A peeling roller and peeling equipment that can be quickly disassembled and assembled
Patent Information
- Application Number
- CN202522118858.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-30
- Publication Date
- 2026-09-01
- Estimated Expiration
- 2035-09-30
AI Technical Summary
[0004]本申请实施例提供了一种可快速拆装的剥皮辊及剥皮设备,可快速拆装的剥皮辊通过将剥皮辊设计为分体式,更换胶辊时,仅需拆卸位于框架外侧的第一轴承座,而后拆分辊轴和连接件,即可取下辊轴和胶辊,对胶辊进行更换,从而彻底避开剥皮设备中部狭小空间内的操作,大幅降低剥皮辊轴在框架上的拆装难度,显著提升维护便捷性与效率,解决了现有的剥皮辊更换时需拆卸两端轴承座,但剥皮设备的中部空间狭小,前轴承座拆装需在狭小空间操作,难度极大,且整个过程耗时费力,严重影响维护效率的问题
[0015] This application provides a quick-disassembly peeling roller and peeling device. The quick-disassembly peeling roller includes a roller shaft assembly, a first bearing seat, and a second bearing seat. The roller shaft assembly includes a roller shaft, a connector, and a rubber roller. The first and second bearing seats are detachably disposed on opposite sides of the frame of the peeling device. The first bearing seat is located on the outside of the frame and is used to connect one end of the roller shaft. The second bearing seat is used to connect the connector. The other end of the roller shaft is detachably connected to the connector. When replacing the rubber roller, only the first bearing seat located on the outside of the frame needs to be removed, and then the roller shaft and connector can be disassembled to remove the roller shaft and rubber roller for replacement. This completely avoids the operation in the narrow space in the middle of the peeling device, greatly reduces the difficulty of disassembling and assembling the peeling roller shaft on the frame, and significantly improves the convenience and efficiency of maintenance. It solves the problem that existing peeling roller replacement requires disassembling the bearing seats at both ends, but the middle space of the peeling device is narrow, and the disassembly and assembly of the front bearing seat must be carried out in a narrow space, which is extremely difficult and time-consuming, seriously affecting maintenance efficiency.
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Figure CN224702185U_ABST
Abstract
Description
Technical Field
[0001] This application belongs to the field of peeling equipment technology, and particularly relates to a peeling roller and peeling equipment that can be quickly disassembled and assembled. Background Technology
[0002] Peeling rollers are the core transmission and functional components used in various peeling equipment. Through rotational motion and surface structure (or matching components), they separate the material skin from the body. They are widely used in agriculture, wood processing, food processing and other fields, and are key mechanical components to ensure peeling efficiency and material integrity.
[0003] Currently, peeling rollers on the market are arranged side-by-side on the peeling machine frame, with each roller mounted on the frame via bearing seats at its front and rear ends. Because the rubber rollers of the peeling rollers are prone to wear, maintenance or replacement of the rollers is required after a period of operation. This necessitates disassembling and reassembling the front and rear bearing seats of the peeling rollers. Figure 1 The existing peeling roller shown, Figure 1 In the diagram, A represents the frame, B represents the peeling roller shaft, C represents the rear bearing housing, and D represents the front bearing housing. The right end of frame A is located in the middle of the peeling equipment, meaning that the front bearing housing D of the peeling roller shaft is located in the middle of the peeling equipment. The space in this location is very limited, and disassembly and assembly must be carried out in an extremely confined space, making it very difficult, time-consuming, and labor-intensive. Therefore, solving the problem of the difficulty in disassembling and assembling the peeling roller shaft on the frame is urgent. Utility Model Content
[0004] This application provides a peeling roller and peeling device that can be quickly disassembled and assembled. The peeling roller is designed as a split type. When replacing the rubber roller, only the first bearing seat located on the outside of the frame needs to be removed. Then, the roller shaft and connecting parts can be separated to remove the roller shaft and rubber roller for replacement. This completely avoids the operation in the narrow space in the middle of the peeling device, greatly reduces the difficulty of disassembling and assembling the peeling roller shaft on the frame, and significantly improves the convenience and efficiency of maintenance. It solves the problem that the existing peeling roller replacement requires the disassembly of the bearing seats at both ends. However, the middle space of the peeling device is narrow, and the disassembly and assembly of the front bearing seat must be carried out in a narrow space, which is extremely difficult and time-consuming, seriously affecting the maintenance efficiency.
