Forming equipment for long glass fiber building template production

By combining electric push rods with T-shaped frames, along with elastic push rods and motor-driven baffles, automated and precise positioning and stable conveying of long fiberglass building formwork are achieved. This solves the problem of cumbersome manual operation in traditional equipment and improves production efficiency and safety.

CN223812352UActive Publication Date: 2026-01-20HUBEI ZHAOGAO CONSTRUCTION ENGINEERING CO LTD
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Patent Information

Application Number
CN202520437088.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-13
Publication Date
2026-01-20
Estimated Expiration
2035-03-13

AI Technical Summary

Technical Problem

Traditional long fiberglass building formwork production equipment involves cumbersome and manual processes in the removal of the formwork after it has been formed. This poses safety risks and consumes a lot of manpower and time, thus affecting production efficiency.

Method used

A molding device comprising a hydraulic press, a pushing mechanism, and a receiving and conveying mechanism was designed. By utilizing the cooperation of an electric push rod and a T-shaped frame, the template can be accurately positioned and quickly placed. The template position can be adjusted through the coordinated work of an elastic push rod and a partition, and the template can be pushed out by a motor-driven baffle, thus achieving automated operation.

Benefits of technology

It improves the efficiency and stability of the template removal process, reduces manual operation time, ensures the verticality and stability of the template during transportation, and improves production efficiency and safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of building template production equipment, in particular to forming equipment for producing a long glass fiber building template, which comprises a template production forming mechanism, a template production forming mechanism and a template production forming mechanism, the two sets of protruding blocks are fixed to the positions, located at the two ends, of a port of the hydraulic machine correspondingly. The two pushing mechanisms are fixed to the two ends of the hydraulic machine table top correspondingly. And the bearing and conveying mechanism is fixed on the pushing mechanism and can be used for bearing and conveying the templates. According to the utility model, the electric push rod is matched with the T-shaped frame, so that the T-shaped frame can be accurately positioned and quickly positioned at the port of the hydraulic machine, when the hydraulic machine completes template forming and opens the port, the electric push rod quickly drives the T-shaped frame to move to a template falling range, and the convex block is in contact with the T-shaped frame for limiting, so that the position of the T-shaped frame is ensured to be fixed; through the cooperation, the time for manually placing the rods is saved, and the efficiency of preparation work is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to building template production equipment technical field, specifically a long glass fiber building template production is with forming equipment. BACKGROUND

[0002] In the production process of long glass fiber building template, the forming equipment is the key link to ensure product quality and production efficiency. At present, some traditional long glass fiber building template production forming equipment on the market adopts a relatively primitive operation mode in the taking link after template forming.

[0003] When the template completes the forming process by using the hydraulic machine, the operator needs to manually take two rods and place them at the opening of the hydraulic machine. This operation not only requires the operator to be close to the running equipment, which poses a certain safety risk, but also requires precise placement of the rods to ensure that the template can fall smoothly onto the rods. After the template falls onto the rods, the operator needs to approach the equipment again while it is still running to move the template away. After the moving is completed, the operator also needs to remove the rods placed at the opening of the hydraulic machine, making the entire operation process complicated and dependent on manual labor, consuming a large amount of manpower and time cost, and seriously restricting the improvement of production efficiency. UTILITY MODEL CONTENTS

[0004] The utility model aims to provide a long glass fiber building template production forming equipment to solve the problems raised in the above background technology.

[0005] To achieve the above-mentioned purpose, the utility model provides the following technical scheme:

[0006] A long glass fiber building template production forming equipment, comprising:

[0007] A template production forming mechanism, comprising a hydraulic machine, the hydraulic machine is provided with a chute one at both ends of the table top;

[0008] A protruding block, provided with two groups, fixed at the ports of the hydraulic machine at both ends;

[0009] A pushing mechanism, provided with two, fixed at both ends of the hydraulic machine table top;

[0010] A receiving and conveying mechanism, fixed on the pushing mechanism, capable of receiving and conveying the template.

[0011] Further, the template production forming mechanism comprises:

[0012] A U-shaped frame, fixed on the outer wall of one side of the hydraulic machine.

[0013] Preferably, the pushing mechanism comprises:

[0014] An electric push rod is fixed with the hydraulic machine table, one end of the electric push rod is fixedly connected with a limiting frame, and the outer wall of the limiting frame is slidably inserted into the sliding groove.

