A weighing device for batch production of mica plates

By designing a weighing device that limits, adjusts, and stabilizes components, the problem of mica panels falling off during the weighing process was solved, achieving stability and accuracy in weighing and adapting to the needs of mica panels of different specifications.

CN224353903UActive Publication Date: 2026-06-12PINGJIANG COUNTY YUEFENG MICA NEW MATERIAL CO LTD
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Patent Information

Application Number
CN202521467423.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-07-14
Publication Date
2026-06-12
Estimated Expiration
2035-07-14

AI Technical Summary

Technical Problem

In the mass production of mica sheets, the open structure of conventional weighing devices can cause mica sheets to fall during stacking, affecting the stability and accuracy of weighing.

Method used

A weighing device comprising a weighing component, a limiting component, an adjusting component, and a stabilizing component is designed. The limiting plate and the electric swing frame provide side protection, the adjusting component uses a servo motor and a lead screw for horizontal adjustment, and the stabilizing component ensures the stability of the device through fixing bolts and ball joints.

Benefits of technology

It effectively prevents mica plates from shaking or falling, ensuring the accuracy and stability of the weighing process. It adapts to the structural adjustment of mica plates of different specifications, meets different usage requirements, and ensures the flexibility and stability of the device.

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Abstract

This utility model discloses a weighing device for mass production of mica boards, relating to the field of mica board production technology. It includes a weighing component and limiting components. Adjusting components are provided around the weighing component, and the limiting components are connected to the middle surface of the adjusting components. Stabilizing components are vertically installed at all four ends of the weighing component. This weighing device for mass production of mica boards, by providing a set of limiting components on each of the four sides of the weighing component, effectively limits the structure of the mica boards being weighed in batches. This ensures that the mica boards do not wobble or fall off the surface of the weighing component during the weighing process, thus ensuring the accuracy and stability of the weighing. Furthermore, the adjusting components can structurally adjust the limiting components, allowing for adaptation to the dimensions of the mica boards within a certain range, thus ensuring structural flexibility.
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Description

Technical Field

[0001] This utility model relates to the field of mica board production technology, specifically a weighing device for mass production of mica boards. Background Technology

[0002] Mica board is a sheet-like insulating material made by bonding mica paper with silicone rubber, heating and pressing. It contains about 90% mica and about 10% silicone rubber. It has the characteristics of high temperature resistance, insulation and environmental protection, and is widely used in industrial and electronic fields.

[0003] In conventional weighing devices, the mica sheets to be weighed are stacked in batches on the surface of the weighing platform. Due to the open structure, the stacked mica sheets may fall off, causing damage to the materials and affecting the stability and accuracy of the weighing. Utility Model Content

[0004] The purpose of this invention is to provide a weighing device for mass production of mica boards, so as to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a weighing device for mass production of mica boards, comprising a weighing component and a limiting component. Adjusting components are provided around the weighing component, and the limiting component is connected to the middle surface of the adjusting component. Stabilizing components are vertically installed at all four ends of the weighing component. The limiting component includes a limiting plate, an electric swing frame, a fixed seat, a guide slider, and a guide post. The bottom of the limiting plate is symmetrically connected to the electric swing frame, and the bottom of the electric swing frame is connected to the fixed seat. The bottom of the fixed seat is symmetrically provided with guide sliders, and the bottom center of the fixed seat is provided with a guide post.

[0006] Furthermore, the weighing component includes an electronic weighing platform, a material placement plate, a base plate, and fixing holes. The material placement plate is installed on the top surface of the electronic weighing platform, and the base plate is installed on the bottom of the electronic weighing platform. Fixing holes are provided around the base plate.

[0007] Furthermore, the base plate is arranged in a cross shape, and the fixing holes are arranged in a ring array with the base plate as the center, with two sets of holes in each segment of the base plate.

[0008] Furthermore, the adjustment component includes a base, a servo motor, an adjustment screw, and a support rail. The servo motor is horizontally mounted on the end of the base away from the electronic weighing platform, and the power output end of the servo motor is horizontally connected to the adjustment screw via a coupling. Support rails are horizontally arranged on both sides below the adjustment screw.

