Cloth rolling, pressing and cutting device
By designing a pressure-cutting and top-lifting mechanism to work in tandem, continuous cutting of the rolled cloth was achieved, solving the problems of low cutting accuracy and efficiency, and improving the production efficiency and quality of the moxibustion tube.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- NANYANG PUNOVA AUTOMATION EQUIP CO LTD
- Filing Date
- 2025-04-29
- Publication Date
- 2026-05-26
AI Technical Summary
Existing cloth rolling and cutting devices have low cutting precision, inconsistent cloth size, low cutting efficiency, unstable cloth feeding, complex device structure, and high maintenance costs, which affect the production efficiency and quality of moxibustion tubes.
A fabric roll cutting device was designed, which adopts the coordinated work of a cutting mechanism and an upper lifting mechanism. Continuous cutting is achieved through the toothed blade and cutting holes on the cutting mechanism, and the cutting fabric pieces are pushed out by the top core of the upper lifting mechanism, which ensures cutting accuracy and efficiency and simplifies the device structure.
It achieves precise cutting of cloth pieces with consistent dimensions, improves cutting efficiency, simplifies device structure, reduces maintenance costs, and enhances the production efficiency and quality of moxibustion tubes.
Smart Images

Figure CN224275185U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of moxibustion device assembly, processing and manufacturing technology, specifically to a cloth rolling and cutting device. Background Technology
[0002] Moxibustion, as one of the traditional Chinese medicine therapies, has gained increasing popularity among consumers in recent years. With the booming development of the moxibustion industry, various moxibustion devices have emerged on the market, among which the suspended moxibustion cylinder is particularly popular due to its unique design. A suspended moxibustion cylinder typically consists of an outer paper sleeve, an inner support, and a bottom cloth piece. The outer paper sleeve provides protection, the inner support suspends the moxa stick, preventing direct contact between the stick and the inner wall of the paper sleeve, and the bottom cloth piece wraps the bottom of the cylinder to prevent ash from falling during moxibustion. Supplying the bottom cloth piece is a crucial step in the manufacturing process of the suspended moxibustion cylinder. This step requires cutting the cloth into appropriately sized pieces and accurately feeding them into the subsequent wrapping process. However, existing cloth rolling and cutting devices often suffer from the following problems: low cutting precision, resulting in inconsistent cloth piece sizes; low cutting efficiency; unstable cloth piece feeding, affecting the accuracy of subsequent processes; and complex device structure, leading to high maintenance costs.
[0003] These problems severely impact the production efficiency and quality of moxibustion cylinders. Therefore, developing a device capable of continuous cutting to meet the specific requirements of moxibustion cylinder manufacturing has become a pressing technical challenge for the industry. Utility Model Content
[0004] To meet the above technical requirements, the purpose of this utility model is to provide a cloth rolling and cutting device that can achieve precise cutting, ensure consistent cloth size, has a high degree of automation, high cutting efficiency, and can effectively improve the production efficiency of moxibustion tubes.
[0005] To achieve the above objectives, the technical solution adopted by this utility model is as follows: a roll fabric pressing and cutting device, including a frame, a pressure plate is provided above the roll fabric conveyed from one end of the frame, and a cutting hole is opened on the surface of the pressure plate; a support base is also provided on one side of the frame, the support base is provided with a linear module, and a pressing and cutting mechanism is provided on the linear module. The pressing and cutting mechanism has a lifting function. The pressing and cutting mechanism is placed above the pressure plate, and an upper lifting mechanism is provided below the pressure plate. The pressing and cutting mechanism, the cutting hole and the upper lifting mechanism are coaxial in the vertical direction. After the pressing and cutting mechanism presses down and the upper lifting mechanism lifts up, the roll fabric is pressed and cut and separated at the cutting hole.
[0006] Furthermore, the cutting mechanism includes a support frame, a pressing cylinder, and a cutting assembly. One end of the support frame is fixed to the linear module, and the other end is fixed to the pressing cylinder. The cutting assembly includes a cutting plate and multiple toothed blades fixed to the bottom of the cutting plate. The pressing cylinder is connected to the cutting plate and drives the cutting plate to move up and down. The upper lifting mechanism includes an upper lifting cylinder and a top core provided at the top of the upper lifting cylinder. The top core is provided with multiple air holes. The toothed blades, cutting holes, and top core are coaxial from top to bottom. The toothed blades on the cutting mechanism press down to cut the rolled cloth, and the top core of the upper lifting mechanism rises to open the cut rolled cloth.
