A preparation device and process for disposable anti-infection socks for crew members
Through the two-finger robot and the limiting system, the insertion plate is guided, combined with the soft block and the limiting plate fixed position, the problem of unstable insertion of the insertion plate in disposable anti-infection crew socks is solved, achieving efficient and stable plasticity and convenient production process.
Patent Information
- Application Number
- CN202311078572.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-08-25
- Publication Date
- 2025-08-26
- Estimated Expiration
- 2043-08-25
AI Technical Summary
In the prior art, the insert plate is prone to bend and deformed when inserted into disposable anti-infection crew socks, and its position is uncertain, resulting in a reduced plasticity effect and difficulty in removing it from the mold, reducing work efficiency and product quality.
The two-finger robot and limiting system are used to guide the insertion plate into the mold using the inclined surface on the mold, and the position of the insertion plate is fixed with the soft block and limiting plate. The insertion and removal of the insertion plate is assisted by snapping and torsion spring. The anti-slip plate increases friction and ensures the stability of the insertion plate.
It improves the accuracy and stability of insertion board, simplifies the operation process, reduces operation difficulty, and improves production efficiency and product quality.
Smart Images

Figure CN117071224B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of socks preparation, in particular to a preparation device and a process for disposable anti-infection socks for crew members. Background Art
[0002] The disposable anti-infective crew socks are daily products for crew members and are in great demand for use. Therefore, during the production process, it is necessary to pursue the efficiency and convenience of the device production to the greatest extent. During the production process of the existing disposable anti-infective crew socks, it is necessary to insert an insert plate into the disposable anti-infective crew socks to achieve plasticity of the disposable anti-infective crew socks and prevent the disposable anti-infective crew socks from deformation. At the same time, it is also convenient for the disposable anti-infective crew socks to be transported. However, in the existing insert plate device, when the disposable anti-infective crew socks are stretched open by a mold and then the insert plate is manually inserted, the edge of the insert plate is prone to bending and deformation, resulting in a reduction in the plasticity effect of the insert plate on the disposable anti-infective crew socks. At the same time, the insert plate is easily stuck between the mold and the disposable anti-infective crew socks, making it difficult to remove the disposable anti-infective crew socks from the mold, reducing work efficiency and increasing work difficulty.
[0003] Furthermore, during the insertion process, since the inserting plate is manually inserted, the position of the inserting plate is uncertain and there is a large deviation, which greatly reduces the plastic effect of the disposable anti-infective crew socks and even causes large-scale deformation of the disposable anti-infective crew socks, thereby reducing product quality. Summary of the Invention
[0004] In order to overcome the disadvantages that when the insert plate is manually inserted, the edge of the insert plate is easily bent and deformed, resulting in a reduction in the plastic effect of the insert plate on the disposable anti-infective crew socks, and at the same time, the insert plate is easily stuck between the mold and the disposable anti-infective crew socks, resulting in the disposable anti-infective crew socks being inconvenient to remove from the mold, reducing work efficiency and increasing work difficulty, and at the same time, there is a large deviation in the position of the insert plate, resulting in a greatly reduced plastic effect on the disposable anti-infective crew socks, the present invention provides a preparation device and a process for disposable anti-infective crew socks.
[0005] The technical solution of the present invention is: a preparation device for disposable anti-infective crew socks, including a base and a two-finger manipulator; the two-finger manipulator is installed on the base; it also includes a mold, a soft block and a limit system; the mechanical arm of the two-finger manipulator is provided with two left-right symmetrical molds for fixing the disposable anti-infective crew socks; the rear ends of the two molds are each installed with a soft block for facilitating the demolding of the disposable anti-infective crew socks, and the soft block is made of rubber; the base is installed with a limit system for limiting the loading of the plug plate.
[0006] As a preferred technical solution of the present invention, a first inclined surface is provided on the upper side of the mold.
[0007] As a preferred technical solution of the present invention, the two soft blocks are staggered.
[0008] As a preferred technical solution of the present invention, the limiting system includes a fixed plate, a movable plate and a second limiting plate; two left-right symmetrical movable plates are provided on the two-finger manipulator; two left-right symmetrical movable plates are connected to the base through a round rod rotating drum; the two movable plates are each rotatably connected to a second limiting plate through a round rod; each of the two second limiting plates is fixed with a fixed plate for fixing and inserting the plug plate into disposable anti-infective crew socks.