[0015] Preferably, the receiving and conveying mechanism comprises:

[0016] An elastic push rod is fixed with one end of the limiting frame, and one end of the elastic push rod is fixedly connected with a T-shaped frame.

[0017] Preferably, the receiving and conveying mechanism comprises:

[0018] A sliding rail is fixed at the bottom of one end of the T-shaped frame, a slope plate is slidably inserted into the sliding rail, and a spring is fixedly connected between the outer wall of the slope plate and the inner wall of the sliding rail.

[0019] A second sliding groove is formed on the outer wall of the T-shaped frame, and a baffle is slidably inserted into the second sliding groove.

[0020] Preferably, the receiving and conveying mechanism comprises:

[0021] An L-shaped frame is fixed on the outer wall of the elastic push rod, and a partition plate is fixedly connected with one end of the L-shaped frame.

[0022] Preferably, the receiving and conveying mechanism comprises:

[0023] A guide frame is fixed on the outer wall of the elastic push rod.

[0024] A threaded rod is rotated in the second sliding groove, and the outer wall of the threaded rod is screw-connected with the baffle.

[0025] An electric motor is fixed at one end of the T-shaped frame, and the rotating shaft of the electric motor is fixed with one end of the threaded rod.

[0026] Compared with the prior art, the utility model has the advantages that:

[0027] 1. Through the cooperation of the electric push rod and the T-shaped frame, the accurate positioning and rapid positioning of the T-shaped frame at the port of the hydraulic machine are realized, when the hydraulic machine completes the forming of the template and opens the port, the electric push rod drives the T-shaped frame to move to the template falling range, and the position of the T-shaped frame is fixed through the contact limiting of the protruding block and the T-shaped frame, which saves the time of manually placing the rod and improves the efficiency of the preparation work.

[0028] 2. Through the continuous driving of the electric push rod, the elastic push rod is retracted, and then the partition plate moves towards the template, so that the position of the template falling on the T-shaped frame can be adjusted, the template is adjusted to be perpendicular to the T-shaped frame, and the template is more stable in the subsequent conveying process, which prevents the template from being sent out without following the specified path due to inclination, and effectively improves the working stability.

[0029] 3. When the electric push rod is retracted, the guide frame is in contact with the inclined surface of the outer wall of the inclined plate and moves downward, thereby removing the protection of the side of the inclined plate, which ensures the stable receiving of the formwork in the early stage and orderly removes the protection at the appropriate time, thereby creating conditions for the smooth pushing out of the formwork, and making the whole operation process coherent and efficient. BRIEF DESCRIPTION OF DRAWINGS

[0030] Figure 1 is the overall structure schematic diagram of the utility model;

[0031] Figure 2 is another overall structure schematic diagram of the utility model;

[0032] Figure 3 is the structure schematic diagram of the pushing mechanism and the receiving conveying mechanism of the utility model;

[0033] Figure 4 is the local structure schematic diagram of the receiving conveying mechanism of the utility model.

[0034] In the figure: 100, formwork production forming mechanism;110, hydraulic machine;111, chute one;112, protruding block;120, U-shaped frame;200, pushing mechanism;210, electric push rod;211, limiting frame;300, receiving conveying mechanism;310, elastic push rod;311, guide frame;312, L-shaped frame;313, partition;320, T-shaped frame;321, chute two;322, threaded rod;323, baffle;324, motor;330, sliding rail;331, inclined plate;332, spring. DETAILED DESCRIPTION

[0035] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments of the utility model, all the other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.

