An epoxy resin molding device

By designing a combination of a three-axis adjustment module and a follow-up processing component, the problem of uneven material filling during epoxy resin molding was solved, achieving uniform laying and improved flowability of the epoxy resin molding device, thus improving the quality of the finished product.

CN121946750BActive Publication Date: 2026-06-23XIAMEN YIFANDA NEW MATERIAL CO LTD
View PDF 2 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
XIAMEN YIFANDA NEW MATERIAL CO LTD
Filing Date
2026-04-01
Publication Date
2026-06-23

AI Technical Summary

Technical Problem

In existing technologies, the finished product effect during epoxy resin molding is limited by the uneven filling of materials in the lower mold, resulting in poor molding effect.

Method used

An epoxy resin molding device was designed. By combining a three-axis adjustment module, a pressure application component, and a follow-up processing component, the epoxy resin material is evenly laid and vented in the molding lower mold material groove, thereby enhancing its fluidity.

Benefits of technology

It improves the uniformity and flowability of epoxy resin products, thus enhancing the molding effect.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN121946750B_ABST
    Figure CN121946750B_ABST
Patent Text Reader

Abstract

The application discloses an epoxy resin forming device and belongs to the field of forming devices.The epoxy resin forming device comprises a workbench, which is provided with an installation plane; and a three-axis adjusting module, which is detachably arranged on the workbench.The epoxy resin forming device can drive the forming component to move, can uniformly lay the epoxy resin material in the trough of the lower forming mold, enhances the fluidity of the epoxy resin, improves the finished product effect of the epoxy resin, and can drive the inclined plate to swing to drive the exhaust component to perform the exhaust operation, promotes the fluidity of the epoxy resin, and can strengthen the uniformity of the epoxy resin in the trough of the lower forming mold.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This invention belongs to the field of molding apparatus, and specifically relates to an epoxy resin molding apparatus. Background Technology

[0002] In existing technologies, when molding epoxy resin, operators typically fill the lower mold with epoxy resin material and apply pressure to the upper mold to force a hot press platen from the upper mold into the lower mold, thus completing the molding process. However, the final product quality is often limited by the uniformity of the epoxy resin filling in the lower mold. If the epoxy resin material cannot be evenly filled into the mold's groove, the resulting product will often be of poor quality, necessitating improvement.

[0003] The present invention seeks to mitigate or at least alleviate such problems or defects by providing new or otherwise improved molding apparatus. Summary of the Invention

[0004] In view of one or more of the above-mentioned defects or improvement needs of the prior art, the present invention provides an epoxy resin molding apparatus, which has the advantages of being able to uniformly lay epoxy resin material in the material groove of the molding lower mold, thereby enhancing the flowability of epoxy resin and improving the finished product effect of epoxy resin.

[0005] To achieve the above objectives, the present invention provides an epoxy resin molding apparatus, which includes a worktable having a mounting surface.

[0006] The three-axis adjustment module is detachably mounted on the worktable.

[0007] A molding component for molding epoxy resin is detachably mounted on the worktable.

[0008] The pressure-applying component for applying pressure to the molded component is detachably mounted on the three-axis adjustment module. The pressure-applying component can be adjusted up, down, left, right, forward, and backward along the molded component. The pressure-applying component can determine the pressure position twice when applying pressure to the molded component.

[0009] The follow-up processing component is detachably arranged on the pressure applying component. The follow-up processing component can be linked when the pressure applying component determines the pressure position of the molding component for the second time. The follow-up processing component is composed of a toggle section and an exhaust section connected to the toggle section. When the output end of the pressure applying component outputs, it can force the toggle section to act on the molding component, so that the epoxy resin in the molding component is evenly spread in the material groove of the molding component.

[0010] As a further improvement of the present invention, the triaxial adjustment module includes:

[0011] Linear module one, which is detachably mounted on the workbench;

[0012] An extension arm, which is detachably mounted on the workbench;

[0013] Linear module two is detachably mounted on linear module one, and linear module two can slide on the extension arm;

[0014] Linear module three is detachably mounted on the output end of linear module two;

[0015] The upright plate is detachably mounted on the output end of the linear module three.

