CN223803081U - Fiber reinforced composite daylighting tile modeling rolling device - Google Patents
Fiber reinforced composite daylighting tile modeling rolling deviceInfo
- Publication number
- CN223803081U CN223803081U CN202520861069.7U CN202520861069U CN223803081U CN 223803081 U CN223803081 U CN 223803081U CN 202520861069 U CN202520861069 U CN 202520861069U CN 223803081 U CN223803081 U CN 223803081U
- Authority
- CN
- China
- Prior art keywords
- sleeve
- rollers
- fixedly connected
- seat
- motor
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Active
Links
Landscapes
- Processing Of Stones Or Stones Resemblance Materials (AREA)
Abstract
The utility model discloses a fiber reinforced composite lighting tile modeling rolling device which comprises two groups of adjusting devices, two groups of replacing devices, a cooling device and supporting mechanisms, wherein the two groups of adjusting devices are symmetrically arranged on the adjusting devices, the cooling device is arranged on the inner side of the replacing devices, two ends of the supporting mechanisms are rotatably connected with the replacing devices, and a wavy sleeve, a trapezoid sleeve and a smooth sleeve are fixedly connected with the supporting mechanisms respectively. According to the utility model, the composite lighting tile is subjected to multi-form rolling modeling through the replacing device, and the double-sided cooling is carried out on the composite lighting tile in the rolling modeling through the cooperation of the cooling device and the supporting mechanism, so that the fixing speed of the composite lighting tile is accelerated, and the stability of the modeled composite lighting tile is improved.
Description
Technical Field
The utility model belongs to the technical field of lighting tile forming, and particularly relates to a fiber reinforced composite lighting tile molding rolling device.
Background
The fiber reinforced composite lighting tile has light weight, high strength and good corrosion resistance, high temperature resistance and low temperature resistance, so that the fiber reinforced composite lighting tile is widely applied to the lighting field in the building industry; however, according to different application occasions, the building has different demands on the shape of the fiber reinforced composite lighting tile, so that the shape of the fiber reinforced composite lighting tile needs to be changed by using a molding device, so that the fiber reinforced composite lighting tile is suitable for the demands of different use environments;
According to the high-strength daylighting tile composite production line disclosed by the prior art with the publication number CN 115228355A, the device completes the raw material film coating of the daylighting tile through the matching of the first daylighting tile high-performance film feeding mechanism, the second daylighting tile high-performance film feeding mechanism and the compacting mechanism, and then carries out molding processing through the daylighting tile molding mechanism;
According to the actual size and specification of the produced lighting tile, the side plate is controlled to ascend by the adjusting rod, the distance between the two movable plates is adjusted by the sliding block, the side plate and the movable plate are contacted with the base to form a sealed area, the raw materials for producing the lighting tile are spread on a high-performance film on the base, and finally press shaping is carried out through the cover plate;
Therefore, a fiber reinforced composite lighting tile modeling rolling device is needed, and the fixing speed of the composite lighting tile is increased while rolling modeling of different shapes is carried out on the composite lighting tile.
Disclosure of Invention
The utility model aims to overcome the defects in the prior art, provides a fiber reinforced composite lighting tile modeling rolling device, which performs rolling modeling of various forms on the composite lighting tile through a replacement device, meanwhile, the cooling device is matched with the supporting mechanism to cool the double sides of the composite lighting tile in the rolling molding, so that the cooling and fixing speed of the composite lighting tile is increased, and the stability of the molded composite lighting tile is improved.
