Modeling and rolling device for fiber-reinforced composite lighting tile

By adjusting and replacing the device, various shapes of fiber-reinforced composite skylights can be rolled and molded. The cooling device accelerates the cooling and curing process, solving the problems of single shape and low speed in the existing technology and improving the stability of the skylights.

CN223803081UActive Publication Date: 2026-01-16LINYI LUOZHUANG HENGSHENG RAINBOW TILE CO LTD
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Patent Information

Application Number
CN202520861069.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-03
Publication Date
2026-01-16
Estimated Expiration
2035-05-03

AI Technical Summary

Technical Problem

Existing fiber-reinforced composite skylight forming equipment can only produce a single shape and has a slow forming rate, which makes the skylights prone to deformation under stress.

Method used

By employing adjustment and replacement devices in conjunction with a support mechanism, various roll forming shapes can be achieved. A cooling device is used to cool the skylight tiles on both sides, improving the forming speed and stability.

Benefits of technology

It enables the rolling and shaping of composite skylights in various forms, improves the shaping rate, prevents skylights from deforming due to stress, and enhances their stability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a fiber reinforced composite lighting tile modeling rolling device which comprises an adjusting device, a replacing device, a cooling device and a supporting mechanism. The number of the adjusting devices is two, and the two replacing devices are symmetrically arranged on the adjusting devices. The cooling device is arranged on the inner side of the replacing device, the two ends of the multiple sets of supporting mechanisms are rotationally connected with the replacing device, and the wavy sleeves, the trapezoidal sleeves and the smooth sleeves are fixedly connected with the supporting mechanisms correspondingly. According to the utility model, the composite daylighting tile is subjected to rolling molding in various forms through the replacement device, and meanwhile, the cooling device is matched with the supporting mechanism to carry out double-sided cooling on the composite daylighting tile in the rolling molding process, so that the fixing speed of the composite daylighting tile is increased, and the stability of the molded composite daylighting tile is improved.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the field of daylighting tile forming technology, especially relates to a fiber reinforced composite daylighting tile shaping and rolling device. BACKGROUND

[0002] The fiber reinforced composite daylighting tile is light in weight, high in strength, has good corrosion resistance, high temperature resistance and low temperature resistance, and is widely applied to the daylighting field in the building industry, but different applications have different requirements for the shape of the fiber reinforced composite daylighting tile, so a shaping device is needed to change the shape of the fiber reinforced composite daylighting tile to adapt to different use environments.

[0003] After searching, the prior art with the publication number CN 115228355 A discloses a high-strength daylighting tile composite production line, which completes the coating of daylighting tile raw materials on the film through the cooperation of the first daylighting tile high-performance film feeding mechanism, the second daylighting tile high-performance film feeding mechanism and the compaction mechanism, and then performs forming processing through the daylighting tile forming mechanism; after the formed daylighting tile is cut by the cutting blade, the cut edges are sent into the waste crushing box through the conveying belt; the daylighting tile forming mechanism mentioned in the production line is usually a rolling shaping, which can complete mass production in a short time, but the shaping roller used in the rolling shaping can only produce one type of daylighting tile, which limits the application range of the daylighting tile.

[0004] After searching, the prior art with the publication number CN 210361839 U discloses an arc-shaped daylighting tile production device, which is moved to any daylighting tile production site, and then the supporting disc is lowered to contact the ground through the control of the electric lifting column, so that the suction cup is adsorbed on the ground; then according to the actual size and specification of the produced daylighting tile, the side plate is raised through the adjusting rod, the distance between the two movable plates is adjusted through the sliding block, and then the adjusting rod is lowered to make the side plate and the movable plate contact the base to form a sealed area, the raw material for producing the daylighting tile is spread on the high-performance film on the base, and finally the cover plate is used for pressing and shaping; but this device can only shape the daylighting tile in a single shape, and no accelerating shaping mechanism is provided in the device, which leads to slow shaping rate of the daylighting tile and deformation of the daylighting tile due to its own stress during the shaping process.

