CN118906321A - Forming die and method for glass fiber reinforced plastic production - Google Patents
Forming die and method for glass fiber reinforced plastic production Download PDFInfo
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- CN118906321A CN118906321A CN202411407293.5A CN202411407293A CN118906321A CN 118906321 A CN118906321 A CN 118906321A CN 202411407293 A CN202411407293 A CN 202411407293A CN 118906321 A CN118906321 A CN 118906321A
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- fixedly connected
- fixing
- fiber reinforced
- glass fiber
- reinforced plastic
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B29—WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
- B29C—SHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
- B29C33/00—Moulds or cores; Details thereof or accessories therefor
- B29C33/30—Mounting, exchanging or centering
- B29C33/307—Mould plates mounted on frames; Mounting the mould plates; Frame constructions therefor
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B29—WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
- B29C—SHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
- B29C33/00—Moulds or cores; Details thereof or accessories therefor
- B29C33/44—Moulds or cores; Details thereof or accessories therefor with means for, or specially constructed to facilitate, the removal of articles, e.g. of undercut articles
- B29C33/442—Moulds or cores; Details thereof or accessories therefor with means for, or specially constructed to facilitate, the removal of articles, e.g. of undercut articles with mechanical ejector or drive means therefor
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B29—WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
- B29C—SHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
- B29C33/00—Moulds or cores; Details thereof or accessories therefor
- B29C33/70—Maintenance
- B29C33/72—Cleaning
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B29—WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
- B29C—SHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
- B29C70/00—Shaping composites, i.e. plastics material comprising reinforcements, fillers or preformed parts, e.g. inserts
- B29C70/04—Shaping composites, i.e. plastics material comprising reinforcements, fillers or preformed parts, e.g. inserts comprising reinforcements only, e.g. self-reinforcing plastics
- B29C70/28—Shaping operations therefor
- B29C70/40—Shaping or impregnating by compression not applied
- B29C70/42—Shaping or impregnating by compression not applied for producing articles of definite length, i.e. discrete articles
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B29—WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
- B29C—SHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
- B29C70/00—Shaping composites, i.e. plastics material comprising reinforcements, fillers or preformed parts, e.g. inserts
- B29C70/04—Shaping composites, i.e. plastics material comprising reinforcements, fillers or preformed parts, e.g. inserts comprising reinforcements only, e.g. self-reinforcing plastics
- B29C70/28—Shaping operations therefor
- B29C70/54—Component parts, details or accessories; Auxiliary operations, e.g. feeding or storage of prepregs or SMC after impregnation or during ageing
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- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Chemical & Material Sciences (AREA)
- Composite Materials (AREA)
- Moulds For Moulding Plastics Or The Like (AREA)
Abstract
The invention belongs to the technical field of glass fiber reinforced plastic production, in particular to a forming die and a forming method for glass fiber reinforced plastic production, which aim at the problems that the existing device is too simple in die fixing structure of glass fiber reinforced plastic raw materials, the raw materials cannot be fixed, manual auxiliary work is needed in the operation process of equipment, and batch die manufacturing cannot be performed on the glass fiber reinforced plastic. The forming die and the forming method for glass fiber reinforced plastic production have the advantages that the fixing capability of the glass fiber reinforced plastic is improved, the fixing equipment for raw materials is increased through the fixing assembly, the problem that the equipment needs to be manually operated in the production process is solved, the production efficiency of the equipment is improved, and the production requirement of the existing glass fiber reinforced plastic is met.
Description
Technical Field
The invention relates to the technical field of glass fiber reinforced plastic production, in particular to a forming die and a forming method for glass fiber reinforced plastic production.
Background
Glass Fiber Reinforced Plastic (FRP) is commonly called glass fiber reinforced plastic, and is a composite material which uses glass fiber and products (glass cloth, belt, felt and the like) as reinforcing materials to reinforce a plastic matrix. Because of its light weight, high strength, and some properties superior to steel, it can replace steel, so it is visually called "glass fibre reinforced plastic", which has been 70 years old since its appearance in the united states in 1932. In the period, the glass fiber reinforced plastic has great development from raw materials, molding process, product types to performance inspection, and plays a positive role in national defense industry and national economy construction.
The prior device has the defects that the die fixing structure of the glass fiber reinforced plastic raw materials is too simple, the raw materials cannot be fixed, the auxiliary work is needed manually in the operation process of equipment, the batch die manufacturing of the glass fiber reinforced plastic cannot be performed, the production efficiency of the equipment is low, and the production requirement of the existing glass fiber reinforced plastic cannot be met.
Disclosure of Invention
The invention discloses a forming die and a forming method for glass fiber reinforced plastic production, and aims to solve the technical problems that in the prior art, the existing device is too simple in die fixing structure for glass fiber reinforced plastic raw materials, the raw materials cannot be fixed, auxiliary work is needed manually in the operation process of equipment, batch die manufacturing of glass fiber reinforced plastic cannot be performed, and the production efficiency of the equipment is low.