In order to achieve the above purpose, the technical scheme adopted by the utility model is as follows:
The fiber reinforced composite daylighting tile modeling rolling device comprises an adjusting device, a replacing device, a cooling device and supporting mechanisms, wherein the adjusting device is provided with two groups, the two groups of replacing devices are symmetrically arranged on the adjusting device, the cooling device is arranged on the inner side of the replacing device, two ends of the supporting mechanisms are rotatably connected with the replacing device, a wavy sleeve, a trapezoidal sleeve and a smooth sleeve are respectively and fixedly connected with the supporting mechanisms, the adjusting device comprises a supporting frame, a motor I and a screw rod, a pair of screw rods are rotatably connected with sliding grooves on two sides of the supporting frame, the screw threads on two ends of the screw rod are opposite in rotation direction, chain wheels on the tops of the screw rods are connected with each other through chains, the motor I is fixedly connected to the tops of the supporting frame through a motor seat, and the output end of the motor I is fixedly connected with one screw rod.
The replacing device comprises a connecting box, a motor II, rollers I, rollers II, sliding seats, connecting grooves, guiding grooves I and guiding grooves II, wing plates on two sides of the connecting box are in threaded connection with a screw rod, a pair of mounting grooves are symmetrically arranged at the bottom of the connecting box, through grooves are formed in one end of a sliding groove on the connecting box, a plurality of connecting grooves are formed in the sliding seats, the sliding seats are fixedly connected with limiting blocks above the connecting box in a sliding mode through the guiding grooves I, the sliding seats are symmetrically connected with supporting blocks below the connecting box in a sliding mode through the guiding grooves II, the rollers I and the rollers II are respectively provided with a pair of rollers, the rollers I and the rollers II are respectively symmetrically arranged in the guiding grooves I and the guiding grooves II, the rollers I are in rotary connection with the connecting box through connecting shafts with a pair of chain wheels, the rollers II are in rotary connection with the connecting box through connecting shafts with a chain wheel, the motor II is fixedly connected to the connecting box through a motor seat, the output end of the motor II passes through the through holes on the connecting box and is fixedly connected with the connecting shafts on the rollers I, and the rollers I and the chain wheels II are in a mutual connection mode.
The cooling device comprises a gear I, a connecting cylinder, a motor III, a driving wheel, an electric pushing cylinder, a connecting plate, a connecting seat, a connecting pipe and a rotating joint, wherein one end of the gear I is in sliding connection with a through groove at one end of a sliding groove through the connecting cylinder, the connecting seat is rotationally connected to the connecting cylinder, the motor III is fixedly connected to the connecting box through a motor seat, a gear on the motor III is meshed with the driving wheel rotationally connected to the connecting box, the electric pushing cylinder is provided with a pair of electric pushing cylinders, a cylinder body of the electric pushing cylinder is fixedly connected in an installation groove through the connecting seat, one end of the connecting plate is fixedly connected with the extending end of the electric pushing cylinder, the other end of the connecting plate is fixedly connected with the connecting seat through a connecting rod, the connecting pipe is arranged in the connecting cylinder, one end of the connecting pipe penetrates through a through hole in the connecting cylinder and the gear I and is connected with one end of the rotating joint, and the other end of the rotating joint is connected with cooling equipment through a connecting hose.
The supporting mechanism comprises an inserting block, an installing seat, a water tank, water through holes, one-way valves, sealing strips and supporting columns, wherein the water tanks at two ends of the supporting columns are fixedly connected with the inserting block through the installing seat which is rotationally connected in the connecting groove, the water tank is provided with a plurality of water through holes, the inserting block is communicated with the water tank through the water through holes at the inner side of the installing seat, the one-way valves are arranged at the inner side of the installing seat, the sealing strips are arranged at the inner side of the inserting block, and the wavy sleeve, the trapezoidal sleeve and the smooth sleeve are fixedly connected at the outer side of the supporting columns.
