A work platform for producing glass fiber reinforced plastic products and a method of using the same
By designing an automated work platform and employing mold, mixing, yarn drawing, and rolling mechanisms, the problems of low production efficiency and surface quality of fiberglass products have been solved, achieving efficient automated production of fiberglass products.
Patent Information
- Application Number
- CN202310816896.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-07-05
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2043-07-05
AI Technical Summary
In the existing technology, the production efficiency of fiberglass products is low, and traditional work platforms are difficult to maintain flatness and surface quality. After the resin is cured, it is difficult to remove, which affects the production efficiency.
An automated working platform was designed, which includes a mold, a mixing mechanism, a yarn-drawing mechanism, and a rolling mechanism. Through the cooperation of gears and gear plates driven by a motor, the raw materials are mixed, drawn, and compacted, and then cured by heating rods.
It has enabled automated production of fiberglass products, improved production efficiency, ensured the flatness and surface quality of the products, and simplified the maintenance and cleaning of the platform.
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Figure CN116834324B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of glass steel product processing, and particularly relates to a working platform for producing glass steel products and a use method thereof. BACKGROUND
[0002] The glass steel product is also called a glass steel composite product, is a composite product formed by filling a high polymer material (such as resin, polyimide, polyether, epoxy resin, etc.) into a glass fiber reinforced material (i.e. glass fiber cloth) as a main reinforcing component through composite molding and curing, and has the characteristics of light weight, high strength, corrosion resistance, etc. and is widely used in the fields of ships, chemical industry, construction, etc. such as ship bodies, bridges, tanks, pipelines, storage tanks, corrosion-resistant equipment, etc. At present, glass steel products are mostly produced by manual production, and the production efficiency is difficult to improve.
[0003] In the prior art, an application with the publication number CN109774198A discloses a working platform for producing glass steel products. In the hand lay-up production of glass steel products, many products have large planes, and these planes are produced on a working platform. The flatness and local defects of the platform will affect the flatness and surface quality of the glass steel product. In the hand lay-up production process, resin is continuously spilled and brushed on the platform, and it is difficult to remove the resin after curing. The resin is stained on the surface of the entire platform and is uneven, and a layer of uneven object is formed. The flatness of the entire platform is greatly deteriorated. Therefore, the ordinary concrete platform (surface) is not suitable for this (i.e. the same is true for the steel platform), the application is based on the concrete platform, and a layer of rubber plate is bonded to the surface of the platform. The resin spilled on the rubber plate can be easily removed. The flatness requirement of the platform can be maintained for a long time by timely removing the solidified resin. The rubber plate is easy to update, and the working platform is easy to renovate. However, the production efficiency of the glass steel product is still not solved by the application. SUMMARY
[0004] The present application solves the technical problems of overcoming the shortcomings of the prior art and providing a working platform for producing glass steel products, which is automatically processed and easy to operate.
[0005] The technical scheme adopted to solve the above technical problems is that a mold is fixedly installed on a base, support seats are fixedly installed at both ends of the base, a support rod is fixedly installed on the support seat, a first yarn pulling mechanism is fixedly installed on the support rod, a stirring mechanism is fixedly installed at one end of the support rod, the stirring mechanism is fixedly connected with the support seat and one end of the base, a rolling mechanism is fixedly installed at the second end of the base, the rolling mechanism is in sliding contact with the mold, a sliding groove seat is fixedly installed on one side of the base, and a second yarn pulling mechanism is slidingly installed at one end of the sliding groove seat.
[0006] Further, one end of the base is fixedly installed with a first support plate, one end of the support plate is fixedly connected with the support base, a feed barrel is fixedly installed on the first support plate, one end of the support rod is fixedly connected with a second support plate, a first motor is fixedly installed on one end of the second support plate, a drive shaft of the first motor is fixedly connected with a first gear, a first fixed column is fixedly installed on one side of the first gear, one end of the first fixed column is rotatably connected with a first swing rod, a second end of the first swing rod is rotatably connected with a sliding groove column, a first stirring rod is fixedly installed on one end of the first swing rod, the first gear is engaged with a second gear, the second gear is rotatably installed on a support block, the support block is fixedly installed on a second end of the second support plate, a second fixed column is fixedly installed on one side of the second gear, one end of the second fixed column is rotatably connected with a second swing rod, a second end of the second swing rod is rotatably connected with the sliding groove column, the sliding groove column is slidably connected with a sliding groove block, the sliding groove block is fixedly installed on the support rod, and a discharge port is fixedly installed on one side of the feed barrel close to the base.
[0007] Further, a second motor is fixedly installed on the middle part of the support rod, a drive shaft of the second motor is fixedly connected with a third gear, the third gear is engaged with a gear plate, the gear plate is slidably connected with a sliding groove plate, first sliding rods are fixedly installed at two ends of the sliding groove plate respectively, the first sliding rods are slidably connected with two ends of the support rod respectively, and first fixed plates are fixedly installed at two ends of the gear plate respectively.
[0008] Further, a first winding drum is rotatably installed on the middle part of the first fixed plate, a second end of the first fixed plate is rotatably connected with one end of a first wire passing plate, a first wire shifting column is fixedly installed on the second end of the first wire passing plate, a first connecting plate is fixedly installed on the second end of the first wire passing plate close to the first wire shifting column, a first roller is rotatably installed on a second end of the first connecting plate, the first roller is in sliding contact with the first wire shifting column, a first baffle is fixedly installed on the second end of the first fixed plate close to the first wire passing plate, one end of the first baffle is fixedly connected with the first spring, and a second end of the first spring is fixedly connected with one end of the first wire passing plate.
