Glass steel grating production transfer device
Patent Information
- Application Number
- CN202522284089.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-29
- Publication Date
- 2026-08-18
- Estimated Expiration
- 2035-10-29
AI Technical Summary
[0005]为了克服现有技术的不足,本实用新型的目的在于提供玻璃钢格栅生产转运装置,通过折叠延展组件实现动态护栏适配,结合拉伸固定组件的柔性固定方式,解决了传统转运装置因格栅孔洞不匹配导致的固定困难,以及收纳空间占用率高的问题,其创新设计显著提升了转运效率与装置实用性,为玻璃钢格栅生产行业提供了高效、灵活的解决方案
首先拉伸折叠延展组件,使连接板随着折叠架的拉伸进行延展,然后将连接杆插入连接板和底架上对连接板进行固定,接着通过拉动拉伸固定组件上的橡胶软绳,使其穿过多个玻璃格栅后,接着放置于固定件中对玻璃格栅进行固定,然后进行转运的工作,解决了传统转运装置依赖长柱限位,但玻璃钢格栅的孔洞分布可能不均匀,导致部分格栅无法有效固定。
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Figure CN224644876U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of fiberglass grating production technology, specifically to a fiberglass grating production transfer device. Background Technology
[0002] Fiberglass grating, also known as fiberglass grating or FRP grating, is a high-performance composite material product. It uses glass fiber as a reinforcing material and unsaturated polyester resin as a matrix. The glass fibers are interwoven and then molded as a whole by resin casting to form a plate-like material with many regularly distributed rectangular and square gaps. It has bidirectional isotropic mechanical characteristics.
[0003] During the transportation of fiberglass grating, in order to ensure the stability of the grating when it is placed, traditional transport vehicles usually adopt a column limiting design. That is, a column structure matching the connection opening of the fiberglass grating is set on the transport vehicle. During operation, the operator needs to align the connection opening of the fiberglass grating with the limiting column on the transport vehicle. The grating is fixed by the interlocking of the column and the hole to prevent it from sliding or tipping over during transportation.
[0004] However, this traditional column-limiting design has obvious drawbacks in practical applications: on the one hand, due to the uneven distribution of holes in the fiberglass grating, some grating openings cannot effectively match the limiting columns on the transfer vehicle, resulting in poor fixing effect or even failure to fix; on the other hand, the structure of traditional transfer devices is relatively fixed, and the limiting columns are usually long columns that cannot be flexibly adjusted or stored. When the transfer vehicle is idle, these long column components not only occupy a lot of storage space, but also require cumbersome operations such as disassembly for storage, increasing the cost and inconvenience of use. Utility Model Content
[0005] To overcome the shortcomings of existing technologies, the purpose of this utility model is to provide a fiberglass grating production transfer device. By using a folding extension component to achieve dynamic guardrail adaptation and combining it with a flexible fixing method of a tension fixing component, it solves the problems of fixing difficulties caused by mismatched grating holes and high storage space occupancy in traditional transfer devices. Its innovative design significantly improves transfer efficiency and device practicality, providing an efficient and flexible solution for the fiberglass grating production industry.
[0006] The objective of this utility model is achieved through the following technical solution: The fiberglass grating production and transfer device includes a base frame; it also includes a folding and extending assembly and a tensioning and fixing assembly. The tensioning and fixing assembly includes a sliding block that can slide elastically under the base frame, a rubber rope connected to the outside of the sliding block, and an iron column connected to the other end of the rubber rope. The folding and extending assembly includes a folding frame fixed to the upper end of the base frame, a connecting plate connected to the two folding frames, and an insertion hole through the connecting plate. The upper end of the base frame has two first limiting grooves. Multiple screw grooves are opened through the upper and lower ends of the base frame at the first limiting grooves. Two placement grooves are opened at the front and rear ends of the base frame. Connecting rods are placed in the placement grooves. The folding and extending assembly also has a fixing component. Four first grooves are opened through the upper and lower ends of the base frame.
[0007] In one optional embodiment, four casters are fixed at the four corners of the lower end of the base frame, and four magnets are provided at the lower end of the base frame, with the magnets attracting the iron column.