Compared with the prior art, the utility model has the beneficial effects that:
1) The adjusting device controls the two groups of replacing devices to drive the cooling device and the supporting mechanism to be close to or far away from each other through the coordination of the motor I and the screw rod, so that the intervals among the corresponding wavy sleeve, the trapezoid sleeve and the smooth sleeve are adjusted, and the rolling modeling is suitable for daylighting tiles with different thicknesses;
2) The motor II in the replacing device drives the roller I and the roller II to rotate forwards or reversely, the sliding seat is controlled to drive the supporting mechanism to slide between the limiting block and the supporting block, so that the wavy sleeve, the trapezoidal sleeve and the smooth sleeve are controlled to perform transposition, the device can perform rolling modeling of various forms on the composite lighting tile, and the lighting tile is convenient to adapt to the requirements of different use environments;
3) After the transposition of the wavy sleeve, the trapezoid sleeve and the smooth sleeve is finished, an electric push cylinder in the cooling device is retracted, a connecting plate is matched with a connecting seat to drive a connecting cylinder to slide along a through groove at one side of a chute, so that the connecting cylinder is spliced together with an inserting block at one end of a supporting column in a supporting mechanism, meanwhile, the connecting pipe is inserted into the inserting block at one end of the supporting column and a through groove on a mounting seat, at the moment, cooling liquid is input into a water tank at one end of the supporting column through a connecting pipe and a rotating joint by cooling equipment, the cooling liquid enters the wavy sleeve, the trapezoid sleeve and the smooth sleeve through water holes on the water tank to perform double-sided cooling on the composite lighting tile in rolling modeling, the cooling fixed speed of the composite lighting tile is accelerated, the stability of the composite lighting tile after modeling is improved, the composite lighting tile is prevented from being deformed due to self stress, and then the cooling liquid entering the wavy sleeve, the trapezoid sleeve and the smooth sleeve enters the water tank at the other end of the supporting column through the water holes and returns to the cooling equipment through another group of cooling device connected to the other end of the supporting column.
Drawings
FIG. 1 is a schematic diagram of a fiber reinforced composite lighting tile modeling rolling device;
FIG. 2 is a schematic view of the connection between the adjusting device and the replacing device in FIG. 1;
FIG. 3 is a bottom view of the changing apparatus of FIG. 1;
FIG. 4 is a schematic cross-sectional view of the changing device of FIG. 1;
FIG. 5 is a schematic view of the connection between the exchange device and the cooling device in FIG. 1;
FIG. 6 is a schematic diagram of a connection structure between the gear I and the connection base in FIG. 1;
FIG. 7 is a schematic view of a connection structure between the sliding seat and the replacing device in FIG. 1;
FIG. 8 is a schematic view of the connection structure of the support mechanism and the exchange device of FIG. 1;
FIG. 9 is a schematic view of the connection structure of the wave sleeve, trapezoid sleeve, smooth sleeve and support mechanism in FIG. 1;
FIG. 10 is an enlarged schematic view of the portion A of FIG. 9;
in the figure, 1, an adjusting device, 101, a supporting frame, 102, a motor I, 103, a screw rod, 2, a replacing device, 201, a connecting box, 2011, a wing plate, 2012, a mounting groove, 2013, a sliding groove, 2014, a limiting block, 2015, a supporting block, 202, a motor II, 203, a roller I, 204, a roller II, 205, a sliding seat, 2051, a connecting groove, 2052, a guiding groove I, 2053, a guiding groove II, 3, a cooling device, 301, a gear I, 3011, a connecting cylinder, 302, a motor III, 303, a driving wheel, 304, an electric pushing cylinder, 3041, a connecting plate, 305, a connecting seat, 306, a connecting pipe, 3061, a rotary joint, 4, a supporting mechanism, 401, an inserting block, 402, a mounting seat, 403, a water groove, 404, a water through hole, 405, a one-way valve, 406, 407, a supporting column, 5, a wavy sleeve, 6, a trapezoid sleeve, 7 and a smooth sleeve.
Detailed Description
The technical scheme of the present utility model will be further specifically described below with reference to fig. 1 to 10 for the convenience of understanding of those skilled in the art.