[0005] Therefore, a fiber reinforced composite daylighting tile shaping and rolling device is needed to accelerate the fixing rate of the composite daylighting tile while rolling and shaping the composite daylighting tile in different shapes. SUMMARY

[0006] The utility model discloses a fiber reinforced composite daylighting tile shaping rolling device, the utility model discloses a plurality of forms of rolling shaping is carried out to the composite daylighting tile through the replacement device, and the cooling device is equipped with the support mechanism cooperation and carries out the double -sided cooling to the composite daylighting tile in the rolling shaping, accelerates the rate of composite daylighting tile cooling fixation, improves the stability of the composite daylighting tile after shaping.

[0007] In order to realize the above-mentioned purpose, the utility model adopts the technical scheme of:

[0008] A fiber reinforced composite daylighting tile shaping rolling device, including adjusting device, replacement device, cooling device, support mechanism, the adjusting device is equipped with two groups, and two groups of replacement devices are symmetrically arranged on the adjusting device, the cooling device is located in the inside of replacement device, and the both ends of a plurality of groups of support mechanisms are rotatably connected with the replacement device, and the wave-shaped sleeve, trapezoidal sleeve and smooth sleeve are fixedly connected with the support mechanism respectively, the adjusting device includes support frame, motor I and lead screw, a pair of lead screws are rotatably connected in the sliding groove on the both sides of the support frame, the thread directions of the both ends of the lead screw are opposite, and the chain wheels on the top of the pair of lead screws are connected with each other through the chain, the motor I is fixedly connected on the top of the support frame through the motor base, and the output end of the motor I is fixedly connected with one lead screw.

[0009] The replacement device includes connecting box, motor II, roller I, roller II, sliding seat, connecting groove, guide groove I and guide groove II, the wing plates on the both sides of the connecting box are threadedly connected with the lead screw, a pair of mounting grooves are symmetrically arranged on the bottom of the connecting box, and one end of the sliding groove on the connecting box is provided with a through groove, a plurality of connecting grooves are arranged on the sliding seat, the sliding seat is slidably connected with the limiting block fixedly connected above the connecting box through the guide groove I, and the sliding seat is slidably connected with the supporting block fixedly connected below the connecting box through the guide groove II, one pair of roller I and roller II are arranged respectively and symmetrically in the guide groove I and the guide groove II, the roller I is rotatably connected with the connecting box through the connecting shaft fixed with a pair of chain wheels, and the roller II is rotatably connected with the connecting box through the connecting shaft fixed with one chain wheel, the motor II is fixedly connected on the connecting box through the motor base, the output end of the motor II is fixedly connected with the connecting shaft on one roller I through the through hole on the connecting box, and the chain wheels on the roller I and the roller II are connected with each other through the chain.

[0010] The cooling device comprises gear I, connecting cylinder, motor III, transmission wheel, electric push cylinder, connecting plate, connecting seat, connecting pipe and rotating joint; one end of the gear I is slidably connected with the through slot at one end of the sliding groove through the connecting cylinder, and the connecting seat is rotatably connected on the connecting cylinder; the motor III is fixedly connected on the connecting box through the motor seat, and the gear on the motor III is engaged with the transmission wheel rotatably connected on the connecting box; the electric push cylinder is provided in pair, and the cylinder body of the electric push cylinder is fixedly connected in the mounting groove through the connecting seat; one end of the connecting plate is fixedly connected with the extending end of the electric push cylinder, and the other end is fixedly connected with the connecting seat through the connecting rod; the connecting pipe is arranged inside the connecting cylinder, one end of the connecting pipe is connected with one end of the rotating joint through the through hole on the connecting cylinder and the gear I, and the other end of the rotating joint is connected with the cooling equipment through the connecting hose.