[0008] In one optional embodiment, the tension fixing assembly further includes four connecting frames fixed to the lower end of the base frame, a fixed column connected between the connecting frames, a sliding block slidably disposed on the outer wall of the fixed column, and a spring connected between the sliding block and the connecting frames; a third groove is provided through the iron column.
[0009] In one alternative embodiment, a plurality of rubber pads are fixed to the upper end of the base frame, and a pusher is fixed to the rear end of the base frame.
[0010] In one optional embodiment, a fixing strip is fixedly connected to the lower end of the connecting plate, and a second limiting groove is provided at the lower end of the fixing strip, and the fixing member is slidably disposed in the second limiting groove.
[0011] In one optional embodiment, the fixing member includes a limiting slider that is slidably disposed on the second limiting groove, a second groove formed on the limiting slider, and a stud threadedly mounted on the second groove.
[0012] In one optional embodiment, the second groove, the first groove, and the iron column are the same size and compatible, and the third groove on the iron column is the same size as the stud.
[0013] In one optional implementation, the left and right ends of the inner wall of the first limiting groove and the left and right ends of the folding frame are fitted together.
[0014] Compared with the prior art, the beneficial effects of this utility model are as follows: First, stretch the folding extension component to extend the connecting plate along with the stretching frame. Then, insert the connecting rod into the connecting plate and the base frame to fix the connecting plate. Next, pull the rubber soft rope on the stretching and fixing component to pass it through multiple glass grids and then place it in the fixing component to fix the glass grids. Then, the transfer work is carried out. This solves the problem that the traditional transfer device relies on long column limit, but the hole distribution of the fiberglass grid may be uneven, resulting in some grids not being effectively fixed.
[0015] The device features a foldable and automatically retractable structure. By using a folding frame for storage and a sliding block with a rubber cord that is spring-loaded for resetting, it achieves quick storage, thus saving space. Attached Figure Description
[0016] Figure 1 A three-dimensional structural diagram of a transfer device for the production of fiberglass grating; Figure 2 A partial cross-sectional three-dimensional structural diagram of a transfer device for the production of fiberglass grating; Figure 3 A three-dimensional structural diagram of a transfer device for the production of fiberglass grating; Figure 4 A three-dimensional structural diagram of the fixing components for the production transfer device of FRP grating; Figure 5 A three-dimensional structural diagram of a transfer device for the production of fiberglass grating.
[0017] In the diagram: 1. Base frame; 101. First groove; 102. Rubber pad; 103. First limiting groove; 104. Caster wheel; 105. Push frame; 106. Screw groove; 107. Placement groove; 108. Connecting rod; 2. Folding frame; 201. Connecting plate; 202. Insertion hole; 203. Fixing strip; 204. Second limiting groove; 205. Limiting slider; 206. Second groove; 207. Stud; 3. Magnet; 301. Connecting frame; 302. Fixing post; 303. Spring; 304. Sliding block; 305. Rubber rope; 306. Iron post; 307. Third groove. Detailed Implementation
[0018] The present invention will now be further described in conjunction with the accompanying drawings and specific embodiments. It should be noted that, without conflict, the various embodiments or technical features described below can be arbitrarily combined to form new embodiments. Unless otherwise specified, the materials and equipment used in this embodiment are all commercially available. Examples of the embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this application, and should not be construed as limiting this application.
[0019] In the description of this application, it should be understood that the terms "upper," "lower," "front," "rear," "vertical," "horizontal," "top," "bottom," "inner," and "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation on this application. In the description of this application, "a plurality of" means two or more, unless otherwise precisely specified.
[0020] In the description of this application, it should be noted that, unless otherwise expressly specified and limited, the terms "connected," "linked," and "connected" should be interpreted broadly. For example, they can refer to a fixed connection, a connection through an intermediary, or a connection within two elements or an interaction between two elements. Those skilled in the art can understand the specific meaning of the above terms in this application according to the specific circumstances.
[0021] The terms "first," "second," etc., in the specification, claims, and accompanying drawings of this application are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence. Furthermore, the terms "comprising" and "having," and any variations thereof, are intended to cover non-exclusive inclusion; for example, a process, method, system, product, or apparatus that comprises a series of steps or units is not necessarily limited to those steps or units explicitly listed, but may include other steps or units not explicitly listed or inherent to such process, method, product, or apparatus.