A fiber reinforced composite daylighting tile modeling rolling device comprises an adjusting device 1, a replacing device 2, a cooling device 3 and supporting mechanisms 4, wherein the adjusting device 1 is provided with two groups, the two groups of replacing devices 2 are symmetrically arranged on the adjusting device 1, the cooling device 3 is arranged on the inner side of the replacing device 2, two ends of the supporting mechanisms 4 are rotationally connected with the replacing device 2, a plurality of groups of supporting mechanisms 5, a trapezoid sleeve 6 and a smooth sleeve 7 are respectively fixedly connected with the supporting mechanisms 4, the adjusting device 1 comprises a supporting frame 101, a motor I102 and a screw 103, a pair of screws 103 are rotationally connected in sliding grooves on two sides of the supporting frame 101, threads on two ends of the screw 103 are reversely turned, chain wheels on the tops of the screws 103 are mutually connected through chains, the motor I102 is fixedly connected to the tops of the supporting frame 101 through a motor seat, the output end of the motor I102 is fixedly connected with one screw 103, the motor I102 and the screw 103 are matched to control the two groups of the replacing devices 2 to drive the cooling device 3 and the supporting mechanisms 4 to be mutually close to or far away from each other, so that the corresponding distance between the sleeves 5, the trapezoid sleeve 6 and the smooth sleeve 7 is adjusted, and the distance between the corresponding sleeves 7 is adjusted, so that daylighting tiles with different thickness can be correspondingly used for modeling.
The replacing device 2 comprises a connecting box 201, a motor II202, a roller I203, a roller II204, a sliding seat 205, a connecting groove 2051, a guide groove I2052 and a guide groove II2053; the wing plates 2011 on two sides of the connection box 201 are in threaded connection with the screw 103, a pair of mounting grooves 2012 are symmetrically arranged at the bottom of the connection box 201, and one end of a sliding groove 2013 on the connection box 201 is provided with a through groove; the sliding seat 205 is provided with a plurality of connecting grooves 2051, the sliding seat 205 is in sliding connection with a limiting block 2014 fixedly connected above the connecting box 201 through a guide groove I2052, the sliding seat 205 is in sliding connection with a supporting block 2015 symmetrically fixed below the connecting box 201 through a guide groove II2053, the pair of rollers I203 and II204 are respectively provided with a pair of rollers which are symmetrically arranged in the guide groove I2052 and the guide groove II2053, the roller I203 is in rotary connection with the connecting box 201 through a connecting shaft fixed with a pair of chain wheels, the roller II204 is in rotary connection with the connecting box 201 through a connecting shaft fixed with one chain wheel, the motor II202 is fixedly connected onto the connecting box 201 through a motor seat, the output end of the motor II202 passes through a through hole in the connecting box 201 and is fixedly connected with the connecting shaft on the roller I203, the chain wheels on the roller I203 and II204 are connected with each other through a chain, the motor II202 drives the rollers I203 and II204 to rotate in the forward direction or reverse direction, the sliding seat 205 drives the supporting mechanism 4 to slide between the limiting block 2014 and the supporting block, the roller I203 and the supporting block are controlled to rotate through the connecting shaft fixed with a pair of chain wheels, the connecting shafts fixed with one chain wheel, the connecting sleeve 5 is enabled to be in a wave-shaped sleeve 5, the wave-shaped sleeve 5 is controlled to be in a wave-shaped sleeve 5, a wave-shaped sleeve 5 is shaped sleeve 5, and a groove 5 is shaped sleeve 5 is shaped, and a groove is shaped.
The cooling device 3 comprises a gear I301, a connecting barrel 3011, a motor III302, a driving wheel 303, an electric pushing cylinder 304, a connecting plate 3041, a connecting seat 305, a connecting pipe 306 and a rotating joint 3061, wherein one end of the gear I301 is in sliding connection with a through groove at one end of a sliding groove 2013 through the connecting barrel 3011, the connecting seat 305 is rotationally connected to the connecting barrel 3011, the motor III302 is fixedly connected to the connecting box 201 through the motor seat, a gear on the motor III302 is meshed with the driving wheel 303 rotationally connected to the connecting box 201, the electric pushing cylinder 304 is provided with a pair, a cylinder body of the electric pushing cylinder 304 is fixedly connected in an installation groove 2012 through the connecting seat, one end of the connecting plate 3041 is fixedly connected with an extending end of the electric pushing cylinder 304, the other end of the connecting plate 3041 is fixedly connected with the connecting seat 305 through a connecting rod, one end of the connecting pipe 306 is arranged in the connecting barrel 3011 and penetrates through the through holes on the connecting barrel 3011 and the gear I301 to one end of the rotating joint 3061, and the other end of the rotating joint 3061 is connected with a cooling device through a connecting hose.