[0011] The supporting mechanism comprises an insertion block, a mounting seat, a water tank, water through holes, a one-way valve, sealing strips and supporting columns; the water tanks at both ends of the supporting columns are fixedly connected with the insertion block and the mounting seat rotatably connected in the connecting groove, a plurality of water through holes are arranged on the water tanks, and the through slots in the insertion block and the mounting seat are communicated with the water tanks; the one-way valve is arranged inside the mounting seat, and a plurality of sealing strips are arranged inside the insertion block; a wave-shaped sleeve, a trapezoidal sleeve and a smooth sleeve are fixedly connected outside the supporting columns.

[0012] The present application has the following beneficial effects compared with the prior art:

[0013] 1) The adjusting device controls the two groups of replacement devices to drive the cooling device and the supporting mechanism to approach or move away from each other through the cooperation of the motor I and the lead screw, so as to adjust the distance between the corresponding wave-shaped sleeve, trapezoidal sleeve and smooth sleeve, thereby adapting to the rolling and molding of the daylighting tiles with different thicknesses;

[0014] 2) The motor II in the replacement device drives the rollers I and II to rotate forward or reversely, controls the sliding seat to drive the supporting mechanism to slide between the limiting blocks and the supporting blocks, thereby controlling the transposition of the wave-shaped sleeve, the trapezoidal sleeve and the smooth sleeve, so that the device can perform rolling and molding of the composite daylighting tile in multiple modes, and the daylighting tile is convenient to adapt to the requirements of different use environments; when the through slot at one side of the sliding groove is aligned with the connecting groove, the transposition action of the wave-shaped sleeve, the trapezoidal sleeve and the smooth sleeve is completed, and the motor II is controlled to stop running at this time;

[0015] 3) after the wave-shaped sleeve, trapezoidal sleeve, smooth sleeve transposition is finished, the electric push cylinder in the cooling device is retracted, the connecting plate is matched with the connecting seat, the connecting cylinder is slid along the through groove on one side of the sliding groove, so that the connecting cylinder is inserted with the plug block at one end of the supporting column in the supporting mechanism, and the connecting pipe is inserted into the through groove on the plug block at one end of the supporting column and the mounting seat, at this time, the cooling equipment inputs the cooling liquid into the water tank at one end of the supporting column through the connecting pipe and the rotating joint, the cooling liquid enters the wave-shaped sleeve, the trapezoidal sleeve and the smooth sleeve through the water through hole on the water tank, and the cooling liquid in the wave-shaped sleeve, the trapezoidal sleeve and the smooth sleeve enters the water tank at the other end of the supporting column through the water through hole, and returns to the cooling equipment through another group of cooling devices connected at the other end of the supporting column. BRIEF DESCRIPTION OF DRAWINGS

[0016] BRIEF DESCRIPTION OF DRAWINGS Figure 1 It is a fiber reinforced composite daylighting tile molding and rolling device structure schematic view.

[0017] BRIEF DESCRIPTION OF DRAWINGS Figure 2 It is a Figure 1 It is a connecting structure schematic view of the adjusting device and the replacing device.

[0018] BRIEF DESCRIPTION OF DRAWINGS Figure 3 It is a Figure 1 It is a bottom view of the replacing device.

[0019] BRIEF DESCRIPTION OF DRAWINGS Figure 4 It is a Figure 1 It is a sectional structure schematic view of the replacing device.

[0020] BRIEF DESCRIPTION OF DRAWINGS Figure 5 It is a Figure 1 It is a connecting structure schematic view of the replacing device and the cooling device.

[0021] BRIEF DESCRIPTION OF DRAWINGS Figure 6 It is a Figure 1 It is a connecting structure schematic view of the gear I and the connecting seat.

[0022] BRIEF DESCRIPTION OF DRAWINGS Figure 7 It is a Figure 1 It is a connecting structure schematic view of the sliding seat and the replacing device.

