Stacking and splitting device for glass plate clamps
By designing an automated glass plate clamp stacking and splitting device, which utilizes cylinders and guide components to achieve rapid stacking and splitting of glass plate clamps, the problem of low efficiency in existing technologies is solved, and labor costs are reduced.
Patent Information
- Application Number
- CN202422158783.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-03
- Publication Date
- 2025-10-21
- Estimated Expiration
- 2034-09-03
AI Technical Summary
In existing technologies, glass plate clamps need to be manually stacked and disassembled before coating, resulting in low efficiency and high labor costs, and making it impossible to achieve rapid stacking and disassembly.
A glass plate clamping stacking and splitting device was designed, comprising a base, a side insert plate structure, a central lifting structure, and a side lifting structure. The device utilizes cylinders and guide components to achieve an automated stacking and splitting process.
It enables rapid stacking and disassembly of glass plate clamps, improving work efficiency and reducing labor costs.
Smart Images

Figure CN223457774U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of glass plate coating, especially glass plate clamp's stacking and splitting device. BACKGROUND
[0002] At present, before glass plate coating, a plurality of glass plates need to be clamped in the glass plate clamp, the glass plate clamp is relatively heavy, and the glass plate clamp is stacked and placed to save space and facilitate transportation, but when the glass plate needs to be coated, the stacked glass plate clamp needs to be split before coating. Purely using manpower to stack or split, repeated work, and cannot realize rapid stacking and rapid splitting, the efficiency is extremely low, and the labor cost is high. SUMMARY
[0003] The utility model aims at overcoming the above prior art, and provides glass plate clamp's stacking and splitting device.
[0004] The utility model discloses a glass plate clamp's stacking and splitting device, which comprises a base, a side plate structure, a middle lifting structure and a side lifting structure.
[0005] More preferably, the middle lifting structure comprises a middle lifting plate, a first guide assembly, a first connecting block, a middle lifting cylinder and a cylinder base, both sides of the middle lifting plate are installed on the base through the first guide assembly, the middle lifting cylinder is installed on the base through the cylinder base, and the middle lifting cylinder is connected with the middle part of the middle lifting plate through the first connecting block.
[0006] More preferably, the first guide assembly comprises a first guide rod and a first shaft sleeve, the first shaft sleeve is installed on the base, the first guide rod is slidably installed on the first shaft sleeve, and the first guide rod is connected with the middle lifting plate.
[0007] More preferably, the sliding assembly comprises a sliding rail and a sliding block, the sliding rail is installed on the side support, the sliding block is installed on the plate, and the sliding block is slidably installed on the sliding rail.
[0008] More preferably, the side lifting structure comprises a side lifting plate, a second guide assembly, a second connecting block and a side lifting cylinder, both ends of the side lifting plate are installed on the base through the second guide assembly, the middle part of the side lifting plate is connected with the side lifting cylinder through the second connecting block, and the side lifting cylinder is installed on the base.
[0009] More preferably, the second guide assembly comprises a second guide rod and a second shaft sleeve, the second shaft sleeve is installed on the base, the second guide rod is slidably installed on the second shaft sleeve, and both ends of the side lifting plate are connected with the second guide rod respectively.
[0010] More preferably, the base comprises a first bottom plate and a middle support, the middle support is installed on the first bottom plate, the middle support is symmetrically arranged, the middle part of the middle lifting structure is installed on the first bottom plate, both sides of the middle lifting structure are installed on the middle support, the side lifting structure is installed on the middle support, and the side support is installed on the first bottom plate.
[0011] More preferably, the middle support comprises a support plate and a second bottom plate, the second bottom plate is installed on the first bottom plate through the support plate, and both ends of the middle lifting structure and the side lifting structure are installed on the second bottom plate.
