Glass vacuum tube anti-collision conveyor
By designing an anti-collision conveyor and utilizing components such as rotating buffer arms and limiting columns, the problem of damage to glass vacuum tubes caused by collisions during transportation was solved, achieving automated buffering and collection, and improving transportation efficiency and yield.
Patent Information
- Application Number
- CN202520091801.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-15
- Publication Date
- 2025-12-23
- Estimated Expiration
- 2035-01-15
AI Technical Summary
During the production of glass vacuum tubes, the tubes are prone to collision damage due to excessive speed when being transported to the end, and require manual buffering and collection, resulting in low efficiency and waste of human resources.
A collision-resistant conveyor was designed, comprising a frame, a belt conveyor, and a vacuum tube receiving device. Utilizing components such as a rotating buffer arm and limiting posts, it achieves automated buffering and storage, avoiding collisions and improving conveying efficiency.
It achieves automated buffering and collection of glass vacuum tubes, avoiding collision damage, saving labor resources, and improving conveying efficiency and yield.
Smart Images

Figure CN223703953U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to solar energy technical field, concretely relates to a glass vacuum tube anti -collision conveyor. BACKGROUND
[0002] In the solar vacuum tube production process, glass tube needs to pass through many processes to make the final vacuum tube finished product, and the glass tube needs to be conveyed to different processing platforms by the conveyor between different processes.
[0003] In the prior art, when the glass tube is conveyed to the terminal collection, in order to prevent the glass vacuum tube from being damaged due to the too fast rolling speed, manual buffering and taking of the glass vacuum tube are needed at the end of the conveyor, which consumes a lot of time and unnecessary labor. UTILITY MODEL CONTENT
[0004] In view of the above problems existing in the prior art, the utility model provides a glass vacuum tube anti-collision conveyor.
[0005] To achieve the above technical purpose, the utility model adopts the following technical scheme:
[0006] A glass vacuum tube anti-collision conveyor, comprising a rack, a belt conveyor, and a vacuum tube receiving device, wherein the belt conveyor is installed on the rack, and the vacuum tube receiving device is arranged at the end of the belt conveyor; the vacuum tube receiving device comprises a vacuum tube placing box, a support arm, a rotating buffer arm, and a driving device, the support arm is vertically arranged above the vacuum tube placing box, the rotating buffer arm is installed on the support arm through a rotating shaft, the driving device is installed at the bottom of the vacuum tube placing box, and the driving device is connected with the rotating shaft through a belt.
[0007] Further, the belt conveyor comprises a motor, a conveyor belt, and a limiting column, the power output end of the motor is connected with the power input end of the conveyor belt through a belt, and the limiting column is evenly arranged on the conveyor belt.
[0008] Further, the rotating buffer arm is provided with a baffle, and the baffle is provided with a buffer foam.
[0009] Further, the support arm is a telescopic support arm.
[0010] According to the above technical scheme, the utility model has the advantages that the vacuum tube receiving device is arranged at the end of the belt conveyor, which saves the manual resources for buffering and collecting the glass vacuum tube, avoids the mutual collision of the glass vacuum tubes during storage, improves the conveying efficiency of the glass vacuum tubes, and improves the yield. BRIEF DESCRIPTION OF DRAWINGS
[0011] Fig. 1The whole structure schematic diagram of the glass vacuum tube anti-collision conveyor;
[0012] Fig. 2 The working condition schematic diagram of the glass vacuum tube anti-collision conveyor;
[0013] 1-frame; 2-belt conveying device; 21-motor; 22-conveying belt; 23-limiting column; 3-vacuum tube receiving device; 31-vacuum tube placing box; 32-supporting arm; 33-rotary buffer arm; 34-rotation shaft; 35-baffle; 36-driving device. DETAILED DESCRIPTION
[0014] In order to more clearly illustrate the technical scheme of the present application, the present application will be described in detail below with reference to the drawings and examples.
[0015] Referring to Figs. 1-2 A glass vacuum tube anti-collision conveyor, comprising a frame 1, a belt conveying device 2, and a vacuum tube receiving device 3.
[0016] Referring to Figs. 1-2 The belt conveying device 2 is installed on the frame 1, and the vacuum tube receiving device 3 is arranged at the end of the belt conveying device 2. The belt conveying device 2 conveys the vacuum glass tube to the vacuum tube receiving device 3, thereby saving manual buffering and collecting of the glass vacuum tube.
