Mechanical Engineering (AREA)
  • Moulding By Coating Moulds (AREA)

Abstract

The invention discloses high-stability glass fiber reinforced plastic pipeline processing equipment which comprises a winding rack, a track, a trolley, a glass fiber wire discharging mechanism and a sand discharging mechanism, wherein the glass fiber wire discharging mechanism and the sand discharging mechanism are arranged on the trolley; the driving part comprises a gear shaft sleeve which is sleeved on the transmission shaft and can be in rotation stopping fit with the transmission shaft, a synchronous belt which is matched with the gear shaft sleeve and a driving motor which is used for driving the synchronous belt to rotate; a certain gap is formed between the inner wall of the gear shaft sleeve and the transmission shaft. According to the synchronous belt synchronous machine, the gear shaft sleeve which is in rotation-stopping fit with the rotating shaft is sleeved on the rotating shaft, and a certain gap is formed between the inner wall of the gear shaft sleeve and the transmission shaft, so that the gear shaft sleeve can be always in tight fit with the synchronous belt, and the running stability of the whole set of equipment is guaranteed.

Description

High-stability glass fiber reinforced plastic pipeline processing equipment
Technical Field
The invention belongs to the technical field of glass fiber reinforced plastic pipeline manufacturing devices, and particularly relates to equipment for producing glass fiber reinforced plastic pipelines.
Background
The glass fiber reinforced plastic pipeline is a light, high-strength and corrosion-resistant nonmetal pipeline. The glass fiber with resin matrix weight is wound on a rotating core mold layer by layer according to the technological requirement, and quartz sand is uniformly paved among the fibers at a long distance to serve as a sand inclusion layer. The pipe wall structure is reasonable and advanced, the function of materials can be fully exerted, the rigidity is improved on the premise of meeting the use strength, and the stability and the reliability of the product are ensured.
The existing high-stability glass fiber reinforced plastic pipeline processing equipment drives the rotating shaft to rotate through the driving motor and the transmission, however, the rotating shaft can shake when rotating, so that the situation that the driving belt and the rotating shaft cannot be tightly matched is easily caused, and once the situation occurs, the driving belt cannot drive the rotating shaft to rotate, and the normal operation of the whole equipment is influenced.
Disclosure of Invention
The invention provides equipment for producing glass fiber reinforced plastic pipelines, which is stable in operation and overcomes the defects of the prior art.
In order to achieve the purpose, the invention adopts the following technical scheme: a high-stability glass fiber reinforced plastic pipeline processing device comprises a winding rack, a track, a trolley, a glass fiber yarn discharging mechanism and a sand discharging mechanism, wherein the glass fiber yarn discharging mechanism and the sand discharging mechanism are arranged on the trolley; the driving part comprises a gear shaft sleeve which is sleeved on the transmission shaft and can be matched with the transmission shaft in a rotation stopping way, a synchronous belt matched with the gear shaft sleeve and a driving motor for driving the synchronous belt to rotate; a certain gap is formed between the inner wall of the gear shaft sleeve and the transmission shaft. According to the synchronous belt transmission device, the gear shaft sleeve which is in rotation-stopping fit with the rotating shaft is sleeved on the rotating shaft, a certain gap is formed between the inner wall of the gear shaft sleeve and the transmission shaft, and the gap is formed, so that the influence of the transmission shaft on the gear shaft sleeve when the transmission shaft shakes is reduced, the gear shaft sleeve can be always in close fit with the synchronous belt, and the gear shaft sleeve and the transmission shaft are always in rotation-stopping fit when the transmission belt shakes, so that the transmission shaft can be driven to rotate together only when the driving motor works, and the operation stability of the whole device is guaranteed.
Furthermore, a rotation stopping bulge is arranged on the transmission shaft, and a rotation stopping cavity matched with the bulge is arranged on the gear shaft sleeve; even when the transmission shaft takes place to rock, the epaxial arch of splining of transmission also can block all the time in the intracavity of splining, and then has guaranteed to keep splining the complex state always between gear bush and the transmission shaft, as long as when driving motor during operation, just can drive the transmission shaft and rotate together, has guaranteed the operating stability of whole equipment.
Furthermore, the winding rack also comprises a connecting shaft which is in rotation stopping fit with the transmission shaft and can move left and right relative to the transmission shaft, and a die core rod of which one end can be inserted into the connecting shaft and is in rotation stopping fit with the connecting shaft; the connecting shaft and the transmission shaft which are matched in rotation stopping and can move relatively are arranged, so that the connecting state of the die core rod and the connecting shaft can be controlled only by controlling the left and right movement of the connecting shaft, the die core rod is convenient to disassemble and assemble, the whole disassembling and assembling process is simple and convenient, the operation time is saved, and the production efficiency is improved.
Furthermore, a through hole for the transmission shaft to pass through is formed in the support, and a buffer device is arranged between the inner wall of the through hole and the transmission shaft; because the mould plug can take place to rock at the winding in-process, and then can drive the transmission shaft and take place to rock together, and can reduce the transmission shaft through buffer's setting and take place the range of rocking, and then effectively prevented the transmission shaft and taken place the condition of rigidity striking with other parts because of rocking, reduced the harm that the transmission shaft received, prolonged its life.