[0009] Furthermore, the base is fixed to the top surface of the base plate, and the adjustment components are arranged in a circular array structure with the base as the center, and there are four sets of them.

[0010] Furthermore, the fixed seat, guide slider, and guide pile are integrated into a single structure, and the guide slider and support rail are connected to each other using a slotted embedded structure. The lower end of the guide pile and the adjusting screw are connected by a thread.

[0011] Furthermore, the stabilizing component includes a fixing bolt, a ball joint, and a grounding foot. The bottom of the fixing bolt is fitted with a ball joint, and the bottom of the ball joint is fitted with a grounding foot.

[0012] Furthermore, the ball joint and the fixing bolt are connected by threads, and the ball joint and the grounding support are connected by a movable sleeve structure. The fixing bolt is installed vertically and threadedly inside the fixing hole.

[0013] This utility model provides a weighing device for mass production of mica boards, which has the following advantages:

[0014] 1. This utility model provides limiting components on the sides of the weighing component. The limiting plate structure provides good side protection for the mica plate placed on the material plate surface, preventing the mica plate from shaking or falling, thereby ensuring the accuracy and stability of the electronic weighing platform during the weighing process. In addition, an electric swing frame is provided between the limiting plate and the fixed base. The structural mobility of the electric swing frame allows the limiting plate to be folded up and down within a certain angle range, which is convenient for structural maintenance or adjustment to meet different usage needs. This method can maximize the structural flexibility of the limiting component.

[0015] 2. This utility model, by incorporating an adjusting component, utilizes a guide slider and guide post at the bottom of the fixed base, which are respectively connected to an adjusting screw and a support rail. Under the operation of the servo motor, the adjusting screw, connected to its power output end, rotates axially in the horizontal direction. This causes the guide slider and guide post at the bottom of the fixed base to translate along the surfaces of the support rail and the adjusting screw, respectively. This allows the entire limiting component to be adjusted horizontally towards the side of the weighing component within a certain distance. Using this structure, flexible structural adjustments can be made within a certain range based on the structural dimensions of the mica plate, thus adapting to different specifications of mica plates and ensuring the flexibility and effectiveness of the structural limiting mechanism.

[0016] 3. This utility model incorporates a stabilizing component, in which a fixing bolt is vertically screwed into the fixing hole. The fixing bolt and the ball joint can be connected by screwing. Utilizing the structure of the ball joint and the grounding foot, the grounding foot can be adjusted at any angle to ensure that the bottom of the grounding foot is in contact with the ground or placed on a structural surface, thereby ensuring the grounding stability of the entire device. Furthermore, by vertically screwing the fixing bolt, appropriate adjustments can be made according to the flatness of the ground, ensuring the stability of the entire device. If necessary, the entire device can be fixed to the ground or placed on a structural surface using only the fixing bolt to achieve structural fixation and ensure the overall stable use of the device. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the axial side view of the weighing device for mass production of mica boards according to this utility model.

[0018] Figure 2 This is a schematic diagram of the weighing component structure of a weighing device for mass production of mica boards according to this utility model;

[0019] Figure 3 This is a three-dimensional structural diagram of the adjusting component of a weighing device for mass production of mica boards according to the present invention.

[0020] Figure 4 This is a three-dimensional structural diagram of a limiting component of a weighing device for mass production of mica boards according to the present invention.

[0021] Figure 5 This is a three-dimensional structural diagram of a stabilizing component of a weighing device for mass production of mica boards according to the present invention.

[0022] In the diagram: 1. Weighing component; 101. Electronic weighing platform; 102. Material placement plate; 103. Base plate; 104. Fixing hole; 2. Adjusting component; 201. Base; 202. Servo motor; 203. Adjusting screw; 204. Support rail; 3. Limiting component; 301. Limiting plate; 302. Electric swing frame; 303. Fixing seat; 304. Guide slider; 305. Guide pile; 4. Stabilizing component; 401. Fixing bolt; 402. Ball joint; 403. Grounding support foot. Detailed Implementation

[0023] The embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples. The following examples are for illustrative purposes only and should not be construed as limiting the scope of this utility model.