The invention provides a forming die for glass fiber reinforced plastic production, which comprises a supporting frame, wherein two connecting and fixing plates are fixedly connected to the top of the supporting frame, the top of each connecting and fixing plate is fixedly connected with the same fixing plate, the top of each fixing plate is fixedly connected with a fixing frame, the inner wall of each fixing frame is provided with a placing opening, the bottom of the inner wall of each placing opening is provided with a round hole, the inner wall of each placing opening is fixedly connected with a pressing piece bottom plate, the top of each pressing piece bottom plate is provided with a mounting hole, the bottom of each round hole is fixedly connected with an electric spring plate, the output end of each electric spring plate is fixedly connected with an ejecting plate, the outer wall of each ejecting plate is in contact with the inner wall of each mounting hole, the tops of each connecting and fixing plate are fixedly connected with fixing plates, the tops of each fixing plate are provided with fixing assemblies, the tops of each fixing plate are provided with adjusting assemblies, the tops of the fixing plates are provided with dust inlet, and the bottoms of the fixing plates are fixedly connected with dust collecting bins.
Through being provided with the support frame, installing the board, fixing the board, collecting bits storehouse, go into dirt mouth, link solid board and anti-dandruff fan, through being provided with into dirt mouth, can collect the glass steel piece on the board of installing, prevent to pile up on the board of installing and influence equipment work, guaranteed the clean and tidy nature of equipment.
In a preferred scheme, the fixed assembly comprises two movable frames, the bottoms of the two movable frames are respectively and fixedly connected with the tops of the two fixed mounting plates, the two ends of the two movable frames are fixedly connected with limiting sleeve frames, sliding ports are formed in the outer walls of the two opposite sides of the two movable frames, and pushing blocks are movably connected to the inner walls of the two sliding ports; the two limiting sleeve frames are fixedly connected with electric telescopic rods on one side inner wall of each limiting sleeve frame, the output ends of the two electric telescopic rods are fixedly connected with one side outer wall of each pushing block respectively, two angle adjusting plates are fixedly connected with the opposite side outer wall of each pushing block, and the same rotating column is movably connected with the opposite side inner wall of each angle adjusting plate; the outer walls of one side of the two angle adjusting plates are fixedly connected with the organic fixed frames, the inner walls of the two fixed frames on the same side are fixedly connected with the same angle adjusting motor, the output shafts of the two angle adjusting motors are respectively connected with one ends of the two rotating columns through couplers, and the outer walls of the two rotating columns are fixedly connected with the adjusting connecting plates; the outer walls of the opposite sides of the two adjusting and connecting plates are fixedly connected with electric adjusting rods, the output ends of the two electric adjusting rods are fixedly connected with connecting safety heads, the outer walls of the opposite sides of the two connecting safety heads are fixedly connected with fixing frames, and adjusting ports are formed in the two fixing frames; the two fixed sleeve frames are fixedly connected at two ends of the fixed frame, the two safety frames are fixedly connected at the top of the two fixed sleeve frames, the two safety frames on the same side are fixedly connected with the same adjusting motor in an inner wall of the two safety frames, the output shafts of the two adjusting motors are connected with screw rods through couplings, the outer walls of the two screw rods are movably connected with limiting plates, the outer walls of the two limiting plates are fixedly connected with the inner walls of the two adjusting ports respectively, the outer walls of the two screw rods are movably connected with two fixed clamping blocks, the outer walls of the four fixed clamping blocks are contacted with the inner walls of the two adjusting ports respectively, the four fixed clamping blocks are respectively located above and below the two limiting plates, threaded holes are formed in the four fixed clamping blocks, the inner walls of the four threaded holes are movably connected with fixing screws, one ends of the four fixing screws are fixedly connected with friction plates, one side outer walls of the four friction plates are movably connected with one side outer walls of the four fixed clamping blocks respectively, and the outer walls of the four fixing screws are movably connected with fixing nuts.
Through being provided with fixed subassembly, through the cooperation of electric telescopic handle and pushing block, the position of the fixed equipment of change that can be free can be adjusted through the different freedom of glass steel, the functionality of equipment has been increased, through the friction plate, fixed clamp splice, fixation nut's cooperation, can change the friction plate, change according to different glass steel, the practicality of equipment has been increased, can fix glass steel through the cooperation of fixed clamp splice, lead screw and accommodate motor, prevent to carry out the in-process that works at the equipment, the glass steel position that needs to process appears the skew, lead to the die position inaccurate, lead to the material to be wasted, simultaneously automatic centre gripping has alleviateed staff's work burden, the stability of equipment has been increased, cooperation through electric adjustment pole and Lian An heads, can fix the glass steel of variation in size, the length of the fixed equipment of regulation that can be free, the convenience is fixed to the glass steel, the functionality of equipment has been improved, and machining efficiency, in-process that equipment uses, the angle and glass steel can not accord with, can't fix the glass steel, influence equipment and work efficiency, can carry out the fixed equipment through the fixed steel of machine with the fixed angle of machine, the fixed column, the equipment has been increased through the cooperation of machine, the stability.
