Structure of auxiliary plate of substrate glass pulverizer

By adjusting the spacing between the crushing roller and the crushing auxiliary parts, efficient particle size control of the substrate glass crusher is achieved, and problems of cumbersome operation and high cost in the prior art are solved, and efficient production is achieved.

CN223159344UActive Publication Date: 2025-07-29RAINBOW (HEFEI) LIQUID CRYSTAL GLASS CO LTD
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Patent Information

Application Number
CN202421962733.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-14
Publication Date
2025-07-29
Estimated Expiration
2034-08-14

AI Technical Summary

Technical Problem

In the prior art, it is difficult to effectively control the particle size during the crushing process of substrate glass, resulting in cumbersome operation, low efficiency and increased production costs.

Method used

A substrate glass crusher auxiliary plate structure is designed. By adjusting the spacing between the crushing roller and the crushing auxiliary parts, and adjusting the spacing between the wear-resistant impact liner and the hammer head, the production of glass raw materials of different particle sizes is achieved, avoiding an additional screening system.

Benefits of technology

Simplify the operation process, improve production efficiency, and reduce production costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a structure of an auxiliary plate of a substrate glass pulverizer, which relates to the technical field of substrate glass production, and comprises a pulverizer work bin, a pulverizing roller, crushing auxiliary parts and an adjusting part, the crushing auxiliary parts are arranged on two sides in the pulverizer work bin, and the crushing auxiliary parts can deflect relative to the pulverizer work bin; the distance between the crushing roller and the crushing auxiliary part can be adjusted through deflection, and the adjusting part is installed on the side portion of the crusher material box and can adjust the deflection angle of the crushing auxiliary part. According to the structure of the auxiliary plate of the substrate glass crusher, the structure of the impact lining plate of the crusher is redesigned and improved, the improved structure can adjust the distance between the wear-resistant impact lining plate and the hammer head, and glass raw materials with different granularities can be obtained during crushing due to different distances; compared with the mode of additionally arranging a screening system commonly adopted in the prior art, the operation is simplified, the efficiency is improved, and the production cost is greatly reduced.
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Description

Technical Field

[0001] The utility model relates to the technical field of substrate glass production, and particularly relates to a structure of an auxiliary plate of a substrate glass crusher. Background Art

[0002] In the field of substrate glass production, the batching process is a crucial link, which directly affects the quality and production efficiency of the final glass product. Among them, broken glass, as an important renewable resource, is widely used to accelerate the glass melting process, reduce heat consumption, thereby reducing production costs and increasing production. However, in the process of using broken glass, how to effectively control its particle size has become an urgent problem to be solved.

[0003] In the traditional broken glass crushing process, the crusher, as the core equipment, usually consists of a crushing hopper, crushing rollers, a counterattack lining plate and other components. These devices impact, shear and strike the broken glass through the high-speed rotating crushing rollers, so as to crush it into smaller particles. However, in the prior art, to obtain glass raw materials with different particle sizes, the common method is to set up a multi-layer screening structure at the discharge position at the bottom of the crusher. Although this screening structure can achieve a certain degree of particle size classification, it has significant limitations.

[0004] Specifically, although the multi-layer screening structure can separate broken glass with different particle sizes, it can often only capture the ideal particle size on a certain specific layer of the sieve plate. For those broken glasses that do not meet the required particle size, they usually need to be re-added to the crusher for secondary or even multiple crushing treatments until the required particle size is met. This treatment method is not only cumbersome and inefficient, but also increases the wear and energy consumption of the equipment, and at the same time increases the production cost. Summary of the Utility Model

[0005] Aiming at the deficiencies of the prior art, the utility model provides a structure of an auxiliary plate of a substrate glass crusher, which solves the problems put forward in the above background art.

[0006] To achieve the above purposes, the utility model is realized through the following technical solutions: A structure of an auxiliary plate of a substrate glass crusher, including a crusher hopper and crushing rollers rotatably connected inside the crusher hopper, further including:

[0007] A crushing auxiliary member, the crushing auxiliary member is installed on both sides inside the crusher hopper, and the crushing auxiliary member can deflect relative to the crusher hopper, and the deflection can adjust the distance between the crushing roller and the crushing auxiliary member;

[0008] An adjusting member, the adjusting member is installed on the side of the crusher hopper, and the adjusting member can adjust the deflection angle of the crushing auxiliary member.