[0009] Further, the third motor is slidably installed in the sliding groove in the middle of the sliding groove seat, the driving shaft of the third motor is fixedly connected with the rotating shaft, the waist-shaped lever is fixedly installed on the rotating shaft, the waist-shaped lever is in contact with the rack plate, the waist-shaped lever is fixedly connected with the fourth gear, the fourth gear is engaged with the fifth gear, the fifth gear is rotatably connected with the sliding column, one end of the sliding column is fixedly installed on the sliding block, the sliding block is slidably connected with the sliding groove at one end of the sliding groove seat, the sliding column is rotatably connected with the connecting plate, the middle of the connecting plate is rotatably connected with the rotating shaft, the second end of the rotating shaft is fixedly connected with the rotating disc, one side of the rotating disc is fixedly installed with the third fixed column, the third fixed column is slidably connected with the sliding groove in the rotating plate, one end face of the rotating plate is slidably connected with the rotating disc, one end of the rotating plate is fixedly installed with the second sliding rod, the second end of the rotating plate is fixedly installed with the third sliding rod, the second sliding rod and the third sliding rod are slidably connected with the connecting plate respectively, and the second end of the third sliding rod is fixedly installed with the second fixed plate.
[0010] Further, a plurality of second wire passing plates are fixedly installed on the second fixed plate, a second wire pulling column is fixedly installed at the second end of the second wire passing plate, a second connecting plate is fixedly installed at the second end of the second wire passing plate close to the second wire pulling column, a second roller is rotatably installed at the second end of the second connecting plate, the second roller is in sliding contact with the second wire pulling column, a second winding drum is rotatably installed in the middle of the second fixed plate, second baffles are fixedly installed at both ends of the second fixed plate close to the second wire passing plates, the inner side of the second baffle is fixedly connected with one end of the second spring, and the second end of the second spring is fixedly connected with one end of the second wire passing plate.
[0011] Further, rotating columns are fixedly installed at both ends of the third motor, a sliding plate is rotatably installed on the rotating column, the sliding plate is slidably installed in the middle sliding groove of the sliding groove seat, the sliding plate is in sliding contact with the trapezoidal block, the trapezoidal block is fixedly installed on one side of the middle sliding groove of the sliding groove seat, and the second end face of the rotating plate is fixedly installed with an enclosing plate.
[0012] Further, one end of the base is fixedly provided with a fourth motor, a driving shaft of the fourth motor is fixedly connected with one end of a lead screw, a first supporting base is rotatably arranged at one end of the lead screw, a second supporting base is rotatably arranged at the second end of the lead screw, the first supporting base is fixedly arranged on one end of the base, the second supporting base is fixedly arranged on the first bottom plate, the first bottom plate is fixedly arranged on the second end of the base, the second end of the lead screw is threadedly connected with a sliding seat, the sliding seat is slidably connected with both ends of the roller, the sliding seat is in sliding contact with the base, a second bottom plate is fixedly arranged on one side of the base close to the sliding groove seat, the second bottom plate is in sliding contact with the sliding seat, the sliding seat on the side close to the sliding groove seat is in sliding contact with the sliding groove seat, a pressing ring is fixedly arranged on the roller, the pressing ring is in sliding contact with the sliding groove of the mold, and a heating rod is fixedly arranged in the base.
[0013] A second object of the present application is to provide a use method of the working platform for producing glass steel products, comprising the following steps: step one: manually pouring glass steel raw materials into a bucket, starting the first motor, rotating the first gear and the second gear, rotating one end of the first swing rod and the second swing rod, rotating the second end of the first swing rod and the second swing rod on the sliding groove column, sliding the sliding groove column on the sliding groove block, swinging the first swing rod and the second swing rod to drive the first stirring rod and the second stirring rod to make circular motion, stirring and mixing the glass steel raw materials in the bucket, and flowing the mixed glass steel raw materials into the groove in the mold through the stirring mechanism base.
[0014] Step two: after the glass steel raw materials flow into the mold, starting the second motor to drive the third gear to rotate, the third gear drives the gear plate to make circular motion, the gear plate slides in the sliding groove on the inner side of the sliding groove plate, drives the sliding groove plate to move back and forth, the sliding groove plate slides back and forth in the sliding groove of the supporting rod through the first sliding rod, the both ends of the gear plate are fixedly provided with the first fixed plate, the first winding drum is wound with alkaline yarn, one end of the yarn passes through the circular hole in the first fixed plate, the first wire passing plate and the first wire pulling column, and extends from the end of the first wire pulling column, when the first fixed plate makes circular motion with the gear plate, the yarn at the end of the first wire pulling column is wound into the groove in the mold and mixed with the glass steel raw materials, the first roller rolls to help the yarn in the first wire pulling column to slide out, after the yarn is pulled, the yarn is manually cut off.
[0015] Step three: after the first yarn pulling mechanism completes the yarn pulling, starting the third motor to drive the rotating disc to rotate, the rotating plate on the rotating disc slides under the third fixed column to make reciprocating motion, drives the second fixed plate to make reciprocating motion, the waist-shaped pulling rod is in time contact with the rack plate to drive the second yarn pulling mechanism to slide on the sliding groove seat, the sliding block and the sliding plate slide in the sliding groove in the sliding groove seat, so that the yarn pulling structure on the second fixed plate pulls the yarn in another axial direction of the mold.
