Manufacturing forming machine for glass fiber board production

By using a motor-driven gear system and an automatic demolding device, the risks of manual demolding in fiberglass board production have been eliminated, production efficiency has been improved, and labor intensity has been reduced.

CN223657413UActive Publication Date: 2025-12-12JIUJIANG KEXU COMPOSITE MATERIALS MFG CO LTD
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Patent Information

Application Number
CN202520232351.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-13
Publication Date
2025-12-12
Estimated Expiration
2035-02-13

AI Technical Summary

Technical Problem

In the production process of fiberglass boards, manual demolding may cause the product to fall off or slide, increasing operational risks and resulting in low production efficiency.

Method used

The system employs a motor-driven drive gear and driven gear to achieve mold closure and pressure application. Combined with electric push rods and rodless cylinders, it enables automatic demolding and conveying, reducing manual operation.

Benefits of technology

It improved production efficiency, reduced labor intensity, and avoided product damage caused by human factors.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of glass fiber plate production, in particular to a manufacturing and forming machine for glass fiber plate production, which comprises a rack, a bearing platform, a mounting seat, an assembly plate, a motor, a driving gear and the like. A bearing platform is arranged at the top of the machine frame, a mounting seat which is bent forwards is arranged on the rear side of the top of the bearing platform, an assembling plate is arranged on a truss on the upper portion in the machine frame, a motor is arranged at the bottom of the assembling plate, an output shaft of the motor penetrates through the assembling plate, and a driving gear is arranged on the output shaft of the motor. The driving gear is located on the top of the assembling plate. The motor drives the driving gear to be matched with the driven gear, closing and pressure applying of a follow-up die are achieved, the production period is shortened, and the production efficiency is improved; and the electric push rod and the rodless air cylinder are used for automatic demolding and conveying, so that the requirement for manual operation is reduced, the labor intensity is reduced, and product damage caused by human factors is avoided.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of glass fiber plate production, especially to a production forming machine for glass fiber plate. BACKGROUND

[0002] Glass fiber plate (glass fiber plate) is a kind of plate material composed of glass fiber and resin, usually with high strength and toughness, not easy to break.

[0003] The production and making of glass fiber plate involve multiple steps, including raw material preparation, mixing, laying, curing, etc., wherein the curing process is accelerated by natural curing or heating. For hand lay-up and spray-up molding, natural curing at room temperature or accelerated curing by heating can be used; for compression molding, curing is usually completed under heating and pressurization, and after curing is completed, the product is removed from the mold, however, in the process of manual demolding using a crowbar, if the tool is not used correctly or the method is improper, it may cause the product to fall off or slide, increasing the operation risk. SUMMARY

[0004] In order to overcome the shortcomings of the prior art, the utility model provides a production forming machine for glass fiber plate.

[0005] The technical implementation scheme of the utility model is: a production forming machine for glass fiber plate, comprising a rack, a bearing platform, a mounting seat, an assembly plate, a motor, a driving gear, a shaft sleeve seat, a matching sleeve, a screw rod, a driven gear, a guide rod, a bearing plate, a lower hot press, an upper hot press, a mold and a material ejecting group, the top of the rack is provided with a bearing platform, the rear top of the bearing platform is provided with a mounting seat which is curved forward, the top of the rack is provided with an assembly plate, the bottom of the assembly plate is provided with a motor, the output shaft of the motor penetrates the assembly plate, the output shaft of the motor is provided with a driving gear, the driving gear is located on the top of the assembly plate, the bottom of the assembly plate is provided with a shaft sleeve seat on one side of the motor, the shaft sleeve seat is rotatably provided with a matching sleeve, the matching sleeve is screwedly provided with a screw rod, the top of the matching sleeve is provided with a driven gear, the driven gear is rotatably engaged with the adjacent driving gear, the guide rods are slidably arranged on both sides of the assembly plate, the guide rods penetrate the assembly plate, the bearing plate is arranged between the guide rods, the screw rod penetrates the driven gear, the top of the screw rod is connected with the bottom of the bearing plate, the top of the bearing plate is provided with a lower hot press, the lower hot press is provided with a mold, the top of the bearing plate is provided with a material ejecting group.