[0016] As a further improvement of the present invention, the molded component includes:

[0017] The lower forming mold is detachably mounted on the worktable and has a material trough inside.

[0018] A side plate is arranged on the worktable. A side column is slidably arranged in the side plate and is connected to the lower forming mold. A spring is slidably arranged on the side column.

[0019] A molding upper mold is removably disposed on the molding lower mold. The molding upper mold has an insert plate with a side lug at the tail end of the insert plate.

[0020] Side ear 1 is disposed on the lower mold and can be passed through by an insert plate. A spring 2 is provided on side ear 1 and the spring 2 is connected to the side ear 2.

[0021] As a further improvement of the present invention, the pressure-applying member includes:

[0022] Linear module four is detachably mounted on the three-axis adjustment module;

[0023] The substrate is detachably mounted on the output end of the linear module four;

[0024] A pressure plate is slidably disposed on the substrate;

[0025] The drive motor is detachably mounted on the linear module four.

[0026] The frame is detachably mounted on the linear module four;

[0027] A rotating rod is rotatably mounted inside the frame, and a drive wheel is detachably mounted on the rotating rod;

[0028] A toothed plate is slidably mounted on the frame. An adjusting plate is detachably installed on the toothed plate. The adjusting plate has an adjusting groove, and the pressure plate can slide along the adjusting groove.

[0029] As a further improvement of the present invention, the follow-up processing member has a toggle segment including:

[0030] The mounting bracket is detachably mounted on the pressure-applying component. A through rod is rotatably mounted inside the mounting bracket. A gear belt assembly is detachably mounted on the through rod, and the gear belt assembly is linked to the pressure-applying component.

[0031] A detachable roller is mounted on the through rod;

[0032] Side supports, which are detachably mounted on the mounting frame;

[0033] Two guide rods are slidably arranged inside the side support, and a follower plate is detachably installed at one end of the two guide rods;

[0034] Spring three, which is removably mounted on the two guide rods;

[0035] The follow-up processing component has an exhaust section including an internal plate, which is detachably mounted on the mounting frame. A lever is rotatably mounted on the internal plate, and a slant plate is provided at one end of the lever.

[0036] The second lever is rotatably mounted at one end of the first lever;

[0037] An exhaust component is detachably mounted on the built-in plate, and the exhaust component is connected to the lever 2.

[0038] An exhaust pipe is detachably mounted on the exhaust component, with one end of the exhaust pipe extending out of the mounting bracket.

[0039] As a further improvement of the present invention, the roller has a first inclined groove, a first vertical groove, a second inclined groove, and a second vertical groove. The starting end of the first inclined groove is connected to the starting end of the first vertical groove, the ending end of the first vertical groove is connected to the starting end of the second inclined groove, the ending end of the second inclined groove is connected to the starting end of the second vertical groove, and the ending end of the second vertical groove is connected to the ending end of the first inclined groove.

[0040] As a further improvement of the present invention, the follower plate also has a ball bearing, which can roll along the first inclined groove, the first vertical groove, the second inclined groove, and the second vertical groove respectively. In the initial position, the ball bearing is located at the highest point of the first inclined groove. When the roller rotates, it can force the ball bearing to move sequentially from the highest point of the first inclined groove to the lowest point of the first inclined groove. When the ball bearing moves to the lowest point of the first inclined groove, it can be pushed in the opposite direction by the spring to move from the lowest point of the first vertical groove to the highest point of the first vertical groove.

[0041] As a further improvement of the present invention, a limiting block is detachably provided on one end of the two guide rods, and the limiting block is located above the side support.

[0042] As a further improvement of the present invention, an external protrusion is detachably installed on the top of the column wheel, and the external protrusion is in the shape of an upright triangle. An external contact is detachably installed at both ends of the inclined plate, and the external contact is in the shape of an inverted triangle. When the external protrusion touches the external contact, it can drive the inclined plate to swing, thereby driving the exhaust component to perform exhaust operation.