[0009] Further, a discharge port is reserved at the bottom of the crusher bin, and a discharge chute is installed at the discharge port. Bearings and reserved holes are respectively arranged on the side of the crusher bin. The shafts at both ends of the crushing roller are rotatably connected to the crusher bin through the bearings.

[0010] Further, a plurality of uniformly distributed hammers are installed on the surface of the crushing roller.

[0011] Further, the crushing auxiliary part includes a hanging shaft fixed inside the reserved hole. A plurality of hanging ear plates are suspended outside the hanging shaft. The end of the hanging ear plate is connected to an upper base. The bottom end of the upper base is connected to a lower base. A plurality of wear-resistant groove plates are commonly connected between the upper base and the lower base. A wear-resistant counterattack lining plate is installed at the end of the lower base.

[0012] Further, the tops of the plurality of wear-resistant groove plates are connected in series by a connecting rod, and the space formed between the plurality of wear-resistant groove plates is set as a material guiding channel.

[0013] Further, the adjusting part includes a nut installed on the side of the crusher bin. A screw is threadedly connected inside the nut, and the end of the screw abuts against the bottom of the upper base.

[0014] The utility model provides a structure of an auxiliary plate for a substrate glass crusher. Compared with the prior art, the following beneficial effects are achieved:

[0015] For the structure of the auxiliary plate of the substrate glass crusher, by redesigning and improving the structure of the crusher counterattack lining plate, the improved structure can adjust the spacing between the wear-resistant counterattack lining plate and the hammers. Different spacings will result in glass raw materials with different particle sizes during crushing. Compared with the conventional method of additionally installing a screening system in the prior art, not only is the operation simplified and the efficiency improved, but also the production cost is greatly reduced. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 is a disassembled schematic diagram of the utility model;

[0017] Figure 2 is an assembly schematic diagram of the utility model;

[0018] Figure 3 is a schematic structural diagram of the crushing auxiliary part of the utility model from the back view;

[0019] Figure 4 is a schematic structural diagram of the crushing auxiliary part of the utility model from the front view;

[0020] Figure 5 is a schematic structural diagram of the crusher bin of the utility model;

[0021] Figure 6This is a cross-sectional view of the minimum crushing particle size state in the present utility model;

[0022] Figure 7 This is a cross-sectional view of the maximum crushing particle size state in the present utility model.

[0023] In the figure: 1. Crusher feed bin; 11. Discharge chute; 12. Bearing; 13. Reserved hole; 2. Crushing roller; 21. Hammer head; 3. Crushing auxiliary part; 31. Hanging shaft; 32. Hanging ear plate; 33. Upper base; 34. Lower base; 35. Wear-resistant grooved plate; 36. Connecting rod; 37. Wear-resistant counterattack lining plate; 38. Material guiding channel; 4. Adjusting part; 41. Nut; 42. Screw. Specific implementation mode

[0024] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative work shall fall within the protection scope of the present utility model.

[0025] Please refer to Figure 1-7 , the present utility model provides a technical solution: a structure of an auxiliary plate for a substrate glass crusher, which is composed of a crusher feed bin 1, a crushing roller 2, a crushing auxiliary part 3, and an adjusting part 4. The crushing roller 2 and the crushing auxiliary part 3 are both installed inside the crusher feed bin 1. The crushing auxiliary part 3 is located on both sides of the crushing roller 2. The adjusting part 4 is installed on both sides of the crusher feed bin 1. There are a total of four groups of crushing auxiliary parts 3, and there are also four groups of adjusting parts 4, which are in one-to-one correspondence. By operating the adjusting part 4, the deflection angle of the crushing auxiliary part 3 can be adjusted, so that the distance between the crushing auxiliary part 3 and the crushing roller 2 can be adjusted. If the distance is large, the particle size of the raw material after crushing is large (as shown in the attached Figure 7 figure), if the distance is small, the particle size is small (as shown in the attached Figure 6 figure);

[0026] A discharge port is reserved at the bottom of the crusher feed bin 1, and a discharge chute 11 is installed at the discharge port. The discharge chute 11 is installed obliquely as a whole, which is convenient for the discharged raw materials after crushing and does not block the materials. Bearings 12 and reserved holes 13 are respectively arranged on the side parts of the crusher feed bin 1. The shaft bodies at both ends of the crushing roller 2 are rotatably connected to the crusher feed bin 1 through the bearings 12. The shaft body at one end of the crushing roller 2 is connected to the driving end of the variable-frequency motor through a pulley and a belt (not shown in the figure), so that the crushing roller 2 can rotate at a high speed. In addition, a plurality of uniformly distributed hammer heads 21 are installed on the surface of the crushing roller 2. After the hammer heads 21 cooperate with the wear-resistant counterattack lining plate 37, the raw materials can be crushed;