In a preferred scheme, the adjusting component comprises two connecting installation blocks, the bottom walls of the two connecting installation blocks are fixedly connected with the tops of the two fixed installation plates respectively, the tops of the two connecting installation blocks are fixedly connected with electric push rods, the output ends of the two electric push rods are fixedly connected with safety posts, the outer walls of the two safety posts are fixedly connected with height adjusting plates, the bottoms of the two height adjusting plates are connected with the same pressing plate, the tops of the pressing plates are fixedly connected with protection sleeve columns, the inner walls of the protection sleeve columns are fixedly connected with hydraulic devices, and the output ends of the hydraulic devices are fixedly connected with fixed templates; four linkage holes are formed in the top of the pressing plate, the inner walls of the four linkage holes are movably connected with auxiliary columns, one ends of the four auxiliary columns are fixedly connected with the bottom of the fixed template, the bottom of the fixed template is provided with a mounting hole, the top of the mounting hole is fixedly connected with a module screw module, and the bottom of the module screw module is fixedly connected with a pressing module.
Through being provided with adjusting part, can carry out the change of freedom to the embossing mold utensil of equipment through the cooperation of more module spiral shell piece with solid template, make things convenient for equipment to carry out the suppression of different styles to glass steel, improved the functionality of equipment, can highly adjust equipment through electric putter, prevent to deal with the glass steel of different thickness, strengthened the ability that equipment handled different conditions, through being provided with the auxiliary column, can place the hydraulic press and carry out pressing work, increased the stability of equipment, improved the production efficiency of equipment.
In a preferred scheme, the top fixedly connected with of pressing the solid board removes bits fan, the bottom fixedly connected with of pressing the solid board two output frames, two output frames are located the both sides of hydraulic press respectively, the equal fixedly connected with installation head in one side outer wall and the top of removing bits fan, the inner wall fixedly connected with gas-supply pipe of two installation heads, and the one end of two gas-supply pipes respectively with one side outer wall fixed connection of two output frames.
Through being provided with anti-bits fan, output frame and collection bits storehouse, can clear up the piece that the in-process of pressing glass steel produced on the board is fixed to the installation, avoids the piece to pile up on the board is fixed to the installation, influences the equipment to the glass steel suppression, has guaranteed the production quality of equipment, through the cooperation of popup plate and electronic bullet piece board, can be after the glass steel suppression is accomplished, with the glass steel ejection that presses, conveniently collect, lightens staff's collection burden, has improved the functionality of equipment.
A molding method for glass fiber reinforced plastic production, using a molding die for glass fiber reinforced plastic production as described above, comprising the steps of:
step one, adjusting equipment to a proper position through an electric push rod, installing a required die on a hydraulic device through a die screw module, and adjusting the equipment to a proper position;
step two, starting operation of the equipment which is fixed by the adjusting component and needs to be processed, bouncing up the electric spring piece plate after the pressing die is completed, jacking up the glass fiber reinforced plastic after the pressing die is completed, and cleaning the mounting plate by the scrap removing fan.
From the above, the forming die for glass fiber reinforced plastic production provided by the invention has the advantages that the fixing capability of the glass fiber reinforced plastic is improved, the fixing equipment for raw materials is increased by the fixing assembly, the problem that the equipment needs to manually perform auxiliary work in the production process is solved, the production efficiency of the equipment is improved, and the production requirement of the existing glass fiber reinforced plastic is met.
Drawings
FIG. 1 is a schematic diagram of the overall structure of a molding die for glass fiber reinforced plastic production according to the present invention;
FIG. 2 is a schematic diagram of the overall side structure of a forming mold for glass fiber reinforced plastic production according to the present invention;
FIG. 3 is a schematic view of a fixing assembly of a molding die for glass fiber reinforced plastic production according to the present invention;
fig. 4 is a schematic diagram of a combined structure of a screw and an installation frame of a molding die for glass fiber reinforced plastic production;
Fig. 5 is a schematic diagram of a combined structure of an electric telescopic rod and an angle modulation motor of a forming mold for glass fiber reinforced plastic production;
FIG. 6 is a schematic diagram of a hydraulic press and electric push rod combination of a forming mold for glass fiber reinforced plastic production according to the present invention;
fig. 7 is a schematic diagram of a scrap removing motor structure of a forming mold for glass fiber reinforced plastic production.