[0012] Compared with the prior art, the glass plate clamp stacking and splitting device has the following advantages and beneficial effects:
[0013] The base, the side plug-in plate structure, the middle lifting structure and the side lifting structure can automatically stack and split the glass plate clamp, the working effect is high, and the labor cost is reduced. BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1 is a schematic view of the stacking and splitting device of the glass plate clamp of the utility model;
[0015] Figure 2 is a schematic view of the side plug-in plate structure of the stacking and splitting device of the glass plate clamp of the utility model;
[0016] Figure 3 is a schematic view of the middle lifting structure of the stacking and splitting device of the glass plate clamp of the utility model;
[0017] Figure 4 is a schematic view of the side lifting structure of the stacking and splitting device of the glass plate clamp of the utility model;
[0018] Figure 5 is a schematic view of the base of the stacking and splitting device of the glass plate clamp of the utility model;
[0019] Figure 6 is a schematic view of a glass plate clamp of a stacking and splitting device of the glass plate clamp of the utility model;
[0020] The labels of the components in the drawings: 1-base; 11-first bottom plate; 12-middle support; 121-support plate; 122-second bottom plate; 2-side insertion plate structure; 201-side baffle; 202-side support; 203-insertion plate; 204-slideway; 205-transverse air cylinder; 206-slideway block; 3-middle lifting structure; 301-middle lifting plate; 302-first guide rod; 303-first shaft sleeve; 304-first connecting block; 305-middle lifting air cylinder; 306-air cylinder base; 4-side lifting structure; 401-side lifting plate; 402-second guide rod; 403-second shaft sleeve; 404-second connecting block; 405-side lifting air cylinder; 5-glass plate clamp; 501-supporting shaft. DETAILED DESCRIPTION
[0021] The utility model will be described in further detail in combination with the drawings and specific embodiments, and the embodiments cannot be described one by one here, but the implementation mode of the utility model is not limited to the following embodiments.
[0022] As Figure 1 shown, the stacking and splitting device of the glass plate clamp comprises a base 1, two side insertion plate structures 2, a middle lifting structure 3 and two side lifting structures 4. The middle lifting structure 3 is installed in the middle of the base 1, the two side lifting structures 4 are installed on the two sides of the middle lifting structure 3, and the two side lifting structures 4 are also installed on the base 1. The two side insertion plate structures 2 are installed on the outer sides of the two side lifting structures 4. The height of the middle lifting plate 301 after the middle lifting structure 3 is lifted is greater than the height of the side baffle 201 of the side insertion plate structure 2, and the height of the side baffle 201 of the side insertion plate structure 2 is greater than the height of the side lifting plate 401 after the side lifting structure 4 is lifted.
[0023] The base 1 is used for locating the two side insertion plate structures 2, the middle lifting structure 3 and the two side lifting structures 4 on a plane, and plays a supporting role. The side insertion plate structure 2 is used for supporting both ends of the glass plate clamp 5. The side lifting structure 4 and the middle lifting structure 3 are both used for lifting or lowering the glass plate clamp 5, and the glass plate clamp 5 is used for fixing glass plates, which can be purchased in the existing market.
[0024] As Figure 2As shown, each side plate structure 2 includes a side baffle 201, a side bracket 202, a plate 203, two sliding assemblies, and a transverse cylinder 205. Each sliding assembly includes a slide rail 204 and a slider 206. The side brackets 202 are mounted on both sides of the base 1. The bottom ends of the plates 203 are connected to the sliders 206. The sliders 206 are slidably mounted on the slide rails 204, which are mounted on the top ends of the side brackets 202. The transverse cylinder 205 is mounted in the middle of the top of the side bracket 202. The telescopic rod of the transverse cylinder 205 is connected to the middle of the plate 203. The side baffle 201 is also mounted on the side bracket 202 and is located above the plate 203.
[0025] The side baffles 201 guide the glass plate clamp 5 and guide it into the stacking and unstacking device. The side brackets 202 provide support. The insert plate 203 supports the glass plate clamp 5. The sliding assembly (i.e., the slide rails 204 and sliders 206) guides the insert plate 203. The slide rails 204 guide the movement of the sliders 206. The transverse cylinders 205 provide power for the extension and retraction of the insert plate 203.
[0026] like Figure 3 As shown, the central lifting structure 3 includes a central lifting plate 301, four first guide assemblies, a first connecting block 304, a central lifting cylinder 305 and a cylinder base 306, and each first guide assembly includes a first guide rod 302 and a first shaft sleeve 303. The four corners of the central lifting plate 301 are respectively connected to the tops of the four first guide rods 302, and the four first guide rods 302 are respectively slidably connected to the four first shaft sleeves 303. The four first shaft sleeves 303 are respectively mounted on the two central brackets 12 of the base 1. The central bottom of the central lifting plate 301 is connected to the first connecting block 304. The telescopic rod of the central lifting cylinder 305 is connected to the first connecting block 304. The central lifting cylinder 305 is mounted on the top of the cylinder base 306, and the cylinder base 306 is mounted in the middle of the first bottom plate 11 of the base 1.