[0024] like Figures 1 to 5As shown, a weighing device for mass production of mica boards includes a weighing component 1 and a limiting component 3. Adjusting components 2 are provided around the weighing component 1, and the limiting component 3 is connected to the middle surface of the adjusting components 2. Stabilizing components 4 are vertically installed at all four ends of the weighing component 1. The limiting component 3 includes a limiting plate 301, an electric swing frame 302, a fixed seat 303, a guide slider 304, and a guide post 305. The electric swing frame 302 is symmetrically connected to the bottom of the limiting plate 301, and the fixed seat 303 is connected to the bottom of the electric swing frame 302. The bottom of the fixed seat 303 is symmetrically provided with guides. The slider 304 and the guide post 305 are provided at the bottom center of the fixed seat 303. The fixed seat 303, the guide slider 304 and the guide post 305 are integrated into one structure. The guide slider 304 and the support rail 204 are connected to each other by a slotted embedded structure. The lower end of the guide post 305 is threadedly connected to the adjusting screw 203. The structure of the limiting plate 301 can provide a good side shielding structure for the mica plate placed on the surface of the material plate 102. The structural mobility of the electric swing frame 302 can make the limiting plate 301 fold up and down within a certain angle range.

[0025] like Figures 1 to 5 As shown, the weighing component 1 includes an electronic weighing platform 101, a material placement plate 102, a base plate 103, and fixing holes 104. The material placement plate 102 is installed on the top surface of the electronic weighing platform 101, and the base plate 103 is installed on the bottom of the electronic weighing platform 101. Fixing holes 104 are provided around the base plate 103. The base plate 103 is arranged in a cross shape, and the fixing holes 104 are arranged in a circular array around the base plate 103, with two sets arranged on each section of the base plate 103. The adjusting component 2 includes a base 201, a servo motor 202, an adjusting screw 203, and a support rail 204. The servo motor 202 is horizontally installed at the end of the base 201 away from the electronic weighing platform 101. The power output end of the machine 202 is horizontally connected to the adjusting screw 203 via a coupling. Supporting guide rails 204 are horizontally arranged on both sides below the adjusting screw 203. The base 201 is fixed to the top surface of the base plate 103. The adjusting component 2 is arranged in a ring array structure with the base 201 as the center and has four sets. Under the operation of the servo motor 202, the adjusting screw 203 connected to the power output end will rotate axially in the horizontal direction, thereby driving the guide slider 304 and guide post 305 at the bottom of the fixed seat 303 to translate along the surface of the supporting guide rail 204 and the adjusting screw 203, respectively. This allows the entire limiting component 3 to be adjusted in the horizontal direction towards the side of the weighing component 1 within a certain distance.

[0026] like Figures 1 to 5As shown, the stabilizing component 4 includes a fixing bolt 401, a ball joint 402, and a grounding support 403. The ball joint 402 is installed at the bottom of the fixing bolt 401, and the grounding support 403 is sleeved on the bottom of the ball joint 402. The ball joint 402 and the fixing bolt 401 are threaded together, and the ball joint 402 and the grounding support 403 are connected to each other by a movable sleeve structure. The fixing bolt 401 is vertically threaded into the inside of the fixing hole 104. By utilizing the structure of the ball joint 402 and the grounding support 403, the grounding support 403 can be adjusted at any angle to ensure that the bottom of the grounding support 403 is in contact with the ground or placed on the structural surface. By vertically tightening the fixing bolt 401, appropriate adjustments can be made according to the flatness of the ground.

[0027] In summary, as Figures 1 to 5 As shown, the weighing device for mass production of mica boards can be used selectively by first using a portion of the stabilizing component 4 as needed. If the entire device is to be structurally fixed, the fixing bolt 401 can be directly screwed into the fixing hole 104 at one end of the base plate 103, and the lower end of the fixing bolt 401 can be screwed to the ground or the mounting structure surface to achieve structural fixation. If structural fixation is not required, the fixing bolt 401 can be screwed into the top of the ball joint 402, and the ball joint 402 can be embedded into the ground support 403. The combination of the movable structure between the structures, along with the vertical screwing of the fixing bolt 401, can make the entire device stable on the mounting structure surface or the ground.