[0043] As a further improvement of the present invention, the exhaust component is composed of a piston cylinder, a piston rod and a piston. The piston rod can slide along the inner wall of the piston cylinder through the piston. When the piston rod slides along the piston cylinder, it can force the piston cylinder to act on the exhaust pipe to exhaust gas.

[0044] In summary, the beneficial effects of the above-described technical solutions conceived by this invention compared with the prior art include:

[0045] 1. The epoxy resin molding apparatus of the present invention, through the arrangement of follow-up processing components, can move the molding components, and can evenly spread the epoxy resin material in the material groove of the molding lower mold, thereby enhancing the fluidity of the epoxy resin and improving the finished product effect of the epoxy resin. At the same time, when the column wheel rotates, when the external protrusion touches the external contact point, it can drive the inclined plate to swing, thereby driving the venting component to perform venting operation. By venting to the side of the molding lower mold, the fluidity of the epoxy resin can be promoted, and the uniformity of the epoxy resin in the material groove of the molding lower mold can be enhanced. When venting to the side of the molding lower mold, the epoxy resin in the molding lower mold has fluidity and can further enhance the moving effect of the two guide rods on the epoxy resin material.

[0046] 2. The epoxy resin molding apparatus of the present invention, by having the externally protruding upright triangle contact the inverted triangle of the external contact point, can accelerate the venting efficiency of the venting component through the hypotenuse of the upright triangle contacting the hypotenuse of the external triangle, thereby improving the venting efficiency of the venting component per unit time, further enhancing the flowability of the epoxy resin, and strengthening the uniformity of the epoxy resin in the molding die groove. Attached Figure Description

[0047] Figure 1 This is a schematic diagram of the overall structure of the epoxy resin molding device of the present invention;

[0048] Figure 2 This is a schematic diagram of the epoxy resin molding apparatus from another perspective.

[0049] Figure 3 This is a schematic diagram of the overall structure of the molded component of the present invention;

[0050] Figure 4 This is a schematic diagram of the structure of the triaxial adjustment module and the pressure application component of the present invention when they are combined.

[0051] Figure 5 This is a schematic diagram of the structure when the pressure-applying component and the follow-up processing component of the present invention are combined.

[0052] Figure 6 From another perspective, this invention Figure 5 A schematic diagram of the structure at that time;

[0053] Figure 7 This is a schematic diagram of the overall structure of the follow-up processing component of the present invention;

[0054] Figure 8 For the present invention Figure 5 Enlarged view of the structure at point A;

[0055] Figure 9 For the present invention Figure 7 Enlarged view of the structure at point B.

[0056] In all the accompanying drawings, the same reference numerals denote the same technical features, specifically: 1. Worktable; 2. Three-axis adjustment module; 21. Linear module one; 22. Extension arm; 23. Linear module two; 24. Linear module three; 25. Vertical plate; 3. Forming component; 31. Lower forming mold; 32. Side plate; 33. Side column; 331. Spring one; 34. Upper forming mold; 35. Hot press plate; 36. Side lug one; 37. Insert plate; 38. Side lug two; 39. Spring two; 4. Pressure applying component; 41. Linear module four; 42. 43. Base plate; 44. Pressure plate; 45. Drive motor; 46. Frame; 47. Rotating rod; 48. Drive wheel; 49. Gear plate; 50. Adjusting plate; 51. Follow-up processing component; 52. Mounting bracket; 53. Through rod; 54. Gear belt assembly; 55. Column wheel; 56. Follow-up plate; 57. Side support; 58. Two guide rods; 59. Spring three; 59. Internal plate; 591. Lever one; 592. Inclined plate; 593. Lever two; 594. Exhaust component; 595. Exhaust pipe; 500. External protrusion; 501. External contact. Detailed Implementation

[0057] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0058] The terminology used herein is for the purpose of describing particular embodiments only and is not intended to limit the invention. The terms “comprising,” “including,” etc., as used herein indicate the presence of the stated features, steps, operations, and / or components, but do not exclude the presence or addition of one or more other features, steps, operations, or components.