[0016] Step four: when the second yarn pulling mechanism is reset after completing yarn pulling, the sliding plate slides onto the trapezoidal block, so that the rotating circular plate moves up, the second wire pulling column leaves the groove in the mold, and the second yarn pulling mechanism continues to move until it leaves the mold and enters the base, at which time the yarn is manually cut off.
[0017] Step five: start the fourth motor, drive the roller into the mold from the second end platform of the base through the lead screw, the compression ring on the roller is in sliding contact with the sliding groove in the mold, the glass fiber reinforced plastic raw material yarn in the mold is compacted, and after compaction, the heating rod is started to heat and solidify the mold, and after cooling, the glass fiber reinforced plastic product can be manually taken out.
[0018] The beneficial effects of the present application are as follows: (1) manually put the raw materials into the stirring barrel, the device automatically stirs the raw materials, and then flows into the device platform mold groove; (2) the device automatically pulls the yarn in the mold groove, and through reciprocating rotation, the alkali-free yarn is wound into the raw materials in the mold one layer after another, improving the strength of the glass steel; (3) the roller reciprocatingly rotates to compact the raw materials in the mold, ensuring the molding of the glass steel product, and then the heating rod heats the mold, so that the glass steel product is solidified and formed, and after cooling, it can be manually taken out. BRIEF DESCRIPTION OF DRAWINGS
[0019] Figure 1 is a structural schematic view of an embodiment of the working platform for producing glass steel products.
[0020] Figure 2 is a partial structural schematic view of the stirring mechanism.
[0021] Figure 3 is a structural schematic view of the first yarn pulling mechanism.
[0022] Figure 4 is a partial structural schematic view of the first yarn pulling mechanism.
[0023] Figure 5 is a structural schematic view of the second yarn pulling mechanism.
[0024] Figure 6 is a partial structural schematic view of the second yarn pulling mechanism.
[0025] Figure 7 is a sectional view of a part of the second yarn pulling mechanism.
[0026] Figure 8 is a structural schematic view of the rolling mechanism.
[0027] Figure 9 is a sectional view of a part of the rolling mechanism.
[0028] Fig. 1 is a perspective view of the base; Fig. 2 is a perspective view of the mold; Fig. 3 is a perspective view of the support seat; Fig. 4 is a perspective view of the support rod; Fig. 5 is a perspective view of the sliding groove seat; Fig. 6 is a perspective view of the stirring mechanism; Fig. 7 is a perspective view of the first yarn pulling mechanism; Fig. 8 is a perspective view of the second yarn pulling mechanism; Fig. 9 is a perspective view of the rolling mechanism; Fig. 601 is a first support plate; Fig. 602 is a material bucket; Fig. 603 is a second support plate; Fig. 604 is a first motor; Fig. 605 is a first gear; Fig. 606 is a first fixed column; Fig. 607 is a first swing rod; Fig. 608 is a first stirring rod; Fig. 609 is a second gear; Fig. 610 is a support block; Fig. 611 is a second fixed column; Fig. 612 is a second swing rod; Fig. 613 is a second stirring rod; Fig. 614 is a sliding groove column; Fig. 615 is a sliding groove block; Fig. 616 is a discharge port; Fig. 701 is a second motor; Fig. 702 is a third gear; Fig. 703 is a gear plate; Fig. 704 is a sliding groove plate; Fig. 705 is a first sliding rod; Fig. 706 is a first fixed plate; Fig. 707 is a first winding drum; Fig. 708 is a first wire passing plate; Fig. 709 is a first wire pulling column; Fig. 710 is a first connecting plate; Fig. 711 is a first roller; Fig. 712 is a first baffle plate; Fig. 713 is a first spring; Fig. 801 is a third motor; Fig. 802 is a rotating shaft; Fig. 803 is a waist-shaped pulling rod; Fig. 804 is a fourth gear; Fig. 805 is a rack plate; Fig. 806 is a fifth gear; Fig. 807 is a sliding block; Fig. 808 is a sliding column; Fig. 809 is a connecting plate; Fig. 810 is a rotating disc; Fig. 811 is a third fixed column; Fig. 812 is a rotating plate; Fig. 813 is a second sliding rod; Fig. 814 is a third sliding rod; Fig. 815 is a second fixed plate; Fig. 816 is a second wire passing plate; Fig. 817 is a second connecting plate; Fig. 818 is a second roller; Fig. 819 is a second winding drum; Fig. 820 is a second baffle plate; Fig. 821 is a second spring; Fig. 822 is a sliding plate; Fig. 823 is a rotating column; Fig. 824 is a trapezoidal block; Fig. 825 is a sealing plate; Fig. 826 is a second wire pulling column; Fig. 901 is a fourth motor; Fig. 902 is a lead screw; Fig. 903 is a first support base; Fig. 904 is a second support base; Fig. 905 is a first bottom plate; Fig. 906 is a sliding seat; Fig. 907 is a roller; Fig. 908 is a compression ring; Fig. 909 is a second bottom plate; Fig. 910 is a heating rod. DETAILED DESCRIPTION
[0029] In order to make the objectives, technical solutions and advantages of the present application clearer, the present application is further described in detail below with reference to the drawings and examples. It should be understood that the specific examples described herein are only used to explain the present application and do not limit the present application.