Furthermore, the buffering device comprises a buffering assembly sleeved on the transmission shaft and a first buffering piece connected between the buffering assembly and the inner wall of the through hole, wherein the buffering assembly comprises two arc-shaped pieces, a plurality of balls arranged on the arc-shaped pieces and a second buffering piece connected between the two arc-shaped pieces; the setting up of ball has guaranteed that the transmission shaft can and take place relative rotation between the two arc pieces, and the setting up of first, second bolster can reduce the transmission shaft and take place the range of rocking when rotating, and then has effectively avoided transmission shaft and other parts to take place the rigidity collision, has reduced the harm that the transmission shaft received, has prolonged its life.
Furthermore, two ends of the second buffer part are respectively connected with the two arc-shaped parts through an adjustable elastic structure; the extrusion force of the first buffer part to the two arc-shaped parts can be freely adjusted through the adjustable elastic force structure, and therefore the first buffer part can be always kept to have a good buffering effect on the two arc-shaped plates.
Furthermore, the adjustable elastic structure comprises adjusting shafts arranged at two ends of the second buffer part, a plurality of bosses arranged on the adjusting shafts, adjusting cavities arranged on the arc-shaped part and matched with the adjusting shafts, two positioning holes arranged on the arc-shaped part and communicated with the adjusting cavities, and a U-shaped positioning part, wherein a positioning groove is formed between every two adjacent bosses, and the U-shaped positioning part can be matched with the positioning groove; the distance between the two ends of the second buffer part is adjusted by matching the U-shaped positioning part with the positioning grooves between different bosses, so that the effect of adjusting the elastic force of the second buffer part on the arc-shaped part is realized.
Furthermore, a rotation stopping block is arranged on the transmission shaft, a rotation stopping groove matched with the rotation stopping block is arranged on the connecting shaft, and the length of the rotation stopping groove is greater than that of the rotation stopping block; the cooperation through only changeing the piece and only changeing the groove realizes the cooperation of only changeing of transmission shaft and connecting axle, and then the transmission shaft can drive the connecting axle and rotate together when rotating, in addition because only changeing the length in groove and being greater than only changeing the length of piece, and then can remove the connecting axle for the transmission shaft about to do benefit to the grafting cooperation of realizing mould plug and connecting axle.
Furthermore, an inserting groove matched with the mold core rod is formed in the connecting shaft, a rotation stopping column is arranged on the mold core rod, and a clamping groove matched with the rotation stopping column is formed in the side wall of the inserting groove; when one end of the mold core rod is inserted into the insertion groove on the connecting shaft, the rotation stopping column can be clamped into the clamping groove, and then rotation stopping matching of the mold core rod and the connecting shaft is achieved.
Furthermore, a sand collecting mechanism matched with the sand discharging mechanism is arranged on the trolley, the sand collecting mechanism comprises a supporting plate connected to the trolley and a sand collecting groove arranged on the supporting plate, and the sand collecting groove is detachably connected with the supporting plate through a plug-in structure; the quartz sand that leaks at the winding sand inclusion in-process is used for collecting through setting up on the dolly, has reduced the waste of resource, and collection sand groove and backup pad can be dismantled and connect, are convenient for take out collection sand groove and empty after the quartz sand in the collection sand groove is filled with.
Furthermore, the splicing structure comprises a splicing groove arranged on the supporting plate and a splicing component arranged on the sand collecting groove and matched with the splicing groove; the detachable connection of the sand collecting groove and the supporting plate is realized through the matching of the plug connector and the insertion groove, and then the sand collecting groove is convenient to disassemble and assemble.
In conclusion, the gear shaft sleeve which is matched with the rotating shaft in a rotation stopping manner is sleeved on the rotating shaft, and a certain gap is formed between the inner wall of the gear shaft sleeve and the transmission shaft, so that the gear shaft sleeve can be always tightly matched with the synchronous belt, and the running stability of the whole set of equipment is ensured.
Drawings
Fig. 1 is a first structural schematic diagram of the present invention.
Fig. 2 is a second structural schematic diagram of the present invention.
Fig. 3 is an enlarged view of a portion a in fig. 1.
Fig. 4 is an enlarged view of a portion a in fig. 2.
Fig. 5 is a schematic view of a connecting shaft structure of the present invention.
Fig. 6 is a partial structural schematic diagram of the present invention.
Fig. 7 is a schematic structural diagram of a buffering device according to the present invention.
Fig. 8 is an enlarged view of fig. 7 at a.
Fig. 9 is a schematic structural view of the sand collecting mechanism of the present invention.
Detailed Description
In order to make the technical solutions of the present invention better understood, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention.