[0006] As a further preferred scheme, the top material group comprises an electric push rod and a top frame, the receiving plate is internally provided with the electric push rod, the telescopic rod of the electric push rod is provided with the top frame, the upper portion of the top frame is slidably penetrated into the lower hot press, and continuously extends into the mold of the lower hot press.

[0007] As a further preferred scheme, the machine frame is further provided with a collecting frame.

[0008] As a further preferred scheme, the machine frame is further provided with a material guide chute, the top portion of the bearing platform is provided with the material guide chute in an inclined manner, and the tail end of the material guide chute corresponds to the upper portion of the collecting frame.

[0009] As a further preferred scheme, the machine frame is further provided with a rodless cylinder and a push plate, the lower portion of the mounting seat is provided with the rodless cylinder, and the push plate is slidably arranged on the rodless cylinder.

[0010] As a further preferred scheme, the upper portion of the material guide chute corresponds to the pushing end of the push plate.

[0011] Compared with the prior art, the utility model has the advantages that the utility model realizes the closure of subsequent molds and the application of pressure through the cooperation of the motor-driven driving gear and the driven gear, shortens the production cycle, and improves the production efficiency; the electric push rod and the rodless cylinder are used for automatic demolding and conveying, so that the demand for manual operation is reduced, the labor intensity is reduced, and product damage caused by human factors is avoided. BRIEF DESCRIPTION OF DRAWINGS

[0012] Figure 1 It is a three-dimensional structure schematic view of the utility model.

[0013] Figure 2 It is a three-dimensional structure schematic view of the lower hot press, the upper hot press and the mold and other components of the utility model.

[0014] Figure 3 It is a partial sectional view of the shaft sleeve seat, the matching sleeve and the screw and other components of the utility model.

[0015] Figure 4 It is a three-dimensional structure schematic view of the mounting seat, the rodless cylinder and the push plate and other components of the utility model.

[0016] Marked as: 1, machine frame, 101, collecting frame, 102, material guide chute, 2, bearing platform, 3, mounting seat, 4, assembly plate, 5, motor, 51, driving gear, 6, shaft sleeve seat, 7, matching sleeve, 8, screw, 9, driven gear, 10, guide rod, 11, receiving plate, 12, lower hot press, 121, upper hot press, 13, mold, 14, electric push rod, 15, top frame, 16, rodless cylinder, 17, push plate. DETAILED DESCRIPTION

[0017] The utility model is specifically described below in combination with the drawings.

[0018] Embodiment: a glass fiber plate production is made into forming machine, as Figures 1-4 Shown, including frame 1, bearing platform 2, mounting seat 3, assembly plate 4, motor 5, driving gear 51, shaft sleeve seat 6, matching sleeve 7, screw rod 8, driven gear 9, guide rod 10, bearing plate 11, lower hot press 12, upper hot press 121, mould 13 and material ejecting group, frame 1 provides the basic support of entire forming machine, ensures the stability of all components and the integrity of structure, frame 1 top is welded with bearing platform 2, for installing and fixing other parts, especially mounting seat 3 and bearing plate 11, bearing platform 2 top is provided with the mounting seat 3 of upper portion forward zigzag through bolt, for with lower hot press 12 cooperation forms hot-pressing environment, the truss of frame 1 upper portion is provided with assembly plate 4, for fixing motor 5 and other relevant components, assembly plate 4 bottom is provided with motor 5, provides power drive driving gear 51 rotation, in turn drives other parts action, motor 5 output shaft penetrates assembly plate 4, motor 5 output shaft is provided with driving gear 51, is set on the output shaft of motor 5, is engaged with driven gear 9 through rotation, drives screw rod 8 rotation, driving gear 51 is located at the top of assembly plate 4, the right side of assembly plate 4 bottom is provided with shaft sleeve seat 6 for installing matching sleeve 7, ensures its smooth rotation, matching sleeve 7 is rotatably arranged in shaft sleeve seat 6, is driven screw rod 8 moves up and down through rotation, in turn realizes the lifting of bearing plate 11, screw rod 8 is provided with the screw thread in matching sleeve 7, is driven bearing plate 11 moves up and down through rotation, adjusts the distance between hot press, matching sleeve 7 top is provided with driven gear 9, is engaged with driving gear 51, is driven screw rod 8 moves up and down through rotation, realizes the lifting of bearing plate 11, driven gear 9 is rotatably engaged with adjacent driving gear 51, the left and right sides of assembly plate 4 inside are slidably provided with guide rod 10, as the track of bearing plate 11, ensures its smooth sliding, the upper portion of two guide rods 10 penetrates to assembly plate 4, bearing plate 11 is provided with the screw between the top of two guide rods 10, for installing lower hot press 12, cooperates with upper hot press 121, cooperates with lower hot press 12, forms hot-pressing environment, to the raw material in mould carries out heating and pressurizing treatment, along with the lifting of guide rod 10, and the upper portion of screw rod 8 penetrates to driven gear 9, the top of screw rod 8 is connected with the bottom of bearing plate 11, bearing plate 11 top is installed with lower hot press 12, the zigzag portion below mounting seat 3 is installed with upper hot press 121, lower hot press 12 and upper hot press 121 are all clamped with mould 13, for forming glass fiber plate, bearing plate 11 is equipped with material ejecting group to the material ejecting group.

