涂布机入料多角度调节机构
By introducing a multi-angle adjustment mechanism into the coating machine to adjust the relative positions of the stainless steel roller and the glue-coating roller, the problem of insufficient glue coating caused by uneven substrate thickness is solved, thus improving product quality.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SUZHOU DIMA BIO TECH DEV
- Filing Date
- 2025-05-14
- Publication Date
- 2026-07-17
AI Technical Summary
Uneven substrate thickness in existing coating machines leads to insufficient adhesive application, affecting product quality.
The coating machine employs a multi-angle adjustment mechanism for feeding materials. The distance between the stainless steel roller and the coating roller is adjusted through four adjustment mechanisms to ensure uniform coating of the substrate.
It improved product quality, solved the problem of insufficient adhesive application caused by uneven substrate thickness, and achieved higher coating uniformity and stability.
Smart Images

Figure CN224507438U_ABST
Abstract
Claims
1. A multi-angle adjustment mechanism for a coating machine feed, characterized by, include: The system includes an adhesive coating roller, a drive roller, and a stainless steel roller, wherein the drive roller drives the adhesive coating roller to rotate, and the stainless steel roller is located close to the adhesive coating roller. A first adjusting mechanism is located near one end of the stainless steel roller and is capable of adjusting the distance between one end of the stainless steel roller and the coating roller. The first adjusting mechanism includes a first stationary plate, a first rotating rod, and a first support frame. One end of the stainless steel roller is fixedly mounted on the first support frame and rotatably connected to the first support frame. One end of the first rotating rod is fixedly connected to the first support frame. At least a portion of the first rotating rod has external threads. The first stationary plate and the first rotating rod are threaded together. The first stationary plate remains stationary. When the first rotating rod is rotated, it extends or retracts relative to the first stationary plate, thereby causing the first rotating rod to move one end of the stainless steel roller closer to or away from the coating roller. The system includes a second adjusting mechanism located near the other end of the stainless steel roller and capable of adjusting the distance between the other end of the stainless steel roller and the coating roller. The second adjusting mechanism comprises a second stationary plate, a second rotating rod, and a second support frame. The other end of the stainless steel roller is fixedly mounted on the second support frame on one side and rotatably connected to the second support frame on the other side. One end of the second rotating rod is fixedly connected to the second support frame. At least a portion of the second rotating rod has external threads. The second stationary plate and the second rotating rod are threaded together. The second stationary plate remains stationary. Rotating the second rotating rod causes it to extend or retract relative to the second stationary plate, thereby causing the second rotating rod to move the other end of the stainless steel roller closer to or further away from the coating roller.
2. The adjustment mechanism of claim 1, wherein, The first support frame of the first adjustment mechanism is provided with a first mounting through hole and a second mounting through hole, both of which penetrate the first support frame. The first adjustment mechanism also includes a first bearing and a first connecting block. The first bearing is fixedly installed in the first mounting through hole, and one end of the stainless steel roller is fixedly installed together with the first bearing, thereby enabling the stainless steel roller to rotate relative to the first support frame. The first connecting block is fixedly connected to one end of the first rotating rod, and the first connecting block is fixedly engaged in the second mounting through hole, thereby fixing the first rotating rod and the first support frame together.
3. The adjustment mechanism of claim 1, wherein, The second support frame of the second adjustment mechanism is provided with a third mounting through hole and a fourth mounting through hole, both of which penetrate the second support frame. The second adjustment mechanism also includes a second bearing and a second connecting block. The second bearing is fixedly installed in the third mounting through hole, and the other end of the stainless steel roller is fixedly installed together with the second bearing, thereby enabling the stainless steel roller to rotate relative to the second support frame. The second connecting block is fixedly connected to one end of the second rotating rod, and the second connecting block is fixedly engaged in the fourth mounting through hole, thereby fixing the second rotating rod and the second support frame together.
4. The adjustment mechanism of claim 1, wherein, It also includes a first support plate, on which a first placement space is provided, a first stationary plate is fixedly connected to the first support plate and the first stationary plate is close to the first placement space; the first support frame is placed in the first placement space and the first support frame is movable in the first placement space.
5. The adjustment mechanism of claim 1, wherein, It also includes a second support plate, on which a second placement space is provided, a second stationary plate is fixedly connected to the second support plate, and the first stationary plate is close to the second placement space; the second support frame is placed in the second placement space, and the second support frame is movable in the second placement space.
6. The adjustment mechanism of claim 4, wherein, It also includes a third adjustment mechanism, which comprises a third stationary plate, a third rotating rod, a third support frame, a third locking block, and a third bearing. The third support frame is provided with a fifth mounting through hole and a sixth mounting through hole. The third bearing is fixedly installed in the fifth mounting through hole, and one end of the adhesive roller is fixedly installed with the third bearing. The third locking block is fixedly connected to one end of the third rotating rod and is fixedly locked into the sixth mounting through hole. At least a portion of the third rotating rod has external threads, and the third rotating rod and the third stationary plate are threadedly connected. The third stationary plate is fixedly installed on the first support plate. The first support plate is provided with a third placement space, and the third support frame is movably placed in the third placement space.
7. The adjustment mechanism of claim 5, wherein, It also includes a fourth adjustment mechanism, which comprises a fourth stationary plate, a fourth rotating rod, a fourth support frame, a fourth locking block, and a fourth bearing. The fourth support frame is provided with a seventh mounting through hole and an eighth mounting through hole. The fourth bearing is fixedly installed in the seventh mounting through hole, and the other end of the adhesive roller is fixedly installed with the fourth bearing. The fourth locking block is fixedly connected to one end of the fourth rotating rod and is fixedly locked into the eighth mounting through hole. At least a portion of the fourth rotating rod has external threads, and the fourth rotating rod and the fourth stationary plate are threadedly connected. The fourth stationary plate is fixedly installed on the second support plate. The second support plate is provided with a fourth placement space, and the fourth support frame is movably placed in the fourth placement space.