Flame-retardant nylon composite sheet with high-temperature resistant coating
Patent Information
- Application Number
- CN202522433055.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-17
- Publication Date
- 2026-09-22
- Estimated Expiration
- 2035-11-17
AI Technical Summary
[0004]针对现有技术的不足,本实用新型提供了一种具有耐高温涂层的阻燃尼龙复合板材,解决了传统的尼龙复合板材在进行使用时,其内部由于缺乏有效的拼接限位结构,多个尼龙复合板材在相互拼接作业时,其内部由于缺乏有效的限位结构,很容易因受到挤压等情况而导致尼龙板材之间的间隙增大,导致影响后续的正常使用的问题
1.该装置通过设置定位机构与连接机构等部件,通过拼接定位槽、楔形限位槽、定位卡块与定位连接块、楔形限位块、定位插槽之间的相互配合关系,使得定位连接块能够通过插入拼接定位槽,借助楔形限位块与楔形限位槽的卡合、定位卡块与定位插槽的卡接对多个复合板材进行精准拼接限位,本装置能够通过多重限位结构避免拼接后因挤压出现间隙增大的情况,有效解决传统尼龙复合板材缺乏有效拼接限位结构导致后续使用受影响的技术问题。
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Figure CN224786108U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of composite board technology, specifically to a flame-retardant nylon composite board with a high-temperature resistant coating. Background Technology
[0002] Nylon sheets are widely used in machinery manufacturing, electronics, automotive industry and other fields due to their excellent mechanical strength, wear resistance and processing performance.
[0003] Traditional nylon composite sheets lack effective splicing and restraining structures. When multiple nylon composite sheets are spliced together, the gaps between them can easily increase due to compression, affecting subsequent normal use. Utility Model Content
[0004] To address the shortcomings of existing technologies, this utility model provides a flame-retardant nylon composite sheet with a high-temperature resistant coating. This solves the problem that traditional nylon composite sheets, when used, lack an effective splicing and limiting structure. When multiple nylon composite sheets are spliced together, the lack of an effective limiting structure makes them prone to being squeezed, which can increase the gaps between the nylon sheets and affect their subsequent normal use.
[0005] To achieve the above objectives, this utility model provides the following technical solution: a flame-retardant nylon composite sheet with a high-temperature resistant coating, comprising an upper nylon sheet, wherein a reinforcing mechanism is fixedly connected to the bottom end of the upper nylon sheet, and a positioning mechanism is also provided inside the upper nylon sheet, wherein a connecting mechanism is installed inside the positioning mechanism; The positioning mechanism includes a splicing positioning groove, a wedge-shaped limiting groove, and positioning blocks. There are four splicing positioning grooves arranged in a circular array on the outer wall of the upper nylon plate. The wedge-shaped limiting grooves are opened inside the splicing positioning grooves. The positioning blocks are fixedly arranged in a linear array inside the splicing positioning grooves.
[0006] Furthermore, the connecting mechanism includes a positioning connecting block and a wedge-shaped limiting block. The positioning connecting block is inserted into the splicing positioning groove, and the wedge-shaped limiting block is symmetrically fixed on the outer wall of the positioning connecting block. The wedge-shaped limiting block matches the wedge-shaped limiting groove.
[0007] Furthermore, the connecting mechanism also includes positioning slots, which are arranged in a linear array at the front and rear ends of the positioning connecting block, and the positioning slots are matched with the positioning card block.
[0008] Furthermore, when the positioning connecting block is inserted into the splicing positioning groove, the wedge-shaped limiting block is engaged with the wedge-shaped limiting groove, and the positioning slot is engaged with the positioning card block.
[0009] Furthermore, the reinforcing mechanism includes a composite reinforcing layer and a lower nylon plate. The composite reinforcing layer is fixedly disposed at the bottom end of the upper nylon plate, and the lower nylon plate is fixedly disposed at the bottom end of the composite reinforcing layer.