[0059] All terms used herein (including technical and scientific terms) have the meanings commonly understood by those skilled in the art, unless otherwise defined. It should be noted that the terms used herein are to be interpreted in a manner consistent with the context of this specification, and not in an idealized or overly rigid way.

[0060] In the embodiments, by Figure 1-9Provided is an epoxy resin molding apparatus, comprising: a worktable 1 having a mounting plane; a three-axis adjustment module 2 detachably mounted on the worktable 1; a molding component 3 for molding epoxy resin, detachably mounted on the worktable 1; and a pressure applying component 4 for applying pressure to the molding component 3, detachably mounted on the three-axis adjustment module 2, the pressure applying component 4 being adjustable up, down, left, right, forward, and backward along the molding component 3, the pressure applying component 4 being able to apply pressure to the molding component 3. When component 3 applies pressure, the pressure position is determined for the second time; the follow-up processing component 5 is detachably arranged on the pressure component 4. The follow-up processing component 5 can be linked when the pressure component 4 determines the pressure position of the molding component 3 for the second time. The follow-up processing component 5 consists of a toggle section and an exhaust section connected to the toggle section. When the output end of the pressure component 4 outputs, it can force the toggle section to act on the molding component 3 so that the epoxy resin in the molding component 3 is evenly spread in the material groove of the molding component 3.

[0061] The overall concept of this invention is based on the following: through the deployment of the follow-up processing component 5, the follow-up processing component 5 can be linked when the pressure application component 4 determines the pressure position of the molding component 3 for the second time. When the output end of the drive motor 44 outputs, it drives the column wheel 54 to rotate, and first lowers and then raises the two guide rods 57, which can move the molding component 3 and evenly spread the epoxy resin material in the material groove of the molding lower mold 31, thereby enhancing the flowability of the epoxy resin and improving the finished product effect of the epoxy resin. At the same time, when the column wheel 54 rotates, when the external protrusion touches the external contact point, it can drive the inclined plate 592 to swing, thereby driving the venting component 594 to perform venting. By venting to the side of the molding lower mold 31, the flowability of the epoxy resin can be promoted, and the uniformity of the epoxy resin in the material groove of the molding lower mold 31 can be enhanced. At the same time, when venting to the side of the molding lower mold 31, the epoxy resin in the molding lower mold 31 has flowability, which can further enhance the moving effect of the two guide rods 57 on the epoxy resin material.

[0062] Next, a more specific structure and construction of the three-axis adjustment module 2 will be given for further explanation. The three-axis adjustment module 2 includes: a linear module 1 21, which is detachably mounted on the worktable 1; an extension arm 22, which is detachably mounted on the worktable 1; a linear module 23, which is detachably mounted on the linear module 1 21 and can slide on the extension arm 22; a linear module 3 24, which is detachably mounted on the output end of the linear module 23; and a vertical plate 25, which is detachably mounted on the output end of the linear module 3 24.

[0063] Next, the overall operating principle and effect of the three-axis adjustment module 2 will be further explained. By activating the linear module 1 21, the pressure component 4 can be driven to move in the front-back direction. By activating the linear module 2 23, the pressure component 4 can be driven to move in the left-right direction. By activating the linear module 3 24, the pressure component 4 can be driven to move in the up-down direction, thereby completing the position adjustment of the pressure component 4 in the front-back, left-right, up-down directions.

[0064] It should also be noted that the structures of linear module 1 21, linear module 23, and linear module 3 24 are all known components in the prior art. They are all composed of an outer shell, a motor connected to the outer shell, a lead screw rotating inside the outer shell, and a ball bearing base sliding on the outer shell. Therefore, no further details will be provided for linear module 1 21, linear module 23, and linear module 3 24.

