Garment electric shear device
By designing a combination of a holding plate, a lifting frame and a transmission assembly, the holding plate is automatically moved up and reset using foot movements, which solves the problem of complicated adjustment of the cutting position of existing clothing electric shears and improves the convenience of cutting.
Patent Information
- Application Number
- CN202422445930.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-10
- Publication Date
- 2025-10-28
- Estimated Expiration
- 2034-10-10
AI Technical Summary
When adjusting the cutting position of clothing materials, the existing electric shears for clothing require the operator to hold the pressing plate up with one hand and adjust the material position with the other hand, which makes the cutting process complicated.
A clothing electric shearing device is designed. Through the combination of a holding plate, a lifting frame, a pedal, a transmission rod and a transmission assembly, the holding plate can be moved up and reset by using foot movements instead of hand movements, simplifying the adjustment of the cutting position.
The operator can adjust the position of the clothing material by foot movements, which improves the convenience of the cutting process.
Smart Images

Figure CN223481545U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of electric garment cutter technology, and in particular to an electric garment cutter device. Background Technology
[0002] Clothing refers to the general term for clothes, shoes, bags, toys, and accessories, but mainly refers to clothes. Clothing appeared in the early stages of human social development. Ancient people made crude clothes from various materials they could find to protect themselves. The earliest clothes were made of animal skins, and the earliest fabrics used to wrap the body were made of hemp fibers and grass.
[0003] Existing patent CN220376981U describes a garment electric shearing device, including a worktable. A slide rail is mounted on the upper surface of the worktable, and a top cover is mounted on the top of the slide rail. A telescopic push rod is mounted on the upper surface of the inner wall of the top cover. A convenient replacement component is installed at the output end of the telescopic push rod. The convenient replacement component includes a housing located at the output end of the telescopic push rod. A servo motor is mounted on one side of the housing, and a bidirectional screw with forward and reverse threads is mounted at the output end of the servo motor. Two connecting blocks are threadedly connected to the bidirectional screw. Connecting plates are fixed to the upper ends of both connecting blocks, and a through hole is formed in the center of each connecting plate. A guide rod passes through the through hole of each connecting block, and both ends of the guide rod are fixed to the sides of the inner wall of the housing. Clamping plates are mounted at the lower ends of both connecting blocks, and a cutting blade is clamped between the two clamping plates. This allows workers to more easily replace different types of cutting blades, improving work efficiency and the applicability of the device.
[0004] However, when using an existing patented electric garment cutter, the device relies on the gravity of the pressure plate to press the garment material onto the worktable for cutting. But when it is necessary to adjust the cutting position of the garment material, the operator needs to lift the pressure plate with one hand and adjust the position of the garment material with the other, which makes the cutting process more complicated. Utility Model Content
[0005] The purpose of this utility model is to provide a garment electric shearing device that solves the problem that the aforementioned device relies on the gravity of the pressure plate to press the garment material onto the worktable for cutting, but when it is necessary to adjust the cutting position of the garment material, the operator needs to hold the pressure plate up with one hand and adjust the position of the garment material with the other hand, which makes the cutting process more complicated.
[0006] To achieve the above objectives, this utility model provides a garment electric shearing device, including a processing table, a support frame, and a cutting device. The support frame is fixedly installed on the processing table, and the cutting device is disposed on the support frame. It also includes a holding device, which comprises a holding plate, a lifting frame, a foot plate, a transmission rod, a first connecting rod, a transmission box, and a transmission assembly. The holding plate is slidably installed on the support frame. The transmission box is fixedly installed on the processing table and located on the side of the processing table away from the support frame. The transmission box has a first through groove and a second through groove on its two sides. The lifting frame is slidably installed on the transmission box via the transmission assembly and is fixedly connected to the holding plate. The lifting frame passes through the processing table. The first connecting rod is slidably installed on the transmission box via the transmission assembly and passes through the first through groove. The transmission rod is rotatably installed on the first connecting rod, and the foot plate is rotatably installed on the transmission rod.
[0007] The transmission assembly includes a first rack, a second rack, a second connecting rod, and a rotating component. The first rack and the second rack are slidably mounted on both sides of the inside of the transmission box via the rotating component. The second connecting rod is fixedly mounted on the second rack and passes through the second through slot. The second connecting rod is also fixedly connected to the lifting frame.
[0008] The rotating component includes a rotating shaft and a gear. The rotating shaft is rotatably mounted inside the transmission box. The gear is fixedly mounted on the rotating shaft and meshes with both the first rack and the second rack.