[0022] Please refer to Figures 1-5This utility model provides an embodiment of a fiberglass grating production transfer device, including a base frame 1; it also includes a folding extension component and a tension fixing component. The tension fixing component includes a sliding block 304 that can elastically slide below the base frame 1, a rubber soft rope 305 connected to the outside of the sliding block 304, and an iron column 306 connected to the other end of the rubber soft rope 305. The folding extension component includes a folding frame 2 fixed to the upper end of the base frame 1, a connecting plate 201 connected to the two folding frames 2, and an insertion hole 202 penetrating through the connecting plate 201. The upper end of the base frame 1 has two first limiting grooves 103, and the upper and lower ends of the base frame 1 located at the first limiting grooves 103 are... Multiple threaded grooves 106 are provided through the base frame 1. Two placement slots 107 are provided at each of the front and rear ends of the base frame 1. Connecting rods 108 are placed in the placement slots 107. Fixing components are also provided in the folding extension assembly. Four first slots 101 are provided through the upper and lower ends of the base frame 1. First, the folding extension assembly is stretched so that the connecting plate 201 is extended along with the stretching of the folding frame 2. Then, the connecting rods 108 are inserted into the connecting plate 201 and the base frame 1 to fix the connecting plate 201. Next, the rubber soft rope 305 on the stretching fixing assembly is pulled so that it passes through multiple glass grids and is then placed in the fixing components to fix the glass grids. Then, the transportation work is carried out.
[0023] Please refer to Figures 1-4 In a preferred embodiment of this utility model, four casters 104 are fixedly connected to the four corners of the lower end of the base frame 1. Four magnets 3 are provided at the lower end of the base frame 1. The magnets 3 and the iron column 306 attract each other. The casters 104 allow the device to move. The magnets 3 can attract the iron column 306 when the sliding block 304 is in a relaxed state. Multiple rubber pads 102 are fixedly connected to the upper end of the base frame 1. A pusher 105 is fixedly connected to the rear end of the base frame 1. The rubber pads 102 can protect the glass grille placed on the base frame 1. A fixing strip 203 is fixedly connected to the lower end of the connecting plate 201. A second limiting groove 204 is provided at the lower end of the fixing strip 203. The fixing member is slidably disposed in the second limiting groove 204. The fixing member includes a limiting slider 205 slidably disposed on the second limiting groove 204, a second groove 206 opened on the limiting slider 205, and a stud 207 threadedly installed on the second groove 206. The iron column 306 can be fixed by rotating the stud 207. The left and right ends of the inner wall of the first limiting groove 103 and the left and right ends of the folding frame 2 are in contact with each other.
[0024] Please refer to Figures 3-5In a preferred embodiment of this utility model, the tension fixing assembly further includes four connecting frames 301 fixed to the lower end of the base frame 1, a fixing column 302 connected between the connecting frames 301, a sliding block 304 slidably disposed on the outer wall of the fixing column 302, and a spring 303 connected between the sliding block 304 and the connecting frame 301; a third groove 307 is provided through the iron column 306. When the glass grid is placed on the base frame 1, the sliding block 304 is reset by the elastic force of the spring 303, thereby retracting the rubber soft rope 305. The second groove 206, the first groove 101 and the iron column 306 are the same size and compatible. The size of the third groove 307 opened on the iron column 306 is the same as the size of the stud 207.
[0025] When a transfer operation is required, firstly, by pulling the connecting plate 201 upward, the folding frame 2 connected below the two connecting plates 201 is extended upward. Then, the connecting rod 108 is pulled out from the placement slot 107 on the base frame 1. Next, the connecting rod 108 is inserted along the insertion hole 202 and threaded into the corresponding screw groove 106 on the first limiting slot 103, thereby fixing the height of the connecting plate 201 and making it a guardrail on the left and right ends of the base frame 1. Then, the fiberglass grating to be transferred is placed on the rubber pad 102 on the base frame 1. Next, the rubber soft rope 305 is pulled from below the base frame 1. Then, the iron post 306 on the rubber soft rope 305 is inserted along the first groove 101 and then inserted into the hole between the fiberglass gratings stacked on the base frame 1, and then passed through the second groove 206 in the limiting slider 205.
