Grounding structure of ceramic raw material weighing device
By installing wire support grooves and grounding components on the side wall of the steel weighing platform of the ceramic raw material weighing device, the problem of electronic sensor damage caused by lightning strikes was solved, a stable grounding connection was achieved, and maintenance costs and production difficulty were reduced.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HEYUAN DONGYUAN EAGLE CERAMICS CO LTD
- Filing Date
- 2024-07-04
- Publication Date
- 2026-06-05
AI Technical Summary
Existing ceramic raw material weighing devices are susceptible to lightning strikes during thunderstorms, which can burn out the electronic sensors on the steel weighing platform. Furthermore, the inconvenient grounding structure increases maintenance costs and production difficulties.
A horizontally extending steel cable tray is installed on the side wall of the steel weighing platform, and a grounding assembly is provided, including a grounding stake and a grounding conductor. The grounding stake is driven into the ground to achieve a fast and stable grounding connection, and the cable tray provides a reliable connection position.
It improves the stability and reliability of grounding, reduces the probability of lightning strikes burning out electronic sensors, and lowers maintenance costs and production and maintenance difficulties.
Smart Images

Figure CN224328904U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of ceramic production equipment, and in particular to a grounding structure for a ceramic raw material weighing device. Background Technology
[0002] Currently, in the ceramic production process, it is often necessary to accurately proportion various ceramic raw materials. Since ceramics are generally produced in batches, the amount of raw materials to be proportioned at one time is very large. Therefore, in the actual production process, ceramic raw material weighing devices are generally used to weigh the ceramic raw materials. In order to avoid the ceramic raw material weighing devices occupying the space of the production workshop, the ceramic raw material weighing devices are generally set up outside the factory building, that is: ceramic raw material weighing devices are generally installed outdoors.
[0003] Currently, to ensure high structural strength and load-bearing capacity, steel weighing platforms are mostly used in ceramic raw material weighing devices. Since these devices typically weigh trucks carrying ceramic raw materials together, the steel weighing platforms are relatively large. Furthermore, steel has excellent electrical conductivity, making outdoor ceramic raw material weighing devices susceptible to lightning strikes during thunderstorms. Additionally, most existing steel weighing platforms are not grounded, which can lead to the burnout of electronic sensors on the platform when struck by lightning, increasing maintenance costs for users. While grounding structures have been developed, existing grounding methods are inconvenient and unreliable.
[0004] Meanwhile, most of the relevant signal transmission wires are now arranged inside the steel weighing platform. This not only makes the arrangement of the wires more difficult, but also makes it inconvenient to inspect and maintain the wires, which in turn makes the production and maintenance of ceramic raw material weighing devices more difficult.
[0005] Therefore, it is essential to redesign the structure of the ceramic raw material weighing device. Utility Model Content
[0006] The purpose of this utility model is to solve the above-mentioned problems and shortcomings, and to provide a grounding structure for a ceramic raw material weighing device. This grounding structure not only facilitates grounding, but also ensures that the grounding is very stable and reliable, thereby greatly reducing the probability of lightning strikes burning out electronic sensors, and thus reducing the user's maintenance costs. In addition, it also facilitates the arrangement and maintenance of wires, which helps to reduce the difficulty of production and maintenance of the ceramic raw material weighing device.
[0007] The technical solution of this utility model is implemented as follows:
[0008] A grounding structure for a ceramic raw material weighing device is characterized by including a steel weighing platform and a grounding component. The steel weighing platform has a horizontally extending steel wire support groove on its side wall. The grounding component includes a grounding stake and a grounding conductor, with both ends of the grounding conductor connected to the grounding stake and the steel wire support groove, respectively.
[0009] Preferably, the steel support groove includes a support strip and a baffle strip integrally formed from steel. The support strip is horizontally arranged on the side wall of the steel weighing platform, and the baffle strip is horizontally arranged with its lower end connected to the support strip. The baffle strip, the support strip, and the side wall of the steel weighing platform together form a support groove, and the grounding wire is connected to the baffle strip.
