Glass mixture conveying device
By arranging a material guide component above the conveyor belt to guide the cullet to fall accurately into the center of the mixed material flow, the problems of cullet overflow and uneven mixing are solved, and production safety and glass quality are improved.
Patent Information
- Application Number
- CN202422633500.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-30
- Publication Date
- 2025-09-19
- Estimated Expiration
- 2034-10-30
AI Technical Summary
In existing glass mixture conveying devices, broken glass easily overflows from both sides of the belt conveyor, affecting production safety. In addition, the mixture and broken glass are not fully melted in the kiln, resulting in a decrease in glass quality.
A cullet chute is provided above the conveyor belt, and a material guide component is provided at the lower end of the chute. The material guide component is in an N-shaped structure, close to the upper surface of the conveyor belt and aligned with the center position to guide the cullet to fall accurately into the center of the mixed material flow.
Effectively avoid overflow of broken glass, improve production safety, ensure that broken glass and mixed materials are fully melted, and improve glass quality.
Smart Images

Figure CN223356699U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of glass production, and more specifically relates to a glass mixture conveying device. Background Art
[0002] Currently, when conveying mixed materials on glass conveyors, the glassmaking process requires that the mixed material be covered with cullet. However, the cullet chute located above the conveyor belt cannot be positioned too close to the conveyor belt. This prevents the cullet from falling directly into the mixed material flow and easily overflows the belt. This prevents the cullet from falling directly into the mixed material flow, resulting in incomplete melting of the mixed material and cullet in the kiln, which can lead to the formation of cullet that affects glass quality. Furthermore, overflowing cullet can land on both sides of the conveyor belt, potentially causing scratches and seriously impacting the safety of production workers.
[0003] The prior art includes a technology entitled "A raw melt belt conveyor and a conveying system for float glass mixture" and a publication (announcement) number of "CN 115745367 A". This technology relates to a raw melt belt conveyor and a conveying system for float glass mixture. The raw melt belt conveyor is used to convey the float glass batch material mixed in a mixer to a kiln head hopper. The raw melt belt conveyor comprises a base and a vertical plate fixed to the base and perpendicular thereto. The raw melt belt conveyor also comprises a transmission member provided on the base, comprising two circular rollers rotatably mounted on the base and a belt rollingly connecting the two circular rollers. The belt is used to convey the glass mixture to the kiln head hopper. The rotating shaft of one of the circular rollers is connected to a Maltese cross movement mechanism, and the Maltese cross movement mechanism is mounted on the side of the vertical plate facing away from the belt. The belt conveyor has the functions of flattening the mixture and automatically laying out cullet, which can effectively improve the production efficiency of float glass. Since the laying of cullet is carried out when the belt is stationary, the impact between the cullet and the mixture is effectively reduced, thereby ensuring the quality of the final product.
[0004] However, this technology does not involve the technical problems and technical solutions of the present application. Utility Model Content
[0005] The technical problem to be solved by the present invention is: in view of the deficiencies of the existing technology, a glass mixture conveying device with a simple structure is provided, which can effectively ensure that the broken glass conveyed to the conveyor belt does not overflow outside the conveyor belt, reduce the safety accidents of production personnel being injured by broken glass, and convey the broken glass to the center of the mixed material flow, so that the broken glass and the mixed material are fully melted after entering the kiln, thereby improving the quality of the glass.
[0006] To solve the above-mentioned technical problems, the technical solution adopted by the present invention is:
[0007] The utility model discloses a glass mixture conveying device. The conveyor belt is arranged on a roller. A cullet chute is arranged above the conveyor belt. The lower end of the chute extends to the position above the conveyor belt. A material guiding component is arranged at the lower end of the chute. The material guiding component is close to the upper surface of the conveyor belt and is aligned with the center position of the conveyor belt.
[0008] The material guiding component comprises a material guiding top plate, a material guiding left plate and a material guiding right plate, and the material guiding top plate, the material guiding left plate and the material guiding right plate are in an N-shaped structure.