[0026] Next, by rotating the stud 207, the stud 207 passes through the third groove 307 on the iron column 306, and the iron column 306 is fixed in the second groove 206 on the limiting slider 205, thereby fixing the glass grid placed on the base frame 1. Then, by pushing the push frame 105, the glass grid is moved and transported under the drive of the caster wheel 104. This solves the problem in the prior art that when placing the fiberglass grid, the long column limiting mechanism on the transport vehicle may cause uneven distribution of some grid holes, making it impossible to place. In addition, it is inconvenient to store the grid during daily use, resulting in a large space occupation.
[0027] Through the above steps, first stretch the folding extension component so that the connecting plate 201 extends with the stretching of the folding frame 2. Then, insert the connecting rod 108 into the connecting plate 201 and the base frame 1 to fix the connecting plate 201. Next, pull the rubber soft rope 305 on the stretching and fixing component so that it passes through multiple glass grids and is then placed in the fixing component to fix the glass grids. Then, the transportation work is carried out.
[0028] Although only certain components and embodiments of this application have been illustrated and described, many modifications and alterations (e.g., variations in the size, dimensions, structure, shape and proportion of the various elements, installation arrangement, material use, color, orientation, etc.) will be conceived by those skilled in the art without actually departing from the scope and spirit of the claims.
[0029] Finally, it should be noted that the above embodiments are only preferred embodiments of this utility model and should not be used to limit the scope of protection of this utility model. Any non-substantial changes and substitutions made by those skilled in the art based on this utility model shall fall within the scope of protection claimed by this utility model.
Claims
1. A glass fiber reinforced plastic grid production transfer device, comprising a chassis (1); characterized in that: It also includes a folding extension component and a tension fixing component. The tension fixing component includes a sliding block (304) that can slide elastically under the base frame (1), a rubber soft rope (305) connected to the outside of the sliding block (304), and an iron column (306) connected to the other end of the rubber soft rope (305). The folding extension component includes a folding frame (2) fixed to the upper end of the base frame (1), a connecting plate (201) connected to the two folding frames (2), and an insertion hole (202) through the connecting plate (201). The upper end of the base frame (1) has two first limiting grooves (103). The upper and lower ends of the base frame (1) located at the first limiting grooves (103) are provided with multiple screw grooves (106). The front and rear ends of the base frame (1) each have two placement grooves (107). A connecting rod (108) is placed in the placement groove (107). The folding extension component is also provided with a fixing component. The upper and lower ends of the base frame (1) are provided with four first grooves (101).
2. The fiberglass grating production transfer device according to claim 1, characterized in that: Four casters (104) are fixed at the four corners of the lower end of the base frame (1). Four magnets (3) are provided at the lower end of the base frame (1). The magnets (3) and the iron column (306) attract each other.
3. The fiberglass grating production transfer device according to claim 1, characterized in that: The tension fixing assembly also includes four connecting frames (301) fixed at the lower end of the base frame (1), a fixed column (302) connected between the connecting frames (301), a sliding block (304) slidably disposed on the outer wall of the fixed column (302), and a spring (303) connected between the sliding block (304) and the connecting frame (301); a third groove (307) is provided through the iron column (306).
4. The fiberglass grating production transfer device according to claim 1, characterized in that: Multiple rubber pads (102) are fixed to the upper end of the base frame (1), and a push frame (105) is fixed to the rear end of the base frame (1).
5. The fiberglass grating production transfer device according to claim 1, characterized in that: A fixing strip (203) is fixedly connected to the lower end of the connecting plate (201). A second limiting groove (204) is provided at the lower end of the fixing strip (203), and the fixing member is slidably disposed in the second limiting groove (204).
6. The fiberglass grating production transfer device according to claim 5, characterized in that: The fastener includes a limiting slider (205) that is slidably disposed on the second limiting groove (204), a second groove (206) formed on the limiting slider (205), and a stud (207) that is threadedly installed on the second groove (206).
7. The fiberglass grating production transfer device according to claim 6, characterized in that: The second groove (206), the first groove (101), and the iron column (306) are the same size and compatible. The third groove (307) opened on the iron column (306) is the same size as the stud (207).
8. The fiberglass grating production transfer device according to claim 1, characterized in that: The left and right ends of the inner wall of the first limiting groove (103) and the left and right ends of the folding frame (2) fit together.