As shown in fig. 1-9, a high-stability glass fiber reinforced plastic pipeline processing device comprises a winding frame 1, a track 2, a trolley 3, a glass fiber yarn discharging mechanism 31 and a sand discharging mechanism 32, wherein the glass fiber yarn discharging mechanism 31 and the sand discharging mechanism 32 are arranged on the trolley, specifically, the winding frame 1 comprises a support 11, a transmission shaft 12 rotatably arranged on the support, and a driving part for driving the transmission shaft to rotate, specifically, the driving part comprises a gear shaft sleeve 16 sleeved on the transmission shaft 12 and capable of fitting with the transmission shaft 12 in a rotation stopping manner, a synchronous belt 17 fitted with the gear shaft sleeve 16, and a driving motor 18 for driving the synchronous belt 17 to rotate, the diameter of the inner circle of the gear shaft sleeve 16 is slightly larger than that of the transmission shaft, and when the gear shaft sleeve is sleeved on the transmission shaft, a certain gap is formed between the inner wall of the gear shaft sleeve, the setting in clearance has reduced the transmission shaft and has taken place to rock the influence of time to the gear shaft cover at self to guaranteed gear shaft sleeve can all the time with hold-in range tight fit, and owing to rock the time at the drive belt, the normal cooperation of transferring to the end between gear shaft sleeve and the transmission shaft all the time, so guaranteed as long as when driving motor during operation, just can drive the transmission shaft and rotate together, specific, driving motor is the general motor that can directly purchase on the market, and its structure and theory of operation all are prior art, do not do here and describe repeatedly.
Further, be equipped with on the transmission shaft 12 and end the protruding 122 of changeing, be equipped with on the gear bush 16 with end the protruding 122 matched with of changeing and end the chamber 161 of changeing, it is concrete, it is protruding for setting up the cubic on the transmission shaft lateral wall to end to change, end to change the chamber 161 and set up on gear bush's inner wall, should end also to have certain clearance between intracavity wall and the cubic protruding lateral wall of changeing to even under the condition that the transmission shaft takes place to rock, also can guarantee all the time that the cooperation of only changeing between gear bush and the transmission shaft, guaranteed promptly that the gear shaft cover can drive the transmission shaft all the time under the effect of hold-in range and rotate together.
Further, the winding frame further comprises a connecting shaft 13 which is in rotation stop fit with the transmission shaft 12 and can move left and right relative to the transmission shaft, and a die core rod 14 of which the right end can be inserted into the connecting shaft and is in rotation stop fit with the connecting shaft, the support 11 is provided with two support parts which are matched with the mould core rod 14, so that the mould core rod can be directly placed on the support, because the connecting shaft can move left and right relative to the transmission shaft, when the die core rod is placed on the support, the insertion fit of the die core rod and the connecting shaft can be realized by moving the connecting shaft leftwards, and further can drive the die core rod to rotate together when the connecting shaft rotates, and similarly, the die core rod can be separated from the connecting shaft by moving the connecting shaft rightwards, and then be convenient for take off the mould plug from the support, whole dismouting process is simple, convenient, and specific transmission process is: the driving part drives the transmission shaft to rotate, so that the connecting shaft in rotation stopping fit with the transmission shaft is driven to rotate, and finally the die core rod in rotation stopping fit with the connecting shaft is driven to rotate.
Further, the support 11 is provided with a control assembly which is matched with the connecting shaft 13 to control the left and right actions of the connecting shaft 13, specifically, the control assembly comprises a cuboid frame 6 with a bottom end connected with the support 11 through a rotating shaft, the cuboid frame is sleeved outside the connecting shaft, two limiting rods 61 are horizontally arranged in the cuboid frame, the connecting shaft 13 is provided with annular limiting grooves 134 corresponding to the two limiting rods, the two limiting rods 61 are clamped at the upper and lower parts of the annular limiting grooves 134, so that in the process of overturning the cuboid frame 6, the two limiting rods 61 can contact with the side walls of the annular limiting grooves 134 and extrude, the connecting shaft 13 can move along the transmission shaft 12 under the action of the extrusion force of the limiting rods 61, preferably, the support 11 is further provided with a positioning frame 62 which can be matched with the cuboid frame 6, a bolt hole is respectively arranged on the positioning frame 62 and the cuboid frame 6, the cuboid frame can be positioned by inserting bolts into the two bolt holes, and the connecting shaft and the mould core rod are in a splicing state at the moment.
Further, the support 11 is provided with a through hole 15 for the transmission shaft 12 to pass through, a buffer device is arranged between the inner wall of the through hole 15 and the transmission shaft 12, specifically, the buffer device comprises a buffer component 4 sleeved on the transmission shaft 12 and a first buffer component 5 connected between the buffer component 4 and the inner wall of the through hole 15, the buffer component 4 comprises two arc-shaped components 41, a plurality of balls 42 arranged on the arc-shaped components and a second buffer component 43 connected between the two arc-shaped components 41, the first buffer component and the second buffer component are respectively compression springs, when the buffer component is sleeved on the transmission shaft, the balls can be tightly attached to the outer side wall of the rotating shaft, so that the transmission shaft can be ensured to rotate relative to the two arc-shaped components through the effect of the balls, and the arrangement of the first buffer component and the second buffer component can reduce the shaking amplitude of the transmission shaft when the transmission shaft rotates, and then effectively avoided the transmission shaft to take place the rigidity collision with other parts, reduced the harm that the transmission shaft received, prolonged its life.