[0009] The cutting device includes cutting shears, a sliding guide rod, and a lifting assembly. A groove is provided on one side of the support frame. The sliding guide rod is slidably installed on the support frame and located in the groove. The cutting shears are installed on the support frame through the lifting assembly and are fixedly connected to the sliding guide rod.
[0010] The lifting assembly includes an electric push rod and a lifting plate. The electric push rod is fixedly installed on the support frame. The lifting plate is fixedly installed on the output end of the electric push rod and is fixedly connected to the cutting shears.
[0011] This utility model discloses an electric garment shearing device. In use, the garment material is pressed against the surface of the processing table by the pressure plate. The cutting device then cuts the garment material. When the cutting position of the garment material needs to be adjusted, the operator presses down on the foot pedal. The foot pedal, in conjunction with the rotation of the transmission rod, causes the transmission rod to shift clockwise. The transmission rod, in turn, is rotatably connected to the first connecting rod, causing the first connecting rod to move downwards along the first through groove. The first connecting rod, in turn, causes the first rack, fixedly connected to it, to move downwards within the transmission box. The movement of the first rack, through meshing with the gear, drives the gear to rotate. The rotation of the gear, through its interaction with the... The engagement of the second rack causes the second rack and the second connecting rod to move upward. The second connecting rod then drives the pressure plate to slide upward along the support frame via the lifting frame, causing the pressure plate to disengage from the garment material. At this point, the operator can adjust the cutting position of the garment material. After adjustment, the operator no longer steps on the foot pedal. The pressure plate will then press against the garment material again under its own weight. The reset of the pressure plate is achieved again by the aforementioned transmission method, thus allowing the operator's foot movements to replace hand movements in moving the pressure plate upward. This makes it easier for the operator to adjust the position of the garment material, thereby making the cutting process more convenient. Attached Figure Description
[0012] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below.
[0013] Figure 1 This is a schematic diagram of the overall structure of a garment electric shearing device according to the first embodiment of this utility model.
[0014] Figure 2 This is a schematic diagram of the pressing device according to the first embodiment of the present invention.
[0015] Figure 3 This is a schematic diagram of the transmission component according to the first embodiment of the present invention.
[0016] Figure 4 This is a schematic diagram of the overall structure of a garment electric shearing device according to the second embodiment of this utility model.
[0017] In the diagram: 101-processing table, 102-support frame, 104-pressure plate, 105-lifting frame, 106-stepping plate, 107-transmission rod, 108-first connecting rod, 109-transmission box, 110-first through groove, 111-second through groove, 112-first rack, 113-second rack, 114-second connecting rod, 115-rotating shaft, 116-gear, 201-cutting shears, 202-sliding guide rod, 203-slide groove, 204-electric push rod, 205-lifting plate. Detailed Implementation
[0018] The embodiments of the present invention are described in detail below. Examples of the embodiments are shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain the present invention, but should not be construed as limiting the present invention.
[0019] The first embodiment of this application is as follows:
[0020] Please see Figure 1-3 , Figure 1 This is a schematic diagram of the overall structure of a garment electric shearing device according to the first embodiment of this utility model. Figure 2 This is a structural schematic diagram of the pressing device according to the first embodiment of this utility model. Figure 3 This is a schematic diagram of the transmission component according to the first embodiment of the present invention.
[0021] This utility model provides a garment electric shearing device, including a processing table 101, a support frame 102, and a cutting device, as well as a holding device. The holding device includes a holding plate 104, a lifting frame 105, a foot plate 106, a transmission rod 107, a first connecting rod 108, a transmission box 109, and a transmission assembly. The transmission assembly includes a first rack 112, a second rack 113, a second connecting rod 114, and a rotating component. The rotating component includes a rotating shaft 115 and a gear 116. The aforementioned solution solves the problem that the previous device relied on the gravity of the pressure plate to hold the garment material on the worktable for cutting. However, when it was necessary to adjust the cutting position of the garment material, the operator needed to support the pressure plate with one hand to move it up and adjust the position of the garment material with the other hand, making the cutting process relatively complicated. The aforementioned solution can be used in scenarios where garment material needs to be held and fixed during the garment electric shearing process, and can also be used to solve the problem of cutting garment material.
[0022] In this embodiment, the operator's foot movements replace the operator's hand movements to move the pressure plate 104 upward, which makes it easier for the operator to adjust the position of the clothing material, thereby making the cutting process more convenient.