[0023] BRIEF DESCRIPTION OF DRAWINGS Figure 8 It is a Figure 1 It is a connecting structure schematic view of the supporting mechanism and the replacing device.

[0024] BRIEF DESCRIPTION OF DRAWINGS Figure 9 It is a Figure 1 It is a connecting structure schematic view of the wave-shaped sleeve, the trapezoidal sleeve, the smooth sleeve and the supporting mechanism.

[0025] attached Figure 10 is attached Figure 9 is an enlarged structural schematic view of part A in the figure;

[0026] In the figure: 1, adjusting device; 101, support frame; 102, motor I; 103, screw rod; 2, replacement device; 201, connecting box; 2011, wing plate; 2012, mounting groove; 2013, sliding groove; 2014, limiting block; 2015, supporting block; 202, motor II; 203, roller I; 204, roller II; 205, sliding seat; 2051, connecting groove; 2052, guide groove I; 2053, guide groove II; 3, cooling device; 301, gear I; 3011, connecting cylinder; 302, motor III; 303, transmission wheel; 304, electric push cylinder; 3041, connecting plate; 305, connecting seat; 306, connecting pipe; 3061, rotating joint; 4, supporting mechanism; 401, plug; 402, mounting seat; 403, water tank; 404, water passing hole; 405, one-way valve; 406, sealing strip; 407, supporting column; 5, wave-shaped sleeve; 6, trapezoidal sleeve; 7, smooth surface sleeve. DETAILED DESCRIPTION

[0027] For the convenience of the persons skilled in the art to understand, the following will be combined with the attached Figures 1-10 The technical scheme of the utility model is further specifically explained.

[0028] A fiber-reinforced composite daylighting tile shaping and rolling device, comprising adjusting devices 1, replacement devices 2, cooling devices 3 and supporting mechanisms 4; the adjusting devices 1 are provided in two groups, and two groups of replacement devices 2 are symmetrically provided on the adjusting devices 1; the cooling devices 3 are arranged on the inner side of the replacement devices 2, a plurality of groups of supporting mechanisms 4 are rotationally connected with the replacement devices 2 at both ends, and wave-shaped sleeves 5, trapezoidal sleeves 6 and smooth surface sleeves 7 are fixedly connected with the supporting mechanisms 4 respectively; the adjusting device 1 comprises a support frame 101, a motor I 102 and a screw rod 103; a pair of screw rods 103 are rotationally connected in the sliding grooves on the two sides of the support frame 101, the thread directions of the two ends of the screw rods 103 are opposite, and the chain wheels at the top of the pair of screw rods 103 are connected with each other through chains; the motor I 102 is fixedly connected on the top of the support frame 101 through a motor base, and the output end of the motor I 102 is fixedly connected with one screw rod 103; the motor I 102 and the screw rod 103 are cooperatively controlled to drive the cooling devices 3 and the supporting mechanisms 4 of the two groups of replacement devices 2 to move close to or away from each other, so as to adjust the spacing between the corresponding wave-shaped sleeves 5, trapezoidal sleeves 6 and smooth surface sleeves 7, thereby adapting to the rolling and shaping of daylighting tiles with different thicknesses.

