Floating film removing driving mechanism

By designing a floating film removal drive mechanism, and utilizing a combination of a vertical drive motor and a vacuum coupling sleeve, the problem of adjusting the side of the coated glass when it is loaded into the frame was solved, realizing dynamic floating adjustment of the coated glass and improving the efficiency of the film removal process.

CN224021569UActive Publication Date: 2026-03-20FOSHAN SHUNDE HANGLASTECH AUTOMATION CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-11
Publication Date
2026-03-20

AI Technical Summary

Technical Problem

In the existing technology, the four sides of the coated glass need to be installed in a glass frame, and it is difficult to dynamically adjust the coating thickness, which makes the coating removal process difficult.

Method used

A floating film removal drive mechanism was designed, including a vertical drive mechanism and a transmission belt. The vertical drive motor drives the connecting shaft, reducer and lifting sleeve, and combined with the vacuum coupling sleeve to provide buffer, so as to realize the dynamic floating adjustment of the coated glass.

Benefits of technology

It enables adjustment of the relative position between the coated glass and the glass frame, ensuring dynamic floating adjustment of the coating thickness and improving the efficiency and effectiveness of the coating removal process.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224021569U_ABST
    Figure CN224021569U_ABST
Patent Text Reader

Abstract

The utility model relates to the field of glass processing, in particular to a floating film removing driving mechanism which comprises a vertical driving mechanism and a transmission belt. The vertical driving mechanism comprises a vertical driving mechanism body and a vertical driving motor. The vertical driving mechanism body comprises a supporting column, a speed reducer, a connecting rotating shaft, a lifting sliding sleeve and a connecting sleeve, the lifting sliding sleeve is arranged on the outer side of the supporting column, the top of the lifting sliding sleeve is connected with the bottom of the speed reducer through the connecting sleeve, the vertical driving motor is connected with the input end of the speed reducer, and the top of the connecting rotating shaft is connected with the output end of the speed reducer; the bottom of the connecting rotating shaft is toothed with the supporting column. The transmission belt is arranged on the front side of the lifting sliding sleeve and fixedly connected with the lifting sliding sleeve, and the vertical driving motor drives the connecting sleeve to move downwards, so that the transmission belt is driven to move downwards to press glass and facilitate grinding wheel machining. The interior of the connecting sleeve is vacuumized, buffering can be provided by arranging the connecting sleeve with the vacuum interior, and the floating effect is achieved in the grinding process.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of machinery, and in particular to a floating film removal drive mechanism. Background Technology

[0002] In recent years, with the development of vehicle electrification, the need to place batteries under the vehicle has reduced the overall space. To enhance the user experience, more and more electric vehicles are adopting a panoramic sunroof design. A panoramic sunroof is essentially a flat, transparent glass panel with a silver-plated coating. This coating gives the glass high transmittance of visible light and high reflectivity of mid- and far-infrared rays, resulting in superior heat insulation and light transmission compared to ordinary glass and traditional architectural coated glass.

[0003] In current practical applications, 10mm of each of the four sides of double-silver and triple-silver glass needs to be fitted into the glass frame. Therefore, the coating on this part of the glass needs to be removed. Since the coating is very thin, a floating coating removal drive mechanism is needed that can adjust the relative position of the coating removal mechanism and the glass and can dynamically adjust the floating position according to the thickness of the coating. Utility Model Content

[0004] The main objective of this invention is to provide a floating film removal drive mechanism that can adjust the relative position of the film removal mechanism and the glass, and can dynamically adjust the floating position according to the thickness of the coating.

[0005] This utility model proposes a floating film removal drive mechanism, including a vertical drive mechanism and a transmission belt;

[0006] The vertical drive mechanism includes a vertical drive mechanism body and a vertical drive motor. The vertical drive mechanism body is mounted on the frame and fixedly connected to the frame.

[0007] The vertical drive mechanism body includes a support column, a reducer, a connecting shaft, a lifting sleeve, and a connecting sleeve. The lifting sleeve is disposed on the outside of the support column. The top of the lifting sleeve is connected to the bottom of the reducer through the connecting sleeve. The vertical drive motor is connected to the input end of the reducer. The top of the connecting shaft is connected to the output end of the reducer. The bottom of the connecting shaft is toothed to the support column.

[0008] The transmission belt is fixedly connected to the lifting sleeve at the front side. The vertical drive motor drives the connecting shaft to rotate, thereby driving the reducer, the lifting sleeve and the connecting sleeve to move downward, thereby driving the transmission belt to move downward, pressing the glass and facilitating grinding wheel processing.

[0009] The coupling sleeve is internally vacuumized, and the coupling sleeve with internal vacuum can provide buffering, thereby achieving floating effect during grinding.