In the figure: 1. a support frame; 2. a mounting plate; 3. an adjustment assembly; 301. a connecting block; 302. an electric push rod; 303. an Guzhu; 304. a height-adjusting plate; 305. a protective sleeve column; 306. an auxiliary column; 307. pressing and fixing the plate; 308. a hydraulic device; 309. the module is screwed; 310. pressing a module; 311. fixing the template; 4. a fixing assembly; 401. a moving frame; 402. a limit sleeve frame; 403. a fixed frame; 404. an Jijia; 405. adjusting a motor; 406. a screw rod; 407. a limiting plate; 408. an adjustment port; 409. fixing the clamping blocks; 410. friction plate; 411. a fixed screw; 412. a fixing nut; 413. regulating a corner plate; 414. fixing the sleeve frame; 415. an electric telescopic rod; 416. rotating the column; 417. a link An Tou; 418. an electric adjusting rod; 419. an angle modulation motor; 420. a machine fixing frame; 421. a connecting plate; 422. a pushing block; 5. fixing and installing plate members; 6. a connecting plate; 7. an anti-dandruff fan; 8. a gas pipe; 9. a mounting head; 10. an ejector plate; 11. an output frame; 12. a chip collecting bin; 13. a dust inlet; 14. a fixed frame; 15. a press bottom plate; 16. and a motor spring plate.
Detailed Description
The following description of the embodiments of the present invention will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present invention, but not all embodiments.
The forming die for glass fiber reinforced plastic production disclosed by the invention is mainly applied to the scene that the existing device is too simple in die fixing structure for glass fiber reinforced plastic raw materials, the raw materials cannot be fixed, auxiliary work is needed manually in the operation process of equipment, batch die manufacturing of glass fiber reinforced plastic cannot be carried out, and the production efficiency of the equipment is low.
Referring to fig. 1-7, a forming die for glass steel production, which comprises a supporting frame 1, two linking solid board 6 of top fixedly connected with of support frame 1, and the same solid board 2 of top fixedly connected with of two linking solid board 6, the top fixedly connected with of solid board 2 is solid frame 14 admittedly, and the inner wall of solid frame 14 has been seted up and has been placed the mouth, the round hole has been seted up to the inner wall bottom of placing the mouth, and the inner wall fixedly connected with casting die bottom plate 15 of placing the mouth, the mounting hole is seted up at the top of casting die bottom plate 15, and the bottom fixed connection electric spring piece board 16 of round hole, the output fixedly connected with of electric spring piece board 16 pops out board 10, and pop out the outer wall of board 10 and the inner wall of mounting hole contact, the equal fixedly connected with solid board 5 of top of two linking solid boards 6, and the top of two solid board 5 is provided with fixed subassembly 4, be provided with adjusting part 3 on two solid board 5, and the top of solid board 2 has been seted up into dirt mouth 13, the bottom fixedly connected with bits collection storehouse 12.
Specifically, through being provided with dust inlet 13, can collect the glass steel piece on the solid board 2 of ann, prevent to pile up on the solid board 2 of ann and influence equipment work, guaranteed the clean and tidy nature of equipment.
Referring to fig. 3, 4 and 5, the fixed assembly 4 includes two moving frames 401, bottoms of the two moving frames 401 are respectively and fixedly connected with tops of the two fixed mounting plates 5, two ends of the two moving frames 401 are fixedly connected with limiting sleeve frames 402, sliding ports are formed in outer walls of opposite sides of the two moving frames 401, and pushing blocks 422 are slidably connected to inner walls of the two sliding ports; the inner walls of one side of the two limiting sleeve frames 402 are fixedly connected with electric telescopic rods 415, the output ends of the two electric telescopic rods 415 are respectively and fixedly connected with the outer walls of one side of the two pushing blocks 422, the outer walls of the opposite sides of the two pushing blocks 422 are fixedly connected with two angle adjusting plates 413, and the inner walls of the opposite sides of each two angle adjusting plates 413 are connected with the same rotating column 416 through bearings; the outer walls of one side of the two angle adjusting plates 413 are fixedly connected with the organic fixing frames 420, the inner walls of the two machine fixing frames 420 at the same side are fixedly connected with the same angle adjusting motor 419, the output shafts of the two angle adjusting motors 419 are respectively connected with one ends of the two rotating columns 416 through couplers, and the outer walls of the two rotating columns 416 are fixedly connected with the adjusting connecting plates 421; the outer walls of the opposite sides of the two connecting plates 421 are fixedly connected with electric adjusting rods 418, the output ends of the two electric adjusting rods 418 are fixedly connected with a connecting An Tou 417, the outer walls of the opposite sides of the two connecting heads 417 are fixedly connected with a fixed frame 403, and the interiors of the two fixed frames 403 are provided with adjusting ports 408; the both ends of two fixed frames 403 are all fixedly connected with fixed cover frame 414, wherein the top of two fixed cover frames 414 is all fixedly connected with two ampere frames 404, be in the same one side two ampere frames 404 equal fixedly connected with same accommodate motor 405, the output shaft of two accommodate motor 405 all has lead screw 406 through the coupling joint, the outer wall of two lead screws 406 all has limiting plate 407 through threaded connection, the outer wall of two limiting plate 407 respectively with the inner wall fixed connection of two adjustment ports 408, the outer wall of two lead screws 406 all has two fixed clamp blocks 409 through threaded connection, and the outer wall of four fixed clamp blocks 409 respectively with the inner wall of two adjustment ports 408 contact, four fixed clamp blocks 409 are located the top and the below of two limiting plate 407 respectively, screw holes 411 have all been seted up on four fixed clamp blocks 409, the inner wall of four screw holes all has fixing screw 411 through threaded connection, the one end of four fixing screw 411 all is fixedly connected with friction 410, one side outer wall of four friction 410 respectively with one side outer wall of four fixed clamp blocks 409 through threaded connection, four outer wall fixed screw 412 all through threaded connection.
