Glass cullet discharging chute structure
Patent Information
- Application Number
- CN202522101181.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-29
- Publication Date
- 2026-09-22
- Estimated Expiration
- 2035-09-29
AI Technical Summary
[0012]本实用新型的技术效果为:本实用新型所提供的碎玻璃下料溜管结构,包括溜管本体和设置在溜管本体上的耐磨板组件,耐磨板组件可活动地设置在溜管本体上,方便更换耐磨板组件,保证耐磨板组件的可靠性,有效避免碎玻璃将溜管磨穿磨烂,能够避免发生碎玻璃漏料问题,有利于提高生产效率。
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Figure CN224782942U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of broken glass feeding chute, specifically, this utility model relates to a broken glass feeding chute structure. Background Technology
[0002] In glass manufacturing companies, raw material departments often add crushed glass during the mixing process. The crushed glass enters the mixing equipment through a chute and falls from the crushed glass discharge hopper into the chute. As the production process continues, the chute is easily worn through and damaged, leading to material leakage and affecting production efficiency. Wear-resistant plates are usually added to the areas of the chute that are prone to wear and damage. However, the position of the wear-resistant plates is not easy to replace, and it is difficult to observe the wear condition of the wear-resistant plates.
[0003] To address the aforementioned issues, patent application number 2017217690395 discloses an automatic start-stop device for preventing blockages in a broken glass chute. The chute includes an inlet and multiple outlets, with the outlets divided into a main outlet and reserved outlets. A rotary paddle level gauge and a vibrating motor are installed on the side wall of the chute where the main outlet is located, both connected to a control cabinet. Valves are installed on the reserved outlets, but this method fails to solve the aforementioned problems.
[0004] Therefore, in order to improve or solve at least one of the above problems, a chute structure for feeding broken glass is provided that allows for easy replacement of wear-resistant plates, effectively prevents broken glass from wearing through and damaging the chute, avoids the problem of broken glass leakage, and is conducive to improving production efficiency. Utility Model Content
[0005] This utility model is designed to solve the aforementioned problems. Its purpose is to provide a broken glass feeding chute structure that facilitates the replacement of wear-resistant plates, effectively prevents broken glass from wearing through and damaging the chute, avoids broken glass leakage, and improves production efficiency. To achieve the above objectives, the technical solution adopted by this utility model is as follows:
[0006] This utility model provides a chute structure for crushed glass, characterized by including a chute body and a wear-resistant plate assembly disposed on the chute body, the wear-resistant plate assembly being movably disposed on the chute body.
[0007] The broken glass feeding chute structure provided by this utility model may also have the following feature: the chute body includes a straight chute and an inclined chute connected to the straight chute, and the end of the straight chute away from the inclined chute is connected to the broken glass discharge hopper.
[0008] The broken glass feeding chute structure provided by this utility model may also have the following feature: an installation groove is provided at the connection between the straight chute and the inclined chute.
[0009] The broken glass feeding chute structure provided by this utility model may also have the following feature: the wear-resistant plate assembly includes a wear-resistant plate, which is movably disposed in the mounting groove and abuts against the inner wall of the inclined chute.
[0010] The broken glass feeding chute structure provided by this utility model may also have the following feature: an anti-detachment rod is provided on one side of the wear-resistant plate, and the anti-detachment rod abuts against the edge of the mounting groove.
[0011] The broken glass feeding chute structure provided by this utility model may also have the following feature: the wear-resistant plate is made of high manganese steel wear-resistant plate or wear-resistant alloy steel plate.
[0012] The technical effects of this utility model are as follows: The broken glass feeding chute structure provided by this utility model includes a chute body and a wear-resistant plate assembly disposed on the chute body. The wear-resistant plate assembly is movably disposed on the chute body, which facilitates the replacement of the wear-resistant plate assembly, ensures the reliability of the wear-resistant plate assembly, effectively prevents broken glass from wearing through and damaging the chute, avoids the problem of broken glass leakage, and helps to improve production efficiency. Attached Figure Description
[0013] This manual includes the following figures, which illustrate the following:
[0014] Figure 1 This is a schematic diagram of the broken glass feeding chute structure in an embodiment of this utility model;
[0015] Figure 2 yes Figure 1 A magnified view of part A in the middle.
[0016] The markings in the diagram are: broken glass discharge hopper-1, chute body-10, straight chute-11, inclined chute-12, mounting groove-13, wear-resistant plate assembly-20, wear-resistant plate-21, and anti-detachment rod-22. Detailed Implementation
[0017] The specific embodiments of the present invention will be further described in detail below with reference to the accompanying drawings, in order to help those skilled in the art to have a more complete, accurate and in-depth understanding of the inventive concept and technical solution of the present invention, and to facilitate its implementation.
[0018] Figure 1 This is a schematic diagram of the broken glass feeding chute structure in an embodiment of this utility model;
[0019] like Figure 1As shown, the broken glass feeding chute structure provided by this utility model includes a chute body 10 and a wear-resistant plate assembly 20 disposed on the chute body 10. The wear-resistant plate assembly 20 is movably disposed on the chute body 10, which facilitates the replacement of the wear-resistant plate assembly 20, ensures the reliability of the wear-resistant plate assembly 20, effectively prevents broken glass from wearing through and damaging the chute body 10, avoids broken glass leakage, and helps to improve production efficiency.
[0020] The chute body 10 includes a straight chute 11 and an inclined chute 12 connected to the straight chute 11. The end of the straight chute 11 away from the inclined chute 12 is connected to the broken glass discharge hopper 1. The inclined chute 12 is inclined downward and the end of the inclined chute 12 away from the straight chute 11 is connected to the mixing equipment, thereby guiding the broken glass from the broken glass discharge hopper 1 into the mixing equipment.