[0036] Please refer to Figures 1-4The utility model embodiment, a kind of long glass building template production is formed with equipment, it includes: template production forming mechanism 100, it includes hydraulic press 110, and the hydraulic press 110 is located at the end of table top It is equipped with groove one 111, lug 112, it is equipped with two groups, and is fixed in the port of hydraulic press 110 and is located at both ends, push mechanism 200, it is equipped with two, and is fixed in the end of hydraulic press 110 table top, receiving conveying mechanism 300, it is fixed on push mechanism 200, and can be received and transported to template, push mechanism 200 includes: electric push rod 210, it is fixed with the table top of hydraulic press 110, and one end of electric push rod 210 is fixedly connected with limit frame 211, the outer wall of limit frame 211 and the inside of groove one 111 are slidably inserted, receiving conveying mechanism 300 includes: elastic push rod 310, it is fixed with the one end of limit frame 211, and one end of elastic push rod 310 is fixedly connected with T-shaped frame 320, slide rail 330, it is fixed at the bottom of one end of T-shaped frame 320, and slide rail 330 is slidably inserted with inclined plate 331, spring 332 is fixedly connected between the outer wall of inclined plate 331 and the inner wall of slide rail 330, groove two 321, it is equipped on the outer wall of T-shaped frame 320, and baffle 323 is slidably inserted in the inside of groove two 321, through the cooperation of electric push rod 210 and T-shaped frame 320, the accurate positioning and fast in position of T-shaped frame 320 in the port of hydraulic press 110 are realized.

[0037] Receiving conveying mechanism 300 includes: L-shaped frame 312, it is fixed on the outer wall of elastic push rod 310, and one end of L-shaped frame 312 is fixedly connected with partition 313, through the continuous drive of electric push rod 210, elastic push rod 310 is retracted, and then partition 313 moves to the direction of template, can adjust the position of template falling on T-shaped frame 320.

[0038] Template production forming mechanism 100 includes: U-shaped frame 120, it is fixed on the outer wall of one side of hydraulic press 110, receiving conveying mechanism 300 includes: guide frame 311, it is fixed on the outer wall of elastic push rod 310, threaded rod 322, it rotates in the inside of groove two 321, and baffle 323 is screw-connected on the outer wall of threaded rod 322, motor 324, it is fixed at one end of T-shaped frame 320, and the rotating shaft of motor 324 is fixed with one end of threaded rod 322, when electric push rod 210 is retracted, guide frame 311 and the inclined surface of the outer wall of inclined plate 331 contact and move downward, thereby removing the protection of the side of inclined plate 331.

[0039] Specifically, during operation, when the hydraulic press 110 completes the template forming process and opens the port, the electric actuator 210 drives the elastic actuator 310 to move, causing the T-shaped frame 320 to move smoothly to the port surface and within the range where the template will fall. At this time, the protrusion 112 on the hydraulic press 110 contacts the outer wall of the T-shaped frame 320 to achieve precise positioning and ensure the square rod is fixed in position, preparing for receiving the template. The inclined plate 331 and baffle 323 at one end of the T-shaped frame 320 play a role in preventing the template from being ejected due to impact when it falls onto the T-shaped frame 320, providing effective protection. After the template falls onto the T-shaped frame 320, the electric actuator 210 continues to drive, causing the elastic actuator 310 to retract. The retraction of the elastic actuator 310 causes the partition 313 to move towards... As the template moves, the two partitions 313 work together to adjust the position of the template, making it neatly arranged. At the same time, the guide frame 311, due to the contraction of the elastic push rod 310, contacts the inclined surface of the outer wall of the inclined plate 331 and moves downward under the squeezing action, thereby removing the protection on the side of the inclined plate 331. Driven by the motor 324, the baffle 323 moves on the T-shaped frame 320, pushing the template out along the direction of the inclined plate 331. After the template is pushed out, it slides along the U-shaped frame 120 set on one side of the hydraulic press 110 and smoothly reaches the transmission mechanism. The transmission mechanism transports the template to the designated placement location. After the template is transferred, the T-shaped frame 320, driven in the reverse direction by the electric push rod 210, leaves the working area of ​​the hydraulic press 110 and returns to the initial position, waiting for the next work cycle.

[0040] Example 1

[0041] like Figures 1-3 As shown, in this embodiment, the pushing mechanism 200 includes: an electric push rod 210, which is fixed to the table of the hydraulic press 110, and one end of the electric push rod 210 is fixedly connected to a limit frame 211. The outer wall of the limit frame 211 is slidably inserted into the interior of the first slide groove 111. The receiving and conveying mechanism 300 includes: an elastic push rod 310, which is fixed to one end of the limit frame 211, and one end of the elastic push rod 310 is fixedly connected to a T-shaped frame 320; a slide rail 330, which is fixed at the bottom of one end of the T-shaped frame 320, and an inclined plate 331 is slidably inserted into the interior of the slide rail 330. A spring 332 is fixedly connected between the outer wall of the inclined plate 331 and the inner wall of the slide rail 330; and a second slide groove 321, which is opened on the outer wall of the T-shaped frame 320, and a baffle 323 is slidably inserted into the interior of the second slide groove 321.