[0009] As a preferred technical solution of the present invention, the limiting system also includes a driving member, an electric slide rail and a slider; two left-right symmetrical electric slide rails are installed on the base; each of the two electric slide rails is slidably connected to a slider; the two sliders are respectively rotatably connected to adjacent movable plates; the front sides of the two sliders are each fixed with a driving member, and the driving member is an electric push rod; the output ends of the two driving members are respectively movably connected to the adjacent fixed plates through ball bearings.
[0010] As a preferred technical solution of the present invention, the limiting system also includes a first limiting plate; each of the two fixed plates is fixed with a first limiting plate for limiting the plug-in plate, and the first limiting plate is made of soft silicone material and has a hardness less than that of the plug-in plate.
[0011] As a preferred technical solution of the present invention, it also includes a buckle; the front sides of the two molds are each movably connected to a buckle for assisting in fixing the disposable anti-infective crew socks through a torsion spring.
[0012] As a preferred technical solution of the present invention, a hook-shaped portion is provided on the front side of the buckle.
[0013] As a preferred technical solution of the present invention, it also includes an anti-skid plate; the upper facing surfaces of the two first limit plates are fixed with an anti-skid plate for preventing the plug-in plate from sliding.
[0014] A preparation process of disposable anti-infective crew socks includes the following steps:
[0015] S1: Mounting mold, fixing the disposable anti-infective crew socks on two molds so that the disposable anti-infective crew socks are stretched out to facilitate the insertion of the plug plate;
[0016] S2: an inserting plate, which is gradually inserted between the first inclined surface and the disposable anti-infective crew socks through two fixing plates. During the insertion process, the disposable anti-infective crew socks are guided by the first inclined surface to facilitate the insertion of the disposable anti-infective crew socks and to facilitate the removal of the disposable anti-infective crew socks from the mold;
[0017] S3: Limiting: The first limiting plate is used to limit the edge of the inserting plate to prevent the inserting plate from being widely offset, which would significantly reduce the shaping effect of the disposable anti-infective crew socks;
[0018] S4: Blanking: Push the disposable anti-infective crew socks through the fixed plate to separate them from the buckles, thereby quickly separating the disposable anti-infective crew socks from the mold and improving the blanking rate.
[0019] Compared with the existing technology, the present invention has the following advantages: the present invention realizes the gradual expansion of the disposable anti-infective crew socks through two molds. At the same time, to facilitate the insertion of the insert plate, a gap is created between the disposable anti-infective crew socks and the mold by the first inclined surface, and the first inclined surface is used to guide the insert plate, further improving convenience.
[0020] The two-finger manipulator continues to drive the two molds to move toward each other, so that the two soft blocks are dislocated and separated from each other, and the molds and the soft blocks are gradually separated from the disposable anti-infective crew socks. The staff only needs to simply remove the disposable anti-infective crew socks, without having to pull the disposable anti-infective crew socks that have been inserted into the insert plate a second time, to prevent the disposable anti-infective crew socks from rubbing against the insert plate, or causing the insert plate and the disposable anti-infective crew socks to be dislocated, thereby improving production quality and reducing operation difficulty;
[0021] By gradually forming a small-angle V-shaped state with the two fixing plates, the overall area of the inserting plate is made larger than the area of the two fixing plates after forming the small-angle V-shaped state, that is, the edge of the inserting plate is positioned beyond the edge of the fixing plate, thereby ensuring that when the inserting plate is pushed up and inserted between the first inclined surface and the disposable anti-infective crew socks, there is no obstruction between the fixing plate and the first inclined surface, causing the inserting plate to be unable to be smoothly inserted. At the same time, the fixing plate and the inserting plate are easily separated, thereby improving the convenience of the device;
[0022] The first limiting plate is used to limit the position of the plug-in board, thereby preventing the plug-in board from being misplaced over a large range and improving the accuracy of the plug-in board insertion position;
[0023] The hook-shaped portion is positioned to improve the fixing effect of the disposable anti-infective crew socks, and at the same time, the torsion spring between the buckle and the mold is gradually stretched. When the torsion force of the torsion spring is greater than the friction force between the disposable anti-infective crew socks and the hook-shaped portion, the torsion spring quickly resets, causing the hook-shaped portion to quickly separate from the disposable anti-infective crew socks, thereby causing the entire disposable anti-infective crew socks to lose their stretched state and quickly fit the inserting plate, thereby achieving rapid insertion of the inserting plate. At this time, the disposable anti-infective crew socks are smoothly separated from the mold, thereby improving the convenience of the device, reducing the difficulty of operation, and effectively improving production efficiency.