Further, the two ends of the second buffer member 43 are respectively connected to the two arc-shaped members 41 through an adjustable elastic structure, specifically, the adjustable elastic structure includes an adjusting shaft 44 disposed at the two ends 43 of the second buffer member, a plurality of bosses 441 disposed on the adjusting shaft, an adjusting cavity 411 disposed on the arc-shaped member 41 and matched with the adjusting shaft 44, two positioning holes 412 disposed on the arc-shaped member 41 and communicated with the adjusting cavity 411, and a U-shaped positioning member 45, wherein a positioning groove is formed between the two adjacent bosses 441, when the two ends of the U-shaped positioning member are aligned and inserted into the two positioning holes, the two ends of the U-shaped positioning member 45 are respectively clamped into the positioning grooves between the bosses at different positions, thereby achieving the purpose of adjusting the distance between the two ends of the second buffer member, further achieving the effect of adjusting the second elastic force, and ensuring that the second buffer member can use a better elastic force for the two arc-shaped plates, thereby guaranteed that buffer unit can play a better cushioning effect to the transmission shaft.
Further, the arc-shaped part 41 is formed by connecting two arc-shaped plates with the same specification together through a bolt, the two arc-shaped plates are respectively provided with a groove at the corresponding position, and when the two arc-shaped plates are connected together through the bolt, the two grooves at the corresponding positions of the two arc-shaped plates are aligned to form a containing groove for containing the ball.
Further, the transmission shaft 12 is provided with a rotation stopping block 121, the connecting shaft 13 is provided with a rotation stopping groove 131 matched with the rotation stopping block 121, specifically, the rotation stopping block 121 is two strip-shaped convex blocks arranged on the outer side wall of the transmission shaft and evenly arranged along the circumferential direction of the outer side wall at intervals, the connecting shaft is provided with a cylindrical accommodating groove for inserting the end part of the transmission shaft, the rotation stopping groove 131 is two strip-shaped grooves arranged on the side wall of the accommodating groove and evenly arranged along the circumferential direction of the accommodating groove, in order to realize that the connecting shaft can move left and right relative to the transmission shaft, the length of the rotation stopping groove 131 is ensured to be larger than that of the rotation stopping block 121, the rotation stopping matching of the transmission shaft and the connecting shaft is realized through the matching of the rotation stopping block and the rotation stopping groove, and the transmission shaft can drive the connecting shaft to rotate together when rotating, in addition, because the, and then the connecting shaft can be moved left and right relative to the transmission shaft, thereby being beneficial to realizing the insertion fit of the mold core rod and the connecting shaft.
Further, connecting axle 13 one end is equipped with the confession mould plug 14 one end male columniform inserting groove 132, be equipped with on the mould plug 14 lateral wall and end post 141, be equipped with on the inserting groove 132 lateral wall with end post 141 matched with draw-in groove 133, when the inserting groove on the connecting axle was inserted to the one end of mould plug, end the post and can block into in the draw-in groove, and then realized the cooperation of ending of mould plug and connecting axle.
Further, the track 2 is arranged at one side of the winding frame, the trolley is arranged on the track and moves back and forth along the track, when the trolley moves along the track, the glass fiber soaked with resin is wound on a mould of the pipeline through a glass fiber yarn discharging mechanism arranged on the trolley, quartz sand is poured onto the glass fiber through a sand discharging mechanism while the glass fiber is wound, and then the glass fiber is wound on the mould together to form a sand inclusion layer, because the quartz sand is easy to leak from the glass fiber and falls onto the ground in the pouring process, the waste of resources is further caused, the production cost is improved, in order to solve the problem, the trolley 3 is provided with a sand collecting mechanism 33 matched with the sand discharging mechanism 32, the sand collecting mechanism 33 comprises a supporting plate 331 connected to the trolley and a sand collecting groove 332 arranged on the supporting plate, the sand collecting groove is detachably connected with the supporting plate through a splicing structure, the sand collecting groove 332 is a plastic container with an opening formed in the upper portion, the supporting plate 331 is a rectangular wood plate fixedly connected with a trolley, the positions of the sand collecting groove 332 and the supporting plate 331 are both located below the mold core rod 14, specifically, the splicing structure comprises a splicing groove 333 and a plug connector 334, the splicing groove 333 is formed in the supporting plate 331 and is matched with the splicing groove 333, the splicing groove is a T-shaped groove formed in the upper surface of the supporting plate, the plug connector is a fixing plate of a cuboid structure fixedly connected to the bottom of the sand collecting groove, and the fixing plate can be spliced in the T-shaped groove to further realize detachable connection of the sand collecting groove and the supporting plate.
It is to be understood that the described embodiments are merely a few embodiments of the invention, and not all embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.