[0010] Preferably, the vertical driving mechanism bodies are two in common and are arranged on the frame respectively, and the two vertical driving mechanism bodies are connected through a transmission rod.

[0011] Preferably, the support column is provided with a support bottom plate at the bottom.

[0012] Preferably, a telescopic protective sleeve is arranged between the lifting sliding sleeve and the support bottom plate.

[0013] Preferably, the transmission belt comprises a transmission belt support frame, a transmission belt body arranged on the transmission belt support frame and a transmission belt driving mechanism, the transmission belt support frame is arranged on the front side of the lifting sliding sleeve and is fixedly connected with the lifting sliding sleeve, and the transmission belt driving mechanism is arranged at one end of the transmission belt support frame and can drive the transmission belt body to move.

[0014] Preferably, the transmission belt further comprises a pressing frame, the pressing frame comprises a pressing frame body and a plurality of pressing block assemblies arranged at the bottom of the pressing frame body.

[0015] The rear side of the pressing frame body is fixedly connected with the transmission belt support frame, and the pressing block assembly comprises an upper pressing block, a spring block, a lower connecting block and a lower pressing block.

[0016] The top of the upper pressing block is fixedly connected with the pressing frame body, the bottom of the upper pressing block is provided with an inclined surface, one end of the spring block is fixedly connected on the inclined surface, the other end of the spring block is fixedly connected with one end of the lower connecting block, the top of the lower pressing block is rotatably connected on the other end of the lower connecting block, and the bottom of the lower pressing block is provided with a lower pressing block connecting groove matched with the transmission belt body.

[0017] The floating film removing driving mechanism has the advantages that:

[0018] 1. The coupling sleeve with internal vacuum can provide buffering, thereby achieving floating effect during grinding.

[0019] 2. The protective sleeve can protect the lifting sliding sleeve. BRIEF DESCRIPTION OF DRAWINGS

[0020] Fig. 1 It is a structural schematic view of the floating film removing driving mechanism.

[0021] Fig. 2The utility model discloses a vertical drive mechanism body's sectional view of the floating film removing drive mechanism.

[0022] Fig. 3 The utility model discloses the structure schematic drawing of the compression block subassembly of the floating film removing drive mechanism.

[0023] Marked number in drawing: 1, vertical drive mechanism, 2, transmission belt, 11, vertical drive mechanism body, 12, gear box, 13, transmission rod, 14, vertical drive motor, 21, transmission belt drive mechanism, 22, transmission belt support frame, 23, transmission belt body, 24, compression frame, 111, speed reducer, 112, coupling sleeve, 113, lifting sliding sleeve, 114, support column, 115, protective sleeve, 116, connecting shaft, 241, compression frame body, 242, upper compression block, 243, spring block, 244, lower connecting block, 245, lower compression block, 2451, lower compression block connecting groove.

[0024] The utility model discloses the realization, functional characteristics and advantages will be further explained with reference to the embodiment, with reference to the drawing. DETAILED DESCRIPTION

[0025] It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and do not limit the present utility model.

[0026] Reference Figs. 1 to 3 An embodiment of the floating film removing drive mechanism is provided.

[0027] A floating film removing drive mechanism comprises a vertical drive mechanism 1 and a transmission belt 2.

[0028] The vertical drive mechanism 1 comprises two vertical drive mechanism bodies 11, a transmission rod 13, a gear box 12 and a vertical drive motor 14. The two vertical drive mechanism bodies 11 are arranged on a rack. The vertical drive mechanism body 11 comprises a support column 114, a speed reducer 111, a connecting shaft 116, a lifting sliding sleeve 113, a protective sleeve 115 and a coupling sleeve 112. The bottom of the support column 114 is provided with a support bottom plate. The lifting sliding sleeve 113 is arranged on the outer side of the support column 114. The top of the lifting sliding sleeve 113 is connected with the bottom of the speed reducer 111 through the coupling sleeve 112. The bottom of the lifting sliding sleeve 113 and the support bottom plate are provided with the telescopic protective sleeve 115.

[0029] The vertical driving motor 14 is connected with the input end of the speed reducer 111 of the vertical driving mechanism 1 on one side through the gear box 12, the top of the connecting rotating shaft 116 is connected with the output end of the speed reducer 111, and the bottom of the connecting rotating shaft 116 is toothed with the supporting column 114 through the connecting sleeve 112. The speed reducers 111 on the two vertical driving mechanisms 14 are connected through the transmission rod 13. The connecting sleeve 112 is internally vacuumized, and the connecting sleeve 112 provided with the internal vacuum can provide buffering, so that the floating effect is realized in the grinding process.