[0029] The replacement device 2 comprises a connecting box 201, a motor II 202, a roller I 203, a roller II 204, a sliding seat 205, a connecting groove 2051, a guide groove I 2052, a guide groove II 2053; the wing plates 2011 on both sides of the connecting box 201 are threadedly connected with the lead screws 103, a pair of mounting grooves 2012 are symmetrically arranged at the bottom of the connecting box 201, and the sliding groove 2013 on the connecting box 201 is provided with a through groove at one end; the sliding seat 205 is provided with a plurality of connecting grooves 2051, and the sliding seat 205 is slidingly connected with the limiting block 2014 fixedly connected above the connecting box 201 through the guide groove I 2052, and the sliding seat 205 is slidingly connected with the supporting block 2015 symmetrically fixed below the connecting box 201 through the guide groove II 2053; the roller I 203 and the roller II 204 are each provided with a pair, and are symmetrically arranged in the guide groove I 2052 and the guide groove II 2053 respectively, and the roller I 203 is rotatably connected with the connecting box 201 through the connecting shaft fixed with a pair of sprockets, and the roller II 204 is rotatably connected with the connecting box 201 through the connecting shaft fixed with a sprocket; the motor II 202 is fixedly connected on the connecting box 201 through a motor base, the output end of the motor II 202 is fixedly connected with the connecting shaft on one roller I 203 through the through hole on the connecting box 201, and the sprockets on the roller I 203 and the roller II 204 are connected with each other through a chain; the motor II 202 drives the roller I 203 and the roller II 204 to rotate forward or reversely, the sliding seat 205 drives the supporting mechanism 4 to slide between the limiting block 2014 and the supporting block 2015, so as to control the transposition of the wave-shaped sleeve 5, the trapezoidal sleeve 6 and the smooth sleeve 7, so that the device can roll and press the composite daylighting tile into various shapes; when the through groove on one side of the sliding groove 2013 is aligned with the connecting groove 2051, the transposition action of the wave-shaped sleeve 5, the trapezoidal sleeve 6 and the smooth sleeve 7 is completed, and at this time the motor II 202 is controlled to stop running.

[0030] The cooling device 3 includes gear I 301, connecting cylinder 3011, motor III 302, transmission wheel 303, electric push cylinder 304, connecting plate 3041, connecting seat 305, connecting pipe 306, rotating joint 3061; one end of the gear I 301 is slidably connected with the through slot of one end of the chute 2013 through the connecting cylinder 3011, and the connecting seat 305 is rotatably connected on the connecting cylinder 3011; the motor III 302 is fixedly connected on the connecting box 201 through the motor seat, and the gear on the motor III 302 is engaged with the transmission wheel 303 rotatably connected on the connecting box 201; the electric push cylinder 304 is provided in pair, and the cylinder body of the electric push cylinder 304 is fixedly connected in the mounting groove 2012 through the connecting seat; one end of the connecting plate 3041 is fixedly connected with the extending end of the electric push cylinder 304, and the other end is fixedly connected with the connecting seat 305 through the connecting rod; the connecting pipe 306 is arranged inside the connecting cylinder 3011, one end of the connecting pipe 306 is connected with one end of the rotating joint 3061 through the through hole on the connecting cylinder 3011 and the gear I 301, and the other end of the rotating joint 3061 is connected with the cooling equipment through the connecting hose.

[0031] The support mechanism 4 includes plug block 401, mounting seat 402, water tank 403, water passing hole 404, one-way valve 405, sealing strip 406, support column 407; the water tank 403 at both ends of the support column 407 is fixedly connected with the plug block 401 and the mounting seat 402 rotatably connected in the connecting groove 2051, and the water tank 403 is provided with a plurality of water passing holes 404, and the through slot in the inner side of the plug block 401 and the mounting seat 402 is communicated with the water tank 403; the one-way valve 405 is arranged in the inner side of the mounting seat 402, and a plurality of sealing strips 406 are arranged in the inner side of the plug block 401; the wave-shaped sleeve 5, the trapezoidal sleeve 6 and the smooth sleeve 7 are fixedly connected outside the support column 407.