[0010] Furthermore, the surfaces of the upper nylon sheet, the composite reinforcing layer, and the lower nylon sheet are all coated with a high-temperature resistant coating, and the upper nylon sheet, the composite reinforcing layer, and the lower nylon sheet together form a composite sheet structure.
[0011] Furthermore, the reinforcing mechanism also includes a cable tray and an anti-slip pad. The cable tray is cross-shaped and located at the bottom end of the lower nylon plate, and the anti-slip pad is fixedly installed at the bottom end of the lower nylon plate.
[0012] Furthermore, the cable tray is used to install the wire harness and has a gap for removal when the multi-layer nylon plates are stacked. The lower nylon plate and the anti-slip pad together form a support structure for the upper nylon plate.
[0013] Compared with the prior art, this utility model provides a flame-retardant nylon composite board with a high-temperature resistant coating, which has the following beneficial effects: 1. This device, through the setting of positioning and connecting mechanisms and other components, utilizes the interlocking relationships between the splicing positioning groove, wedge-shaped limiting groove, positioning card block and positioning connecting block, wedge-shaped limiting block and positioning slot. This allows the positioning connecting block to be inserted into the splicing positioning groove, and through the engagement of the wedge-shaped limiting block and the wedge-shaped limiting groove, and the engagement of the positioning card block and the positioning slot, to accurately splice and limit multiple composite boards. This device can prevent the gap from increasing due to compression after splicing through multiple limiting structures, effectively solving the technical problem that the lack of effective splicing and limiting structure in traditional nylon composite boards affects subsequent use.
[0014] 2. This device, through the setting of reinforcing mechanisms and other components, forms a stable support for the upper nylon board through the cooperation of the composite reinforcing layer and the lower nylon board. At the same time, the high-temperature resistant coatings on the surfaces of the upper nylon board, the composite reinforcing layer, and the lower nylon board provide protection. The anti-slip pads and cable trays respectively realize the functions of anti-slip and cable harness installation, stacking and retrieval. This device can improve the overall strength and ease of use through the synergistic effect of the multi-layer structure, and further expand the applicable scenarios of composite boards while ensuring splicing stability. Attached Figure Description
[0015] Figure 1 This is a three-dimensional view of the front side structure of this utility model after assembly; Figure 2This is a perspective view of the structure of this utility model from a bottom to a side view; Figure 3 This is a perspective view of the combined structure of the positioning connecting block and the wedge-shaped limiting block of this utility model; Figure 4 This is a front-view perspective view of the structure of this utility model; Figure 5 This is a top-view perspective view of the structure of this utility model.
[0016] In the diagram: 1. Upper nylon board; 101. Composite reinforcing layer; 1011. Lower nylon board; 1012. Cable tray; 1013. Anti-slip pad; 2. Splicing positioning groove; 201. Wedge-shaped limiting groove; 2011. Positioning block; 3. Positioning connecting block; 301. Wedge-shaped limiting block; 3011. Positioning slot. Detailed Implementation
[0017] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0018] Please see Figures 1 to 5 In this embodiment, a flame-retardant nylon composite board with a high-temperature resistant coating includes an upper nylon board 1. A reinforcing mechanism is fixedly connected to the bottom end of the upper nylon board 1. A positioning mechanism is also provided inside the upper nylon board 1, and a connecting mechanism is installed inside the positioning mechanism. The positioning mechanism includes a splicing positioning groove 2, a wedge-shaped limiting groove 201, and a positioning block 2011. The splicing positioning groove 2 is provided in four places, and the four splicing positioning grooves 2 are arranged in a ring array on the outer wall of the upper nylon plate 1. The wedge-shaped limiting groove 201 is opened in the splicing positioning groove 2, and the positioning block 2011 is fixedly arranged in a linear array in the splicing positioning groove 2.