[0024] The anti-skid plate increases the friction between the board and the plugboard, thereby preventing the plugboard from moving quickly in a certain direction and shifting its position over a large range, thereby effectively improving the stability of the plugboard. BRIEF DESCRIPTION OF THE DRAWINGS
[0025] Figure 1 This is a schematic diagram of the first three-dimensional structure of the present invention;
[0026] Figure 2 This is a schematic diagram of the second three-dimensional structure of the present invention;
[0027] Figure 3 This is a schematic diagram of the first combined three-dimensional structure of the mold and the soft block of the present invention;
[0028] Figure 4 This is a schematic diagram of a second combined three-dimensional structure of a mold and a soft block according to the present invention;
[0029] Figure 5 Schematic diagram of the three-dimensional structure of the limiting system of the present invention;
[0030] Figure 6 This is a schematic diagram of a first partial three-dimensional structure of the limiting system of the present invention;
[0031] Figure 7 This is a schematic diagram of the three-dimensional structure of the first limiting plate of the present invention;
[0032] Figure 8 This is a working state diagram of the fixing plate of the present invention;
[0033] Figure 9 This is a schematic diagram of a second partial three-dimensional structure of the limiting system of the present invention;
[0034] Figure 10 This is a drawing of the fixed plate feed of the present invention;
[0035] Figure 11 This is a schematic diagram of a first three-dimensional structure of the buckle of the present invention;
[0036] Figure 12 This is a schematic diagram of a second three-dimensional structure of the buckle of the present invention;
[0037] Figure 13 It is a schematic diagram of the three-dimensional structure of the anti-skid plate of the present invention.
[0038] Marked in the figure: 1-base, 2-two-finger manipulator, 3-mold, 3001-first inclined surface, 4-soft block, 201-fixed plate, 202-first limiting plate, 203-anti-slip plate, 204-driving part, 205-electric slide rail, 206-slider, 207-movable plate, 208-second limiting plate, 301-clip, 30101-hook part. DETAILED DESCRIPTION
[0039] To make the objectives, technical solutions, and advantages of the present invention more clearly understood, the present invention will be further described in detail below in conjunction with specific embodiments and with reference to the accompanying drawings. It should be understood that these descriptions are merely exemplary and are not intended to limit the scope of the present invention. In addition, in the following description, descriptions of well-known structures and technologies are omitted to avoid unnecessary confusion of the concepts of the present invention.
[0040] Example 1
[0041] like Figure 3-Figure 4 As shown, a device for preparing disposable anti-infective socks for crew members includes a base 1 and a two-finger manipulator 2; the two-finger manipulator 2 is installed on the base 1;
[0042] It also includes a mold 3, a soft block 4 and a limit system; the robotic arm of the two-finger manipulator 2 is provided with two left-right symmetrical molds 3; a soft block 4 is installed at the rear end of each mold 3, and the soft block 4 is made of rubber; a limit system is installed on the base 1.
[0043] A first inclined surface 3001 is provided on the upper side of the mold 3 .
[0044] The two soft blocks 4 are staggered.