[0065] Next, a more specific structure and construction of the molding component 3 will be given for further explanation. The molding component 3 includes: a lower molding mold 31, which is detachably arranged on the worktable 1 and has a material groove inside the lower molding mold 31; a side plate 32, which is arranged on the worktable 1 and has a side post 33 slidably arranged inside the side plate 32, and the side post 33 is connected to the lower molding mold 31, and a spring 331 is slidably arranged on the side post 33; a higher molding mold 34, which is removably arranged on the lower molding mold 31 and has an insert plate 37, and a side ear 38 at the tail end of the insert plate 37; a side ear 36, which is arranged on the lower molding mold 31 and can be passed through by the insert plate 37, and a spring 39 is arranged on the side ear 36, and the spring 39 and the side ear 38 are connected to each other.

[0066] Next, the working principle and effect of the molding component 3 will be further explained. When the molding lower mold 31 is moved by the follow-up processing component 5, it can squeeze the molding lower mold 31 to produce displacement and compress the spring 331. When the spring 331 releases its elastic force, it can drive the molding lower mold 31 to rebound, which can evenly spread the epoxy resin material in the material groove of the molding lower mold 31, avoiding the situation where the epoxy resin material cannot be evenly spread in the material groove, resulting in defective products.

[0067] Next, a more specific structure and construction of the pressure-applying component 4 will be given for further explanation. The pressure-applying component 4 includes: a linear module 41, which is detachably mounted on the three-axis adjustment module 2; a base plate 42, which is detachably mounted on the output end of the linear module 41; a pressure plate 43, which is slidably mounted on the base plate 42; a drive motor 44, which is detachably mounted on the linear module 41; and a frame 45, which is detachably mounted on the linear module 41. Group 41 includes: a rotating rod 46 rotatably mounted inside the frame 45, with a drive wheel 47 detachably mounted on the rotating rod 46; a toothed plate 48 slidably mounted on the frame 45, with an adjusting plate 49 detachably mounted on the toothed plate 48, an adjusting groove in the adjusting plate 49, and a pressure plate 43 that can slide along the adjusting groove; the output end of the drive motor 44 is connected to the gear belt group 53; and the rotating rod 46 is connected to the through rod 52.

[0068] Next, the overall operating principle and effect of the pressure-applying component 4 will be further explained. By opening the linear module 41, the position of the pressure plate 43 in the left and right directions can be reconfirmed when applying pressure to the pressure-applying component 4, which can further enhance the stability of the pressure plate 43 when applying pressure to the molding component 3. In addition, by rotating the drive motor 44, the rotating rod 46 can be driven to rotate to drive the toothed plate 48 to extend. After the toothed plate 48 extends, it can move the pressure plate 43 to reconfirm its position in the front and back directions, which can further enhance the stability of the pressure plate 43 when applying pressure to the molding component 3. When the pressure plate 43 falls, it can squeeze the upper molding mold 34 to fall. At the same time, the insert plate 37 extends and drives the spring 39 to stretch. When the hot press plate 35 closes with the lower molding mold 31, it can perform molding operations on the epoxy resin in the lower molding mold 31.

[0069] Next, a more specific structure and construction of the follow-up processing component 5 will be given for further explanation. The follow-up processing component 5 has a toggle section including: a mounting frame 51, which is detachably mounted on the pressure applying component 4, a through rod 52 is rotatably mounted in the mounting frame 51, a gear belt assembly 53 is detachably mounted on the through rod 52, and the gear belt assembly 53 is linked with the pressure applying component 4; a column wheel 54, which is detachably mounted on the through rod 52; a side support 56, which is detachably mounted on the mounting frame 51; and two guide rods 57, which are slidably mounted in the side support 56, with a follower detachably mounted at one end of the two guide rods 57. A movable plate 55; a spring three 58, which is removably arranged on two guide rods 57; the follow-up processing component 5 has an exhaust section including an inner plate 59, which is detachably arranged on a mounting frame 51, a lever one 591 rotatably arranged on the inner plate 59, and an inclined plate 592 at one end of the lever one 591; a lever two 593, which is rotatably arranged at one end of the lever one 591; an exhaust component 594, which is detachably arranged on the inner plate 59, and the exhaust component 594 is connected to the lever two 593; an exhaust pipe 595, which is detachably arranged on the exhaust component 594, and one end of the exhaust pipe 595 extends out of the mounting frame 51.