Specifically, in a preferred embodiment, after the pressing plate 307 is returned to a proper position, a proper fixing screw 411 is installed on the fixing clamping block 409, the fixing screw 411 is fixed through a fixing nut 412, the proper fixing screw 411 is installed on the fixing clamping block 409, the fixing screw 411 is fixed through the fixing nut 412, after adjustment is completed, glass fiber reinforced plastic to be processed is placed on the fixing frame 14, meanwhile, the electric telescopic rod 415 starts to operate, after the pushing block 422 is adjusted to a proper position, the adjusting motor 405 starts to operate, the screw rod 406 starts to operate, the fixing clamping block 409 is driven to clamp the glass fiber reinforced plastic, vibration of the glass fiber reinforced plastic at a shifted position during compression molding is prevented, compression molding is wasted, the working efficiency of equipment is reduced, when the equipment angle is not matched with the glass fiber reinforced plastic, the angle adjusting motor 419 starts to operate, the rotating column 416 is driven to adjust the angle of the equipment, after the glass fiber reinforced plastic is fixed, the hydraulic device 308 starts to operate, the glass fiber reinforced plastic is started to perform compression molding operation, and after the compression molding is completed, the hydraulic device 308 is reset;
In a specific application scene, the fixing component 4 is suitable for a step of pressing the glass fiber reinforced plastic, namely, the fixing component 4 can freely change the position of the fixing device through the matching of the electric telescopic rod 415 and the pushing block 422, can freely adjust the position of the glass fiber reinforced plastic, increases the functionality of the device, can change the friction plate 410 through the matching of the friction plate 410, the fixing clamp block 409 and the fixing nut 412, can change the glass fiber reinforced plastic according to different glass fiber reinforced plastics, increases the practicability of the device, can fix the glass fiber reinforced plastic through the matching of the fixing clamp block 409, the screw rod 406 and the adjusting motor 405, prevents the position of the glass fiber reinforced plastic needing to be processed from deviating in the working process of the device, leads to inaccurate pressing position, leads to material waste, simultaneously reduces the working load of workers through automatic clamping, increases the stability of the device, can fix the glass fiber reinforced plastic with different sizes through the matching of the electric adjusting rod 418 and the Lian An head, can freely adjust the length of the fixing device, and is convenient to fix the glass fiber reinforced plastic, and improves the functionality and the processing efficiency of the device;
It should be noted that, in the process of using the device, the angle of the device may not be in line with the glass fiber reinforced plastic, and the glass fiber reinforced plastic cannot be fixed, so that the processing efficiency of the device is affected, and the angle of the device can be adjusted freely through the cooperation of the machine fixing frame 420 and the rotating column 416, so that the glass fiber reinforced plastic is fixed conveniently, and the stability of the device is increased.
Referring to fig. 3, 4 and 5, the adjusting assembly 3 includes two connecting blocks 301, bottom walls of the two connecting blocks 301 are respectively and fixedly connected with tops of the two fixing plates 5, tops of the two connecting blocks 301 are fixedly connected with electric push rods 302, output ends of the two electric push rods 302 are fixedly connected with fixing columns 303, outer walls of the two fixing columns 303 are fixedly connected with height adjusting plates 304, bottoms of the two height adjusting plates 304 are connected with the same pressing plate 307, tops of the pressing plates 307 are fixedly connected with protection sleeve columns 305, inner walls of the protection sleeve columns 305 are fixedly connected with hydraulic devices 308, and output ends of the hydraulic devices 308 are fixedly connected with fixing templates 311; four linkage holes are formed in the top of the pressing plate 307, the inner walls of the four linkage holes are connected with auxiliary columns 306 through threads, one ends of the four auxiliary columns 306 are fixedly connected with the bottom of the fixed template 311, mounting holes are formed in the bottom of the fixed template 311, a die-changing screw block 309 is fixedly connected to the top of each mounting hole, and a pressing module 310 is fixedly connected to the bottom of each die-changing screw block 309;
Specifically, when the device is used, the electric push rod 302 starts to operate, after the pressing and fixing plate 307 is adjusted to a proper position, the matched die is mounted on the hydraulic device 308 through threads, so that the convenience of the device is improved, the die can be quickly replaced according to different requirements, the functionality of the device is improved, and after the pressing module 310 is replaced, the pressing and fixing plate 307 is adjusted to a proper position through the electric push rod 302;
In specific application scenario, adjusting part 3 is applicable to the link that carries out the moulding-die to glass steel, and adjusting part 3 can carry out the change of freedom to the embossing mold of equipment through the cooperation of more mould spiral shell piece 309 and solid template 311 promptly, makes things convenient for equipment to carry out the suppression of different styles to glass steel, has improved the functionality of equipment, can adjust the height of equipment through electric putter 302, prevents to deal with the glass steel of different thickness, has strengthened the ability of equipment to deal with different conditions, through being provided with auxiliary column 306, can place hydraulic press 308 and carry out the embossing work, has increased the stability of equipment, has improved the production efficiency of equipment.