[0010] Preferably, a first stud is provided on the outer wall of the baffle strip, and a first nut is screwed onto the first stud. The end of the grounding wire is wound around the first stud between the first nut and the baffle strip, so that the first nut and the baffle strip together clamp the end of the grounding wire.
[0011] Preferably, a first bolt is inserted through the baffle strip, and the first bolt forms a first stud and a first nut.
[0012] Preferably, a convex baffle is provided on the upper side wall of the steel weighing platform, and the convex baffle is positioned directly above the steel support groove.
[0013] Preferably, the grounding stake is a steel strip with an L-shaped horizontal cross-section, and the lower end of the grounding stake is provided with a pointed corner.
[0014] Preferably, a second stud is provided on the outer wall of the grounding stake, and a second nut is screwed onto the second stud. The end of the grounding wire is wound around the second stud between the second nut and the grounding stake, so that the second nut and the grounding stake together clamp the end of the grounding wire.
[0015] Preferably, a second bolt is inserted through the grounding stake, and the second bolt forms a second stud and a second nut.
[0016] Preferably, there are two or more steel weighing platforms, which are arranged side by side, and at least one grounding component is connected to the steel cable tray on each steel weighing platform.
[0017] Preferably, the lower side wall of the steel weighing platform is recessed to form a storage groove, the steel wire support strip is located in the storage groove, and the groove wall of the storage groove is provided with a through hole that extends to the end of the steel weighing platform.
[0018] The beneficial effects of this utility model are as follows: In the grounding structure of this ceramic raw material weighing device, by setting horizontally extending steel wire support grooves on the side wall of the steel weighing platform, the steel wire support grooves not only possess high structural strength and durability, but also facilitate the arrangement of related wires and the maintenance of related wires, thus reducing the difficulty of production and maintenance of the ceramic raw material weighing device. The grounding component includes grounding stakes and grounding wires. Grounding stakes can be installed quickly and stably by being driven into the ground, while grounding wires greatly limit the selection of grounding locations. By connecting the grounding wires to the steel wire support grooves, the steel wire support grooves provide a convenient and reliable connection point for the grounding wires. This not only allows users to choose the grounding location but also ensures convenient and stable grounding, guaranteeing highly stable and reliable grounding. This significantly reduces the probability of lightning strikes damaging electronic sensors, thereby reducing user maintenance costs. Attached Figure Description
[0019] Figure 1 This is a schematic diagram of the grounding structure of the ceramic raw material weighing device in this utility model.
[0020] Figure 2 This utility model Figure 1 A magnified structural diagram of part A in the middle.
[0021] Figure 3 This utility model Figure 1 A magnified structural diagram of part B. Detailed Implementation
[0022] like Figure 1 As shown, the grounding structure of the ceramic raw material weighing device of this utility model includes a steel weighing platform 1 and a grounding component 2. The steel weighing platform 1 has a horizontally extending steel wire support groove 11 on its side wall. The grounding component 2 includes a grounding stake 21 and a grounding wire 22. The two ends of the grounding wire 22 are respectively connected to the grounding stake 21 and the steel wire support groove 11.
[0023] In the grounding structure of this ceramic raw material weighing device, a horizontally extending steel cable tray 11 is installed on the side wall of the steel weighing platform 1. This not only gives the steel cable tray 11 high structural strength and durability, but also facilitates the arrangement of related wires and the maintenance of related wires, thereby reducing the difficulty of production and maintenance of the ceramic raw material weighing device. The grounding component 2 includes a grounding stake 21 and a grounding wire 22. The grounding stake 21 can be installed quickly and stably by being driven into the ground, while the grounding wire 22 greatly limits the choice of grounding location. By connecting the grounding wire 22 to the steel cable tray 11, the steel cable tray 11 provides a convenient and reliable connection point for the grounding wire 22. This not only allows users to choose the grounding location, but also enables convenient and stable grounding, ensuring a very stable and reliable grounding. This greatly reduces the probability of lightning strikes burning out electronic sensors, thereby reducing the user's maintenance costs.
[0024] The steel weighing platform 1 is an existing steel weighing platform, therefore Figure 1 The steel weighing platform 1 is only shown in part, which does not affect those skilled in the art from implementing this technical solution.