[0042] In this embodiment, when the hydraulic press 110 completes the template forming process and opens the port, the electric actuator 210 drives the elastic actuator 310 to move, causing the T-shaped frame 320 to move smoothly to the port surface and be within the range where the template will fall. At this time, the protrusion 112 on the hydraulic press 110 contacts the outer wall of the T-shaped frame 320, achieving precise positioning and ensuring the square rod is fixed in position, preparing for receiving the template. The inclined plate 331 and baffle 323 at one end of the T-shaped frame 320 play a role in preventing the template from being ejected due to impact when it falls onto the T-shaped frame 320, providing effective protection. Through the cooperation of the electric actuator 210 and the T-shaped frame 320, the T-shaped frame 320 is accurately positioned and quickly placed at the port of the hydraulic press 110. When the hydraulic press 110 completes the template forming and opens the port, the electric actuator 210 quickly drives the T-shaped frame 320 to move to the port surface. Within the template's falling range, and through the contact and limiting action of the protrusion 112 with the T-shaped frame 320, the position of the T-shaped frame 320 is ensured to be fixed. This coordination saves the time of manually placing the rods, improves the efficiency of preparation work, and ensures the accuracy of the T-shaped frame 320's position, laying the foundation for the subsequent stable support of the template. After the template is transported, the reverse drive of the electric push rod 210 allows the T-shaped frame 320 to quickly leave the working area of ​​the hydraulic press 110 and return to its initial position. Compared with manually removing the rods, this automated reset method is more efficient, reduces operation time, and allows the equipment to enter the next work cycle more quickly. In addition, the inclined plate 331 and the baffle 323 are provided to effectively prevent the template from being ejected or rotated due to impact when it falls onto the T-shaped frame 320, thus preventing it from falling between the two T-shaped frames 320 and ensuring that the template stays stably on the T-shaped frame 320, effectively improving stability.

[0043] like Figure 3 As shown, in this embodiment, the receiving and conveying mechanism 300 includes an L-shaped frame 312, which is fixed on the outer wall of the elastic push rod 310, and a partition plate 313 is fixedly connected to one end of the L-shaped frame 312.

[0044] In practice, after the template falls onto the T-shaped frame 320, the electric actuator 210 is continuously driven, causing the elastic actuator 310 to retract. The retraction of the elastic actuator 310 causes the partition 313 to move towards the template. The two partitions 313 work together to adjust the position of the template, making it neatly arranged. By continuously driving the electric actuator 210 to retract the elastic actuator 310, the partitions 313 can be moved towards the template, thus adjusting the position of the template that falls onto the T-shaped frame 320, making the template perpendicular to the T-shaped frame 320, making it more stable in the subsequent conveying process, preventing the template from being sent out outside the prescribed path due to tilting, and effectively improving the stability of the operation.

[0045] Example 2

[0046] like Figures 2-4As shown, in the embodiment, the template production forming mechanism 100 comprises: a U-shaped frame 120 fixed to one side outer wall of the hydraulic machine 110, the conveying mechanism 300 comprises: a guide frame 311 fixed to the outer wall of the elastic push rod 310, a threaded rod 322 rotating in the inner part of the sliding groove two 321, and a baffle 323 screwing connected to the outer wall of the threaded rod 322, and a motor 324 fixed to one end of the T-shaped frame 320, and the rotating shaft of the motor 324 is fixed to one end of the threaded rod 322.