[0027] The middle lift plate 301 supports the glass plate fixture 5. The first guide assembly guides the middle lift plate 301. The first connecting block 304 connects the middle lift cylinder 305 to the middle lift plate 301. The middle lift cylinder 305 provides power for raising and lowering the middle lift plate 301. The cylinder base 306 secures the middle lift cylinder 305.
[0028] like Figure 4As shown, each side lifting structure 4 includes a side lifting plate 401, two second guide assemblies, a second connecting block 404 and a side lifting cylinder 405. Each second guide assembly includes a second guide rod 402 and a second shaft sleeve 403. The two ends of the side lifting plate 401 are respectively connected to the top of the two second guide rods 402, and the two second guide rods 402 are respectively slidably connected to the two second shaft sleeves 403. The two second shaft sleeves 403 are mounted on the two ends of the middle bracket 12 of the base 1. The middle bottom of the side lifting plate 401 is connected to the second connecting block 404, and the second connecting block 404 is connected to the side lifting cylinder 405. The side lifting cylinder 405 is mounted in the middle of the middle bracket 12 of the base 1.
[0029] The side lift plate 401 supports both ends of the glass plate fixture 5. The second guide rod 402 and the second sleeve 403 guide the side lift plate 401. The second connecting block 404 connects the side lift plate 401 to the side lift cylinder 405. The side lift cylinder 405 provides the power for the side lift plate 401 to move upward and downward.
[0030] like Figure 5 As shown, the base 1 includes a first bottom plate 11 and two middle brackets 12, each of which includes three support plates 121 and a second bottom plate 122. The six support plates 121 are divided into two rows, each row consisting of three support plates 121, and the two rows of support plates 121 are symmetrically mounted on top of the first bottom plate 11. The two second bottom plates 122 are respectively mounted on top of the two rows of support plates 121. The middle lifting cylinder 305 is mounted in the middle of the first bottom plate 11 and is located between the two rows of support plates 121. The first guide assembly and the second guide assembly are both mounted at both ends of the second bottom plate 122, and the two side lifting cylinders 405 are respectively mounted in the middle of the two second bottom plates 122.
[0031] Working process description of the stacking and splitting device of the glass plate clamp:
[0032] like Figure 6 As shown, a support shaft 501 is provided on the glass plate clamp 5. When two glass plate clamps 5 are stacked, the support shaft 501 of the lower glass plate clamp 5 supports the upper glass plate clamp 5, thereby forming a certain gap between the two adjacent glass plate clamps 5, making it convenient for the inserting plate 203 of the side inserting plate structure 2 to be inserted into the gap.
[0033] When the glass plate grippers 5 need to be stacked, the first glass plate gripper 5 enters the stacking and splitting device and is located directly above the middle lifting structure 3, the middle lifting structure 3 lifts the first glass plate gripper 5, the side plate structures 2 on both sides extend, the middle lifting structure 3 retracts, and the side plate structures 2 on both sides support the first glass plate gripper 5. The second glass plate gripper 5 enters the stacking and splitting device, the second glass plate gripper 5 is located directly above the side lifting structures 4 on both sides, the second glass plate gripper 5 is lifted by the side lifting structures 4 on both sides, the second glass plate gripper 5 supports the first glass plate gripper 5, the side plate structures 2 on both sides retract, and the side plate structures 2 on both sides are separated from the first glass plate gripper 5. The middle lifting structure 3 lifts the second glass plate gripper 5, the side lifting structures 4 on both sides retract, the side plate structures 2 on both sides extend, the side plate structures 2 on both sides support the second glass plate gripper 5, and the middle lifting structure 3 retracts. In this way, the stacking of the glass plate grippers 5 is completed.