Claims (2)

1. The utility model provides a FRP pipe says processing equipment of high stability, includes winding frame (1), track (2), dolly (3), locates glass fiber on the dolly goes out silk mechanism (31) and goes out sand mechanism (32), its characterized in that: the winding rack (1) comprises a support (11), a transmission shaft (12) which is rotatably arranged on the support and a driving part for driving the transmission shaft to rotate; the driving part comprises a gear shaft sleeve (16) which is sleeved on the transmission shaft (12) and can be in rotation stopping fit with the transmission shaft (12), a synchronous belt (17) which is matched with the gear shaft sleeve (16) and a driving motor (18) which is used for driving the synchronous belt (17) to rotate, and a certain gap is formed between the inner wall of the gear shaft sleeve (16) and the transmission shaft (12);
a rotation stopping bulge (122) is arranged on the transmission shaft (12), and a rotation stopping cavity (161) matched with the rotation stopping bulge (122) is arranged on the gear shaft sleeve (16);
the winding rack (1) also comprises a connecting shaft (13) which is in rotation stopping fit with the transmission shaft (12) and can move left and right relative to the transmission shaft, and a die core rod (14) of which one end can be inserted into the connecting shaft and in rotation stopping fit with the connecting shaft;
a through hole (15) for the transmission shaft (12) to pass through is formed in the support (11), and a buffer device is arranged between the inner wall of the through hole (15) and the transmission shaft (12);
the buffer device comprises a buffer component (4) sleeved on the transmission shaft (12) and a first buffer piece (5) connected between the buffer component (4) and the inner wall of the through hole (15), wherein the buffer component (4) comprises two arc-shaped pieces (41), a plurality of balls (42) arranged on the arc-shaped pieces and a second buffer piece (43) connected between the two arc-shaped pieces (41);
the transmission shaft (12) is provided with a rotation stopping block (121), the connecting shaft (13) is provided with a rotation stopping groove (131) matched with the rotation stopping block (121), and the length of the rotation stopping groove (131) is greater than that of the rotation stopping block (121);
the connecting shaft (13) is provided with an inserting groove (132) matched with the die core rod (14), the die core rod (14) is provided with a rotation stopping column (141), and the side wall of the inserting groove (132) is provided with a clamping groove (133) matched with the rotation stopping column (141);
two ends of the second buffer part (43) are respectively connected with the two arc-shaped parts (41) through an adjustable elastic structure;
the sand collecting mechanism (33) matched with the sand discharging mechanism (32) is arranged on the trolley (3), the sand collecting mechanism (33) comprises a supporting plate (331) connected to the trolley and a sand collecting groove (332) arranged on the supporting plate, and the sand collecting groove is detachably connected with the supporting plate through a plug-in structure.
2. The high-stability FRP pipe processing apparatus according to claim 1, wherein: the inserting structure comprises an inserting groove (333) arranged on the supporting plate (331) and an inserting piece (334) which is arranged on the sand collecting groove (332) and matched with the inserting groove (333).
CN202010204490.2A 2018-01-22 2018-01-22 High-stability glass fiber reinforced plastic pipeline processing equipment Withdrawn CN111361174A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202010204490.2A CN111361174A (en) 2018-01-22 2018-01-22 High-stability glass fiber reinforced plastic pipeline processing equipment