[0009] An opening is arranged on the upper portion of the material guiding top plate of the material guiding component, and the opening is aligned with the lower port of the slide pipe.
[0010] The material guiding top plate of the material guiding component is welded to the lower port of the slide pipe.
[0011] The conveyor belt is an endless conveyor belt, with a driving roller arranged at one end and a driven roller arranged at the other end.
[0012] A plurality of rollers are arranged at intervals on the lower surface of the upper layer of the conveyor belt.
[0013] The extending direction of the material guiding component is consistent with the extending direction of the conveyor belt, and the material guiding component is arranged to protrude toward one side of the broken glass chute.
[0014] The material guiding component is a structure made of metal material.
[0015] The material guiding left side plate and the material guiding right side plate of the material guiding component are close to the upper surface of the conveyor belt.
[0016] The technical solution of this utility model is adopted, and the working principle and beneficial effects are as follows:
[0017] The glass mixture conveying device of the present invention has a structure in which the conveyor belt is used to convey the mixture, that is, the conveyor belt conveys the mixture from one end to the other end, the conveyor belt is arranged on supporting rollers, the supporting rollers reliably support the conveyor belt, and prevent the conveyor belt from sinking due to the load-bearing. A cullet chute is arranged above the conveyor belt, and the cullet chute is used to convey the cullet to the conveyor belt to ensure that the cullet is mixed with the mixture to form cullet + mixture, and the lower end of the chute of the cullet chute extends to a position above the conveyor belt, and a material guide component is arranged at the lower end of the chute, the material guide component is close to the upper surface of the conveyor belt, and the material guide component is aligned with the center position of the conveyor belt, so that the cullet conveyed by the cullet chute is guided by the material guide component and falls accurately to the center position of the conveyor belt when falling, so that the cullet is effectively prevented from overflowing to the outside of the conveyor belt and falling to the ground, thereby eliminating the hidden danger of scratching workers and improving on-site operation safety. The conveyor belt conveys the mixture through the bottom of the cullet chute, and under the limitation of the material guide component, the cullet falls accurately to the center of the mixture flow. The conveyor belt continuously transports the mixture, and the cullet chute continuously transports the cullet, and always ensures that the cullet continues to accurately fall into the center of the mixture flow. After the subsequent cullet + mixture enters the kiln, it can be fully melted, reducing stones and improving the quality of the glass. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] The following is a brief description of the contents and symbols in the drawings of this specification:
[0019] Figure 1 This is a structural schematic diagram of the glass mixture conveying device according to the present invention;
[0020] Figure 2 for Figure 1 A schematic cross-sectional view of the glass mixture conveying device taken along plane AA;
[0021] The marks in the accompanying drawings are: 1. Conveyor belt; 2. Support roller; 3. Broken glass chute; 4. Lower end of chute; 5. Material guide component; 6. Material guide top plate; 7. Material guide left plate; 8. Material guide right plate; 9. Opening; 10. Active roller; 11. Driven roller; 12. Upper layer of conveyor belt. DETAILED DESCRIPTION
[0022] The following is a detailed description of the embodiments of the present invention, such as the shapes, structures, positions and connections of the various components involved, the functions and working principles of the various components, etc., by referring to the accompanying drawings.