[0005] In a first aspect, embodiments of this application provide a peeling roller that can be quickly disassembled and assembled, applied to peeling equipment, including a roller assembly, a first bearing housing, and a second bearing housing; The roller assembly includes a roller shaft, a connector, and a rubber roller; The first bearing seat and the second bearing seat are detachably disposed on both sides of the frame of the peeling device, with the first bearing seat located on the outside of the frame, the second bearing seat being used to connect the connector, and the first bearing seat being used to connect one end of the roller shaft, the other end of the roller shaft being detachably connected to the connector. The rubber roller is mounted on the roller shaft.
[0006] In one feasible implementation, the roller includes a first shaft portion, a long shaft, and a first connecting portion; The connector includes a second shaft portion and a second connecting portion; The first shaft portion is connected to the first bearing seat, and the first shaft portion is also connected to the long shaft. The rubber roller is disposed on the long shaft. The first connecting portion and the second connecting portion are detachably connected, and the second shaft portion is connected to the second bearing seat.
[0007] In one feasible implementation, the first connecting part is inserted into the second connecting part; The first connecting part is a first plug-in component, and the second connecting part is a first plugged-in component, wherein the first connecting part is plugged into the second connecting part; Alternatively, the first connecting part is a second plugged-in part, the second connecting part is a second plugged-in part, and the second connecting part is plugged into the first connecting part.
[0008] In one possible implementation, the first connector or the second connector is a third shaft portion, and the first plugged-in member or the second plugged-in member is a bushing that matches the third shaft portion. When the roller and the connector are detachably connected, the outer wall of the third shaft portion is inserted into the inner wall of the bushing.
[0009] In one feasible implementation, the outer side wall of the third shaft portion is provided with a first limiting surface, and the inner side wall of the bushing is provided with a second limiting surface; When the third shaft portion is inserted into the bushing, the first limiting surface and the second limiting surface engage, so that the third shaft portion and the bushing are detachably and fixedly connected.
[0010] In one feasible implementation, the first connecting portion and the second connecting portion are screwed together; The first connecting part is a first screwed member, the second connecting part is a first screwed member, and the first connecting part is screwed onto the second connecting part; Alternatively, the first connecting part is a second screwed-in part, the second connecting part is a second screwed-in part, and the second connecting part is screwed onto the first connecting part.
[0011] In one feasible implementation, the first screwed member or the second screwed member is a threaded rod, and the first screwed member or the second screwed member is a threaded sleeve that matches the threaded rod. When the roller and the connector are detachably connected, the threaded rod is screwed into the threaded sleeve.
[0012] In one feasible implementation, the first connecting part and the second connecting part are engaged. The first connecting part is a first snap-fit component, and the second connecting part is a first snap-fit component, wherein the first connecting part snaps into the second connecting part; Alternatively, the first connecting part is a second snap-fit component, the second connecting part is a second snap-fit component, and the second connecting part snaps into the first connecting part.
[0013] In one feasible implementation, the first or second latching member is a positioning latch, which includes an insertion portion and a latching portion disposed on the insertion portion. The first or second latching component is a positioning seat, the positioning seat includes a sleeve, and the inner wall of the sleeve is provided with a slot; When the roller and the connector are detachably connected, the insertion part is inserted into the sleeve, and the snap-fit part is snapped into the slot.
[0014] Secondly, embodiments of this application also provide a peeling device, including the aforementioned peeling roller that can be quickly disassembled and assembled.
[0015] This application provides a quick-disassembly peeling roller and peeling device. The quick-disassembly peeling roller includes a roller shaft assembly, a first bearing seat, and a second bearing seat. The roller shaft assembly includes a roller shaft, a connector, and a rubber roller. The first and second bearing seats are detachably disposed on opposite sides of the frame of the peeling device. The first bearing seat is located on the outside of the frame and is used to connect one end of the roller shaft. The second bearing seat is used to connect the connector. The other end of the roller shaft is detachably connected to the connector. When replacing the rubber roller, only the first bearing seat located on the outside of the frame needs to be removed, and then the roller shaft and connector can be disassembled to remove the roller shaft and rubber roller for replacement. This completely avoids the operation in the narrow space in the middle of the peeling device, greatly reduces the difficulty of disassembling and assembling the peeling roller shaft on the frame, and significantly improves the convenience and efficiency of maintenance. It solves the problem that existing peeling roller replacement requires disassembling the bearing seats at both ends, but the middle space of the peeling device is narrow, and the disassembly and assembly of the front bearing seat must be carried out in a narrow space, which is extremely difficult and time-consuming, seriously affecting maintenance efficiency. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the structure of an existing peeling roller; Figure 2This is a structural schematic diagram of a peeling roller that can be quickly disassembled and assembled according to this application; Figure 3 This is an exploded view of the roller assembly; Figure 4 This is a schematic diagram of the first type of roller and connector connection method; Figure 5 This is a schematic diagram of the second type of roller and connector connection method; Figure 6 This is a schematic diagram of the third type of roller and connector connection method; Figure 7 This is a schematic diagram of the fourth type of roller and connector connection method; Figure 8 This is a schematic diagram of the fifth type of roller and connector connection method.