Referring to fig. 1,2 and 7, the top of the pressing plate 307 is fixedly connected with the chip removing fan 7, the bottom of the pressing plate 307 is fixedly connected with two output frames 11, the two output frames 11 are respectively located at two sides of the hydraulic device 308, one side outer wall and the top of the chip removing fan 7 are fixedly connected with the mounting heads 9, the inner walls of the two mounting heads 9 are fixedly connected with the air pipes 8, and one ends of the two air pipes 8 are respectively fixedly connected with one side outer wall of the two output frames 11.
Specifically, the electric spring piece plate 16 starts to operate, the spring piece plate 10 is jacked up, the glass fiber reinforced plastic finished by the pressing mold is jacked up to be convenient to collect, the anti-dandruff fan 7 starts to operate, a large amount of wind is blown out from the mouth of the output frame 11, fragments generated by film pressing on the mounting plate 2 are cleaned into the dust collecting bin 12 through the dust inlet 13 to be collected, the influence of the fragments on the pressing of the glass fiber reinforced plastic by the equipment is avoided, the production quality of the equipment is ensured, and the functionality of the equipment is improved;
In specific application scenario, through being provided with anti-chip fan 7, output frame 11 and collection bits storehouse 12, can clear up the piece that the in-process of pressing glass steel produced on the mounting board 2, avoid the piece to pile up on the mounting board 2, influence equipment to the glass steel suppression, guaranteed the production quality of equipment, through the cooperation of popping up board 10 and electronic bullet piece board 16, can be after the glass steel suppression is accomplished, it is ejecting to push up the glass steel that presses, conveniently collect, alleviate staff's collection burden, the functionality of equipment has been improved.
A method for producing and shaping glass fiber reinforced plastic, which uses a shaping mould for producing glass fiber reinforced plastic as described above, comprising the following steps:
step one, the equipment is adjusted to a proper position through the electric push rod 302, a required die is installed on the hydraulic device 308 through a die-changing screw block 309, when the equipment is adjusted to a proper position (when the equipment is used, the electric push rod 302 starts to operate, the die-fixing plate 307 is adjusted to a proper position, and then the matched die is installed on the hydraulic device 308 through threads, so that the convenience of the equipment is improved, the die can be quickly replaced according to different requirements, the functionality of the equipment is improved, and after the die-fixing block 310 is replaced, the die-fixing plate 307 is adjusted to a proper position through the electric push rod 302);
Step two, the equipment which is required to be processed is fixed by the adjusting component 3 to start to operate, the electric spring piece plate 16 is sprung up after the pressing die is completed, the glass fiber reinforced plastic after the pressing die is completed is jacked up, the scrap removing fan 7 starts to clean the mounting plate 2 (after the pressing die 307 is returned to a proper position, a proper fixing screw 411 is arranged on the fixing clamping block 409, the fixing screw 411 is fixed by a fixing nut 412, a proper fixing screw 411 is arranged on the fixing clamping block 409, the fixing screw 411 is fixed by the fixing nut 412, after adjustment is completed, the glass fiber reinforced plastic which is required to be processed is placed on the mounting frame 14, meanwhile, the electric telescopic rod 415 starts to operate, after the pushing block 422 is adjusted to a proper position, the adjusting motor 405 starts to operate, the screw 406 starts to operate, the fixing clamping block 409 is driven to clamp the glass fiber reinforced plastic, the device has the advantages that the vibration offset position of the glass fiber reinforced plastic during compression molding is prevented, the compression molding is wasted, the working efficiency of equipment is reduced, when the angle of the equipment is not matched with that of the glass fiber reinforced plastic, the angle adjusting motor 419 starts to operate, the rotating column 416 is driven to adjust the angle of the equipment, after the glass fiber reinforced plastic is fixed, the hydraulic device 308 starts to operate, the glass fiber reinforced plastic starts to perform compression molding work, after the compression molding is completed, the hydraulic device 308 resets, the electric spring plate 16 starts to operate, the ejection plate 10 is jacked, the glass fiber reinforced plastic after the compression molding is completed is jacked up, the chip removing fan 7 starts to operate, a large amount of wind is blown out from the opening of the output frame 11, and fragments generated by compression molding on the mounting plate 2 are cleaned into the chip collecting bin 12 through the dust inlet 13, so that the influence of the fragments on the equipment on the compression of the glass fiber reinforced plastic is avoided, the production quality of the equipment is guaranteed, and the functionality of the equipment is improved.