[0021] Figure 2 yes Figure 1 A magnified view of part A in the middle.
[0022] like Figure 2 The connection between the straight chute 11 and the inclined chute 12 is provided with an installation groove 13. The installation groove 13 is used to arrange the wear-resistant plate assembly 20. The wear-resistant plate assembly 20 is installed in the chute body 10 by being pulled out through the installation groove 13, which facilitates the inspection of the wear condition of the wear-resistant plate assembly 20, facilitates the replacement of the wear-resistant plate assembly 20, ensures the reliability of the wear-resistant plate assembly 20, effectively prevents broken glass from wearing through and damaging the chute body 10, avoids the problem of broken glass leakage, and helps to improve production efficiency.
[0023] The wear-resistant plate assembly 20 includes a wear-resistant plate 21, which is removably mounted in the mounting groove 13. The wear-resistant plate 21 abuts against the inner wall of the inclined chute 12, covering the easily worn and damaged area, thereby improving the service life of the chute body 10 and effectively preventing broken glass from wearing through and damaging the chute body 10, thus avoiding the problem of broken glass leakage and improving production efficiency. One side of the wear-resistant plate 21 is provided with an anti-detachment rod 22, which abuts against the edge of the mounting groove 13, thereby securing the wear-resistant plate 21 on the chute body 10 and preventing the wear-resistant plate 21 from slipping out of the mounting groove 13, improving the reliability of the structure. At the same time, the anti-detachment rod 22 allows workers to easily pull out the wear-resistant plate 21 to observe its wear and use, facilitating timely replacement of the wear-resistant plate 21 and improving the efficiency of replacing the wear-resistant plate 21, further improving production efficiency.
[0024] Wear-resistant plate 21 is made of high manganese steel wear-resistant plate or wear-resistant alloy steel plate. High manganese steel wear-resistant plates such as Mn13 and Mn18 are "work-hardening" materials with low original hardness (HB200-250). However, after being impacted by broken glass, a hardened layer (HB500-600) will quickly form on the surface, and it will become harder with each impact. At the same time, the core remains tough and is not easy to crack. Wear-resistant alloy steel plates such as NM360, NM450, and HARDOX450 are "pre-hardened" materials. The hardness has reached HB360-450 (NM series) or HB450-500 (HARDOX series) at the time of manufacture. They do not need to rely on impact hardening and also have a certain degree of toughness (elongation ≥10%), which can resist wear and moderate impact at the same time.
[0025] The role and effect of the embodiments
[0026] The broken glass feeding chute structure provided by this utility model includes a chute body 10 and a wear-resistant plate assembly 20 disposed on the chute body 10. The wear-resistant plate assembly 20 is movably disposed on the chute body 10, which facilitates the replacement of the wear-resistant plate assembly 20, ensures the reliability of the wear-resistant plate assembly 20, effectively prevents broken glass from wearing through and damaging the chute body 10, avoids broken glass leakage, and helps to improve production efficiency.
[0027] The wear-resistant plate 21 is removably installed in the mounting groove 13. The wear-resistant plate 21 abuts against the inner wall of the inclined chute 12, covering the area that is easily worn through and damaged, thereby improving the service life of the chute body 10 and effectively preventing broken glass from wearing through and damaging the chute body 10. This avoids the problem of broken glass leakage and helps improve production efficiency. One side of the wear-resistant plate 21 is provided with an anti-detachment rod 22, which abuts against the edge of the mounting groove 13, thereby securing the wear-resistant plate 21 on the chute body 10 and preventing the wear-resistant plate 21 from slipping out of the mounting groove 13. This improves the reliability of the structure. At the same time, the anti-detachment rod 22 allows workers to easily pull out the wear-resistant plate 21 to observe its wear and use, facilitating timely replacement of the wear-resistant plate 21 and improving the efficiency of replacing the wear-resistant plate 21, further improving production efficiency.
[0028] The present invention has been described above by way of example with reference to the accompanying drawings. Obviously, the specific implementation of the present invention is not limited to the above-described manner. Any non-substantial improvements made using the inventive concept and technical solution of the present invention; or the direct application of the inventive concept and technical solution to other situations without modification, are all within the protection scope of the present invention.
Claims
1. A chute structure for feeding crushed glass, characterized in that, It includes a chute body (10) and a wear-resistant plate assembly (20) disposed on the chute body (10), the wear-resistant plate assembly (20) being movably disposed on the chute body (10).
2. The chute structure for crushed glass according to claim 1, characterized in that, The chute body (10) includes a straight chute (11) and an inclined chute (12) connected to the straight chute (11). The end of the straight chute (11) away from the inclined chute (12) is connected to the broken glass discharge hopper (1).
3. The sluice box structure for crushed glass according to claim 2, characterized in that, The connection between the straight pipe (11) and the inclined pipe (12) is provided with an installation groove (13).
4. The sluice box structure for crushed glass according to claim 3, characterized in that, The wear-resistant plate assembly (20) includes a wear-resistant plate (21), which is movably disposed in the mounting groove (13) and abuts against the inner wall of the inclined pipe (12).
5. The chute structure for crushed glass according to claim 4, characterized in that, One side of the wear-resistant plate (21) is provided with an anti-detachment rod (22), which abuts against the edge of the mounting groove (13).
6. The sluice box structure for crushed glass according to claim 4, characterized in that, The wear-resistant plate (21) is made of high manganese steel or wear-resistant alloy steel.