[0025] like Figure 1 and Figure 2 As shown, the steel wire support groove 11 includes a support strip 111 and a baffle strip 112 integrally formed from steel. The support strip 111 is horizontally arranged on the side wall of the steel weighing platform 1, and the baffle strip 112 is horizontally arranged with its lower end connected to the support strip 111. The baffle strip 112, the support strip 111, and the side wall of the steel weighing platform 1 together form a wire support groove 113, and the grounding wire 22 is connected to the baffle strip 112. This steel wire support groove 11 is very simple and reliable. It is not only easy to manufacture, but also provides a very stable wire support effect and provides a more convenient and reliable connection position for the grounding wire 22, thereby helping to further improve the applicability of the grounding structure of the ceramic raw material weighing device.
[0026] like Figure 2 As shown, a first stud 101 is provided on the outer wall of the baffle strip 112, and a first nut 102 is screwed onto the first stud 101. The end of the grounding wire 22 is wound around the first stud 101 between the first nut 102 and the baffle strip 112, so that the first nut 102 and the baffle strip 112 together clamp the end of the grounding wire 22. This facilitates a convenient and stable connection of the grounding wire 22 to the baffle strip 112, thereby improving the convenience and stability of the connection of the grounding wire 22.
[0027] like Figure 2As shown, a first bolt 10 is inserted through the baffle strip 112, forming a first stud 101 and a first nut 102. Using the first bolt 10, a standard part can be purchased, eliminating the need for design and production, thus reducing manufacturing difficulty and cost.
[0028] like Figure 1 and Figure 2 As shown, a protruding baffle 12 is provided on the upper side wall of the steel weighing platform 1, and the protruding baffle 12 covers the steel cable tray 11 directly above it. This can provide a certain degree of protection for the steel cable tray 11, thereby reducing the probability of rainwater, dust, and debris falling on the steel cable tray 11, and thus reducing the adverse effects on the relevant wires. This helps to further improve the applicability of the grounding structure of the ceramic raw material weighing device.
[0029] The convex baffle 12 is made of steel, which ensures that the convex baffle 12 has high structural strength and durability, thereby facilitating the long-term stable and reliable shielding effect.
[0030] like Figure 1 As shown, the grounding stake 21 is a steel strip with an L-shaped horizontal cross-section, and the lower end of the grounding stake 21 is provided with a pointed corner 211. This not only gives the grounding stake 21 high structural strength, but also facilitates driving the grounding stake 21 into the ground, and makes the installation and positioning of the grounding stake 21 very stable, thereby improving the stability and reliability of the grounding, and further helping to improve the reliability and applicability of the grounding structure of the ceramic raw material weighing device.
[0031] like Figure 1 and Figure 3 As shown, a second stud 201 is provided on the outer wall of the grounding stake 21, and a second nut 202 is screwed onto the second stud 201. The end of the grounding wire 22 is wound around the second stud 201 between the second nut 202 and the grounding stake 21, so that the second nut 202 and the grounding stake 21 together clamp the end of the grounding wire 22. This facilitates a convenient and stable connection of the grounding wire 22 to the grounding stake 21, thereby improving the convenience and stability of the connection of the grounding wire 22.
[0032] like Figure 3 As shown, a second bolt 20 is inserted through the grounding stake 21, forming a second stud 201 and a second nut 202. Using the second bolt 20, standard parts can be purchased, eliminating the need for design and production, thus reducing manufacturing difficulty and cost.
[0033] like Figure 1As shown, the structure of the ceramic raw material weighing device can directly adopt the structure of existing weighbridges, thus meeting the needs of actual manufacturing and use. There are two or more steel weighing platforms 1, arranged side-by-side, with at least one grounding component 2 connected to the steel cable tray 11 on each platform 1. This not only constitutes a multi-platform ceramic raw material weighing device but also ensures excellent grounding performance.
[0034] The multi-platform ceramic raw material weighing device here directly adopts the assembly structure of the existing multi-platform weighbridge, which can meet the needs of actual manufacturing and use.