[0023] The pressure plate 104 is slidably mounted on the support frame 102, and the transmission box 109 is fixedly mounted on the processing table 101, located on the side of the processing table 101 away from the support frame 102. The transmission box 109 has a first through groove 110 and a second through groove 111 on its two sides, respectively. The lifting frame 105 is slidably mounted on the transmission box 109 via the transmission assembly and is fixedly connected to the pressure plate 104. The lifting frame 105 also passes through the processing table 101. The connecting rod 108 is slidably mounted on the transmission box 109 via the transmission assembly and passes through the first through slot 110. The transmission rod 107 is rotatably mounted on the first connecting rod 108. The step plate 106 is rotatably mounted on the transmission rod 107. The side of the pressure plate 104 has a notch to facilitate sliding engagement with the support frame 102. The middle of the pressure plate 104 also has a cutting groove. The lifting frame 105 has a U-shaped structure and can slide into the processing table 101. The two sides of the frame 105 are welded to the bottom of the pressure plate 104. The foot plate 106 is square in shape. The two ends of the transmission rod 107 are respectively rotatably engaged with the foot plate 106 and the first connecting rod 108 through pins. The transmission box 109 is welded to the bottom of the processing table 101. The transmission assembly can realize the power transmission between the first connecting rod 108 and the lifting frame 105. When it is necessary to adjust the cutting position of the garment, the operator steps on the foot plate 106, which drives the first connecting rod 108 downward through the transmission rod 107. The first connecting rod 108 drives the lifting frame 105 upward through the transmission assembly, and further drives the pressure plate 104 to detach from the garment material. At this time, the cutting position of the garment material can be adjusted. Thus, the operator's foot movement replaces the operator's hand movement to move the pressure plate 104 upward, which makes it easier for the operator to adjust the position of the garment material, thereby making the cutting process more convenient.
[0024] Secondly, the first rack 112 and the second rack 113 are slidably mounted on both sides of the inside of the transmission box 109 via the rotating member; the second connecting rod 114 is fixedly mounted on the second rack 113 and passes through the second through slot 111, while the second connecting rod 114 is fixedly connected to the lifting frame 105. The width of the first rack 112 and the second rack 113 is equal to the internal width of the transmission box 109, and the teeth on the first rack 112 and the second rack 113 are arranged opposite each other. The second connecting rod 114 is welded to the second rack 113. Furthermore, the width of the second connecting rod 114 is equal to the width of the second through slot 111. The rotating component enables power transmission between the first rack 112 and the second rack 113. When the first connecting rod 108 drives the first rack 112 to move downward, the movement of the first rack 112, through the power transmission of the rotating component, causes the second rack 113 to move upward. The second rack 113 then drives the lifting frame 105 to move upward through the second connecting rod 114, thereby enabling power transmission between the first connecting rod 108 and the lifting frame 105.
[0025] Furthermore, the rotating shaft 115 is rotatably mounted inside the transmission box 109; the gear 116 is fixedly mounted on the rotating shaft 115 and simultaneously meshes with the first rack 112 and the second rack 113. The rotating shaft 115 is rotatably engaged with the transmission box 109 through a bearing. The gear 116 is located between the first rack 112 and the second rack 113. The gear 116 achieves power transmission between the first rack 112 and the second rack 113 through simultaneous meshing with both the first rack 112 and the second rack 113.
[0026] In this embodiment, during use, the garment material is pressed against the surface of the processing table 101 by the pressing plate 104, and then the garment material is cut by the cutting device. When it is necessary to adjust the cutting position of the garment material, the operator steps down on the foot pedal 106 by foot movement. The foot pedal 106, through rotational engagement with the transmission rod 107, drives the transmission rod 107 to shift clockwise. The transmission rod 107, through rotational connection with the first connecting rod 108, drives the first connecting rod 108 to move downward along the first through groove 110. The first connecting rod 108, in turn, drives the first rack 112, which is fixedly connected to it, to move downward within the transmission box 109. The movement of the first rack 112, through meshing with the gear 116, drives the gear 116 to rotate. The rotation of the gear 116 is achieved through… Engaging with the second rack 113, the second rack 113 and the second connecting rod 114 move upward. The second connecting rod 114 further drives the pressure plate 104 to slide upward along the support frame 102 via the lifting frame 105, causing the pressure plate 104 to disengage from the garment material. At this time, the operator can adjust the cutting position of the garment material. After the adjustment is completed, the operator no longer steps on the foot pedal 106. At this time, the pressure plate 104 will press against the garment material again under its own weight. The reset of the pressure plate 104 is achieved again by the above-mentioned transmission method, which resets the foot pedal 106. Thus, the operator's foot movement replaces the operator's hand movement to move the pressure plate 104 upward, which makes it easier for the operator to adjust the position of the garment material and makes the cutting process more convenient.