[0028] Then, the mica plates to be weighed are placed in batches on the top surface of the material placement plate 102. At this time, the adjustment components 2 around the weighing component 1 start to operate. Under the operation of the servo motor 202 at one end of the base 201, the adjustment screw 203 connected to the servo motor 202 will rotate axially in the horizontal direction. This causes the entire limiting component 3 to move horizontally along the surface of the adjustment screw 203 and the support rail 204 with the cooperation of the guide slider 304 and the guide pile 305 at the bottom of the fixed seat 303. This pushes the limiting plate 301 connected to the upper end of the electric swing frame 302 to the side of the mica plate, thereby forming a structural limit and ensuring the stability of the weighing of the electronic weighing platform 101.

[0029] The embodiments of this utility model are given for illustrative and descriptive purposes only, and are not intended to be exhaustive or to limit the utility model to the forms disclosed. Many modifications and variations will be apparent to those skilled in the art. The embodiments were chosen and described in order to better illustrate the principles and practical applications of this utility model, and to enable those skilled in the art to understand this utility model and design various embodiments with various modifications suitable for a particular purpose.

Claims

1. A weighing device for mass production of mica boards, comprising a weighing component (1) and a limiting component (3), characterized in that: The weighing component (1) is provided with adjustment components (2) on all four sides. The limiting component (3) is connected to the middle section surface of the adjustment component (2). The weighing component (1) is provided with stabilizing components (4) at all four ends. The limiting component (3) includes a limiting plate (301), an electric swing frame (302), a fixed seat (303), a guide slider (304), and a guide post (305). The bottom of the limiting plate (301) is symmetrically connected to the electric swing frame (302), and the bottom of the electric swing frame (302) is connected to the fixed seat (303). The bottom of the fixed seat (303) is symmetrically provided with guide sliders (304), and the bottom of the fixed seat (303) is provided with a guide post (305) in the middle.

2. The weighing device for mass production of mica boards according to claim 1, characterized in that, The weighing component (1) includes an electronic weighing platform (101), a material placement plate (102), a base plate (103), and fixing holes (104). The material placement plate (102) is installed on the top surface of the electronic weighing platform (101), and the base plate (103) is installed on the bottom of the electronic weighing platform (101). Fixing holes (104) are provided around the base plate (103).

3. A weighing device for mass production of mica boards according to claim 2, characterized in that, The base plate (103) is arranged in a cross shape, and the fixing holes (104) are arranged in a ring array with the base plate (103) as the center, and two sets are provided in each section of the base plate (103).

4. A weighing device for mass production of mica boards according to claim 2, characterized in that, The adjustment component (2) includes a base (201), a servo motor (202), an adjustment screw (203), and a support rail (204). The servo motor (202) is horizontally mounted on one end of the base (201) away from the electronic weighing platform (101), and the power output end of the servo motor (202) is horizontally connected to the adjustment screw (203) through a coupling. Furthermore, the support rails (204) are horizontally arranged on both sides below the adjustment screw (203).

5. A weighing device for mass production of mica boards according to claim 4, characterized in that, The base (201) is fixed to the top surface of the base plate (103), and the adjustment components (2) are arranged in a ring array structure with the base (201) as the center and are provided in four groups.

6. A weighing device for mass production of mica boards according to claim 1, characterized in that, The fixed base (303), guide slider (304), and guide post (305) are integrated into one structure. The guide slider (304) and the support rail (204) are connected to each other by a slotted embedded structure. The lower end of the guide post (305) and the adjusting screw (203) are connected by a thread.

7. A weighing device for mass production of mica boards according to claim 1, characterized in that, The stabilizing component (4) includes a fixing bolt (401), a ball joint (402), and a grounding support (403). The bottom of the fixing bolt (401) is fitted with a ball joint (402), and the bottom of the ball joint (402) is fitted with a grounding support (403).

8. A weighing device for mass production of mica boards according to claim 7, characterized in that, The ball joint (402) and the fixing bolt (401) are connected by threads, and the ball joint (402) and the grounding support (403) are connected to each other by a movable sleeve structure. The fixing bolt (401) is installed vertically in the interior of the fixing hole (104).