The foregoing is only a preferred embodiment of the present invention, but the scope of the present invention is not limited thereto, and any person skilled in the art, who is within the scope of the present invention, should make equivalent substitutions or modifications according to the technical scheme of the present invention and the inventive concept thereof, and should be covered by the scope of the present invention.
Claims (10)
1. The utility model provides a forming die for glass steel production, includes support frame (1), a serial communication port, the top fixedly connected with of support frame (1) links solid board (6), and two top fixedly connected with that links solid board (6) is same to be secured board (2), the top fixedly connected with that is secured board (2) is secured frame (14), and the inner wall of secured frame (14) has been seted up and has been placed the mouth, the round hole has been seted up to the inner wall bottom of placing the mouth, and the inner wall fixedly connected with casting die bottom plate (15) of placing the mouth, the mounting hole is seted up at the top of casting die bottom plate (15), and the bottom fixedly connected with electric bullet piece board (16) of round hole, the output fixedly connected with that electric bullet piece board (16) pops out board (10), and pops out the outer wall of board (10) and the inner wall of mounting hole contacts, two the equal fixedly connected with of top of solid board (6) is secured board (5), and the top of two solid board (5) is provided with fixed subassembly (4), is provided with on two solid board (5) and is provided with regulation subassembly (3), and is fixed in the top (12) of setting up the top of setting up solid board (2) and is connected with the top of setting up (12).
2. The forming die for glass fiber reinforced plastic production according to claim 1, wherein the fixing assembly (4) comprises two movable frames (401), bottoms of the two movable frames (401) are fixedly connected with tops of the two fixing plate pieces (5) respectively, limiting sleeve frames (402) are fixedly connected to two ends of the two movable frames (401), sliding openings are formed in outer walls of opposite sides of the two movable frames (401), and pushing blocks (422) are movably connected to inner walls of the two sliding openings.
3. The forming die for glass fiber reinforced plastic production according to claim 2, wherein one side inner wall of each of the two limiting sleeve frames (402) is fixedly connected with an electric telescopic rod (415), output ends of the two electric telescopic rods (415) are respectively fixedly connected with one side outer wall of each of the two pushing blocks (422), two angle adjusting plates (413) are fixedly connected with one side outer wall of each of the opposite sides of each of the two pushing blocks (422), and one rotating column (416) is movably connected with the inner wall of the opposite side of each of the two angle adjusting plates (413).
4. A forming die for glass fiber reinforced plastic production according to claim 3, wherein the outer walls of one side of two angle modulation plates (413) are fixedly connected with an organic fixing frame (420), the inner walls of the two fixing frames (420) on the same side are fixedly connected with the same angle modulation motor (419), the output shafts of the two angle modulation motors (419) are respectively connected with one ends of two rotating columns (416) through couplings, and the outer walls of the two rotating columns (416) are fixedly connected with an adjusting connecting plate (421).
5. The forming die for glass fiber reinforced plastic production according to claim 4, wherein the outer walls of the opposite sides of the two adjusting and connecting plates (421) are fixedly connected with electric adjusting rods (418), the output ends of the two electric adjusting rods (418) are fixedly connected with connecting An Tou (417), the outer walls of the opposite sides of the two connecting and installing heads (417) are fixedly connected with fixing frames (403), and the interiors of the two fixing frames (403) are provided with adjusting ports (408).
6. The forming die for glass fiber reinforced plastic production according to claim 1, wherein two ends of the two fixing frames (403) are fixedly connected with fixing sleeve frames (414), wherein the tops of the two fixing sleeve frames (414) are fixedly connected with two mounting frames (404), the inner walls of the two mounting frames (404) at the same side are fixedly connected with the same adjusting motor (405), the output shafts of the two adjusting motors (405) are connected with screw rods (406) through couplings, the outer walls of the two screw rods (406) are movably connected with limiting plates (407), the outer walls of the two limiting plates (407) are respectively fixedly connected with the inner walls of the two adjusting ports (408), the outer walls of the two screw rods (406) are movably connected with two fixing clamping blocks (409), the outer walls of the four fixing clamping blocks (409) are respectively contacted with the inner walls of the two adjusting ports (408), the four fixing clamping blocks (409) are respectively positioned above and below the two limiting plates (407), threaded holes are respectively formed in the four fixing clamping blocks (409), the inner walls of the four fixing clamping blocks (409) are respectively movably connected with the outer walls of the four fixing clamping blocks (411), one side of the four fixing clamping blocks (410) are respectively fixedly connected with the outer walls of the four screw rods (410), the outer walls of the four fixing screws (411) are movably connected with fixing nuts (412).