[0030] The transmission belt 2 comprises a transmission belt support frame 22, a pressing frame 24, a transmission belt body 23 arranged on the transmission belt support frame 22 and a transmission belt driving mechanism 21. The transmission belt support frame 22 is arranged on the front side of the lifting sliding sleeve 113 and is fixedly connected with the lifting sliding sleeve 113. The transmission belt driving mechanism 21 is arranged at one end of the transmission belt support frame 22 and can drive the transmission belt body 23 to move.

[0031] The pressing frame 24 comprises a pressing frame body 241 and a plurality of pressing block assemblies arranged on the bottom of the pressing frame body 241. The rear side of the pressing frame body 241 is fixedly connected with the transmission belt support frame 22. The pressing block assembly comprises an upper pressing block 242, a spring block 243, a lower connecting block 244 and a lower pressing block 245. The top of the upper pressing block 242 is fixedly connected with the pressing frame body 241. An inclined surface is arranged on the bottom of the upper pressing block 242. One end of the spring block 243 is fixedly connected with the inclined surface. The other end of the spring block 243 is fixedly connected with one end of the lower connecting block 244. The top of the lower pressing block 245 is rotatably connected with the other end of the lower connecting block 244. The bottom of the lower pressing block 245 is provided with a lower pressing block connecting groove 2451 matched with the transmission belt body 23. The transmission belt body 23 can be kept in a tight state through the arrangement of the pressing frame 24.

[0032] In use, the vertical driving motor 4 drives the connecting rotating shaft 116 to rotate through the gear box 12 and the speed reducer 111, so as to drive the speed reducer 111, the lifting sliding sleeve 113 and the connecting sleeve 112 to move downward, thereby driving the transmission belt 2 to move downward, pressing the glass and facilitating the processing of the grinding wheel.

[0033] The above only describes the preferred embodiments of the present application, and does not limit the patent range of the present application. Any equivalent structural transformation or direct or indirect application in other related technical fields based on the content of the present application is also included in the patent protection range of the present application.

Claims

1. A floating film removal drive mechanism, characterized in that, This includes the vertical drive mechanism and the drive belt; The vertical drive mechanism includes a vertical drive mechanism body and a vertical drive motor. The vertical drive mechanism body is mounted on the frame and fixedly connected to the frame. The vertical drive mechanism body includes a support column, a reducer, a connecting shaft, a lifting sleeve, and a connecting sleeve. The lifting sleeve is disposed on the outside of the support column. The top of the lifting sleeve is connected to the bottom of the reducer through the connecting sleeve. The vertical drive motor is connected to the input end of the reducer. The top of the connecting shaft is connected to the output end of the reducer. The bottom of the connecting shaft is toothed to the support column. The transmission belt is fixedly connected to the lifting sleeve at the front side. The vertical drive motor drives the connecting shaft to rotate, thereby driving the reducer, the lifting sleeve and the connecting sleeve to move downward, thereby driving the transmission belt to move downward, pressing the glass and facilitating grinding wheel processing. The connecting sleeve is evacuated, and the connecting sleeve with internal vacuum can provide a buffer, thereby achieving a floating effect during the grinding process.

2. The floating film removal drive mechanism according to claim 1, characterized in that, There are two vertical drive mechanism bodies, each mounted on the frame, and the two vertical drive mechanism bodies are connected by a transmission rod.

3. The floating film removal drive mechanism according to claim 1 or 2, characterized in that, A support base plate is provided at the bottom of the support column.

4. The floating film removal drive mechanism according to claim 3, characterized in that, A retractable protective sleeve is provided between the lifting sliding sleeve and the supporting base plate.

5. The floating film removal drive mechanism according to claim 1, characterized in that, The transmission belt includes a transmission belt support frame, a transmission belt body disposed on the transmission belt support frame, and a transmission belt drive mechanism. The transmission belt support frame is disposed on the front side of the lifting sleeve and is fixedly connected to the lifting sleeve. The transmission belt drive mechanism is disposed at one end of the transmission belt support frame and is capable of driving the transmission belt body to move.

6. The floating film removal drive mechanism according to claim 5, characterized in that, The transmission belt also includes a clamping frame, which includes a clamping frame body and a plurality of clamping block assemblies disposed at the bottom of the clamping frame body; The rear side of the clamping frame body is fixedly connected to the transmission belt support frame, and the clamping block assembly includes an upper clamping block, a spring block, a lower connecting block, and a lower clamping block; The top of the upper clamping block is fixedly connected to the clamping frame body, and the bottom of the upper clamping block is provided with an inclined surface. One end of the spring block is fixedly connected to the inclined surface, and the other end of the spring block is fixedly connected to one end of the lower connecting block. The top of the lower clamping block is rotatably connected to the other end of the lower connecting block. The bottom of the lower clamping block is provided with a lower clamping block connecting groove that is adapted to the transmission belt body. By setting the clamping frame, the transmission belt body can be kept in a taut state.