[0030] As Figures 1-2As shown, the work platform for producing glass steel products of the embodiment is composed of a base 1, a mold 2, a support seat 3, a support rod 4, a sliding groove seat 5, a stirring mechanism 6, a first yarn pulling mechanism 7, a second yarn pulling mechanism 8, and a rolling mechanism 9. The mold 2 is fixedly installed on the base 1. The support seats 3 are fixedly installed at both ends of the base 1. The support rod 4 is fixedly installed on the support seat 3. The first yarn pulling mechanism 7 is fixedly installed on the support rod 4. The stirring mechanism 6 is fixedly installed at one end of the support rod 4. The stirring mechanism 6 is fixedly connected with the support seat 3 and the base 1. The rolling mechanism 9 is fixedly installed at the second end of the base 1. The rolling mechanism 9 is in sliding contact with the mold 2. The sliding groove seat 5 is fixedly installed on one side of the base 1. The second yarn pulling mechanism 8 is slidingly installed at one end of the sliding groove seat 5.
[0031] As shown, Figure 2 The stirring mechanism 6 includes a first support plate 601, a material bucket 602, a second support plate 603, a first motor 604, a first gear 605, a first fixed column 606, a first swing rod 607, a first stirring rod 608, a second gear 609, a support block 610, a second fixed column 611, a second swing rod 612, a second stirring rod 613, a sliding groove column 614, a sliding groove block 615, and a discharge port 616.
[0032] The stirring mechanism 6 comprises: a first support plate 601 fixedly installed at one end of the base 1, the first support plate 601 being fixedly connected to one end of the support base 3; a material bucket 602 fixedly installed on the first support plate 601; one end of the support rod 4 fixedly connected to the second support plate 603; a first motor 604 fixedly installed at one end of the second support plate 603; the drive shaft of the first motor 604 fixedly connected to the first gear 605; a first fixed column 606 fixedly installed on one side of the first gear 605; the first fixed column 606 rotatably connected to one end of the first swing rod 607; the second end of the first swing rod 607 rotatably connected to the slide column 614; a first stirring rod 608 fixedly installed at one end of the first swing rod 607; the first gear 605 meshing with the second gear 609; the second gear 609 rotatably mounted on the support block 610; the support block 610 fixedly mounted on the second end of the second support plate 603; and a second fixed column 611 fixedly installed on one side of the second gear 609. The second fixed column 611 is rotatably connected to one end of the second swing rod 612, and the second end of the second swing rod 612 is rotatably connected to the slide column 614. The slide column 614 is slidably connected to the slide block 615, and the slide block 615 is fixedly installed on the support rod 4. The material barrel 602 is fixedly installed with a discharge port 616 on the side near the base 1. The function of the stirring mechanism 6 is to drive one end of the first swing rod 607 and the second swing rod 612 to perform circular motion through the rotation of the first gear 605 and the second gear 609. The slide column 614 slides on the slide groove of the slide block 615, which counteracts the vertical displacement of the first swing rod 607 and the second swing rod 612 during circular motion, so that the first swing rod 607 and the second gear 609 can drive the first stirring rod 608 and the second stirring rod 613 to perform circular motion in the material barrel 602, and stir and mix the fiberglass raw material poured into the material barrel 602. The stirred and mixed raw material flows into the groove in the mold 2 through the discharge port 616.
[0033] like Figures 3-4 As shown, the first yarn pulling mechanism 7 includes a second motor 701, a third gear 702, a gear plate 703, a slide plate 704, a first slide rod 705, a first fixing plate 706, a first drum 707, a first thread guide plate 708, a first thread-pulling post 709, a first connecting plate 710, a first roller 711, a first baffle 712, and a first spring 713.
[0034] The first yarn pulling mechanism 7 is that the middle part of the supporting rod 4 is fixedly installed with a second motor 701, the driving shaft of the second motor 701 is fixedly connected with a third gear 702, the third gear 702 is engaged with a gear plate 703, the gear plate 703 is slidably connected with a sliding groove plate 704, the two ends of the sliding groove plate 704 are fixedly installed with first sliding rods 705 respectively, the first sliding rods 705 are slidably connected with the two ends of the supporting rod 4 respectively, the two ends of the gear plate 703 are fixedly installed with first fixed plates 706 respectively, the middle part of the first fixed plate 706 is rotatably installed with a first winding drum 707, the second end of the first fixed plate 706 is rotatably connected with one end of a first wire passing plate 708, the second end of the first wire passing plate 708 is fixedly installed with a first wire pulling column 709, the second end of the first wire passing plate 708 is fixedly installed with a first connecting plate 710 near the first wire pulling column 709, the second end of the first connecting plate 710 is rotatably installed with a first roller 711, the first roller 711 is slidably contacted with the first wire pulling column 709, the second end of the first fixed plate 706 is fixedly installed with a first baffle 712 near the first wire passing plate 708, the inner side of the first baffle 712 is fixedly connected with one end of a first spring 713, the second end of the first spring 713 is fixedly connected with one end of the first wire passing plate 708, the function of the first yarn pulling mechanism 7 is that the second motor 701 drives the third gear 702 to rotate, so that the gear plate 703 engaged with the third gear 702 performs a circular motion, the two ends of the sliding groove plate 704 are fixedly connected with the first sliding rods 705, the gear plate 703 slides in the sliding groove in the inner side of the sliding groove plate 704, the circular motion of the gear plate 703 drives the sliding groove plate 704 to move back and forth, so that the first sliding rods 705 slide back and forth on the supporting rod 4, the two ends of the gear plate 703 are fixedly installed with the first fixed plates 706 respectively, the first winding drum 707 in the first fixed plate 706 winds an alkaline yarn, one end of the yarn passes through the through holes in the first fixed plate 706, the first wire passing plate 708 and the first wire pulling column 709 and extends from the end of the first wire pulling column 709, when the first fixed plate 706 performs a circular motion with the gear plate 703, the yarn at the end of the first wire pulling column 709 performs a circular motion and is wound in the groove in the mold 2 and is mixed with the glass steel raw material, the first roller 711 assists the yarn in the first wire pulling column 709 to roll, when the roller 907 rolls, the first wire passing plate 708 is pushed up, when the first wire pulling column 709 is away, the first wire passing plate 708 is reset under the elastic force of the first spring 713.