[0007] The pressure cutting assembly also includes a pressure core located inside the toothed blade cavity; a base is provided on the surface of the pressure cutting plate, and a stop is fixedly provided at the center of the base. A movable lifting rod is provided from top to bottom, passing through the stop, the base and the pressure cutting plate. The pressure core is fixed at the bottom end of the movable lifting rod, and a stop head is provided at the top end of the movable lifting rod that can be blocked by the stop when the movable lifting rod moves downward; a compression spring is connected between the pressure core and the pressure cutting plate on the outer wall of the movable lifting rod.
[0008] The frame is equipped with a support plate, and the top of the support plate is equipped with a crank arm. The end of the crank arm extends outward to connect the feeding wheel and the take-up wheel. The feeding wheel is equipped with a roll of fabric and is located above the take-up wheel. Starting from the feeding wheel, the roll of fabric is wound around the first roller, the second roller, the third roller, the fourth roller, the power roller, and the take-up wheel in sequence. The first roller and the second roller are supported by two support plates, with the first roller located above the second roller. The third roller, the fourth roller, and the power roller are supported by the frame itself, with the third roller located above the fourth roller and the power roller.
[0009] When this utility model is in use, the power roller is started, and the roll of cloth on the unwinding wheel is wound around the first roller, the second roller, the third roller, the fourth roller, the power roller, and the take-up wheel in sequence. After the winding is completed, the linear module drives the cutting mechanism to move directly above the pressure plate. The pressing cylinder drives the cutting mechanism to descend, and the circular toothed blade on the cutting mechanism cuts the roll of cloth. Then the cutting mechanism rises, and the top core on the upper lifting mechanism rises under the action of the upper lifting cylinder, pushing the cut cloth out of the roll of cloth, thus completing the cutting and separation.
[0010] The beneficial effects of this utility model are: by setting up a pressure cutting mechanism, continuous cutting is achieved, which solves the problems of low cutting accuracy, low efficiency and complex device structure. It has the advantages of improving cutting accuracy, improving work efficiency and simplifying device structure. Attached Figure Description
[0011] The structure and features of this utility model will be further described below with reference to the accompanying drawings and embodiments.
[0012] Figure 1 This is a schematic diagram of the structure of this utility model.
[0013] Figure 2This is a schematic diagram showing the positions of the pressure cutting mechanism and the upper lifting mechanism in this utility model.
[0014] Figure 3 for Figure 2 A front view in a certain direction.
[0015] Figure 4 yes Figure 3 A schematic diagram of the cross-sectional structure along the AA direction.
[0016] Appendix Figure 1-4 In the middle section, 101. Fabric feeding roller; 102. Fabric roll; 103. Support plate; 104. Recycling roller; 105. Second roller shaft; 106. Pressure plate; 107. Power roller shaft; 108. Top core; 109. Frame; 110. Third roller shaft; 111. Cutting hole; 112. Fourth roller shaft; 113. Circular toothed knife; 116. Support frame; 117. Downward pressing cylinder; 118. Support base; 119. Linear module; 120. First roller shaft; 121. Pressing and cutting plate; 122. Crank arm; 131. Air hole; 133. Top lifting cylinder; 136. Base; 137. Stop; 138. Stop platform; 139. Movable hanging rod; 140. Pressure core; 141. Compression spring. Detailed Implementation
[0017] Appendix Figure 1-4 This is one embodiment of the present invention, which discloses a fabric rolling and cutting device, including a frame 109, a support plate 103 on the frame 109, a crank arm 122 on the top of the support plate 103, the end of the crank arm 122 extending outward to connect a fabric feeding wheel 101 and a take-up wheel 104, wherein the fabric feeding wheel 101 is above the take-up wheel 104, and a fabric roll 102 is arranged on the fabric feeding wheel 101.
[0018] This application incorporates a crank arm 122 at the top of the support plate 103, allowing the end of the crank arm 122 to extend outside the frame and connect the fabric feeding roller 101 and the retrieval roller 105. Specifically, the fabric feeding roller 101 and the retrieval roller 105 are respectively arranged at the end of the crank arm 122, with the fabric feeding roller 101 positioned above the retrieval roller 105. This arrangement enables the fabric roll to be smoothly unrolled and retrieved between the fabric feeding roller 101 and the retrieval roller 105.
[0019] In practical applications, the crank arm 122 makes the installation of the fabric feeding wheel 101 and the retrieving wheel 105 more stable, avoiding problems such as fabric roll deviation or breakage caused by unstable fabric wheel positions. As a preferred embodiment, the crank arm 122 can be made of high-strength material to ensure that it will not deform during long-term use, thereby ensuring the stability and durability of the device.