[0034] When the stacked glass plate grippers 5 need to be split, the side lifting structures 4 on both sides lift the glass plate grippers 5, and the side plate structures 2 on both sides are inserted between the second-to-last glass plate gripper 5 and the last glass plate gripper 5. The side lifting structures 4 on both sides lower the last glass plate gripper 5, and the side plate structures 2 on both sides support the second-to-last glass plate gripper 5. When the last glass plate gripper 5 is sent out of the stacking and splitting device, the middle lifting structure 3 lifts the second-to-last glass plate gripper 5, and the side plate structures 2 on both sides retract. The side lifting structures 4 on both sides are lifted, the middle lifting structure 3 retracts, the stacked glass plate grippers 5 are lowered, and the side lifting structures 4 on both sides support the stacked glass plate grippers 5. The side plate structures 2 on both sides are inserted between the third-to-last glass plate gripper 5 and the second-to-last glass plate gripper 5, the side lifting structures 4 on both sides retract and lower the second-to-last glass plate gripper 5, the side plate structures 2 on both sides support the third-to-last glass plate gripper 5, and the second-to-last glass plate gripper 5 is sent out of the stacking and splitting device. In this way, the stacking of the glass plate grippers 5 is completed.
[0035] The specific embodiments described above are preferred embodiments of the present application, and cannot limit the present application. Any changes or other equivalent replacement methods that do not deviate from the technical solutions of the present application are included in the protection scope of the present application.
Claims
1. A stack de-coiling apparatus for a glass sheet gripper, characterized by: The application relates to a lifting device, which comprises a base, a side plate structure, a middle lifting structure and a side lifting structure, wherein the side plate structure comprises a side baffle, a side support, a plate, a sliding assembly and a horizontal cylinder; the middle lifting structure is arranged in the middle of the base; the side plate structure is arranged on both sides of the middle lifting structure; the side support is arranged on the side of the side plate structure away from the middle lifting structure; the plate is arranged on the side support through the sliding assembly; the horizontal cylinder is arranged on the side support and connected with the plate; the side baffle is arranged above the plate; the height of the plate is higher than that of the middle lifting structure and the side lifting structure after the middle lifting structure is lifted.
2. The apparatus of claim 1, wherein: The middle lifting structure comprises a middle lifting plate, a first guide assembly, a first connecting block, a middle lifting cylinder and a cylinder base; the two sides of the middle lifting plate are arranged on the base through the first guide assembly; the middle lifting cylinder is arranged on the base through the cylinder base; the middle lifting cylinder is connected with the middle of the middle lifting plate through the first connecting block.
3. The apparatus of claim 2, wherein: The first guide assembly comprises a first guide rod and a first shaft sleeve; the first shaft sleeve is arranged on the base; the first guide rod is slidably arranged on the first shaft sleeve; the first guide rod is connected with the middle lifting plate.
4. The apparatus of claim 1, wherein: The sliding assembly comprises a sliding rail and a sliding block; the sliding rail is arranged on the side support; the sliding block is arranged on the plate; the sliding block is slidably arranged on the sliding rail.
5. The apparatus of claim 1, wherein: The side lifting structure comprises a side lifting plate, a second guide assembly, a second connecting block and a side lifting cylinder; the two ends of the side lifting plate are arranged on the base through the second guide assembly; the middle of the side lifting plate is connected with the side lifting cylinder through the second connecting block; the side lifting cylinder is arranged on the base.
6. The apparatus of claim 5, wherein: The second guide assembly comprises a second guide rod and a second shaft sleeve; the second shaft sleeve is arranged on the base; the second guide rod is slidably arranged on the second shaft sleeve; the two ends of the side lifting plate are respectively connected with the second guide rod.
7. The apparatus of claim 1, wherein: The base comprises a first bottom plate and a middle support; the middle support is arranged on the first bottom plate; the middle support is symmetrically arranged; the middle of the middle lifting structure is arranged on the first bottom plate; the two sides of the middle lifting structure are arranged on the middle support; the side lifting structure is arranged on the middle support; the side support is arranged on the first bottom plate.
8. The apparatus of claim 7, wherein: The middle support comprises a support plate and a second bottom plate; the second bottom plate is arranged on the first bottom plate through the support plate; the two ends of the middle lifting structure and the side lifting structure are arranged on the second bottom plate.