[0035] As Figures 5-7As shown, the second yarn pulling mechanism 8 comprises a third motor 801, a rotating shaft 802, a waist-shaped lever 803, a fourth gear 804, a rack plate 805, a fifth gear 806, a sliding block 807, a sliding column 808, a connecting plate 809, a rotating disc 810, a third fixed column 811, a rotating plate 812, a second sliding rod 813, a third sliding rod 814, a second fixed plate 815, a second wire passing plate 816, a second connecting plate 817, a second roller 818, a second winding drum 819, a second baffle 820, a second spring 821, a sliding plate 822, a rotating column 823, a trapezoidal block 824, a sealing plate 825, and a second wire pulling column 826.
[0036] The second yarn pulling mechanism 8 is that a third motor 801 is slidingly installed in the sliding groove in the middle of the sliding groove base 5, the driving shaft of the third motor 801 is fixedly connected with a rotating shaft 802, a waist-shaped lever 803 is fixedly installed on the rotating shaft 802, the waist-shaped lever 803 is in contact connection with a rack plate 805, the waist-shaped lever 803 is fixedly connected with a fourth gear 804, the fourth gear 804 is in engagement with a fifth gear 806, the fifth gear 806 is in rotating connection with a sliding column 808, one end of the sliding column 808 is fixedly installed on a sliding block 807, the sliding block 807 is in sliding connection with the sliding groove at one end of the sliding groove base 5, the sliding column 808 is in rotating connection with a connecting plate 809, the middle of the connecting plate 809 is in rotating connection with the rotating shaft 802, the second end of the rotating shaft 802 is fixedly connected with a rotating circular plate 810, one side of the rotating circular plate 810 is fixedly installed with a third fixed column 811, the third fixed column 811 is in sliding connection with the sliding groove in a rotating plate 812, one end surface of the rotating plate 812 is in sliding contact with the rotating circular plate 810, one end of the rotating plate 812 is fixedly installed with a second sliding rod 813, the second end of the rotating plate 812 is fixedly installed with a third sliding rod 814, the second sliding rod 813 and the third sliding rod 814 are respectively in sliding connection with the connecting plate 809, the second end of the third sliding rod 814 is fixedly installed with a second fixed plate 815, a plurality of second wire passing plates 816 are fixedly installed on the second fixed plate 815, the second end of the second wire passing plate 816 is fixedly installed with a second wire pulling column 826, the second end of the second wire passing plate 816 is fixedly installed with a second connecting plate 817 close to the second wire pulling column 826, the second end of the second connecting plate 817 is rotatably installed with a second roller 818, the second roller 818 is in sliding contact with the second wire pulling column 826, the middle of the second fixed plate 815 is rotatably installed with a second winding drum 819, the two ends of the second fixed plate 815 are fixedly installed with second baffles 820 close to the second wire passing plate 816, the inner side of the second baffle 820 is fixedly connected with one end of a second spring 821, the second end of the second spring 821 is fixedly connected with one end of the second wire passing plate 816, the two ends of the third motor 801 are fixedly installed with rotating columns 823, the rotating columns 823 are rotatably installed with sliding plates 822, the sliding plates 822 are slidingly installed in the middle sliding groove of the sliding groove base 5, the sliding plates 822 are in sliding contact with trapezoidal blocks 824, the trapezoidal blocks 824 are fixedly installed on one side of the middle sliding groove of the sliding groove base 5, the second end surface of the rotating plate 812 is fixedly installed with an enclosing plate 825.
[0037] The function of the second yarn-pulling mechanism 8 is as follows: the third motor 801 drives the rotating shaft 802 to rotate, which in turn drives the rotating circular plate 810 to rotate. The third fixed column 811 on the rotating circular plate 810 slides in the inner groove of the rotating plate 812, causing the rotating plate 812 to reciprocate. The second slide rod 813 and the third slide rod 814, which are fixedly connected to the rotating plate 812, slide on the connecting plate 809, causing the second fixed plate 815 to reciprocate. When the rotating shaft 802 rotates, it will drive the waist-shaped lever 803 to rotate. The waist-shaped lever 803 contacts the rack plate 805, causing the rotating circular plate 810 to move on the slide seat 5. The slide plate 822 and the slider 807 slide in the slide groove in the slide seat 5. The slide groove of the rotating plate 812 has a U-shaped groove, which allows the rotating plate 812 to move in one direction. Afterwards, it will stop moving for a period of time and then move in the opposite direction. At this time, the waist-shaped lever 803 will drive the rotating circular plate 810 to move, so that the second yarn pulling mechanism 8 will perform a complete circular motion. The alkaline yarn is wound on the second spool 819. The yarn passes through the through holes of the second thread guide plate 816 and the second thread guide post 826 and extends out from the end of the second thread guide post 826. When the second fixed plate 815 performs circular motion, the yarn at the end of the second thread guide post 826 is wrapped in the groove in the mold 2. After the second yarn pulling mechanism 8 finishes pulling the yarn, the rotating circular plate 810 is reset, the slide plate 822 slides onto the trapezoidal block 824, and drives the rotating circular plate 810 to move upward, so that the second thread guide post 826 moves upward away from the groove in the mold 2 and moves to the platform of the base 1 to avoid interference with the first yarn pulling mechanism 7.