[0017] Explanation of reference numerals in the attached figures: 100 - Frame; 200 - Roller assembly; 300 - First bearing housing; 400 - Second bearing housing; 210 - Roller shaft; 220 - Connector; 230 - Rubber roller; 211-First shaft portion; 212-Long shaft; 213-First connecting portion; 221-Second shaft portion; 222-Second connecting portion. Detailed Implementation
[0018] To enable those skilled in the art to better understand the technical solutions in this application, the technical solutions in the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments in this application, all other embodiments obtained by those of ordinary skill in the art without creative effort should fall within the scope of protection of this application.
[0019] Currently, the peeling roller is a single unit, fixed at both ends by front and rear bearing seats. When replacing the roller, both bearing seats need to be removed. However, the front bearing seat is located in the middle of the peeling equipment, in a confined space. Disassembly and assembly must be performed in an extremely narrow space, making it very difficult, time-consuming, and labor-intensive. This application designs the peeling roller as a separate unit, including the roller shaft, connecting parts, and the rubber roller. When replacing the rubber roller, only the first bearing seat located on the outside of the peeling equipment needs to be removed, and then the roller shaft and connecting parts can be disassembled to remove the roller shaft and rubber roller for replacement. This completely avoids operations in the confined space in the middle of the peeling equipment, significantly reducing the difficulty of disassembly and assembly, and significantly improving the convenience and efficiency of maintenance.
[0020] The following detailed description, in conjunction with the accompanying drawings, illustrates the specific structure of the quick-release peeling roller and peeling equipment provided in this application.
[0021] Example 1: Reference Figures 2-5 As shown, this application provides a peeling roller that can be quickly disassembled and assembled, which is applied to peeling equipment. It includes a roller assembly 200, a first bearing seat 300 and a second bearing seat 400. The roller assembly 200 includes a roller 210, a connector 220 and a rubber roller 230.
[0022] The first bearing seat 300 and the second bearing seat 400 are detachably disposed on both sides of the frame 100 of the peeling equipment, with the first bearing seat 300 located on the outside of the frame 100, the second bearing seat 400 used to connect the connector 220, the first bearing seat 300 used to connect one end of the roller shaft 210, and the other end of the roller shaft 210 detachably connected to the connector 220; the rubber roller 230 is disposed on the roller shaft 210.
[0023] like Figure 2 As shown, the frame 100 of the peeling device can be a square frame. Figure 2 The left and right directions of the middle frame 100 are the width direction, and the front and back directions are the length direction. Multiple roller assemblies 200 are evenly distributed along the length direction of the frame 100. The first bearing seat 300 and the second bearing seat 400 are detachably disposed at both ends of the frame 100 in the width direction. One end of the frame 100 in the width direction is located in the middle of the peeling device, and the other end is located on the outside of the peeling device. That is, the first bearing seat 300 is located on the outside of the peeling device, which has a large space and no obstruction, which is conducive to installation and disassembly. The second bearing seat 400 is located in the middle of the peeling device, which has a small space and is not conducive to installation and disassembly.
[0024] The second bearing housing 400 is connected to the connector 220, the first bearing housing 300 is connected to one end of the roller shaft 210, the other end of the roller shaft 210 is detachably connected to the connector 220, and the rubber roller 230 is disposed on the roller shaft 210.