[0070] Next, the overall operating principle and effect of the follow-up processing component 5 will be further explained. The follow-up processing component 5 can be linked with the pressure application component 4 when it determines the pressure position of the molding component 3. When the output of the drive motor 44 is output, it can drive the column wheel 54 to rotate. After the column wheel 54 rotates, it can force the balls to move sequentially from the highest point of the first inclined groove to the lowest point of the first inclined groove. When the balls move to the lowest point of the first inclined groove, they can be pushed in the opposite direction by the spring 58 to move from the lowest point of the first vertical groove to the highest point of the first vertical groove. It can lower and then raise the two guide rods 57, and can move the molding component 3. It can also move the epoxy resin. The resin material is evenly spread in the material groove of the lower mold 31, which enhances the fluidity of the epoxy resin and improves the finished product effect of the epoxy resin. At the same time, when the column wheel 54 rotates, when the external protrusion touches the external contact point, it can drive the inclined plate 592 to swing, thereby driving the venting component 594 to perform venting. By venting to the side of the lower mold 31, the fluidity of the epoxy resin can be promoted, and the uniformity of the epoxy resin in the material groove of the lower mold 31 can be enhanced. At the same time, when venting to the side of the lower mold 31, the epoxy resin in the lower mold 31 becomes fluid, which can further enhance the pushing effect of the two guide rods 57 on the epoxy resin material.

[0071] In some embodiments, more specifically, the roller 54 has a first inclined groove, a first vertical groove, a second inclined groove, and a second vertical groove. The starting end of the first inclined groove is connected to the starting end of the first vertical groove, the ending end of the first vertical groove is connected to the starting end of the second inclined groove, the ending end of the second inclined groove is connected to the starting end of the second vertical groove, and the ending end of the second vertical groove is connected to the ending end of the first inclined groove.

[0072] In some embodiments, more specifically, in order to further improve the smoothness of the follower plate 55 when it moves within the roller 54, a ball is also provided on the follower plate 55. The ball can roll along the first inclined groove, the first vertical groove, the second inclined groove, and the second vertical groove respectively. In the initial position, the ball is located at the highest point of the first inclined groove. When the roller 54 rotates, it can force the ball to move sequentially from the highest point of the first inclined groove to the lowest point of the first inclined groove. When the ball moves to the lowest point of the first inclined groove, it can be pushed in the opposite direction by the spring 58 to move from the lowest point of the first vertical groove to the highest point of the first vertical groove.

[0073] In some embodiments, in order to prevent the two guide rods 57 from falling off the side support 56, a limiting block is detachably provided on one end of the two guide rods 57, and the limiting block is located above the side support 56.

[0074] In some embodiments, more specifically, an external protrusion 500 is detachably installed on the top of the column wheel 54, and the external protrusion 500 is in the shape of an upright triangle. An external contact 501 is detachably installed at both ends of the inclined plate 592, and the external contact 501 is in the shape of an inverted triangle. When the external protrusion 500 touches the external contact 501, it can drive the inclined plate 592 to swing, thereby driving the exhaust component 594 to perform exhaust operation.

[0075] In some embodiments, more specifically, the positive triangle of the external protrusion 500 contacts the inverted triangle of the external contact 501, and the hypotenuse of the positive triangle contacts the hypotenuse of the external triangle, which can accelerate the venting efficiency of the venting component 594, improve the venting efficiency of the venting component 594 per unit time, further enhance the flowability of epoxy resin, and strengthen the uniformity of epoxy resin in the material groove of the molding lower mold 31.