[0038] like Figures 8-9 As shown, the rolling mechanism 9 includes a fourth motor 901, a lead screw 902, a first support base 903, a second support base 904, a first base plate 905, a sliding seat 906, a roller 907, a pressure ring 908, a second base plate 909, and a heating rod 910.
[0039] The rolling mechanism 9 is that one end of the base 1 is fixedly installed with a fourth motor 901, the driving shaft of the fourth motor 901 is fixedly connected with one end of a lead screw 902, the first supporting base 903 is rotatably installed at one end of the lead screw 902, the second supporting base 904 is rotatably installed at the second end of the lead screw 902, the first supporting base 903 is fixedly installed at one end of the base 1, the second supporting base 904 is fixedly installed on the first bottom plate 905, the first bottom plate 905 is fixedly installed at the second end of the base 1, the second end of the lead screw 902 is threadedly connected with a sliding seat 906, the sliding seat 906 is slidably connected with both ends of a roller 907, the sliding seat 906 is in sliding contact with the base 1, the second bottom plate 909 is fixedly installed on the side of the base 1 close to the sliding groove seat 5, the second bottom plate 909 is in sliding contact with the sliding seat 906, the sliding seat 906 on the side of the sliding groove seat 5 is in sliding contact with the sliding groove seat 5, the pressure ring 908 is fixedly installed on the roller 907, the pressure ring 908 is in sliding contact with the sliding groove of the mold 2, the heating rod 910 is fixedly installed in the base 1, the fourth motor 901 drives the roller 907 to move through the lead screw 902, the roller 907 rolls on the mold 2, the pressure ring 908 on the roller 907 compacts the glass steel raw material and the yarn in the groove of the mold 2, the sliding seat 906 has a waist-shaped groove, which ensures that the roller 907 can be pressed into the groove of the mold 2 after leaving the base 1, after compaction, the heating rod 910 heats the mold 2 to solidify the raw material in the mold 2.
[0040] The method for producing glass steel products by using the above working platform for producing glass steel products comprises the following steps: step one: manually pouring the glass steel raw material into the material bucket 602, starting the first motor 604, rotating the first gear 605 and the second gear 609, rotating one end of the first swing rod 607 and the second swing rod 612, rotating the second end of the first swing rod 607 and the second swing rod 612 to be connected to the sliding groove column 614, sliding the sliding groove column 614 on the sliding groove of the sliding groove block 615, swinging the first swing rod 607 and the second swing rod 612 to make the first stirring rod 608 and the second stirring rod 613 perform circular motion, stirring and mixing the glass steel raw material in the material bucket 602, and flowing the mixed glass steel raw material into the groove of the mold 2 through the discharge port 616.
[0041] Step two: after the glass steel raw materials flow into the mold 2, the second motor 701 is started, the third gear 702 is driven to rotate, the third gear 702 drives the gear plate 703 to make circular motion, the gear plate 703 slides in the sliding groove on the inner side of the sliding groove plate 704, the sliding groove plate 704 moves back and forth, the sliding groove plate 704 slides back and forth in the sliding groove of the supporting rod 4 through the first sliding rod 705, the first fixed plate 706 is fixedly installed at both ends of the gear plate 703, the alkaline yarn is wound on the first winding drum 707, one end of the yarn passes through the first fixed plate 706, the first wire passing plate 708, the circular hole in the first wire pulling column 709, and extends from the end of the first wire pulling column 709, when the first fixed plate 706 circularly moves with the gear plate 703, the yarn at the end of the first wire pulling column 709 is wound into the groove in the mold 2 and mixed with the glass steel raw materials, the first roller 711 rolls to assist the yarn in the first wire pulling column 709 to slide out, and the yarn is cut off manually after the yarn pulling is completed.
[0042] Step three: after the yarn pulling of the first yarn pulling mechanism 7 is completed, the third motor 801 is started, the rotating disc 810 is driven to rotate, the rotating plate 812 on the rotating disc 810 reciprocates under the sliding of the third fixed column 811, the second fixed plate 815 reciprocates, the waist-shaped wire pulling rod 803 is in time contact with the rack plate 805, the second yarn pulling mechanism 8 slides on the sliding groove seat 5, the sliding block 807 and the sliding plate 822 slide in the sliding groove in the sliding groove seat 5, so that the yarn pulling structure on the second fixed plate 815 pulls the yarn of the mold 2 in another axial direction.
[0043] Step four: when the second yarn pulling mechanism 8 is reset after the yarn pulling is completed, the sliding plate 822 slides to the trapezoidal block 824, so that the rotating disc 810 moves upwards, the second wire pulling column 826 moves away from the groove in the mold 2, the second yarn pulling mechanism 8 continues to move until it moves away from the mold 2 and enters the base 1, and the yarn is cut off manually at this time.
[0044] Step five: the fourth motor 901 is started, the roller 907 is driven to roll into the mold 2 from the second end platform of the base 1 through the lead screw 902, the pressing ring 908 on the roller 907 is in sliding contact with the sliding groove in the mold 2, the glass steel raw material yarn in the mold 2 is compacted, the compacted yarn is reset, the heating rod 910 is started, the mold 2 is heated and solidified, and the glass steel product can be taken out manually after cooling.