[0019] Specifically, by adopting a structure consisting of an upper nylon plate 1, a reinforcing mechanism, a positioning mechanism, and a connecting mechanism, wherein the upper nylon plate 1 has a reinforcing mechanism fixed at its bottom, a positioning mechanism is opened inside, and a connecting mechanism is installed inside the positioning mechanism, the structural reinforcement and splicing positioning functions of the composite board are realized, solving the problem that traditional nylon composite boards lack an effective splicing and limiting structure.
[0020] The connecting mechanism includes a positioning connecting block 3 and a wedge-shaped limiting block 301. The positioning connecting block 3 is inserted into the splicing positioning groove 2, and the wedge-shaped limiting block 301 is symmetrically fixed on the outer wall of the positioning connecting block 3. The wedge-shaped limiting block 301 matches the wedge-shaped limiting groove 201.
[0021] Specifically, by adopting the structure of positioning connecting block 3 and wedge-shaped limiting block 301, the positioning connecting block 3 is inserted into the splicing positioning groove 2 and the wedge-shaped limiting block 301 is symmetrically fixed to the outer wall of the positioning connecting block 3 and matches the wedge-shaped limiting groove 201, thus realizing the initial limiting cooperation function of the connecting mechanism and the positioning mechanism, and providing basic limiting for the splicing of the panels.
[0022] The connecting mechanism also includes positioning slots 3011, which are arranged in a linear array at the front and rear ends of the positioning connecting block 3. The positioning slots 3011 are matched with the positioning card block 2011.
[0023] Specifically, by adopting the structure of positioning slot 3011, in which the positioning slot 3011 is arranged in a linear array at both ends of the positioning connecting block 3 and matches the positioning card block 2011, the secondary limiting and fixing function of the connecting mechanism and the positioning mechanism is realized, further improving the splicing stability.
[0024] When the positioning connecting block 3 is inserted into the splicing positioning groove 2, the wedge-shaped limiting block 301 is inserted into the wedge-shaped limiting groove 201, and the positioning slot 3011 is engaged with the positioning card block 2011.
[0025] Specifically, by using the positioning connecting block 3 to insert into the splicing positioning groove 2, the wedge-shaped limiting block 301 is inserted into the wedge-shaped limiting groove 201 and the positioning slot 3011 is engaged with the positioning card block 2011, thus realizing the complete matching and limiting function of the connecting mechanism and the positioning mechanism, ensuring that there is no loose gap after splicing.
[0026] The reinforcing mechanism includes a composite reinforcing layer 101 and a lower nylon plate 1011. The composite reinforcing layer 101 is fixedly disposed at the bottom end of the upper nylon plate 1, and the lower nylon plate 1011 is fixedly disposed at the bottom end of the composite reinforcing layer 101.
[0027] Specifically, by adopting a structure of composite reinforcing layer 101 and lower nylon plate 1011, wherein the composite reinforcing layer 101 is fixed to the bottom end of the upper nylon plate 1 and the lower nylon plate 1011 is fixed to the bottom end of the composite reinforcing layer 101, the structure of the upper nylon plate 1 is strengthened and supported, thereby improving the overall strength of the composite board.
[0028] The upper nylon plate 1, the composite reinforcing layer 101, and the lower nylon plate 1011 are all coated with a high-temperature resistant coating. The upper nylon plate 1, the composite reinforcing layer 101, and the lower nylon plate 1011 together form a composite board structure.
[0029] Specifically, by using a high-temperature resistant coating on the surfaces of the upper nylon board 1, the composite reinforcing layer 101, and the lower nylon board 1011, and having the three together form a composite board structure, the high-temperature resistant protection function of the composite board is achieved, while also constituting a complete composite board body.
[0030] The reinforcing mechanism also includes a cable tray 1012 and an anti-slip pad 1013. The cable tray 1012 is cross-shaped and located at the bottom of the lower nylon plate 1011. The anti-slip pad 1013 is fixedly installed at the bottom of the lower nylon plate 1011.