[0076] In some embodiments, more specifically, the exhaust component 594 is composed of a piston cylinder, a piston rod, and a piston. The piston rod can slide along the inner wall of the piston cylinder via the piston. When the piston rod slides along the piston cylinder, it can force the piston cylinder to act on the exhaust pipe 595 to exhaust gas.

[0077] In some embodiments, more specifically, when lever 2 593 moves the piston rod upward, the piston rod can slide along the inner wall of the piston cylinder through the piston to exhaust gas into the exhaust pipe 595; when lever 2 593 moves the piston rod downward, the piston rod can return to its initial position.

[0078] In summary, the following processing component 5 can move the molding component 3, which can evenly spread the epoxy resin material in the material groove of the molding lower mold 31, enhancing the flowability of the epoxy resin and improving the finished product effect. At the same time, when the column wheel 54 rotates, when the external protrusion touches the external contact point, it can drive the inclined plate 592 to swing, thereby driving the venting component 594 to perform venting. By venting to the side of the molding lower mold 31, the flowability of the epoxy resin can be promoted, and the uniformity of the epoxy resin in the material groove of the molding lower mold 31 can be enhanced. When venting to the side of the molding lower mold 31, the epoxy resin in the molding lower mold 31 becomes more fluid, which can further enhance the moving effect of the two guide rods 57 on the epoxy resin material.

[0079] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. An epoxy resin molding apparatus, characterized in that, It includes: The workbench (1) has a mounting surface; The three-axis adjustment module (2) is detachably mounted on the worktable (1); A molding component (3) for molding epoxy resin is detachably mounted on the workbench (1). The pressure-applying component (4) used to apply pressure to the molding component (3) is detachably arranged on the three-axis adjustment module (2). The pressure-applying component (4) can be adjusted up, down, left, right, front, and back along the molding component (3). The pressure-applying component (4) can determine the pressure position twice when applying pressure to the molding component (3). The follow-up processing component (5) is detachably arranged on the pressure application component (4). The follow-up processing component (5) can be linked when the pressure application component (4) performs secondary pressure application on the molding component (3). The follow-up processing component (5) has a toggle section and an exhaust section connected to the toggle section. When the output end of the pressure application component (4) outputs, it can force the toggle section to act on the molding component (3) so that the epoxy resin in the molding component (3) is evenly laid in the material groove of the molding component (3). The molded component (3) includes: The lower forming mold (31) is detachably arranged on the worktable (1) and has a material groove inside the lower forming mold (31); A side plate (32) is fixedly arranged on the workbench (1). A side column (33) is slidably arranged in the side plate (32), and the side column (33) is connected to the forming lower mold (31). A spring (331) is slidably arranged on the side column (33), and the spring (331) is arranged between the forming lower mold (31) and the side plate (32). The upper molding die (34) is removably disposed on the lower molding die (31). The upper molding die (34) has an insert plate (37) and a side ear (38) at the tail end of the insert plate (37). Side ear 1 (36) is arranged on the lower mold (31) and can be passed through by the insert plate (37). A spring 2 (39) is provided on the side ear 1 (36) and the spring 2 (39) is connected to the side ear 2 (38). The pressure member (4) includes a drive motor (44). When the output end of the drive motor (44) outputs, it drives the column wheel (54) to rotate, and lowers and then raises the two guide rods (57) to move the molding member (3). The follow-up processing component (5) has a toggle segment including: Mounting bracket (51) is detachably mounted on the pressure member (4). A through rod (52) is rotatably mounted inside the mounting bracket (51). A gear belt assembly (53) is detachably mounted on the through rod (52). A column wheel (54) is detachably mounted on the through rod (52); Side bracing (56), which is detachably mounted on the mounting bracket (51); Two guide rods (57) are slidably arranged inside the side support (56), and a follower plate (55) is detachably installed at one end of the two guide rods (57). Spring 3 (58), which is removably mounted on the two guide rods (57); The follow-up processing component (5) has an exhaust section including an inner plate (59) which is detachably arranged on the mounting bracket (51). A lever (591) is rotatably arranged on the inner plate (59), and a slant plate (592) is provided at one end of the lever (591). The second lever (593) is rotatably mounted at one end of the first lever (591); An exhaust component (594) is detachably mounted on the built-in plate (59), and the exhaust component (594) is connected to the lever (593); An exhaust pipe (595) is detachably mounted on the exhaust component (594), and one end of the exhaust pipe (595) extends out of the mounting bracket (51); An external protrusion (500) is detachably installed on the top of the roller (54), and the external protrusion (500) is in the shape of an upright triangle. An external contact (501) is detachably installed at both ends of the inclined plate (592), and the external contact (501) is in the shape of an inverted triangle. When the external protrusion (500) touches the external contact (501), it can drive the inclined plate (592) to swing, so as to drive the exhaust component (594) to perform exhaust operation.