[0045] The above only describes the preferred embodiment of the application, and is not used to limit the protection scope of the application.
Claims
1. A work platform for producing glass fiber reinforced plastic products, comprising a base (1), characterized in that: The base (1) is fixedly installed with a mold (2), both ends of the base (1) are fixedly installed with a support seat (3), the support seat (3) is fixedly installed with a support rod (4), the support rod (4) is fixedly installed with a first yarn pulling mechanism (7), one end of the support rod (4) is fixedly installed with a stirring mechanism (6), the stirring mechanism (6) is fixedly connected with the support seat (3), one end of the base (1) is fixedly connected with the stirring mechanism (6), the second end of the base (1) is fixedly installed with a rolling mechanism (9), the rolling mechanism (9) is in sliding contact with the mold (2), one side of the base (1) is fixedly installed with a sliding groove seat (5), one end of the sliding groove seat (5) is slidably installed with a second yarn pulling mechanism (8); The middle part of the support rod (4) is fixedly installed with a second motor (701), the driving shaft of the second motor (701) is fixedly connected with a third gear (702), the third gear (702) is engaged with a gear plate (703), the gear plate (703) is slidably connected with a sliding groove plate (704), both ends of the sliding groove plate (704) are fixedly installed with a first sliding rod (705) respectively, the first sliding rod (705) is slidably connected with both ends of the support rod (4) respectively, both ends of the gear plate (703) are fixedly installed with a first fixed plate (706) respectively; The middle part of the first fixed plate (706) is rotatably installed with a first winding drum (707), the second end of the first fixed plate (706) is rotatably connected with one end of a first wire passing plate (708), the second end of the first wire passing plate (708) is fixedly installed with a first wire pulling column (709), the second end of the first wire passing plate (708) is fixedly installed with a first connecting plate (710) close to the first wire pulling column (709), the second end of the first connecting plate (710) is rotatably installed with a first roller (711), the first roller (711) is in sliding contact with the first wire pulling column (709), the second end of the first fixed plate (706) is fixedly installed with a first baffle (712) close to the first wire passing plate (708), the inner side of the first baffle (712) is fixedly connected with one end of a first spring (713), the second end of the first spring (713) is fixedly connected with one end of the first wire passing plate (708).
2. A work platform for producing a glass fiber reinforced plastic product according to claim 1, characterized in that: One end of the base (1) is fixedly installed with a first support plate (601), the first support plate (601) is fixedly connected with one end of the support base (3), a feed barrel (602) is fixedly installed on the first support plate (601), one end of the support rod (4) is fixedly connected with a second support plate (603), a first motor (604) is fixedly installed on one end of the second support plate (603), a driving shaft of the first motor (604) is fixedly connected with a first gear (605), a first fixed column (606) is fixedly installed on one side of the first gear (605), the first fixed column (606) is rotatably connected with one end of a first swing rod (607), a second end of the first swing rod (607) is rotatably connected with a sliding groove column (614), a first stirring rod (608) is fixedly installed on one end of the first swing rod (607), the first gear (605) is engaged with a second gear (609), the second gear (609) is rotatably installed on a support block (610), the support block (610) is fixedly installed on the second end of the second support plate (603), a second fixed column (611) is fixedly installed on one side of the second gear (609), the second fixed column (611) is rotatably connected with one end of a second swing rod (612), a second end of the second swing rod (612) is rotatably connected with the sliding groove column (614), the sliding groove column (614) is slidably connected with a sliding groove block (615), the sliding groove block (615) is fixedly installed on the support rod (4), a discharge port (616) is fixedly installed on the side, close to the base (1), of the feed barrel (602).
3. A work platform for producing a glass fiber reinforced plastic product according to claim 2, characterized in that: The third motor (801) is slidably installed in the sliding groove in the middle of the sliding groove seat (5), the driving shaft of the third motor (801) is fixedly connected with the rotating shaft (802), the waist-shaped push rod (803) is fixedly installed on the rotating shaft (802), the waist-shaped push rod (803) is in contact with the rack plate (805), the waist-shaped push rod (803) is fixedly connected with the fourth gear (804), the fourth gear (804) is engaged with the fifth gear (806), the fifth gear (806) is rotatably connected with the sliding column (808), one end of the sliding column (808) is fixedly installed on the sliding block (807), the sliding block (807) is slidably connected with the sliding groove at one end of the sliding groove seat (5), the sliding column (808) is rotatably connected with the connecting plate (809), the middle of the connecting plate (809) is rotatably connected with the rotating shaft (802), the second end of the rotating shaft (802) is fixedly connected with the rotating disc (810), one side of the rotating disc (810) is fixedly installed with the third fixed column (811), the third fixed column (811) is slidably connected with the rotating plate (812), one end face of the rotating plate (812) is in sliding contact with the rotating disc (810), one end of the rotating plate (812) is fixedly installed with the second sliding rod (813), the second end of the rotating plate (812) is fixedly installed with the third sliding rod (814), the second sliding rod (813) and the third sliding rod (814) are slidably connected with the connecting plate (809), and the second end of the third sliding rod (814) is fixedly installed with the second fixed plate (815).