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201810061178.5A CN108274775A (en) 2018-01-22 2018-01-22 A kind of equipment for producing GRP pipe
CN202010204490.2A CN111361174A (en) 2018-01-22 2018-01-22 High-stability glass fiber reinforced plastic pipeline processing equipment

Related Parent Applications (1)

Application Number Title Priority Date Filing Date
CN201810061178.5A Division CN108274775A (en) 2018-01-22 2018-01-22 A kind of equipment for producing GRP pipe

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Publication Number Publication Date
CN111361174A true CN111361174A (en) 2020-07-03

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CN201810061178.5A Pending CN108274775A (en) 2018-01-22 2018-01-22 A kind of equipment for producing GRP pipe
CN202010204490.2A Withdrawn CN111361174A (en) 2018-01-22 2018-01-22 High-stability glass fiber reinforced plastic pipeline processing equipment

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Application Number Title Priority Date Filing Date
CN201810061178.5A Pending CN108274775A (en) 2018-01-22 2018-01-22 A kind of equipment for producing GRP pipe

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Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111452393B (en) * 2020-04-09 2022-08-09 安吉明道优术科技有限公司 Equipment for producing glass fiber reinforced plastic pipe

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Publication number Priority date Publication date Assignee Title
CN102146963A (en) * 2011-01-29 2011-08-10 中山中炬精工机械有限公司 Tensioning transmission shaft
CN203864030U (en) * 2014-06-15 2014-10-08 河北宏润玻璃钢有限公司 Glass fiber reinforced plastic mortar pipe winding device
CN105150438A (en) * 2015-08-19 2015-12-16 湖北三江航天江北机械工程有限公司 Winding solidification device for carbon fiber composite thin-wall skirt part
CN105257753A (en) * 2015-11-05 2016-01-20 青岛军英装备科技有限公司 Damping spring
US20170241140A1 (en) * 2016-02-18 2017-08-24 The Hong Kong Polytechnic University Reinforcing members for concrete structures

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2257516Y (en) * 1995-08-15 1997-07-09 岳红军 Glass fiber reinforced plastics sanded pipeline sanding device
CN2435226Y (en) * 2000-07-28 2001-06-20 岳红军 Multi-station pipeline twisting machine

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102146963A (en) * 2011-01-29 2011-08-10 中山中炬精工机械有限公司 Tensioning transmission shaft
CN203864030U (en) * 2014-06-15 2014-10-08 河北宏润玻璃钢有限公司 Glass fiber reinforced plastic mortar pipe winding device
CN105150438A (en) * 2015-08-19 2015-12-16 湖北三江航天江北机械工程有限公司 Winding solidification device for carbon fiber composite thin-wall skirt part
CN105257753A (en) * 2015-11-05 2016-01-20 青岛军英装备科技有限公司 Damping spring
US20170241140A1 (en) * 2016-02-18 2017-08-24 The Hong Kong Polytechnic University Reinforcing members for concrete structures

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Application publication date: 20200703