[0020] This application improves the structure of the support plate and optimizes the installation positions of the feeding and retrieval wheels, making the feeding and retrieval of the fabric roll smoother. This improvement increases the working efficiency of the device, reduces maintenance costs, and has high practical value.
[0021] The inner side of the frame 109 is provided with a first roller 120, a second roller 105, a third roller 110, a fourth roller 112, and a power roller 107. The first roller 120 and the second roller 105 are supported by two support plates 103, with the first roller 120 located above the second roller 105. The third roller 110, the fourth roller 112, and the power roller 107 are supported by the frame 109 itself, with the third roller 110 located above the fourth roller 112 and the power roller 107. The fabric roll 102 starts from the unwinding roller 101 and sequentially winds the first roller 120, the second roller 105, the third roller 110, the fourth roller 112, the power roller 107, and the take-up roller 104.
[0022] The arrangement of the first roller 120 and the second roller 105 ensures that the fabric roll maintains stable tension and position during the winding process, preventing deviation and loosening. The arrangement of the third roller 110, the fourth roller 112, and the power roller 107 ensures smooth fabric transfer during winding, and under the action of the power roller 107, the fabric roll can be effectively conveyed to the take-up wheel 105, improving the efficiency and stability of fabric conveying. For example, the first roller 120 and the second roller 105 can be made of high-strength materials to ensure their durability and reliability during long-term use. The third roller 110, the fourth roller 112, and the power roller 107, through precision machining and reasonable arrangement, ensure smooth operation of the fabric roll during winding and conveying.
[0023] A pressure plate 106 is provided above the unfolded roll of fabric 102. The surface of the pressure plate 106 has cutting holes 111. The pressure plate 106 is a plate material that provides cutting holes for the roll of fabric. The cutting holes 111 are openings on the pressure plate used to guide the toothed blade 113 to make cuts.
[0024] A support base 118 is also provided on one side of the frame 109. The support base 118 is equipped with a linear module 119. A cutting mechanism is provided on the linear module 119. The cutting mechanism includes a support frame 116, a pressing cylinder 117, and a cutting assembly. One end of the support frame 116 is fixed to the linear module 119, and the other end is fixed to the pressing cylinder 117. The cutting assembly includes a cutting plate 121 and two toothed blades 113 located at the bottom of the cutting plate 121. The pressing cylinder 117 is connected to the cutting plate 121 and drives the cutting plate 121 to move up and down. The upper lifting mechanism includes an upper lifting cylinder 133 and a top core 108 at the top of the upper lifting cylinder 133. The top core 108 has multiple air holes 131. The toothed blade 113, the cutting hole 111, and the top core 108 are coaxial from top to bottom. The toothed blade 113 on the pressure cutting mechanism presses down to cut the rolled cloth 102, and the top core 108 on the upper lifting mechanism rises to open the cut rolled cloth 102. The toothed blade 113 on the pressure cutting mechanism presses down and the top core 108 on the upper lifting mechanism pushes up, completing the pressure cutting and separation of the rolled cloth 102 at the cutting hole 111.
[0025] The pressure cutting assembly also includes a pressure core 140 disposed in the inner cavity of the toothed blade 113; a base 136 is provided on the surface of the pressure cutting plate 121, a baffle 138 is fixedly provided at the center of the base 136, and a movable lifting rod 139 is provided passing through the baffle 138, the base 136 and the pressure cutting plate 121 from top to bottom, the pressure core 140 is fixed at the bottom end of the movable lifting rod 139, and a stop head 139 is provided at the top end of the movable lifting rod 139 that can be blocked by the baffle 138 when the movable lifting rod 139 moves downward; a compression spring 141 passes through the outer wall of the movable lifting rod 139 between the pressure core 140 and the pressure cutting plate 121.