[0031] Specifically, by adopting the structure of cable tray 1012 and anti-slip pad 1013, wherein the cable tray 1012 is cross-shaped and opened at the bottom of the lower nylon plate 1011 and the anti-slip pad 1013 is fixed at the bottom of the lower nylon plate 1011, the cable harness installation and anti-slip support functions of the plate are realized, expanding the application scenarios of the plate.
[0032] The cable tray 1012 is used to install the wire harness and has a gap for removal when the multi-layer nylon plates are stacked. The lower nylon plate 1011 and the anti-slip pad 1013 together form a support structure for the upper nylon plate 1.
[0033] Specifically, by using a cable tray 1012 to install the wire harness and provide space for multi-layer stacking and removal, and by setting up the lower nylon board 1011 and the anti-slip pad 1013 together to form the upper nylon board 1 support structure, the functions of neatly storing the wire harness, convenient stacking and removal, and stable support of the upper structure are realized, thereby improving the ease of use and structural reliability of the board.
[0034] The working principle of the above embodiments is as follows: When multiple composite panels need to be spliced and assembled, first determine the splicing position of the two composite panels to be spliced, align the positioning connecting block 3 in the connecting mechanism with the splicing positioning groove 2 opened on the outer wall of the upper nylon plate 1 of one of the composite panels, and then push the positioning connecting block 3 into the splicing positioning groove 2 so that the positioning connecting block 3 gradually enters the splicing positioning groove 2. During the process of inserting the positioning connecting block 3 into the splicing positioning groove 2, the wedge-shaped limiting block 301 symmetrically fixed on the outer wall of the positioning connecting block 3 will come into contact with the wedge-shaped limiting groove 201 opened inside the splicing positioning groove 2 and gradually fit together. As the insertion depth of the positioning connecting block 3 increases, the wedge-shaped limiting block 301 will slide along the inner wall of the wedge-shaped limiting groove 201 and eventually be completely inserted into the wedge-shaped limiting groove 201, thus initially achieving the limiting of the positioning connecting block 3 and the splicing positioning groove 2. Meanwhile, the positioning blocks 2011 fixed in the linear array inside the splicing positioning groove 2 will correspond to the positioning slots 3011 opened in the linear array at both ends of the positioning connecting block 3. As the positioning connecting block 3 is continuously inserted, the positioning blocks 2011 will be inserted into the positioning slots 3011 one by one, further strengthening the connection stability between the positioning connecting block 3 and the splicing positioning groove 2, thereby completing the precise splicing of the two composite boards and avoiding positional shift after splicing. After splicing, the composite board is put into use. The composite reinforcing layer 101 fixed at the bottom of the upper nylon board 1 will strengthen the structure of the upper nylon board 1. At the same time, the lower nylon board 1011 fixed at the bottom of the composite reinforcing layer 101 will cooperate with the composite reinforcing layer 101 to form a stable support for the upper nylon board 1, thereby improving the load-bearing capacity and structural strength of the entire composite board. During the use of the upper nylon sheet 1, the composite reinforcing layer 101 and the lower nylon sheet 1011, the high-temperature resistant coatings applied to the surfaces of the three layers will come into direct contact with the high-temperature environment, effectively blocking the impact of high temperature on the internal structure of the sheet and protecting the performance of the sheet from being damaged by high temperature. When the lower nylon board 1011 needs to be used with a wire harness, the wire harness can be placed directly in the cross-shaped cable tray 1012 at the bottom of the lower nylon board 1011 to achieve neat storage of the wire harness. If the multi-layer composite boards need to be stacked, the cable tray 1012 will form a certain gap between two adjacent composite boards to facilitate the subsequent retrieval of the stacked boards. Meanwhile, the anti-slip pad 1013 fixed to the bottom of the lower nylon board 1011 will be in close contact with the placement surface, increasing the friction between the composite board and the placement surface, preventing the composite board from sliding during use or storage, and ensuring stability during use.