The supporting mechanism 4 comprises an inserting block 401, an installing seat 402, a water tank 403, water through holes 404, a one-way valve 405, sealing strips 406 and a supporting column 407, wherein the water tank 403 at two ends of the supporting column 407 is fixedly connected with the inserting block 401 through the installing seat 402 which is rotatably connected in a connecting groove 2051, the water tank 403 is provided with a plurality of water through holes 404, the inserting block 401 and the water through grooves at the inner side of the installing seat 402 are communicated with the water tank 403, the one-way valve 405 is arranged at the inner side of the installing seat 402, a plurality of sealing strips 406 are arranged at the inner side of the inserting block 401, and the wavy sleeve 5, the trapezoidal sleeve 6 and the smooth sleeve 7 are fixedly connected at the outer side of the supporting column 407.
After the transposition of the wavy sleeve 5, the trapezoid sleeve 6 and the smooth sleeve 7 is finished, the electric pushing cylinder 304 is retracted, the connecting plate 3041 is matched with the connecting seat 305, the connecting cylinder 3011 is driven to slide along a through groove at one side of the sliding groove 2013, so that the connecting cylinder 3011 is spliced together with the inserting block 401 at one end of the supporting column 407, meanwhile, the connecting pipe 306 is inserted into the inserting block 401 at one end of the supporting column 407 and the through groove on the mounting seat 402, at the moment, cooling liquid is input into the water groove 403 at one end of the supporting column 407 through the connecting pipe 306 and the rotating joint 3061 by cooling equipment, the cooling liquid enters the wavy sleeve 5, the trapezoid sleeve 6 and the smooth sleeve 7 through the water through holes 404 on the water groove 403 to perform double-sided cooling on the compound daylighting tile in rolling modeling, the cooling fixed speed of the compound daylighting tile is accelerated, the stability of the compound daylighting tile after modeling is improved, the compound daylighting tile is prevented from being deformed due to stress of the self is prevented, and then the cooling liquid entering the wavy sleeve 5, the trapezoid sleeve 6 and the cooling liquid in the smooth sleeve 7 enters the water groove 403 at the other end of the supporting column 407 through the water through holes 404 and the other group of cooling device 3 connected to the other end of the supporting column 407.
The fiber reinforced composite lighting tile molding and rolling device has the following working process:
Subsequently, a motor II202 in the replacement device 2 drives a roller I203 and a roller II204 to rotate positively or reversely, a sliding seat 205 is controlled to drive the support mechanism 4 to slide between a limiting block 2014 and a supporting block 2015, so that the wavy sleeve 5, the trapezoidal sleeve 6 and the smooth sleeve 7 are controlled to perform transposition, and when a through groove on one side of a sliding groove 2013 is aligned with a connecting groove 2051, the transposition action of the wavy sleeve 5, the trapezoidal sleeve 6 and the smooth sleeve 7 is finished, and the motor II202 is controlled to stop running;
Then, the electric pushing cylinder 304 in the cooling device 3 is retracted, the connecting plate 3041 is matched with the connecting seat 305, the connecting tube 3011 is driven to slide along the through groove on one side of the sliding groove 2013, so that the connecting tube 3011 is spliced with the inserting block 401 on one end of the supporting column 407 in the supporting mechanism 4, meanwhile, the connecting tube 306 is inserted into the inserting block 401 on one end of the supporting column 407 and the through groove on the mounting seat 402, at the moment, cooling liquid is input into the water groove 403 on one end of the supporting column 407 through the connecting tube 306 and the rotating joint 3061 by the cooling device, the cooling liquid enters the wavy sleeve 5, the trapezoidal sleeve 6 and the smooth sleeve 7 through the water through holes 404 to cool the composite lighting tile in the rolling molding on both sides, and then the cooling liquid enters the wavy sleeve 5, the trapezoidal sleeve 6 and the smooth sleeve 7 through the water through holes 404 to enter the water groove 403 on the other end of the supporting column 407, and returns to the cooling device through the other group of cooling device 3 connected to the other end of the supporting column 407.