[0026] The core technical feature of the pressure cutting mechanism lies in its design of a toothed blade 113 and a cutting hole 111, which ensures cutting accuracy and efficiency. The top core 108 of the upper lifting mechanism is coaxially set with the toothed blade 113, so that after the toothed blade 113 is pressed down, the top core 108 rises and pushes open the cut fabric piece. In the above process, when the toothed blade 113 presses down to cut the fabric, the pressure core 140 first contacts the rolled fabric. As the toothed blade 113 gradually descends, the compression spring 141 is squeezed and contracted at the bottom of the cutting plate 121 by the pressure core 140. When the compression spring 141 contracts to a certain extent, the pressure core 140 exerts strong pressure on the rolled fabric, facilitating the cutting of the rolled fabric by the toothed blade 113 under pressure. After cutting, the toothed blade 113 gradually retracts upwards. Due to the pressure of the pressure core, the rolled fabric avoids sticking to the toothed blade 113 when it retracts upwards. The subsequent rise of the top core 108 further prevents the cut rolled fabric from sticking to the original rolled fabric. This design not only improves cutting efficiency but also ensures that the cut fabric pieces can be smoothly picked up by the suction mechanism. By designing a pressure-cutting mechanism and an upper-lifting mechanism to work in tandem, efficient cutting and smooth separation of the cloth pieces were achieved, improving cutting efficiency, ensuring the cutting quality of the cloth pieces, and meeting the technical requirements for manufacturing moxibustion tubes.
[0027] In use, the power roller 107 is activated, and the roll of cloth 102 on the unloading roller 101 sequentially winds around the first roller 120, the second roller 105, the third roller 110, the fourth roller 112, the power roller 107, and the recovery roller 104. After winding is completed, the linear module 119 drives the cutting mechanism to move directly above the pressure plate 106. The pressing cylinder 117 drives the cutting mechanism to descend, and the toothed blade 113 on the cutting mechanism cuts the roll of cloth 102. Then the cutting mechanism rises, and the top core 108 on the upper lifting mechanism rises under the action of the upper lifting cylinder, pushing the cut cloth out of the roll of cloth 102, completing the cutting and separation. As the roll of cloth moves forward, the above process is repeated, so that the roll of cloth can be continuously cut.
[0028] This application achieves continuous fabric cutting by coordinating the operation of a frame, support plate, feeding roller, take-up roller, driven roller, power roller, pressure plate, cutting hole, support base, linear module, cutting mechanism, and top-mounting mechanism. In practical applications, the fabric roll starts from the feeding roller, sequentially winding around multiple driven rollers, power rollers, and take-up rollers, and finally the fabric is cut by the cutting mechanism and top-mounting mechanism. This series of mechanized operations improves production efficiency and ensures the quality of the fabric.
[0029] The above are only some specific embodiments of this utility model, but the design concept of this utility model is not limited thereto. Any non-substantial modifications made to this utility model using this concept shall be considered as an infringement of the protection scope of this utility model.
Claims
1. A cloth take-up and cutting apparatus comprising a frame, characterised in that: A pressure plate is installed above the roll of fabric conveyed from one end of the frame, and the surface of the pressure plate has cutting holes. A support base is also provided on one side of the frame, and the support base is equipped with a linear module. The linear module is equipped with a pressing and cutting mechanism, which has a lifting function. The pressing and cutting mechanism is located above the pressure plate, and an upper lifting mechanism is provided below the pressure plate. The pressing and cutting mechanism, the cutting holes and the upper lifting mechanism are coaxial in the vertical direction. After the pressing and cutting mechanism presses down and the upper lifting mechanism lifts up, the roll of fabric is pressed, cut and separated at the cutting holes.
2. The fabric wrapping and cutting apparatus of claim 1, wherein: The cutting mechanism includes a support frame, a pressing cylinder, and a cutting assembly. One end of the support frame is fixed to the linear module, and the other end is fixed to the pressing cylinder. The cutting assembly includes a cutting plate and multiple toothed blades fixed to the bottom of the cutting plate. The pressing cylinder is connected to the cutting plate and drives the cutting plate to move up and down. The upper lifting mechanism includes an upper lifting cylinder and a core provided at the top of the upper lifting cylinder. The core has multiple air holes. The toothed blades, cutting holes, and core are coaxial from top to bottom. The toothed blades on the cutting mechanism press down to cut the rolled cloth, and the core of the upper lifting mechanism rises to open the cut-off rolled cloth.
3. The fabric wrapping and cutting apparatus of claim 2, wherein: The pressure cutting assembly also includes a pressure core located inside the toothed blade cavity; a base is provided on the surface of the pressure cutting plate, and a stop is fixedly provided at the center of the base. A movable lifting rod is provided from top to bottom, passing through the stop, the base and the pressure cutting plate. The pressure core is fixed at the bottom end of the movable lifting rod, and a stop head is provided at the top end of the movable lifting rod that can be blocked by the stop when the movable lifting rod moves downward; a compression spring is connected between the pressure core and the pressure cutting plate on the outer wall of the movable lifting rod.