[0019] As Figure 3As shown, the top material group includes an electric push rod 14 and a top frame 15, the electric push rod 14 is installed inside the receiving plate 11, and the formed glass fiber plate is pushed out of the mold 13 through the top frame 15 on the telescopic rod, the telescopic rod of the electric push rod 14 is provided with the top frame 15 through screws, which is used to push the formed glass fiber plate out of the mold 13, avoiding damage or deformation caused by manual demolding, the upper part of the top frame 15 is slidably penetrated into the inside of the lower heat press 12 and continuously extends into the inside of the mold 13 of the lower heat press 12.

[0020] As shown, Figure 1 It also includes a collection frame 101, which is arranged on the right lower part of the rack 1, and is used to collect the glass fiber plate after demolding.

[0021] As shown, Figures 1-4 It also includes a material guide chute 102, which is arranged on the right top of the support platform 2 in an inclined manner, the end of the material guide chute 102 corresponds to the top of the collection frame 101, and is used to guide the demolded glass fiber plate to slide into the collection frame 101.

[0022] As shown, Figures 1-2 And Figure 4 It also includes a rodless cylinder 16 and a push plate 17, the rodless cylinder 16 is installed in the lower part of the mounting seat 3, and the finished product is pushed into the material guide chute 102 through the push plate 17, the push plate 17 is slidably arranged on the rodless cylinder 16, which is used to assist in pushing the formed glass fiber plate into the material guide chute 102, and the upper part of the material guide chute 102 is opposite to the advancing end of the push plate 17.

[0023] Before molding, the glass fiber and the resin are mixed uniformly according to a certain proportion to ensure the quality of the final product. This step is usually completed in a pretreatment link outside the molding machine. At this time, the mold 13 corresponding to the upper hot press 121 and the lower hot press 12 has been clamped on the two. The mixed raw material is laid in the mold 13 in the lower hot press 12. When the raw material is laid, the motor 5 drives the driving gear 51 to rotate and engage with the driven gear 9, thereby driving the matching sleeve 7 to rotate, so that the screw rod 8 in the sleeve 7 moves upward in the threaded direction, thereby driving the guide rod 10 and the supporting plate 11 to move upward. The parts arranged on the top of the supporting plate 11 will move upward synchronously until the mold 13 of the upper hot press 121 and the lower hot press 12 are connected to form a closed space. The raw material in the mold 13 is heated and pressurized. The heating can accelerate the curing reaction of the resin, and the pressure can help the raw material to be combined more closely to form a solid structure. Under certain temperature and pressure conditions, the resin gradually solidifies, and the raw material is converted into a fiberglass plate with a certain shape and size. Then the motor 5 is turned off, and the curing time is determined according to the type of resin and the required hardness. After the curing is completed, the lower hot press 12 is lowered and reset by the above-mentioned reverse steps, so that the mold 13 of the upper hot press 121 and the lower hot press 12 is in a disengaged and connected state. Then the electric push rod 14 is started to drive the top frame 15 to move upward, so that the top frame 15 pushes out the molded fiberglass plate from the mold 13. This process avoids the damage or deformation that may be caused by traditional manual demolding. When taking out the material, the rodless cylinder 16 is started to drive the push plate 17 to assist in pushing the finished product into the material guide chute 102. The demolded fiberglass plate falls into the collecting frame 101 through the material guide chute 102, ensuring smooth transmission of the finished product. After completing a molding cycle, the above-mentioned steps are repeated to start the next round of production work.