[0047] In the implementation, the guide frame 311 is in contact with the inclined surface of the outer wall of the inclined plate 331 due to the contraction of the elastic push rod 310, and is moved downward under the extrusion, thereby removing the protection on the side of the inclined plate 331, the baffle 323 is moved on the T-shaped frame 320 under the driving of the motor 324, and the template is pushed out along the direction of the inclined plate 331, after the template is pushed out, it slides in the U-shaped frame 120 arranged on one side of the hydraulic machine 110, and smoothly reaches the conveying mechanism, and the template is conveyed to the designated placement location by the conveying mechanism, when the electric push rod 210 is contracted, the guide frame 311 is in contact with the inclined surface of the outer wall of the inclined plate 331 and is moved downward, thereby removing the protection on the side of the inclined plate 331, this design can orderly remove the protection at the appropriate time while ensuring the stable receiving of the template in the early stage, and creates conditions for the smooth pushing out of the template, so that the whole operation process is coherent and efficient, in addition, the motor 324 drives the threaded rod 322 to rotate, and drives the baffle 323 to move on the T-shaped frame 320, and the template is pushed out along the direction of the inclined plate 331, and the template slides on the U-shaped frame 120 to the conveying mechanism, this design realizes the efficient carrying of the template from the T-shaped frame 320 to the conveying mechanism, compared with manual carrying, not only the speed is faster, but also the stability in the carrying process of the template can be ensured, the production efficiency is improved, and the product quality is guaranteed.

[0048] It is apparent for those skilled in the art that the present application is not limited to the details of the above exemplary embodiments, but can be implemented in other concrete forms without departing from the spirit or essential characteristics of the present application. Therefore, the embodiments should be considered in all aspects as exemplary and not restrictive, and the scope of the present application is defined by the appended claims rather than the above description, and therefore all changes falling within the meaning and range of equivalent elements of the claims are intended to be embraced in the present application. Any reference signs in the claims should not be considered as limiting the claims involved.

[0049] In addition, it should be understood that although the present specification is described in terms of embodiments, not every embodiment contains only one independent technical solution, and the description manner of the specification is only for the sake of clarity, and those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can be properly combined to form other embodiments which can be understood by those skilled in the art.

Claims

1. A molding equipment for producing long glass fiber building formwork, characterized in that, include: The template production forming mechanism (100) includes a hydraulic press (110), and the hydraulic press (110) has a slide groove (111) at both ends of the table. Two sets of protrusions (112) are provided, which are fixed at both ends of the hydraulic press (110) port; There are two pushing mechanisms (200), which are fixed at both ends of the table of the hydraulic press (110); The receiving and conveying mechanism (300) is fixed on the pushing mechanism (200) and can receive and convey the template.

2. The molding equipment for producing long glass fiber building formwork according to claim 1, characterized in that, The template production forming mechanism (100) includes: The U-shaped frame (120) is fixed to the outer wall of one side of the hydraulic press (110).

3. The molding equipment for producing long glass fiber building formwork according to claim 2, characterized in that, Push organizations (200) include: An electric actuator (210) is fixed to the table of a hydraulic press (110). One end of the electric actuator (210) is fixedly connected to a limit frame (211). The outer wall of the limit frame (211) is slidably inserted into the inside of the slide groove (111).

4. The molding equipment for producing long glass fiber building formwork according to claim 3, characterized in that, The receiving and conveying mechanism (300) includes: The elastic push rod (310) is fixed to one end of the limiting frame (211), and a T-shaped frame (320) is fixedly connected to one end of the elastic push rod (310).

5. The molding equipment for producing long glass fiber building formwork according to claim 4, characterized in that, The receiving and conveying mechanism (300) includes: The slide rail (330) is fixed at the bottom of one end of the T-shaped frame (320). An inclined plate (331) is slidably inserted inside the slide rail (330). A spring (332) is fixedly connected between the outer wall of the inclined plate (331) and the inner wall of the slide rail (330). Slide 2 (321) is opened on the outer wall of T-shaped frame (320), and baffle (323) is slidably inserted inside slide 2 (321).

6. The molding equipment for producing long glass fiber building formwork according to claim 5, characterized in that, The receiving and conveying mechanism (300) includes: The L-shaped frame (312) is fixed to the outer wall of the elastic push rod (310), and a partition (313) is fixedly connected to one end of the L-shaped frame (312).

7. The molding equipment for producing long glass fiber building formwork according to claim 6, characterized in that, The receiving and conveying mechanism (300) includes: The guide frame (311) is fixed to the outer wall of the elastic push rod (310); The threaded rod (322) rotates inside the slide groove (321), and a baffle (323) is screwed onto the outer wall of the threaded rod (322). The motor (324) is fixed at one end of the T-shaped frame (320), and the shaft of the motor (324) is fixed at one end of the threaded rod (322).