[0017] Referring to Figs. 1-2 The vacuum tube receiving device 3 comprises a vacuum tube placing box 31, a supporting arm 32, a rotary buffer arm 33, and a driving device 36. The supporting arm 32 is vertically arranged above the vacuum tube placing box 31. The rotary buffer arm 33 is installed on the supporting arm 32 through a rotation shaft 34. The driving device 36 is installed at the bottom of the vacuum tube placing box 31 and is transmissionally connected with the rotation shaft 34 through a belt. The vacuum tube placing box 31 is used for receiving the vacuum tube conveyed to the end of the conveyor. After being uniformly received, the whole box of glass vacuum tubes is packed and enters the next process for processing. The supporting arm 32 is used for supporting the rotary buffer arm 33. The driving device 36 drives the rotation shaft 34 to rotate, so that the rotation speed of the rotary buffer arm 33 matches the conveying speed of the belt conveying device 2 to receive the glass vacuum tube, thereby avoiding asynchronous sliding and breaking of the vacuum tube.
[0018] Referring to Figs. 1-2 The belt conveying device 2 comprises a motor 21, a conveying belt 22, and a limiting column 23. The power output end of the motor 21 is connected with the power input end of the conveying belt 22 through a belt. The limiting column 23 is uniformly arranged on the conveying belt 22. The motor 21 drives the conveying belt 22 to run, so as to convey the glass vacuum tube placed on the conveying belt 22 to a specified position. The limiting column 23 fixes the glass vacuum tube at the specified position, thereby avoiding sliding and deviation of the glass vacuum tube on the belt conveying device 2 and causing damage.
[0019] Referring to Figs. 1-2 The rotating buffer arm 33 is provided with a baffle 35, and the baffle 35 is provided with buffer foam.
[0020] Referring to Figs. 1-2 The support arm 32 is a telescopic support arm, which is used to adjust the running height of the rotating buffer arm 33, so as to facilitate the rotating buffer arm 33 to place the glass vacuum tube in the vacuum tube placing box 31.
[0021] According to the above embodiment, the working process of the utility model is as follows:
[0022] The glass vacuum tube is placed on the transmission belt 22, and the relative position of the glass vacuum tube on the belt conveying device 2 is limited by the limiting column 23. The motor 21 drives the transmission belt 22 to convey the glass vacuum tube to the end of the conveyor. After the glass vacuum tube is pulled away from the transmission device 2, the driving device 36 drives the rotating shaft 34 to rotate, so that the rotating speed of the rotating buffer arm 33 matches the conveying speed of the belt conveying device 2. The rotating buffer arm 33 catches the glass vacuum tube, and then the buffer arm 33 gradually rotates to place the glass vacuum tube in the vacuum tube placing box 31. After a certain amount of glass vacuum tubes are placed, the height of the support column 32 is adjusted, so as to facilitate the continuous storage of the glass vacuum tubes.
[0023] The above disclosed embodiments of the utility model are only applicable to help illustrate the utility model. The preferred embodiments do not describe all the details, and the utility model is not limited to the specific embodiments described. According to the content of the specification, many modifications and changes can be made. The embodiments are selected and described in detail in order to better explain the principles and practical applications of the utility model, so that the skilled in the art can well understand and utilize the utility model. The utility model is limited by the claims and the whole scope and equivalents thereof.
Claims
1. A glass vacuum tube anti-collision conveyor characterized by: It comprises a rack (1), a belt conveying device (2) and a vacuum tube receiving device (3). The belt conveying device (2) is installed on the rack (1), and the vacuum tube receiving device (3) is arranged at the end of the belt conveying device (2). The vacuum tube receiving device (3) comprises a vacuum tube placing box (31), a supporting arm (32), a rotating buffer arm (33) and a driving device (36). The supporting arm (32) is vertically arranged above the vacuum tube placing box (31). The rotating buffer arm (33) is installed on the supporting arm (32) through a rotating shaft (34). The driving device (36) is installed at the bottom of the vacuum tube placing box (31) and is drivingly connected with the rotating shaft (34) through a belt.
2. The glass vacuum tube anti-collision conveyor according to claim 1, characterized in that: The belt conveying device (2) comprises a motor (21), a conveying belt (22) and a limiting column (23). The power output end of the motor (21) is connected with the power input end of the conveying belt (22) through a belt. The limiting columns (23) are evenly arranged on the conveying belt (22).
3. The glass vacuum tube anti-collision conveyor according to claim 1, characterized in that: The rotating buffer arm (33) is provided with a baffle (35), and the baffle (35) is provided with buffer foam.
4. The glass vacuum tube anti-collision conveyor according to claim 1, characterized in that: The supporting arm (32) is a telescopic supporting arm.