The above-mentioned electronic or electric components including but not limited to the motor, the electric push cylinder, etc. are components in the prior art, and the electrical connection between the components is conventional circuit connection or electrical connection in the prior art through private customization or purchase, which is not the protection scope of the present utility model.
The foregoing is merely illustrative and explanatory of the utility model, as it is well within the scope of the utility model as claimed, as it relates to various modifications, additions and substitutions for those skilled in the art, without departing from the inventive concept and without departing from the scope of the utility model as defined in the accompanying claims.
Claims (4)
1. A fiber reinforced composite lighting tile modeling rolling device comprises an adjusting device, a replacing device, a cooling device and a supporting mechanism; the cooling device is arranged at the inner side of the replacing device, two ends of the plurality of groups of supporting mechanisms are rotationally connected with the replacing device, and the wavy sleeve, the trapezoidal sleeve and the smooth sleeve are respectively fixedly connected with the supporting mechanisms;
The adjusting device is characterized by comprising a support frame, a motor I and a screw rod, wherein a pair of screw rods are rotationally connected to sliding grooves on two sides of the support frame, the screw threads on two ends of the screw rods are opposite in steering, and chain wheels on the tops of the screw rods are mutually connected through a chain;
The replacing device comprises a connecting box, a motor II, rollers I, rollers II, sliding seats, connecting grooves, guiding grooves I and guiding grooves II, wing plates on two sides of the connecting box are in threaded connection with a screw rod, a pair of mounting grooves are symmetrically arranged at the bottom of the connecting box, through grooves are formed in one end of a sliding groove on the connecting box, a plurality of connecting grooves are formed in the sliding seats, the sliding seats are fixedly connected with limiting blocks above the connecting box in a sliding mode through the guiding grooves I, the sliding seats are symmetrically connected with supporting blocks below the connecting box in a sliding mode through the guiding grooves II, the rollers I and the rollers II are respectively provided with a pair of rollers, the rollers I and the rollers II are respectively symmetrically arranged in the guiding grooves I and the guiding grooves II, the rollers I are in rotary connection with the connecting box through connecting shafts with a pair of chain wheels, the rollers II are in rotary connection with the connecting box through connecting shafts with a chain wheel, the motor II is fixedly connected to the connecting box through a motor seat, the output end of the motor II passes through the through holes on the connecting box and is fixedly connected with the connecting shafts on the rollers I, and the rollers I and the chain wheels II are in a mutual connection mode.
2. The fiber reinforced composite daylighting tile molding rolling device is characterized by comprising a gear I, a connecting cylinder, a motor III, a driving wheel, an electric pushing cylinder, a connecting plate, a connecting seat, a connecting pipe and a rotating joint, wherein one end of the gear I is in sliding connection with a through groove at one end of a sliding groove through the connecting cylinder, the connecting seat is rotationally connected to the connecting cylinder, the motor III is fixedly connected to a connecting box through the motor seat, the gear on the motor III is meshed with the driving wheel rotationally connected to the connecting box, the electric pushing cylinder is provided with a pair of electric pushing cylinders, a cylinder body of the electric pushing cylinder is fixedly connected to a mounting groove through the connecting seat, one end of the connecting plate is fixedly connected with an extending end of the electric pushing cylinder, the other end of the connecting pipe is fixedly connected with the connecting seat through a connecting rod, one end of the connecting pipe penetrates through a through hole in the connecting cylinder and the gear I and is connected with one end of the rotating joint, and the other end of the rotating joint is connected with cooling equipment through a connecting hose.