[0032] After the transposition of the wave-shaped sleeve 5, the trapezoidal sleeve 6, and the smooth sleeve 7 is completed, the electric push cylinder 304 is retracted, so that the connecting plate 3041 is matched with the connecting seat 305, the connecting cylinder 3011 is driven to slide along the through groove on one side of the sliding groove 2013, so that the connecting cylinder 3011 is inserted with the plug block 401 at one end of the supporting column 407, and at the same time, the connecting pipe 306 is inserted into the through groove on the plug block 401 and the mounting seat 402 at one end of the supporting column 407. At this time, the cooling device inputs the cooling liquid into the water tank 403 at one end of the supporting column 407 through the connecting pipe 306 and the rotating joint 3061, the cooling liquid passes through the water hole 404 on the water tank 403 and enters the wave-shaped sleeve 5, the trapezoidal sleeve 6, and the smooth sleeve 7, so as to cool the composite daylighting tile in the rolling and pressing process from both sides, accelerate the cooling and fixing rate of the composite daylighting tile, improve the stability of the composite daylighting tile after molding, and prevent the composite daylighting tile from deforming due to its own stress; then the cooling liquid in the wave-shaped sleeve 5, the trapezoidal sleeve 6, and the smooth sleeve 7 enters the water tank 403 at the other end of the supporting column 407 through the water hole 404, and returns to the cooling device through another group of cooling devices 3 connected at the other end of the supporting column 407.

[0033] A fiber-reinforced composite daylighting tile molding and rolling device, and the working process is as follows:

[0034] The motor I 102 in the adjusting device 1 is matched with the lead screw 103, so that the connecting box 201 in the two groups of replacement devices 2 drives the cooling device 3 and the supporting mechanism 4 to adjust the distance; then the motor II 202 in the replacement device 2 drives the roller I 203 and the roller II 204 to rotate forward or reversely, the sliding seat 205 drives the supporting mechanism 4 to slide between the limiting block 2014 and the supporting block 2015, so as to control the wave-shaped sleeve 5, the trapezoidal sleeve 6, and the smooth sleeve 7 to transposition, when the through groove on one side of the sliding groove 2013 is aligned with the connecting groove 2051, the transposition of the wave-shaped sleeve 5, the trapezoidal sleeve 6, and the smooth sleeve 7 is completed, at this time, the motor II 202 is controlled to stop running;

[0035] Subsequently, the electric push cylinder 304 in the cooling device 3 is retracted, so that the connecting plate 3041 is matched with the connecting seat 305, the connecting cylinder 3011 is driven to slide along the through slot on one side of the sliding groove 2013, so that the connecting cylinder 3011 is inserted with the plug block 401 at one end of the supporting column 407 in the supporting mechanism 4, and the connecting pipe 306 is inserted into the through slot on the plug block 401 and the mounting seat 402 at one end of the supporting column 407. At this time, the cooling device inputs the cooling liquid into the water tank 403 at one end of the supporting column 407 through the connecting pipe 306 and the rotating joint 3061, the cooling liquid passes through the water through hole 404 on the water tank 403, enters the wave-shaped sleeve 5, the trapezoidal sleeve 6 and the smooth sleeve 7, and performs double-side cooling on the composite daylighting tile in the rolling and molding process. Subsequently, the cooling liquid in the wave-shaped sleeve 5, the trapezoidal sleeve 6 and the smooth sleeve 7 enters the water tank 403 at the other end of the supporting column 407 through the water through hole 404, and returns to the cooling device through another group of cooling devices 3 connected at the other end of the supporting column 407.

[0036] The above-mentioned electronic or electrical components, such as motors and electric push cylinders, are prior art components, which can be obtained by private customization or purchase. The electrical connection between the components is a conventional circuit connection or electrical connection in the prior art, and is not within the protection scope of the utility model.

[0037] The above content is only an example and description of the structure of the utility model, and those skilled in the art can make various modifications, supplements or substitutions by using similar ways, as long as the modifications, supplements or substitutions do not deviate from the structure of the utility model or exceed the range defined by the claims, and are within the protection scope of the utility model.