2. The epoxy resin molding apparatus according to claim 1, characterized in that, The three-axis adjustment module (2) includes: Linear module 1 (21) is detachably mounted on the workbench (1); An extension arm (22) is detachably mounted on the workbench (1); Linear module two (23) is detachably mounted on linear module one (21), and linear module two (23) can slide on the extension arm (22); Linear module three (24) is detachably mounted on the output end of linear module two (23); The upright plate (25) is detachably mounted on the output end of the linear module three (24).

3. The epoxy resin molding apparatus according to claim 2, characterized in that, The pressure-applying component (4) includes: Linear module four (41) is detachably mounted on the three-axis adjustment module (2); The substrate (42) is detachably disposed on the output end of the linear module four (41); A pressure plate (43) is slidably disposed on the substrate (42); The drive motor (44) is detachably mounted on the linear module four (41); The frame (45) is detachably mounted on the linear module four (41); A rotating rod (46) is rotatably mounted inside the frame (45), and a drive wheel (47) is detachably mounted on the rotating rod (46). A toothed plate (48) is slidably arranged on the frame (45). An adjusting plate (49) is detachably installed on the toothed plate (48). An adjusting groove is provided in the adjusting plate (49), and the pressure plate (43) can slide along the adjusting groove.

4. The epoxy resin molding apparatus according to claim 3, characterized in that, The roller (54) has a first inclined groove, a first vertical groove, a second inclined groove, and a second vertical groove. The starting end of the first inclined groove is connected to the starting end of the first vertical groove, the ending end of the first vertical groove is connected to the starting end of the second inclined groove, the ending end of the second inclined groove is connected to the starting end of the second vertical groove, and the ending end of the second vertical groove is connected to the ending end of the first inclined groove.

5. The epoxy resin molding apparatus according to claim 4, characterized in that, The follower plate (55) also has a ball bearing, which can roll along the first inclined groove, the first vertical groove, the second inclined groove, and the second vertical groove respectively. In the initial position, the ball bearing is located at the highest point of the first inclined groove. When the roller (54) rotates, it can force the ball bearing to move sequentially from the highest point of the first inclined groove to the lowest point of the first inclined groove. When the ball bearing moves to the lowest point of the first inclined groove, it can be pushed in the opposite direction by the spring (58) to move from the lowest point of the first vertical groove to the highest point of the first vertical groove.

6. The epoxy resin molding apparatus according to claim 5, characterized in that, A limiting block is detachably mounted on one end of the two guide rods (57), and the limiting block is located above the side support (56).

7. The epoxy resin molding apparatus according to claim 6, characterized in that, The exhaust component (594) consists of a piston cylinder, a piston rod, and a piston. The piston rod can slide along the inner wall of the piston cylinder through the piston. When the piston rod slides along the piston cylinder, it can force the piston cylinder to act on the exhaust pipe (595) to exhaust gas.

Citation Information

Patent Citations

  • Multifunctional epoxy resin forming machine

    CN210082244U

  • Mold clamping device for resin molding

    JP1993058226U