[0035] like Figure 1 and Figure 2 As shown, the lower side wall of the steel weighing platform 1 is recessed to form a storage groove 13, and the steel wire support strip 11 is located in the storage groove 13. A wire through hole 131 is provided on the groove wall of the storage groove 13, extending to the end of the steel weighing platform 1. Figure 2 As shown, the concealed groove 13 provides a certain degree of shielding and protection for the wires 100 in the steel wire support groove 11, while facilitating the arrangement and maintenance of the wires, thereby reducing the adverse effects of external rainwater, dust, and debris on the wires 100. The through-hole 131 facilitates the passage of wires 100 connecting adjacent steel weighing platforms 1, eliminating the need to wrap the wires 100 around the side wall of the steel weighing platform 1, thus reducing the chance of scraping the wires 100. Furthermore, the through-hole 131 provides a certain degree of constraint on the wires 100, which helps improve the stability of the wire arrangement.
Claims
1. A grounding structure for a ceramic raw material weighing device, characterized in that: The system includes a steel weighing platform (1) and a grounding assembly (2). The steel weighing platform (1) has a horizontally extending steel wire support groove (11) on its side wall. The grounding assembly (2) includes a grounding stake (21) and a grounding conductor (22). The two ends of the grounding conductor (22) are respectively connected to the grounding stake (21) and the steel wire support groove (11).
2. The grounding structure of the ceramic raw material weighing device according to claim 1, characterized in that: The steel support groove (11) includes a support strip (111) and a baffle strip (112) integrally formed from steel. The support strip (111) is horizontally arranged on the side wall of the steel weighing platform (1). The baffle strip (112) is horizontally arranged and its lower end is connected to the support strip (111). The baffle strip (112), the support strip (111) and the side wall of the steel weighing platform (1) together form a support groove (113). The grounding wire (22) is connected to the baffle strip (112).
3. The grounding structure of the ceramic raw material weighing device according to claim 2, characterized in that: A first stud (101) is provided on the outer wall of the baffle strip (112), and a first nut (102) is screwed onto the first stud (101). The end of the grounding wire (22) is wound around the first stud (101) between the first nut (102) and the baffle strip (112), so that the first nut (102) and the baffle strip (112) together clamp the end of the grounding wire (22).
4. The grounding structure of the ceramic raw material weighing device according to claim 3, characterized in that: A first bolt (10) is inserted through the baffle strip (112), and the first bolt (10) forms a first stud (101) and a first nut (102).
5. The grounding structure of the ceramic raw material weighing device according to any one of claims 1 to 4, characterized in that: The steel weighing platform (1) is provided with a convex baffle (12) on its upper side wall, and the convex baffle (12) is positioned directly above the steel support groove (11).
6. The grounding structure of the ceramic raw material weighing device according to claim 1, characterized in that: The grounding stake (21) is a steel strip with an L-shaped horizontal cross section, and the lower end of the grounding stake (21) is provided with a pointed corner (211).
7. The grounding structure of the ceramic raw material weighing device according to claim 6, characterized in that: A second stud (201) is provided on the outer wall of the grounding stake (21), and a second nut (202) is screwed onto the second stud (201). The end of the grounding wire (22) is wound around the second stud (201) between the second nut (202) and the grounding stake (21), and the second nut (202) and the grounding stake (21) clamp the end of the grounding wire (22) together.
8. The grounding structure of the ceramic raw material weighing device according to claim 7, characterized in that: A second bolt (20) is inserted through the grounding stake (21), and the second bolt (20) forms a second stud (201) and a second nut (202).
9. The grounding structure of the ceramic raw material weighing device according to claim 1, characterized in that: There are two or more steel weighing platforms (1), and each steel weighing platform (1) is arranged side by side. At least one grounding component (2) is connected to the steel cable tray (11) on each steel weighing platform (1).
10. The grounding structure of the ceramic raw material weighing device according to claim 9, characterized in that: The lower side wall of the steel weighing platform (1) is recessed to form a storage groove (13), and the steel wire support strip (11) is located in the storage groove (13). The groove wall of the storage groove (13) is provided with a wire hole (131) that extends through to the end of the steel weighing platform (1).