4. A work platform for producing a glass fiber reinforced plastic product according to claim 3, characterized in that: A plurality of second wire passing plates (816) are fixedly installed on the second fixed plate (815), the second end of the second wire passing plate (816) is fixedly installed with the second wire pushing column (826), the second end of the second wire passing plate (816) is fixedly installed with the second connecting plate (817) close to the second wire pushing column (826), the second end of the second connecting plate (817) is rotatably installed with the second roller (818), the second roller (818) is in sliding contact with the second wire pushing column (826), the middle of the second fixed plate (815) is rotatably installed with the second winding drum (819), and the two ends of the second fixed plate (815) are fixedly installed with the second baffle (820) close to the second wire passing plate (816), the inner side of the second baffle (820) is fixedly connected with one end of the second spring (821), and the second end of the second spring (821) is fixedly connected with one end of the second wire passing plate (816).
5. A work platform for producing a glass fiber reinforced plastic product according to claim 4, characterized in that: Rotating columns (823) are fixedly installed at the two ends of the third motor (801), sliding plates (822) are rotatably installed on the rotating columns (823), the sliding plates (822) are slidably installed in the middle sliding groove of the sliding groove seat (5), the sliding plates (822) are in sliding contact with the trapezoidal blocks (824), the trapezoidal blocks (824) are fixedly installed on one side of the middle sliding groove of the sliding groove seat (5), and the second end face of the rotating plate (812) is fixedly installed with an enclosing plate (825).
6. A work platform for producing a glass fiber reinforced plastic product according to claim 5, characterized in that: One end of the base (1) is fixedly installed with the fourth motor (901), a driving shaft of the fourth motor (901) is fixedly connected with one end of the screw rod (902), one end of the screw rod (902) is rotatably installed with the first support base (903), the second end of the screw rod (902) is rotatably installed with the second support base (904), the first support base (903) is fixedly installed on one end of the base (1), the second support base (904) is fixedly installed on the first bottom plate (905), the first bottom plate (905) is fixedly installed on the second end of the base (1), the second end of the screw rod (902) is threadedly connected with the sliding seat (906), the sliding seat (906) is slidably connected with both ends of the roller (907), the sliding seat (906) is in sliding contact with the base (1), one side of the base (1) close to the sliding groove seat (5) is fixedly installed with the second bottom plate (909), the second bottom plate (909) is in sliding contact with the sliding seat (906), the sliding seat (906) close to the sliding groove seat (5) side is in sliding contact with the sliding groove seat (5), the roller (907) is fixedly installed with the compression ring (908), the compression ring (908) is in sliding contact with the sliding groove of the mold (2), the inside of the base (1) is fixedly installed with the heating rod (910).
7. A method for producing a glass steel product using the work platform of claim 6, comprising the following steps, characterized in that: Step one: manually pour the glass steel raw materials into the bucket (602), start the first motor (604), rotate the first gear (605) and the second gear (609), drive the first swing rod (607) and the second swing rod (612) to rotate, the second ends of the first swing rod (607) and the second swing rod (612) are rotatably connected to the sliding groove column (614), the sliding groove column (614) slides on the sliding groove block (615), the first swing rod (607) and the second swing rod (612) swing to drive the first stirring rod (608) and the second stirring rod (613) to move in a circle, the glass steel raw materials in the bucket (602) are stirred and mixed, the mixed glass steel raw materials flow into the groove in the mold (2) through the discharge port (616). Step two: after the glass steel raw materials flow into the mold (2), start the second motor (701), drive the third gear (702) to rotate, the third gear (702) drives the gear plate (703) to do circular motion, the gear plate (703) slides in the sliding slot inside the sliding slot plate (704), drive the sliding slot plate (704) to move back and forth, the sliding slot plate (704) slides back and forth in the sliding slot of the support rod (4) through the first sliding rod (705), the first fixed plate (706) is fixedly installed at both ends of the gear plate (703), the first winding drum (707) is wound with alkaline yarn, one end of the yarn passes through the first fixed plate (706), the first wire passing plate (708), the circular hole in the first wire pulling column (709), and the yarn at the end of the first wire pulling column (709) is stretched out, when the first fixed plate (706) moves circularly with the gear plate (703), the yarn at the end of the first wire pulling column (709) is wound into the groove in the mold (2) and mixed with the glass steel raw materials, the first roller (711) rolls to help the yarn in the first wire pulling column (709) slide out, and the yarn is cut off manually after pulling; Step three: after the first yarn pulling mechanism (7) pulls the yarn, start the third motor (801), the third motor (801) drives the rotating disc (810) to rotate, the rotating plate (812) on the rotating disc (810) reciprocates under the sliding of the third fixed column (811), drives the second fixed plate (815) to reciprocate, and the second yarn pulling mechanism (8) slides on the sliding slot seat (5) through the waist-shaped pulling rod (803) and the rack plate (805) in time contact, the sliding block (807) and the sliding plate (822) slide in the sliding slot in the sliding slot seat (5), so that the yarn pulling structure on the second fixed plate (815) pulls the yarn in another axial direction of the mold (2); Step four: when the second yarn pulling mechanism (8) is reset after pulling the yarn, the sliding plate (822) slides onto the trapezoidal block (824), so that the rotating disc (810) moves upward, and the second wire pulling column (826) moves away from the groove in the mold (2), and the second yarn pulling mechanism (8) continues to move until it moves away from the mold (2) and enters the base (1), at which time the yarn is cut off manually; Step five: start the fourth motor (901), drive the roller (907) to roll into the mold (2) from the second end platform of the base (1) through the lead screw (902), the pressing ring (908) on the roller (907) is in sliding contact with the sliding slot in the mold (2), the glass steel raw material yarn in the mold (2) is compacted, and the roller (907) is reset after compaction, the heating rod (910) is started, the mold (2) is heated and solidified, and the glass steel product can be taken out manually after cooling.
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