[0024] It should be understood that the embodiments are only used to illustrate the present application and not to limit the scope of the present application. In addition, it should be understood that after reading the content taught by the present application, those skilled in the art can make various modifications or modifications to the present application, and these equivalent forms also fall within the scope defined by the claims attached to the present application.

Claims

1. A forming machine for the production of glass fiber board production, characterized by: The utility model relates to a kind of material forming machine, including organic frame (1), bearing platform (2), mounting seat (3), assembly plate (4), motor (5), driving gear (51), shaft sleeve seat (6), matching sleeve (7), screw rod (8), driven gear (9), guide rod (10), receiving plate (11), lower hot press (12), upper hot press (121), mould (13) and top material group, the frame (1) top is provided with bearing platform (2), the bearing platform (2) top rear side is provided with mounting seat (3) bending forward, the truss of the frame (1) inside upper portion is provided with assembly plate (4), the assembly plate (4) bottom is provided with motor (5), the output shaft of motor (5) penetrates the assembly plate (4), the output shaft of motor (5) is provided with driving gear (51), driving gear (51) is located on the top of assembly plate (4), the bottom of assembly plate (4) is located on the side of motor (5) and is provided with shaft sleeve seat (6), the shaft sleeve seat (6) is rotatably provided with matching sleeve (7) in, the matching sleeve (7) is screwedly provided with screw rod (8) in, the matching sleeve (7) top is provided with driven gear (9), driven gear (9) is rotatably engaged with adjacent driving gear (51), the guide rod (10) is slidably provided in the both sides of assembly plate (4), two guide rods (10) upper portions are penetrated to assembly plate (4), the guide rod (10) top between two is provided with receiving plate (11), and the upper portion of screw rod (8) is penetrated to driven gear (9), the top of screw rod (8) is connected with the bottom of receiving plate (11), the receiving plate (11) top is provided with lower hot press (12), the bending portion below mounting seat (3) is provided with upper hot press (121), lower hot press (12) and upper hot press (121) are all clamped with mould (13) in, the receiving plate (11) is provided with top material group that ejects to forming material.

2. A forming machine for the production of glass fiber boards according to claim 1, characterized in that The top material group includes electric push rod (14) and top frame (15), the inside of receiving plate (11) is provided with electric push rod (14), the telescopic rod of electric push rod (14) is provided with top frame (15), the top frame (15) upper portion is slidably penetrated to the inside of lower hot press (12), and continuously extends into the inside of mould (13) of lower hot press (12).

3. A forming machine for the production of glass fiber boards according to claim 2, characterized in that Still including collection frame (101), the lower portion of frame (1) one side is provided with collection frame (101).

4. A forming machine for the production of glass fiber boards according to claim 3, characterized in that Still including material guide chute (102), the top of bearing platform (2) one side is provided with material guide chute (102) in inclined shape, the end of material guide chute (102) corresponds above collection frame (101).

5. A forming machine for the production of glass fiber boards according to claim 4, characterized in that Still including rodless cylinder (16) and push plate (17), the inside lower portion of mounting seat (3) is provided with rodless cylinder (16), the push plate (17) is slidably provided on rodless cylinder (16).

6. A forming machine for the production of glass fiber boards according to claim 5, characterized in that The upper portion of material guide chute (102) is opposite the advancing end of push plate (17).