[0023] As attached Figure 1 -Attached Figure 2As shown, the utility model is a glass mixture conveying device, wherein the conveyor belt 1 is arranged on the roller 2, and a cullet chute 3 is arranged above the conveyor belt 1, and the lower end 4 of the cullet chute 3 extends to the position above the conveyor belt 1, and a material guide component 5 is arranged at the lower end 4 of the chute, and the material guide component 5 is close to the upper surface of the conveyor belt 1, and the material guide component 5 is aligned with the center position of the conveyor belt 1. The above structure proposes an improved technical solution to the deficiencies in the existing technology. When the structure is set, the conveyor belt 1 is used to convey the mixture, that is, the conveyor belt 1 conveys the mixture from one end to the other end, and the conveyor belt 1 is arranged on the roller 2, and the roller 2 reliably supports the conveyor belt 1 to prevent the conveyor belt 1 from sinking due to the load, and a cullet chute 3 is arranged above the conveyor belt 1, and the cullet chute 3 is used to convey the cullet to the conveyor belt 1 to ensure that the cullet is mixed with the mixture to form cullet + mixture, and the lower end 4 of the cullet chute 3 extends to the position above the conveyor belt 1, in order to solve the problems in the existing technology: 1) cullet overflows outside the conveyor belt 1; 2) the mixture and cullet To address uneven mixing, a guide component 5 is installed at the lower end 4 of the chute, close to the upper surface of the conveyor belt 1 and aligned with the center of the conveyor belt 1. This guide component 5 guides the cullet conveyed by the cullet chute 3 and lands precisely in the center of the conveyor belt 1. This effectively prevents the cullet from spilling outside the conveyor belt 1 and onto the ground, eliminating the potential for injuries to workers and improving on-site safety. Conveyor belt 1 transports the mixture through the bottom of the cullet chute 3, where, guided by the guide component 5, the cullet falls precisely to the center of the mixture flow. The conveyor belt 1 continuously transports the mixture, and the cullet chute 3 continuously transports the cullet, ensuring that the cullet consistently and precisely lands in the center of the mixture flow. This ensures that the cullet and mixture are fully melted when they enter the kiln, reducing stone buildup and improving glass quality. The glass mixture conveying device described in the utility model has a simple structure and can effectively ensure that the broken glass conveyed to the conveyor belt will not overflow outside the conveyor belt, thereby reducing the safety accidents of production personnel cutting their feet due to broken glass. In addition, the broken glass is conveyed to the center of the mixture flow, so that the broken glass and the mixture are fully melted after entering the kiln, eliminating the problem of excessive stones and improving the quality of the glass.
[0024] The material guide member 5 includes a material guide top plate 6, a material guide left plate 7, and a material guide right plate 8. The material guide top plate 6, the material guide left plate 7, and the material guide right plate 8 are in an N-shaped structure. In the above structure, the material guide top plate 6, the material guide left plate 7, and the material guide right plate 8 are welded together or formed by bending a single plate.
[0025] The top plate 6 of the guide member 5 is provided with an opening 9, which is aligned with the lower end 4 of the chute. With this structure, the opening and the cullet chute 3 have the same diameter, ensuring that the cullet can reliably fall from the cullet chute 3 onto the mixed material flow without being obstructed.
[0026] The material guide top plate 6 of the material guide component 5 is welded to the chute lower port 4. The above structure ensures that the material guide component is reliably connected to the cullet chute 3, and bolt connection can also be adopted.
[0027] The conveyor belt 1 is an endless conveyor belt, with a driving roller 10 at one end and a driven roller 11 at the other. Multiple idler rollers 2 are spaced apart on the lower surface of the upper belt layer 12 of the conveyor belt 1. This structure allows the driving and driven rollers to reliably tension the conveyor belt. The driving roller is driven by a motor, and the idler rollers reliably support the conveyor belt, achieving the conveying function.
[0028] The extending direction of the guide member 5 is consistent with the extending direction of the conveyor belt 1, and the guide member 5 is protruded toward one side of the cullet chute 3. The above structure, in which the guide member 5 is protruded toward one side of the cullet chute 3, can reliably guide and limit the cullet.
[0029] The guide member 5 is made of metal. This structure provides the guide member 5 with high structural strength, allowing for extended use without damage, effectively reducing costs. The guide member 5's left and right guide plates 7 and 8 are positioned adjacent to the upper surface of the conveyor belt 1.