3. The fiber reinforced composite daylighting tile modeling rolling device is characterized in that the supporting mechanism comprises an inserting block, an installing seat, a water tank, water through holes, a one-way valve, sealing strips and supporting columns, the water tanks at two ends of the supporting columns are fixedly connected with the inserting block through the installing seat which is rotationally connected in the connecting groove, the water tank is provided with a plurality of water through holes, the inserting block is communicated with the water tank through the water through holes at the inner side of the installing seat, the one-way valve is arranged at the inner side of the installing seat, and the sealing strips are arranged at the inner side of the inserting block.
4. The fiber reinforced composite lighting tile modeling rolling device according to claim 1, wherein the wavy sleeve, the trapezoid sleeve and the smooth sleeve are fixedly connected to the outer side of the support column.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202520861069.7U CN223803081U (en) | 2025-05-03 | 2025-05-03 | Fiber reinforced composite daylighting tile modeling rolling device |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202520861069.7U CN223803081U (en) | 2025-05-03 | 2025-05-03 | Fiber reinforced composite daylighting tile modeling rolling device |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN223803081U true CN223803081U (en) | 2026-01-16 |
Family
ID=98383174
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202520861069.7U Active CN223803081U (en) | 2025-05-03 | 2025-05-03 | Fiber reinforced composite daylighting tile modeling rolling device |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN223803081U (en) |
-
2025
- 2025-05-03 CN CN202520861069.7U patent/CN223803081U/en active Active
Similar Documents
| Publication | Publication Date | Title |
|---|---|---|
| CN212442697U (en) | Hydraulic auxiliary pipe bending equipment | |
| CN223803081U (en) | Fiber reinforced composite daylighting tile modeling rolling device | |
| CN203113659U (en) | Steel plate wallboard and equipment for manufacturing steel plate wallboard | |
| CN217729443U (en) | Double-shaft high-precision rolling compound machine for aluminum profiles | |
| CN207028257U (en) | A kind of timing belt former of double | |
| CN108705840B (en) | A high-efficient hot pressing laminator of circulation formula for composite sheet processing | |
| CN102513418B (en) | A flexible roll bending device with adjustable roll gap | |
| CN110280631A (en) | Mechanical full electric servo numerical control bender based on multiple degrees of freedom coupling driving | |
| CN202490858U (en) | Corrugated plate veneer reeling machine | |
| CN206731835U (en) | A kind of uncoiler suitable for different size color steel tiles | |
| CN210280490U (en) | Correcting device for steel bar detection | |
| CN222135930U (en) | Pipe bending device for PE pipe processing | |
| CN222519614U (en) | Double-station cold bending machine equipment | |
| CN223559074U (en) | Bubble-free laminating device for polycarbonate film | |
| CN224142573U (en) | A weather-resistant lightweight door processing device | |
| CN220942646U (en) | Straightening equipment for seamless steel pipes | |
| CN2335720Y (en) | Section roll bending machine | |
| CN218982737U (en) | Automatic shaping mechanism that trades of shaping auxiliary wheel | |
| CN222181288U (en) | Precise positioning and guiding device for producing multiple metal composite strips at one time | |
| CN221187588U (en) | Gantry clamping type fiber reinforced resin profile traction equipment | |
| CN221089956U (en) | Honeycomb cell sheet forming machine | |
| CN223903626U (en) | Metal surface treatment device | |
| CN218535641U (en) | Hot melt adhesive membrane flat pasting laminating equipment | |
| CN223789230U (en) | An automatic feeding device for an aluminum profile extrusion press | |
| CN217376325U (en) | Aluminum-plastic panel edge sealing device |
Legal Events
| Date | Code | Title | Description |
|---|---|---|---|
| GR01 | Patent grant | ||
| GR01 | Patent grant |