[0025] When replacing the rubber roller 230, first remove the first bearing seat 300 located on the outside of the frame 100, release one end of the roller shaft 210, and then pull the roller shaft 210 out from the side of the frame 100 where the first bearing seat 300 is located to separate the roller shaft 210 and the connector 220, release the other end of the roller shaft 210, and then remove the roller shaft 210 and the rubber roller 230 located on the roller shaft 210 from the frame 100. The roller shaft 210 and the old rubber roller 230 can be separated by the existing hydraulic ejection device or other auxiliary devices, and the new rubber roller 230 can be installed on the roller shaft 210. When installing the roller 210, firstly, detachably connect one end of the roller 210 to the connector 220, and then detachably install the first bearing seat 300 to the end of the frame 100, so that the first bearing seat 300 connects to the other end of the roller 210, thereby stabilizing and fixing the roller 210, and then completing the replacement of the rubber roller 230.
[0026] The peeling roller provided in this application can be quickly disassembled and replaced. When replacing the rubber roller, it is only necessary to remove the first bearing seat 300 located on the outside of the frame 100, and then disassemble the roller shaft 210 and the connecting piece 220. The roller shaft 210 can then be removed from the frame 100 to replace the rubber roller 230. This completely avoids the operation in the narrow space in the middle of the peeling equipment, greatly reduces the difficulty of disassembly and assembly, and significantly improves the convenience and efficiency of maintenance.
[0027] Reference Figure 3 As shown, in some embodiments, the roller 210 includes a first shaft portion 211 that mates with the first bearing housing 300, a long shaft 212 for mounting the rubber roller 230, and a first connecting portion 213 that is connected to the connector 220; the connector 220 includes a second shaft portion 221 that mates with the second bearing housing 400 and a second connecting portion 222 that is connected to the roller 210.
[0028] The first shaft portion 211 is connected to the first bearing seat 300, and the long shaft 212 carries the rubber roller 230; the first connecting portion 213 and the second connecting portion 222 are detachably connected, so as to separate the roller shaft 210 from the connecting piece 220 for easy replacement of the rubber roller 230; the second shaft portion 221 is connected to the second bearing seat 400.
[0029] Reference Figure 4 and Figure 5 As shown, in some embodiments, the first connecting part 213 and the second connecting part 222 are inserted into each other. The insertion allows for quick connection and separation of the roller shaft 210 and the connector 220 without the need for complicated tools. When replacing the rubber roller 230, firstly, the first bearing seat 300 located outside the frame 100 is removed. Then, along the axial direction of the roller shaft 210, the roller shaft 210 is pulled away from the connector 220. The first connecting part 213 of the roller shaft 210 is easily pulled out from the second connecting part 222 of the connector 220. The roller shaft 210 and the rubber roller 230 can then be removed for replacement.
[0030] like Figure 4 As shown, when the first connecting part 213 is the first plug-in member and the second connecting part 222 is the first plugged-in member, the first connecting part 213 is plugged into the second connecting part 222; or as shown... Figure 5 As shown, when the first connecting part 213 is the second inserted part and the second connecting part 222 is the second inserted part, the second connecting part 222 is inserted into the first connecting part 213, and both methods can achieve stable cooperation.
[0031] This application adopts a plug-in detachable connection between the first connecting part 213 and the second connecting part 222, which is simple and quick to operate. When replacing the rubber roller 230, it is only necessary to remove the first bearing seat 300 and plug and unplug the split roller shaft 210 and the connecting part 220. There is no need to touch the second bearing seat 400 in the middle of the peeling equipment, which completely avoids the narrow space, further shortens the disassembly and assembly time, and reduces the workload of operators.
[0032] Specifically, in some embodiments, the first or second insert is a third shaft portion, and the first or second insert is a bushing that matches the third shaft portion. The matching design of the third shaft portion and the bushing ensures the coaxiality of the roller shaft 210 and the connector 220 after insertion, and ensures smooth rotational transmission.
[0033] When the roller 210 is connected to the connector 220, the outer wall of the third shaft part is tightly inserted into the inner wall of the bushing, which not only ensures the stability of the connection between the roller 210 and the connector 220, but also facilitates disassembly to replace the rubber roller 230.
[0034] Furthermore, in some embodiments, the outer side wall of the third shaft portion is provided with a first limiting surface, and the inner side wall of the bushing is provided with a second limiting surface. The first limiting surface and the second limiting surface are used to limit the relative rotation between the third shaft portion and the bushing.
[0035] When the third shaft part is inserted into the bushing, the first limiting surface and the second limiting surface engage to achieve detachable fixation of the third shaft part and the bushing, preventing relative sliding during rotation and ensuring stable power transmission to the rubber roller 230.