[0027] The crushing auxiliary part 3 includes a hanging shaft 31 fixed inside the reserved hole 13. A plurality of hanging ear plates 32 are suspended outside the hanging shaft 31. The hanging ear plates 32 can rotate around the hanging shaft 31. The end of the hanging ear plate 32 is connected with an upper base 33. The bottom end of the upper base 33 is connected with a lower base 34. The upper base 33 and the lower base 34 are jointly connected with a plurality of wear-resistant grooved plates 35. The end of the lower base 34 is provided with a wear-resistant counterattack lining plate 37. The tops of the plurality of wear-resistant grooved plates 35 are connected together by a connecting rod 36. And the space formed between the plurality of wear-resistant grooved plates 35 is set as a material guiding channel 38. The setting of the material guiding channel 38 can enable the raw materials to be crushed to move downward orderly, reducing the probability of material blockage. The adjusting part 4 includes a nut 41 installed on the side of the feed hopper 1 of the crusher. A screw 42 is threadedly connected inside the nut 41. The end of the screw 42 abuts against the bottom of the upper base 33.

[0028] When it is necessary to adjust the size of the crushing particle size, that is, to adjust the distance between the hammer head 21 and the wear-resistant counterattack lining plate 37. By turning the screw 42, under the action of the thread, the screw 42 moves towards the upper base 33. During the movement, the screw 42 continuously pushes against the upper base 33 to deflect. That is to say, the wear-resistant counterattack lining plate 37 installed on the lower base 34 will continuously approach the hammer head 21, thus realizing the adjustment of the distance between the hammer head 21 and the wear-resistant counterattack lining plate 37, and then adjusting the particle size.

Claims

1. Structure of an auxiliary plate for a substrate glass crusher, comprising a crusher feed bin (1) and a crushing roller (2) rotatably connected inside the crusher feed bin (1), characterized in that, Further included are: Crushing auxiliary parts (3), which are installed on both inner sides of the crusher bin (1). The crushing auxiliary parts (3) can deflect relative to the crusher bin (1), and the deflection can adjust the distance between the crushing roller (2) and the crushing auxiliary parts (3); Adjusting parts (4), which are installed on the side of the crusher bin (1). The adjusting parts (4) can adjust the deflection angle of the crushing auxiliary parts (3).

2. The structure of an auxiliary plate of a substrate glass crusher according to claim 1, characterized in that, A discharge port is reserved at the bottom end of the crusher bin (1), and a discharge chute (11) is installed at the discharge port. Bearings (12) and reserved holes (13) are respectively arranged on the side of the crusher bin (1). The shafts at both ends of the crushing roller (2) are rotatably connected to the crusher bin (1) through the bearings (12).

3. The structure of an auxiliary plate for a substrate glass crusher according to claim 1, wherein, A plurality of evenly distributed hammers (21) are installed on the surface of the crushing roller (2).

4. The structure of an auxiliary plate of a substrate glass crusher according to claim 1, characterized in that, The crushing auxiliary parts (3) include a hanging shaft (31) fixed inside the reserved hole (13). A plurality of hanging ear plates (32) are suspended outside the hanging shaft (31). The end of the hanging ear plate (32) is connected to an upper base (33). The bottom end of the upper base (33) is connected to a lower base (34). A plurality of wear-resistant grooved plates (35) are jointly connected by the upper base (33) and the lower base (34). A wear-resistant counterattack lining plate (37) is installed at the end of the lower base (34).

5. The structure of an auxiliary plate for a substrate glass crusher according to claim 4, characterized in that, The tops of the plurality of wear-resistant grooved plates (35) are connected in series by a connecting rod (36), and the space formed between the plurality of wear-resistant grooved plates (35) is set as a material guiding channel (38).

6. The structure of an auxiliary plate of a substrate glass crusher according to claim 1, wherein, The adjusting parts (4) include a nut (41) installed on the side of the crusher bin (1). A screw (42) is threadedly connected inside the nut (41), and the end of the screw (42) abuts against the bottom of the upper base (33).