Claims

1. A fiber reinforced composite daylighting tile modeling rolling device, comprising adjusting devices, replacing devices, cooling devices and supporting mechanisms; the adjusting devices are provided in two groups, and two groups of replacing devices are symmetrically provided on the adjusting devices; the cooling devices are provided inside the replacing devices, a plurality of supporting mechanisms are rotatably connected with the replacing devices at both ends, and a wave-shaped sleeve, a trapezoidal sleeve and a smooth sleeve are respectively fixedly connected with the supporting mechanisms; characterized in that the adjusting device comprises a support frame, a motor I and a lead screw; a pair of lead screws are rotatably connected in the sliding grooves on both sides of the support frame, the thread directions of the lead screws at both ends are opposite, and the chain wheels at the top of the pair of lead screws are connected with each other through a chain; the motor I is fixedly connected at the top of the support frame through a motor base, and the output end of the motor I is fixedly connected with one lead screw; the replacing device comprises a connecting box, a motor II, a roller I, a roller II, a sliding seat, a connecting groove, a guide groove I and a guide groove II; the wing plates on both sides of the connecting box are threadedly connected with the lead screws, a pair of mounting grooves are symmetrically provided at the bottom of the connecting box, and one end of the sliding groove on the connecting box is provided with a through groove; a plurality of connecting grooves are provided on the sliding seat, the sliding seat is slidably connected with the limiting block fixedly connected above the connecting box through the guide groove I, and the sliding seat is slidably connected with the supporting block symmetrically fixed below the connecting box through the guide groove II; a pair of the roller I and the roller II are respectively symmetrically provided in the guide groove I and the guide groove II, and the roller I is rotatably connected with the connecting box through the connecting shaft fixed with a pair of chain wheels, and the roller II is rotatably connected with the connecting box through the connecting shaft fixed with one chain wheel; the motor II is fixedly connected on the connecting box through a motor base, the output end of the motor II is fixedly connected with the connecting shaft on one roller I through the through hole on the connecting box, and the chain wheels on the roller I and the roller II are connected with each other through a chain.

2. A fibre reinforced composite daylighting tile moulding and rolling apparatus as claimed in claim 1, wherein the cooling device comprises a gear I, a connecting cylinder, a motor III, a transmission wheel, an electric push cylinder, a connecting plate, a connecting seat, a connecting pipe and a rotating joint; one end of the gear I is slidably connected with the through groove at one end of the sliding groove through the connecting cylinder, and the connecting seat is rotatably connected with the connecting cylinder; the motor III is fixedly connected on the connecting box through a motor base, and the gear on the motor III is engaged with the transmission wheel rotatably connected on the connecting box; a pair of electric push cylinders are provided, and the cylinder bodies of the electric push cylinders are fixedly connected in the mounting grooves through the connecting seat; one end of the connecting plate is fixedly connected with the extending end of the electric push cylinder, and the other end is fixedly connected with the connecting seat through a connecting rod; the connecting pipe is provided inside the connecting cylinder, one end of the connecting pipe is connected with one end of the rotating joint through the through holes on the connecting cylinder and the gear I, and the other end of the rotating joint is connected with the cooling equipment through a connecting hose.

3. A fiber reinforced composite daylighting tile molding and rolling apparatus according to claim 1, wherein the supporting mechanism comprises an insertion block, a mounting seat, a water tank, a water passage, a one-way valve, a sealing strip and a supporting column; the water tanks at both ends of the supporting column are fixedly connected with the insertion block through the mounting seat rotatably connected in the connecting groove, a plurality of water passages are provided on the water tank, and the through grooves on the inner sides of the insertion block and the mounting seat are communicated with the water tank; the one-way valve is provided on the inner side of the mounting seat, and a plurality of sealing strips are provided on the inner side of the insertion block.

4. A fiber reinforced composite daylighting tile molding and rolling apparatus according to claim 1, wherein the wave-shaped sleeve, the trapezoidal sleeve and the smooth sleeve are fixedly connected on the outer side of the supporting column.

Citation Information

Patent Citations

  • Composite production line for high-strength daylighting tiles

    CN115228355A

  • Arc-shaped lighting tile production device

    CN210361839U