[0027] The second embodiment of this application is as follows:
[0028] Please see Figure 4 ,in Figure 4 This is a schematic diagram of the overall structure of a garment electric cutter device according to the second embodiment of the present invention. Based on the first embodiment, the garment electric cutter device of this embodiment further includes a cutting device, which includes a cutting scissors 201, a sliding guide rod 202 and a lifting assembly, which includes an electric push rod 204 and a lifting plate 205.
[0029] In this embodiment, the vertical drive of the cutting scissors 201 by the lifting component achieves the cutting effect on the clothing material.
[0030] The support frame 102 has a groove 203 on one side, and the sliding guide rod 202 is slidably mounted on the support frame 102 and located in the groove 203. The cutting shears 201 are mounted on the support frame 102 through the lifting assembly and are fixedly connected to the sliding guide rod 202. The bottom cross-section of the cutting shears 201 is triangular, and the sliding guide rod 202 is welded to the side of the cutting shears 201. The lifting assembly can drive the cutting shears 201 to move vertically. In use, the cutting shears 201 moves downward through the lifting assembly, and at the same time, the sliding guide rod 202 slides along the groove 203. When the cutting shears 201 passes through the cutting groove on the pressure plate 104, the clothing material can be cut, thereby achieving the cutting effect of the clothing material.
[0031] Secondly, the electric push rod 204 is fixedly installed on the support frame 102; the lifting plate 205 is fixedly installed on the output end of the electric push rod 204 and fixedly connected to the cutting shears 201. The electric push rod 204 is fixed to the top of the support frame 102 by bolts, and the lifting plate 205 is welded to the upper surface of the cutting shears 201. In use, the extension and retraction of the output end of the electric push rod 204 causes the lifting plate 205 to drive the cutting shears 201 to move vertically, thereby realizing the movement drive of the cutting shears 201.
[0032] In this embodiment, during use, the extension and retraction of the output end of the electric push rod 204 causes the lifting plate 205 to drive the cutting scissors 201 to move downward. At the same time, the sliding guide rod 202 slides along the slide groove 203. When the cutting scissors 201 passes through the cutting groove on the pressing plate 104, the clothing material can be cut, thereby achieving the cutting effect of the clothing material.
[0033] The above-disclosed embodiments are merely one or more preferred embodiments of this application and should not be construed as limiting the scope of this application. Those skilled in the art can understand that all or part of the processes for implementing the above embodiments and equivalent changes made in accordance with the claims of this application still fall within the scope of this application.
Claims
1. A garment electric shearing device, comprising a processing table, a support frame, and a cutting device, wherein the support frame is fixedly mounted on the processing table, and the cutting device is disposed on the support frame, characterized in that, It also includes a holding device; The pressing device includes a pressing plate, a lifting frame, a step plate, a transmission rod, a first connecting rod, a transmission box, and a transmission assembly. The pressing plate is slidably mounted on the support frame. The transmission box is fixedly mounted on the processing table and located on the side of the processing table away from the support frame. The transmission box has a first through groove and a second through groove on its two sides, respectively. The lifting frame is slidably mounted on the transmission box through the transmission assembly and is fixedly connected to the pressing plate. The lifting frame passes through the processing table. The first connecting rod is slidably mounted on the transmission box through the transmission assembly and passes through the first through groove. The transmission rod is rotatably mounted on the first connecting rod. The step plate is rotatably mounted on the transmission rod.
2. The garment electric shearing device as described in claim 1, characterized in that, The transmission assembly includes a first rack, a second rack, a second connecting rod, and a rotating component. The first rack and the second rack are slidably mounted on both sides of the inside of the transmission box via the rotating component. The second connecting rod is fixedly mounted on the second rack and passes through the second through slot. The second connecting rod is also fixedly connected to the lifting frame.
3. The garment electric shearing device as described in claim 2, characterized in that, The rotating component includes a rotating shaft and a gear. The rotating shaft is rotatably mounted inside the transmission box. The gear is fixedly mounted on the rotating shaft and meshes with both the first rack and the second rack.
4. The garment electric shearing device as described in claim 1, characterized in that, The cutting device includes cutting scissors, a sliding guide rod, and a lifting assembly. A groove is provided on one side of the support frame. The sliding guide rod is slidably installed on the support frame and located in the groove. The cutting scissors are installed on the support frame through the lifting assembly and are fixedly connected to the sliding guide rod.
5. The garment electric shearing device as described in claim 4, characterized in that, The lifting assembly includes an electric push rod and a lifting plate. The electric push rod is fixedly installed on the support frame. The lifting plate is fixedly installed on the output end of the electric push rod and is fixedly connected to the cutting shears.