[0045] The staff manually inverts and fixes the disposable anti-infective crew socks on the two molds 3, so that the opening side of the disposable anti-infective crew socks is located at the front side of the two molds 3 and the opening direction is downward, and then the two-finger manipulator 2 drives the two molds 3 to move toward the separated sides, and then the two molds 3 are used to gradually open the disposable anti-infective crew socks to facilitate the insertion of the plug-in board. Then the staff manually inserts the plug-in board between the disposable anti-infective crew socks and the mold 3, and when inserting, the operator first inserts the back side of the plug-in board between the mold 3 and the disposable anti-infective crew socks. In order to facilitate the insertion of the plug-in board, a gap is created between the disposable anti-infective crew socks and the mold 3 through the first inclined surface 3001, and the first inclined surface 3001 is used to guide the plug-in board to further improve convenience. At the same time, when the back side of the plug-in board is successfully inserted between the first inclined surface 3001 and the disposable anti-infective crew socks, the staff only needs to insert the front side of the plug-in board The two-finger manipulator 2 is also pressed to between the first inclined surface 3001 and the disposable anti-infective crew socks, and then the operating space can be left. Then the two-finger manipulator 2 is controlled to drive the two molds 3 to return to the initial state, so that the disposable anti-infective crew socks gradually shrink and gradually fit with the plug-in plate, thereby realizing the work of inserting the disposable anti-infective crew socks into the plug-in plate. Then the two-finger manipulator 2 continues to drive the two molds 3 to move toward each other, so that the two soft blocks 4 are dislocated and separated from each other, and at this time the disposable anti-infective crew socks are fixed by the plug-in plate and cannot continue to shrink. The mold 3 and the soft block 4 are gradually separated from the disposable anti-infective crew socks at the same time. The staff only needs to simply remove the disposable anti-infective crew socks, and there is no need to pull the disposable anti-infective crew socks that have been inserted into the plug-in plate for a second time, to prevent the disposable anti-infective crew socks from rubbing against the plug-in plate, or causing the plug-in plate and the disposable anti-infective crew socks to be dislocated, thereby improving production quality and reducing operation difficulty.
[0046] Example 2
[0047] On the basis of Example 1, Figures 5-10 As shown, the limiting system includes a fixed plate 201, a movable plate 207 and a second limiting plate 208; two left-right symmetrical movable plates 207 are provided on the two-finger manipulator 2; two left-right symmetrical movable plates 207 are connected to the base 1 through a round rod rotating cylinder; the two movable plates 207 are each rotatably connected to a second limiting plate 208 through a round rod; and each of the two second limiting plates 208 is fixed with a fixed plate 201.
[0048] The limiting system also includes a driving member 204, an electric slide rail 205 and a slider 206; two symmetrical electric slide rails 205 are installed on the base 1; each of the two electric slide rails 205 is slidably connected to a slider 206; the two sliders 206 are rotatably connected to the adjacent movable plates 207; the front side of each slider 206 is fixed with a driving member 204, which is an electric push rod; the output ends of the two driving members 204 are movably connected to the adjacent fixed plates 201 through balls; in the initial state, the driving member 204 is in a retracted state, At this time, the fixed plate 201 is in an inclined state with the rear side high and the front side low. At the same time, in order to facilitate the insertion of the board, the slider 206 is driven by the electric slide rail 205 to move away from the soft block 4 until the fixed plate 201 moves to the state shown in the figure. Then the staff places the board on the two fixed plates 201. After the placement is completed, the slider 206 is used to restore it to the state shown in the figure. At this time, the board is located on the inner side of the stretched disposable anti-infective crew socks. Then the two driving members 204 are controlled to push the front side of the two fixed plates 201, so that the fixed plates 201 move around the first The round rod between the second limiting plate 208 and the movable plate 207 rotates. Since the two round rods are located between the two driving members 204, as the front side of the fixed plate 201 is pushed up, the center of gravity of the fixed plate 201 gradually decreases, thereby causing the pressure of the rear side of the fixed plate 201 on the second limiting plate 208 to gradually increase. Moreover, since the driving member 204 pushes the position close to the separation surface of the two fixed plates 201, the center of gravity of the fixed plate 201 gradually shifts toward the middle of its rear side. Under the action of the center of gravity shift, the pressure exerted by the second limiting plate 208 on the movable plate 207 The angle of the plugging plate 201 is gradually increased, and finally the two fixing plates 201 gradually present a V-shaped state with a small angle, so that the overall area of the plugging plate is larger than the area of the two fixing plates 201 after forming the V-shape with a small angle, that is, the edge position of the plugging plate exceeds the edge of the fixing plate 201, thereby ensuring that when the plugging plate is pushed up and inserted between the first inclined surface 3001 and the disposable anti-infective crew socks, there will be no obstruction between the fixing plate 201 and the first inclined surface 3001, resulting in the problem that the plugging plate cannot be smoothly inserted. At the same time, it is convenient to separate the fixing plate 201 from the plugging plate, thereby improving the convenience of the device.