[0036] In some embodiments, the third shaft portion is an external hexagonal shaft head, and the six outer walls of the external hexagonal shaft head are all first limiting surfaces. The bushing is an internal hexagonal bushing that matches the external hexagonal shaft head, and the six inner walls of the internal hexagonal bushing are all second limiting surfaces. When the external hexagonal shaft head and the internal hexagonal bushing are inserted, the outer wall of the external hexagonal shaft head fits against the inner wall of the internal hexagonal bushing. When either the external hexagonal shaft head or the internal hexagonal bushing rotates, the outer wall of the external hexagonal shaft head engages with the inner wall of the internal hexagonal bushing, thereby achieving synchronous rotation.
[0037] Example 2: The difference from Embodiment 1 is that the first connecting part 213 and the second connecting part 222 are screwed together.
[0038] Reference Figure 6 and Figure 7As shown, the first connecting part 213 and the second connecting part 222 achieve a detachable connection between the roller shaft 210 and the connector 220 through a threaded engagement. The threaded connection combines tightness and ease of operation. When replacing the rubber roller 230, firstly remove the first bearing seat 300 located on the outside of the peeling equipment, and then rotate the roller shaft 210 to make the first connecting part 213 and the second connecting part 222 rotate relative to each other until the first connecting part 213 of the roller shaft 210 separates from the second connecting part 222 of the connector 220. Then the roller shaft 210 and the rubber roller 230 can be removed and the rubber roller 230 can be replaced.
[0039] like Figure 6 As shown, when the first connecting part 213 is a first screwed member and the second connecting part 222 is a first screwed member, the first connecting part 213 is screwed onto the second connecting part 222; or as shown... Figure 7 As shown, when the first connecting part 213 is the second screwed-in part and the second connecting part 222 is the second screwed-in part, the second connecting part 222 screws the first connecting part 213, and both methods can achieve a reliable connection.
[0040] The screw-type detachable connection between the first connecting part 213 and the second connecting part 222 is simple to operate and has a tight connection. With the convenient disassembly of the outer first bearing seat 300, there is no need to move the middle second bearing seat 400 when replacing the rubber roller 230. This ensures that the connection between the roller shaft 210 and the connecting part 220 is stable and can be quickly completed, meeting the maintenance needs in different scenarios.
[0041] Specifically, in some embodiments, the first or second threaded member is a threaded rod, and the first or second threaded member is a threaded sleeve. The threaded rod and the threaded sleeve are designed to match each other to ensure smooth threaded connection. Disassembly and assembly can be completed by simply rotating the rod.
[0042] When the roller shaft 210 is connected to the connector 220, the threaded rod and the threaded sleeve are screwed together, requiring no complicated tools, which facilitates quick disassembly and assembly of the roller shaft 210 and the connector 220 when replacing the rubber roller 230.
[0043] It should be noted that the thread direction of the threaded rod and the threaded sleeve is designed to match the rotation direction of the roller assembly 200, so that the working rotation direction of the roller 210 forms a "thread engagement getting closer and closer when rotating" relationship with the thread direction of the first connecting part 213 and the second connecting part 222.
[0044] Assuming that the roller assembly 200 is in operation and the roller 210 rotates clockwise (viewed from the outside to the inside of the frame 100), then the threads of the first connecting part 213 and the second connecting part 222 are designed as left-hand threads: If the first connecting part 213 is a threaded rod (first threaded connector) and the second connecting part 222 is a threaded sleeve (first threaded connector), when the roller 210 rotates clockwise, the threaded rod (first connecting part 213) will exert a "clockwise tightening" force on the threaded sleeve (second connecting part 222), which will increase the thread engagement depth of the two (i.e., "get closer and closer"), thus achieving both synchronous rotation and self-locking. If the first connecting part 213 is a threaded sleeve (the second threaded part) and the second connecting part 222 is a threaded rod (the second threaded part), then similarly, when the connecting part 220 rotates clockwise with the roller shaft 210, the threaded rod (the second connecting part 222) will screw into the threaded sleeve (the first connecting part 213), thus achieving "the thread getting closer and closer as it rotates".
[0045] The self-locking design, which brings the threads closer together as they rotate during operation, combined with the anti-loosening properties of the sawtooth threads, can withstand large load fluctuations without loosening the threads, extending the service life of the connection and reducing the equipment failure rate.