[0030] The glass mixture conveying device described in the present invention comprises a conveyor belt 1 for conveying the mixture, that is, the conveyor belt 1 conveys the mixture from one end to the other end, the conveyor belt 1 is arranged on rollers 2, the rollers 2 reliably support the conveyor belt 1, and prevent the conveyor belt 1 from sinking due to the load, a cullet chute 3 is arranged above the conveyor belt 1, and the cullet chute 3 is used to convey the cullet to the conveyor belt 1 to ensure that the cullet is mixed with the mixture to form cullet + mixture, and the lower end 4 of the cullet chute 3 extends to the position above the conveyor belt 1, in order to solve the problems in the prior art: 1) the cullet overflows outside the conveyor belt 1; 2) the mixture The mixed material and cullet are unevenly mixed. To address this, a guide component 5 is installed at the lower end 4 of the chute, close to the upper surface of the conveyor belt 1 and aligned with the center of the conveyor belt 1. This guide component 5 guides the cullet conveyed by the cullet chute 3 and lands precisely in the center of the conveyor belt 1. This effectively prevents the cullet from spilling outside the conveyor belt 1 and onto the ground, eliminating the potential for injuries to workers and improving on-site safety. Conveyor belt 1 transports the mixed material through the bottom of the cullet chute 3. Guided by the guide component 5, the cullet lands precisely in the center of the mixed material flow. The conveyor belt 1 continuously transports the mixed material, and the cullet chute 3 continuously transports the cullet, ensuring that the cullet consistently and precisely lands in the center of the mixed material flow. This ensures that the cullet and mixed material enter the kiln fully melt, reducing stone buildup and improving glass quality.
[0031] The above is an exemplary description of the present invention in conjunction with the accompanying drawings. It is obvious that the specific implementation of the present invention is not limited to the above-mentioned method. As long as various improvements are made using the method concept and technical solution of the present invention, or the concept and technical solution of the present invention are directly applied to other occasions without improvement, they are all within the scope of protection of the present invention.
Claims
1. A glass mixture conveying device, characterized in that: The conveyor belt (1) is arranged on the roller (2), a broken glass chute (3) is arranged above the conveyor belt (1), a lower end (4) of the broken glass chute (3) extends to a position above the conveyor belt (1), a material guide component (5) is arranged at the lower end (4), the material guide component (5) is close to the upper surface of the conveyor belt (1), and the material guide component (5) is aligned with the center position of the conveyor belt (1).
2. The glass mixture conveying device according to claim 1, characterized in that: The material guide component (5) comprises a material guide top plate (6), a material guide left side plate (7) and a material guide right side plate (8), and the material guide top plate (6), the material guide left side plate (7) and the material guide right side plate (8) are in an N-shaped structure.
3. The glass mixture conveying device according to claim 2, characterized in that: An opening (9) is provided on the upper portion of the material guiding top plate (6) of the material guiding component (5), and the opening (9) is aligned with the lower port (4) of the slide pipe.
4. The glass mixture conveying device according to claim 3, characterized in that: The material guide top plate (6) of the material guide component (5) is welded to the lower port (4) of the slide pipe.
5. The glass mixture conveying device according to claim 1 or 2, characterized in that: The conveyor belt (1) is an annular conveyor belt, wherein a driving roller (10) is provided at one end of the conveyor belt (1), and a driven roller (11) is provided at the other end of the conveyor belt (1).
6. The glass mixture conveying device according to claim 5, characterized in that: A plurality of rollers (2) are provided at intervals on the lower surface of the upper layer (12) of the conveyor belt (1).
7. The glass mixture conveying device according to claim 1 or 2, characterized in that: The extending direction of the material guiding component (5) is consistent with the extending direction of the conveyor belt (1), and the material guiding component (5) is arranged to protrude toward one side of the broken glass chute (3).
8. The glass mixture conveying device according to claim 1 or 2, characterized in that: The material guiding component (5) is a structure made of metal material.
9. The glass mixture conveying device according to claim 1 or 2, characterized in that: The material guide left side plate (7) and the material guide right side plate (8) of the material guide component (5) are close to the upper surface of the conveyor belt (1).
Citation Information
Patent Citations
Raw melting belt conveyor and float glass mixture conveying system
CN115745367A