[0049] The limiting system also includes a first limiting plate 202; each of the two fixing plates 201 is fixed with a first limiting plate 202, and the first limiting plate 202 is made of soft silicone material and has a hardness less than that of the inserting plate; when the inserting plate is placed on the two fixing plates 201, and the fixing plates 201 gradually become a small-angle V-shape, in order to prevent the position of the inserting plate from shifting, resulting in a large range of misalignment between the subsequent disposable anti-infective crew socks, the two first limiting plates 202 are used to limit the left and right edges of the inserting plate, and at the same time, in order to ensure that the inserting plate is smoothly inserted into the first inclined surface 3001 and the disposable anti-infective crew socks Therefore, as the two first limiting plates 202 follow the two fixed plates 201 and move toward each other, the pressure between the plug plate and the first limiting plate 202 gradually increases, that is, the plug plate continuously squeezes the first limiting plate 202, causing the plug plate to deform. When the plug plate moves to between the first inclined surface 3001 and the disposable anti-infective crew socks, the plug plate synchronously pushes the first limiting plate 202 away, changing from the arc shape as shown in the figure to a flat plate shape, ensuring that the plug plate is smoothly inserted between the first inclined surface 3001 and the disposable anti-infective crew socks without large-scale position misalignment, thereby improving the accuracy of the plug plate insertion position.
[0050] Example 3
[0051] On the basis of Example 1, Figure 11 and Figure 12 As shown, a buckle 301 is also included; the front sides of the two molds 3 are each hinged with a buckle 301 through a torsion spring.
[0052] A hook portion 30101 is provided on the front side of the buckle 301 .
[0053] When the staff fixes the disposable anti-infective crew socks on the mold 3, the front side of the disposable anti-infective crew socks is simultaneously fixed to the two hook-shaped parts 30101 to improve the fixing effect of the disposable anti-infective crew socks. At the same time, in order to facilitate the separation of the disposable anti-infective crew socks from the mold 3, there is no need to manually pull the disposable anti-infective crew socks to separate them from the mold 3. When the fixing plate 201 moves upward and contacts the disposable anti-infective crew socks, the front side of the fixing plate 201 is pushed up because the front side of the fixing plate 201 is pushed up on the front side of the disposable anti-infective crew socks. When the inserting plate is inserted into the first inclined surface 3001 and the disposable anti-infective crew socks are separated, the fixing plate 201 is pushed up. After the crew socks are inserted, the fixing plate 201 continues to squeeze the front side of the disposable anti-infective crew socks upwards, so that the torsion spring between the buckle 301 and the mold 3 is gradually stretched. When the torsion force of the torsion spring is greater than the friction force between the disposable anti-infective crew socks and the hook-shaped part 30101, the torsion spring quickly resets, so that the hook-shaped part 30101 is quickly separated from the disposable anti-infective crew socks, and then the disposable anti-infective crew socks as a whole lose the stretched state, and quickly fit the plug-in plate to achieve rapid insertion of the plug-in plate. At this time, the disposable anti-infective crew socks are smoothly separated from the mold 3, which improves the convenience of the device, reduces the difficulty of operation, and effectively improves production efficiency.
[0054] Example 4
[0055] On the basis of Example 2, Figure 1 、 Figure 2 and Figure 13 As shown, an anti-slip plate 203 is also included; an anti-slip plate 203 is fixedly connected to the upper facing surfaces of the two first limit plates 202. When the plug-in plate pushes the first limit plate 202 to the flat state, in order to prevent the plug-in plate from being instantly separated from the first limit plate 202, the force generated by its own deformation causes the plug-in plate to move rapidly in a certain direction without direction, resulting in a large-scale deviation in the position of the plug-in plate. Therefore, when the plug-in plate contacts the anti-slip plate 203, the friction between the plug-in plate and the anti-slip plate 203 is increased, thereby preventing the plug-in plate from moving rapidly in a certain direction and a large-scale deviation in position, thereby effectively improving the stability of the plug-in plate.
[0056] A process for preparing disposable anti-infective crew socks comprises the following steps:
[0057] S1: Mounting the mold, fixing the disposable anti-infective crew socks on two molds 3 so that the disposable anti-infective crew socks are stretched to facilitate the insertion of the plug plate;
[0058] S2: Insert the insert plate gradually between the first inclined surface 3001 and the disposable anti-infective crew socks through the two fixing plates 201. During the insertion process, the disposable anti-infective crew socks are guided by the first inclined surface 3001 to facilitate the insertion of the disposable anti-infective crew socks.