[0046] Example 3: The difference from Embodiment 1 is that the first connecting part 213 and the second connecting part 222 are engaged.
[0047] Reference Figure 8 As shown, the roller shaft 210 and the connector 220 are quickly positioned and fixed through the snap-fit structure, and the initial connection can be completed without tools. When replacing the rubber roller 230, first remove the first bearing seat 300 located on the outside of the frame 100, and then move the roller shaft 210 so that the first connecting part 213 of the roller shaft 210 and the second connecting part 222 of the connector 220 are disengaged. Then the roller shaft 210 and the rubber roller 230 can be removed and the rubber roller 230 can be replaced.
[0048] like Figure 8 As shown, when the first connecting part 213 is the first snap-fit member and the second connecting part 222 is the first snap-fit member, the first connecting part 213 snaps into the second connecting part 222.
[0049] It is easy to imagine that when the first connecting part 213 is the second snap-fit member and the second connecting part 222 is the second snap-fit member, the second connecting part 222 snaps into the first connecting part 213, and both methods can achieve quick engagement.
[0050] Specifically, in some embodiments, the first snap-fit member and the first snap-fit member, or the second snap-fit member and the second snap-fit member, constitute a snap-fit structure.
[0051] The first or second snap-fit component is a positioning pin, which includes an insertion part and a snap-fit part disposed on the insertion part. The first or second snap-fit component is a positioning seat, which includes a sleeve, and the inner wall of the sleeve is provided with a slot. When the roller 210 and the connector 220 are detachably connected, the insertion part is inserted into the sleeve, and the snap-fit part is snapped into the slot.
[0052] like Figure 8 As shown, the insertion part is a straight rod, the locking part is a locking block, the locking block is set on the circumference of the straight rod, the sleeve is a ring, the open end of the sleeve faces the insertion part, the insertion part and the sleeve are clearance fit (clearance ≤ 0.1mm, to ensure coaxiality), the inner wall of the sleeve is provided with a locking groove, the locking groove can be a blind groove or a through groove, the locking groove starts at the open end of the sleeve and ends at the inner end of the sleeve, and a "transition arc" is provided at the entrance of the locking groove.
[0053] When the roller 210 is connected to the connector 220, the insert part is inserted into the sleeve, and the snap-fit part is snapped into the slot. No complicated tools are required, which makes it easy to quickly disassemble and assemble the roller 210 and the connector 220 when replacing the rubber roller 230.
[0054] When the latching component is inserted into the latched component, the latching block is inserted into the latching slot to achieve circumferential limiting, ensuring that the latching component and the latched component rotate synchronously, so that the roller 210 and the connecting component 220 rotate synchronously.
[0055] Example 4: This application embodiment also provides a peeling device, including a frame 100 and the aforementioned peeling roller that can be quickly disassembled; One end of the frame 100 is located outside the peeling device, and the other end is located in the middle of the peeling device; the connector 220 is located at one end of the frame 100 and in the middle of the peeling device; the first bearing seat 300 is located at the other end of the frame 100 and outside the peeling device; the two ends of the roller 210 are connected to the connector 220 and the first bearing seat 300 respectively; and the rubber roller 230 is mounted on the roller 210.
[0056] Peeling equipment can be applied to agriculture, wood processing, food processing and other fields. By equipping it with a split peeling roller, after disassembling the first bearing seat 300 located on the outside of the peeling equipment, the roller shaft 210 and the connecting piece 220 can be separated, and the roller shaft 210 and the rubber roller 230 can be removed and replaced, thereby greatly improving the convenience of equipment maintenance and reducing downtime.
[0057] The peeling equipment provided in this application solves the problems of difficult and time-consuming maintenance of traditional peeling equipment, reduces overall maintenance costs, reduces downtime losses caused by maintenance, improves operational continuity and competitiveness in various application fields, and meets the high-efficiency requirements in actual production.
[0058] It is readily understood that, based on the several embodiments provided in this application, those skilled in the art can combine, split, or reorganize the embodiments of this application to obtain other embodiments, none of which exceed the protection scope of this application.
[0059] The above detailed embodiments further illustrate the purpose, technical solution, and beneficial effects of the embodiments of this application. It should be understood that the above are merely specific embodiments of the embodiments of this application and are not intended to limit the protection scope of the embodiments of this application. Any modifications, equivalent substitutions, improvements, etc., made on the basis of the technical solutions of the embodiments of this application should be included within the protection scope of the embodiments of this application.