[0035] The installation, connection, or setting methods disclosed in this embodiment are all common mechanical connection methods. Any method that can achieve its beneficial effect can be implemented. In addition, the electrical components in this embodiment are all electrically connected to the main controller and the power supply. The main controller can be a conventional known device such as a computer that plays a control role. Those skilled in the art can control the electrical components through simple programming. Moreover, the existing disclosed electrofusion connection technology is also common knowledge in the field. Therefore, the specific structural composition and working principle will not be described in detail in this embodiment.
Claims
1. A flame-retardant nylon composite board with a high-temperature resistant coating, comprising an upper nylon board (1), characterized in that: The bottom end of the upper nylon plate (1) is fixedly connected to a reinforcing mechanism, and a positioning mechanism is also provided inside the upper nylon plate (1), and a connecting mechanism is installed inside the positioning mechanism. The positioning mechanism includes a splicing positioning groove (2), a wedge-shaped limiting groove (201), and a positioning block (2011). The splicing positioning groove (2) is provided in four places. The four splicing positioning grooves (2) are arranged in a ring array on the outer wall of the upper nylon plate (1). The wedge-shaped limiting groove (201) is opened in the splicing positioning groove (2). The positioning block (2011) is arranged in a linear array and fixedly set in the splicing positioning groove (2).
2. The flame-retardant nylon composite board with a high-temperature resistant coating according to claim 1, characterized in that: The connecting mechanism includes a positioning connecting block (3) and a wedge-shaped limiting block (301). The positioning connecting block (3) is inserted into the splicing positioning groove (2). The wedge-shaped limiting block (301) is symmetrically fixed on the outer wall of the positioning connecting block (3). The wedge-shaped limiting block (301) matches the wedge-shaped limiting groove (201).
3. The flame-retardant nylon composite board with a high-temperature resistant coating according to claim 2, characterized in that: The connecting mechanism also includes positioning slots (3011), which are arranged in a linear array at the front and rear ends of the positioning connecting block (3), and the positioning slots (3011) are matched with the positioning card block (2011).
4. The flame-retardant nylon composite board with a high-temperature resistant coating according to claim 3, characterized in that: When the positioning connecting block (3) is inserted into the splicing positioning groove (2), the wedge-shaped limiting block (301) is inserted into the wedge-shaped limiting groove (201), and the positioning slot (3011) is engaged with the positioning card block (2011).
5. The flame-retardant nylon composite board with a high-temperature resistant coating according to claim 1, characterized in that: The reinforcing mechanism includes a composite reinforcing layer (101) and a lower nylon plate (1011). The composite reinforcing layer (101) is fixedly disposed at the bottom end of the upper nylon plate (1), and the lower nylon plate (1011) is fixedly disposed at the bottom end of the composite reinforcing layer (101).
6. The flame-retardant nylon composite board with a high-temperature resistant coating according to claim 1, characterized in that: The surfaces of the upper nylon plate (1), the composite reinforcing layer (101), and the lower nylon plate (1011) are all coated with a high-temperature resistant coating. The upper nylon plate (1), the composite reinforcing layer (101), and the lower nylon plate (1011) together form a composite board structure.
7. The flame-retardant nylon composite board with a high-temperature resistant coating according to claim 1, characterized in that: The reinforcing mechanism also includes a cable tray (1012) and an anti-slip pad (1013). The cable tray (1012) is cross-shaped and located at the bottom of the lower nylon plate (1011). The anti-slip pad (1013) is fixedly installed at the bottom of the lower nylon plate (1011).
8. A flame-retardant nylon composite board with a high-temperature resistant coating according to claim 7, characterized in that: The cable tray (1012) is used to install the wire harness and has a gap for removal when the multi-layer nylon plates are stacked. The lower nylon plate (1011) and the anti-slip pad (1013) together form a support structure for the upper nylon plate (1).