[0059] The staff socks are removed from the mold 3;
[0060] S3: Limiting: The first limiting plate 202 is used to limit the edge of the inserting plate to prevent the inserting plate from being widely offset, which would significantly reduce the shaping effect of the disposable anti-infective crew socks;
[0061] S4: Cutting the material, pushing the disposable anti-infective crew socks through the fixing plate 201 to separate them from the buckle 301,
[0062] This allows the disposable anti-infective crew socks to be quickly separated from the mold 3, thereby increasing the material feeding rate.
[0063] Those skilled in the art should understand that the above embodiments do not limit the present invention in any form, and any technical solutions obtained by equivalent replacement or equivalent transformation fall within the protection scope of the present invention.
Claims
1. A device for preparing disposable anti-infective socks for crew members, comprising a base (1) and a two-finger manipulator (2); the two-finger manipulator (2) is mounted on the base (1); and is characterized in that: It also includes a mold (3), a soft block (4) and a limiting system; the mechanical arm of the two-finger manipulator (2) is provided with two left-right symmetrical molds (3) for fixing the disposable anti-infective crew socks; the rear ends of the two molds (3) are each provided with a soft block (4) for facilitating demoulding of the disposable anti-infective crew socks, and the soft block (4) is made of rubber; the base (1) is provided with a limiting system for limiting the loading of the insert plate; A first inclined surface (3001) is provided on the upper side of the mold (3); The limiting system includes a fixed plate (201), a movable plate (207) and a second limiting plate (208); two movable plates (207) are provided on the two-finger manipulator (2); two movable plates (207) are connected to the base (1) via a round rod rotating cylinder; the two movable plates (207) are each rotatably connected to a second limiting plate (208) via a round rod; the two second limiting plates (208) are each fixed with a fixing plate (201) for fixing and inserting a plug-in plate for disposable anti-infective crew socks; The limiting system also includes a driving member (204), an electric slide rail (205) and a slider (206); two symmetrical electric slide rails (205) are installed on the base (1); each of the two electric slide rails (205) is slidably connected to a slider (206); the two sliders (206) are respectively rotatably connected to adjacent movable plates (207); the front sides of the two sliders (206) are each fixedly connected to a driving member (204), and the driving member (204) is an electric push rod; the output ends of the two driving members (204) are respectively movably connected to the adjacent fixed plates (201) through balls; The limiting system further comprises a first limiting plate (202); each of the two fixing plates (201) is fixed with a first limiting plate (202) for limiting the inserting plate; the first limiting plate (202) is made of soft silicone material, and its hardness is less than that of the inserting plate.
2. The device for preparing disposable anti-infective socks for seamen according to claim 1, characterized in that: The two soft blocks (4) are arranged in an offset manner.
3. The device for preparing disposable anti-infective sailor socks according to claim 1, characterized in that: It also includes a buckle (301); the front sides of the two molds (3) are each movably connected to a buckle (301) for assisting in fixing the disposable anti-infective crew socks via a torsion spring.
4. The device for preparing disposable anti-infective socks for seamen according to claim 3, characterized in that: A hook-shaped portion (30101) is provided on the front side of the buckle (301).
5. The device for preparing disposable anti-infective socks for seamen according to claim 1, characterized in that: It also includes an anti-slide plate (203); the upper facing surfaces of the two first limiting plates (202) are both fixedly connected with an anti-slide plate (203) for preventing the inserting plate from sliding.
6. A process for preparing disposable anti-infective socks for crew members, characterized in that: The operating method uses the device for preparing the disposable anti-infective crew socks according to claim 4, and includes the following working steps: S1: a sleeve mold, wherein the disposable anti-infective crew socks are fixed on two molds (3) so that the disposable anti-infective crew socks are stretched out to facilitate the insertion of the plug plate; S2: inserting the inserting plate, which is gradually inserted between the first inclined surface (3001) and the disposable anti-infective crew socks through the two fixing plates (201). During the insertion process, the disposable anti-infective crew socks are guided by the first inclined surface (3001), so as to facilitate the insertion of the disposable anti-infective crew socks and facilitate the removal of the disposable anti-infective crew socks from the mold (3); S3: limiting, limiting the edge of the inserting plate by a first limiting plate (202) to prevent the inserting plate from being widely offset, which would greatly reduce the shaping effect of the disposable anti-infective crew socks; S4: Cutting the material, pushing the disposable anti-infective crew socks through the fixed plate (201) to separate them from the buckle (301), thereby quickly separating the disposable anti-infective crew socks from the mold (3), thereby increasing the cutting speed.
Citation Information
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