Claims
1. A peeling roller that can be quickly disassembled and assembled, used in peeling equipment, characterized in that: It includes a roller assembly (200), a first bearing housing (300), and a second bearing housing (400); The roller assembly (200) includes a roller (210), a connector (220), and a rubber roller (230); The first bearing seat (300) and the second bearing seat (400) are detachably disposed on both sides of the frame (100) of the peeling device, and the first bearing seat (300) is located on the outside of the frame (100). The second bearing seat (400) is used to connect the connector (220). The first bearing seat (300) is used to connect one end of the roller (210). The other end of the roller (210) is detachably connected to the connector (220). The rubber roller (230) is disposed on the roller shaft (210).
2. The peeling roller that can be quickly disassembled and assembled according to claim 1, characterized in that: The roller (210) includes a first shaft portion (211), a long shaft (212), and a first connecting portion (213); the connector (220) includes a second shaft portion (221) and a second connecting portion (222). The first shaft portion (211) is connected to the first bearing seat (300), and the first shaft portion (211) is also connected to the long shaft (212). The rubber roller (230) is disposed on the long shaft (212). The first connecting portion (213) and the second connecting portion (222) are detachably connected. The second shaft portion (221) is connected to the second bearing seat (400).
3. The peeling roller that can be quickly disassembled and assembled according to claim 2, characterized in that: The first connecting part (213) is inserted into the second connecting part (222); The first connecting part (213) is a first plug-in member, and the second connecting part (222) is a first plugged-in member. The first connecting part (213) is plugged into the second connecting part (222). Alternatively, the first connecting part (213) is the second plugged-in part, the second connecting part (222) is the second plugged-in part, and the second connecting part (222) is plugged into the first connecting part (213).
4. The peeling roller that can be quickly disassembled and assembled according to claim 3, characterized in that: The first or second connector is a third shaft portion, and the first or second plugged-in component is a bushing that matches the third shaft portion; When the roller (210) and the connector (220) are detachably connected, the outer wall of the third shaft portion is inserted into the inner wall of the bushing.
5. The peeling roller that can be quickly disassembled and assembled according to claim 4, characterized in that: The outer side wall of the third shaft is provided with a first limiting surface, and the inner side wall of the bushing is provided with a second limiting surface; When the third shaft portion is inserted into the bushing, the first limiting surface and the second limiting surface engage, so that the third shaft portion and the bushing are detachably and fixedly connected.
6. The peeling roller that can be quickly disassembled and assembled according to claim 2, characterized in that: The first connecting part (213) is screwed to the second connecting part (222); The first connecting part (213) is a first screwed member, and the second connecting part (222) is a first screwed member. The first connecting part (213) is screwed to the second connecting part (222). Alternatively, the first connecting part (213) is a second screwed-in part, the second connecting part (222) is a second screwed-in part, and the second connecting part (222) is screwed onto the first connecting part (213).
7. The peeling roller that can be quickly disassembled and assembled according to claim 6, characterized in that: The first screwed member or the second screwed member is a threaded rod, and the first screwed member or the second screwed member is a threaded sleeve that matches the threaded rod; When the roller (210) and the connector (220) are detachably connected, the threaded rod is screwed into the threaded sleeve.
8. The peeling roller that can be quickly disassembled and assembled according to claim 2, characterized in that: The first connecting part (213) is engaged with the second connecting part (222); The first connecting part (213) is a first snap-fit member, and the second connecting part (222) is a first snap-fit member. The first connecting part (213) snaps into the second connecting part (222). Alternatively, the first connecting part (213) is a second snap-fit member, the second connecting part (222) is a second snap-fit member, and the second connecting part (222) snaps into the first connecting part (213).
9. The peeling roller that can be quickly disassembled and assembled according to claim 8, characterized in that: The first or second latching component is a positioning latch, which includes an insertion part and a latching part disposed on the insertion part; The first or second latching component is a positioning seat, the positioning seat includes a sleeve, and the inner wall of the sleeve is provided with a slot; When the roller (210) and the connector (220) are detachably connected, the insertion part is inserted into the sleeve, and the snap-fit part is snapped into the slot.
10. A peeling device, characterized in that: Includes the peeling roller that can be quickly disassembled as described in any one of claims 1-9.