一种浮法玻璃生产线过渡辊在线换辊装置
By designing an online roller changing device for the transition rollers in a float glass production line, the device utilizes a power unit and a sliding trolley to achieve online replacement of the transition rollers. This solves the problem of roller damage affecting glass quality at high temperatures and improves production efficiency and quality.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- JINHONGYANG SOLAR POWER TECH CO LTD
- Filing Date
- 2025-07-09
- Publication Date
- 2026-07-17
AI Technical Summary
Damage to the transition rollers during float glass production causes quality problems with the glass sheets, and the rollers cannot be stopped and replaced at high temperatures. There are currently no suitable tools for online replacement.
Design an online roller replacement device for the transition roller of a float glass production line, including a power unit, a track unit and a sliding trolley. The device uses an overtaking geared motor to drive a new roller to replace the damaged roller, thus achieving online replacement.
Damaged rollers can be effectively replaced without affecting production, thereby improving the quality of glass sheets and the output of the production line, and solving the problem of online roller replacement.
Smart Images

Figure CN224512318U_ABST
Abstract
Claims
1. An on-line roll change device for a transition roll of a float glass production line, characterized by: It includes a power unit, a track device, and a sliding trolley; the power unit is slidably mounted on one end of the track device, and the sliding trolley includes a left trolley and a right trolley, both of which are slidably mounted in the middle of the track device. Both the sliding trolley and the power unit can slide on the track device.
2. A device for on-line roll change of a transition roll of a float glass production line according to claim 1, characterized in that: The track device includes two rectangular tracks and a U-shaped crossbeam. The two tracks are fixed at their ends, spaced apart and parallel to each other, on two base plates. One end of each track is a power end, and the other end is a connection end. A pad A is welded and fixed to the base plate on the outer side of the two tracks at the power end. Another pad B is welded and fixed to the base plate in the middle of the two tracks at the connection end. The U-shaped crossbeam is welded and fixed to pads A and B. An adjusting screw is provided on each side of the base plate. The lower end of the adjusting screw is fixed to the top of a support of a traveling wheel. Rotating the adjusting screw can adjust the height of the base plate.
3. A floating glass production line transition roll on-line roll changing device according to claim 2, characterized in that: The top surface of the U-shaped crossbeam is higher than the top surface of the two rectangular tracks.
4. A device for on-line roll change of a transition roll of a float glass production line according to claim 1, characterized in that: The power unit includes a bracket and an overtaking geared motor. The bottom surface of the bracket is an inverted channel steel that is fastened to both sides of a U-shaped crossbeam. Two bearings are installed on each side of the channel steel. The bearings are located on the top surface of two rectangular tracks and can drive the channel steel to move on the top surface of the two rectangular tracks. A vertical plate is welded and fixed to the top surface of the end of the channel steel facing the center of the rectangular tracks. The overtaking geared motor is horizontally fixed on the upper side of the vertical plate. The motor shaft of the overtaking geared motor faces the center of the rectangular tracks and passes through the vertical plate.
5. A floating glass production line transition roll on-line roll changing device according to claim 4, characterized in that: A connecting sleeve is fixed on the shaft of the overtaking gear motor for connecting the transition roller shaft head.
6. A floating glass production line transition roll on-line roll changing device according to claim 4, characterized in that: The upright plate has four connecting screws on the outside of the motor shaft.
7. A floating glass production line transition roll on-line roll changing device according to claim 1, characterized in that: Both the left and right trolleys include a rectangular trolley top plate. A trolley upright plate is welded and fixed to the middle of the lower side of the trolley top plate. A roller is fixed on both sides of the trolley upright plate. The rollers are located on the top surface of the two sides of the U-shaped crossbeam. The trolley upright plate is located in the middle of the U-shaped crossbeam. The rollers can drive the left and right trolleys to move on the U-shaped crossbeam. The left trolley is closer to the track connection end, and the right trolley is to the right of the left trolley.
8. A floating glass production line transition roll on-line roll changing device according to claim 7, characterized in that: Each of the left and right trolleys has a through hole on its upright plate. A pull rod is inserted into the through hole. The pull rod has a shaft end larger than the diameter of the pull rod at the right trolley end and a screw at the left trolley end. A nut is provided on the screw to connect the left and right trolleys together.
9. A floating glass production line transition roll on-line roll changing device according to claim 7, characterized in that: Two vertically arranged limit bearings are installed at one end of the outer side of the upright plate of the left and right trolleys. The limit bearings are horizontal and are clamped in the inner groove of the U-shaped crossbeam to ensure that the left and right trolleys will not sway when they move.