7. The forming die for glass fiber reinforced plastic production according to claim 6, wherein the adjusting component (3) comprises two connecting installation blocks (301), bottom walls of the two connecting installation blocks (301) are respectively and fixedly connected with tops of the two fixing installation plates (5), electric pushing rods (302) are fixedly connected to tops of the two connecting installation blocks (301), fixing posts (303) are fixedly connected to output ends of the two electric pushing rods (302), height adjusting plates (304) are fixedly connected to outer walls of the two fixing posts (303), the same pressing fixing plate (307) is connected to bottoms of the two height adjusting plates (304), protection sleeve posts (305) are fixedly connected to tops of the pressing fixing plates (307), hydraulic devices (308) are fixedly connected to inner walls of the protection sleeve posts (305), and fixing templates (311) are fixedly connected to output ends of the hydraulic devices (308).
8. The forming die for glass fiber reinforced plastic production according to claim 7, wherein four linkage holes are formed in the top of the pressing plate (307), auxiliary columns (306) are movably connected to the inner walls of the four linkage holes, one ends of the four auxiliary columns (306) are fixedly connected with the bottom of the fixed die plate (311), mounting holes are formed in the bottom of the fixed die plate (311), a die-changing screw block (309) is fixedly connected to the top of the mounting holes, and a pressing die block (310) is fixedly connected to the bottom of the die-changing screw block (309).
9. The forming die for glass fiber reinforced plastic production according to claim 8, wherein the top of the pressing plate (307) is fixedly connected with a scrap removing fan (7), the bottom of the pressing plate (307) is fixedly connected with two output frames (11), the two output frames (11) are respectively located at two sides of the hydraulic device (308), one side outer wall and the top of the scrap removing fan (7) are fixedly connected with mounting heads (9), the inner walls of the two mounting heads (9) are fixedly connected with air pipes (8), and one ends of the two air pipes (8) are respectively fixedly connected with one side outer wall of the two output frames (11).
10. A molding method for glass fiber reinforced plastic production using a molding die for glass fiber reinforced plastic production according to claim 9, comprising the steps of:
Step one, adjusting equipment to a proper position through an electric push rod (302), installing a required die on a hydraulic device (308) through a die-changing screw block (309), and adjusting the equipment to a proper position;
Step two, fixing the glass fiber reinforced plastic to be processed through the adjusting component (3) and starting to operate, after the pressing die is completed, bouncing up the electric bouncing piece plate (16), jacking up the glass fiber reinforced plastic after the pressing die is completed, and cleaning the fixing plate (2) by the scrap removing fan (7).
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202411407293.5A CN118906321A (en) | 2024-10-10 | 2024-10-10 | Forming die and method for glass fiber reinforced plastic production |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202411407293.5A CN118906321A (en) | 2024-10-10 | 2024-10-10 | Forming die and method for glass fiber reinforced plastic production |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN118906321A true CN118906321A (en) | 2024-11-08 |
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| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202411407293.5A Pending CN118906321A (en) | 2024-10-10 | 2024-10-10 | Forming die and method for glass fiber reinforced plastic production |
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| CN (1) | CN118906321A (en) |
Citations (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN213320530U (en) * | 2020-08-24 | 2021-06-01 | 江苏归藏环保科技有限公司 | Stamping die is used in glass steel production |
| CN213499047U (en) * | 2020-10-03 | 2021-06-22 | 上高县龙光实业有限责任公司 | Aluminum alloy door and window processingequipment |
| CN214022853U (en) * | 2020-12-04 | 2021-08-24 | 揭阳市东拓家居实业有限公司 | Stainless steel product compression molding equipment |
| CN216179888U (en) * | 2021-10-21 | 2022-04-05 | 衡水嘉润玻璃钢有限公司 | Positioning and clamping device for processing and forming glass fiber reinforced plastic |
| CN221696664U (en) * | 2024-01-29 | 2024-09-13 | 厦门晶晟能源科技有限公司 | A fixture for processing aluminum profiles |
-
2024
- 2024-10-10 CN CN202411407293.5A patent/CN118906321A/en active Pending
Patent Citations (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN213320530U (en) * | 2020-08-24 | 2021-06-01 | 江苏归藏环保科技有限公司 | Stamping die is used in glass steel production |
| CN213499047U (en) * | 2020-10-03 | 2021-06-22 | 上高县龙光实业有限责任公司 | Aluminum alloy door and window processingequipment |
| CN214022853U (en) * | 2020-12-04 | 2021-08-24 | 揭阳市东拓家居实业有限公司 | Stainless steel product compression molding equipment |
| CN216179888U (en) * | 2021-10-21 | 2022-04-05 | 衡水嘉润玻璃钢有限公司 | Positioning and clamping device for processing and forming glass fiber reinforced plastic |
| CN221696664U (en) * | 2024-01-29 | 2024-09-13 | 厦门晶晟能源科技有限公司 | A fixture for processing aluminum profiles |
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Application publication date: 20241108 |