Silk winding mechanism capable of preventing silk adhesion
By designing a winding mechanism to prevent silk from sticking together, the problem of silk sticking together during the winding process was solved by using pressing components and guiding components, thus achieving stable and efficient winding of the cocoon in water.
Patent Information
- Application Number
- CN202422659997.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-01
- Publication Date
- 2025-10-10
- Estimated Expiration
- 2034-11-01
AI Technical Summary
During the silk-winding process of silk cocoons, the silk tends to stick together, resulting in a decrease in the silk-winding efficiency.
A silk winding mechanism is designed to prevent silk from sticking together. It includes a material storage component, a pressing component, a silk winding roller and a drive motor. The pressing component presses the silk cocoons into the water to prevent them from being dragged out of the water surface. The guiding component and water holes are used to achieve uniform silk winding.
It effectively prevents silk from sticking together, improves silk winding efficiency, ensures the stability of the cocoon in water, and avoids silk disorder.
Smart Images

Figure CN223422829U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of cocoon winding devices, in particular to a winding mechanism for preventing silk from sticking. Background Art
[0002] In the silk winding process of silk cocoons, the cocoons need to be boiled and then soaked in water. The silk on the cocoons in the water is picked out and led to the winding roller for continuous winding operation.
[0003] Reference Figure 1 As shown, in the prior art, multiple cocoons are usually wound simultaneously on a winding roller. However, some silk threads are too tight on the cocoons, and during the winding process, the silk threads will drag the cocoons away from the water surface. The cocoons that are out of the water surface will come into contact with the silk threads on other cocoons, and the silk threads will often stick together and become disordered, affecting the winding efficiency. Utility Model Content
[0004] In view of the above problems, the present invention provides a winding mechanism for preventing silk from sticking together, the purpose of which is to prevent silk from sticking together and ensure winding efficiency.
[0005] In order to achieve the above-mentioned purpose of the invention, the technical solution adopted by the present invention is as follows:
[0006] Provided is a silk winding mechanism for preventing silk from sticking, comprising: a storage component that is hollow inside and stores water; a mounting shaft body that is vertically arranged in the storage component; a plurality of partitions that are installed in the storage component in a circular array with the central axis of the mounting shaft body as the center; one side of the partition is connected to the mounting shaft body, and the other side is connected to the inner wall surface of the storage component, thereby forming a plurality of storage chambers for storing cocoons in the storage component; a pressing component that is arranged above the storage chamber; a silk passing groove that is opened on the pressing component for silk to pass through; a silk winding roller that is rotatably arranged above the storage component and is used for receiving silk; and a drive motor that is used to drive the silk winding roller to rotate to complete the silk winding.
[0007] Furthermore, the wire winding mechanism also includes: an installation groove, which is opened on the installation shaft; a first hinge shaft, which is arranged in the installation groove, and one end of the pressing component is rotatably mounted on the first hinge shaft. The pressing component rotates around the first hinge shaft, which can drive the pressing component away from the end of the first hinge shaft to overlap the storage component; a limiting component, which is arranged on the installation shaft, and is used to limit the pressing component from rotating around the first hinge shaft.
[0008] Furthermore, the limiting component includes: a second hinge shaft, which is arranged on the mounting shaft; a cover plate, which is rotatably mounted on the second hinge shaft and is used to press the pressing component; a venting groove, which is opened on the cover plate for the pressing component to pass through, and the cover plate rotates around the second hinge shaft to align / misalign the venting groove and the pressing component.
[0009] Furthermore, the wire winding mechanism also includes: a water hole, which is opened on the partition and connects two adjacent storage chambers.
[0010] Furthermore, the winding mechanism also includes: a guiding component, which is arranged between the winding roller and the storage component; a guiding through hole, which is opened in the guiding component for multiple strands of silk to pass through; a telescopic component, which is installed parallel to the central axis of the winding roller, and the guiding component is arranged on the piston rod of the telescopic component.
[0011] Furthermore, a conical countersunk hole for guiding the silk to gather is provided on the guiding component.
[0012] The beneficial effects of the present invention are as follows: in the present invention, by arranging a pressing component to press the cocoons, the cocoons can be prevented from being dragged away from the water surface, the cocoons can be ensured to be immersed in water, and the cocoons that are out of the water surface can be prevented from coming into contact with the silk on other cocoons, thereby eliminating the situation of silk adhesion and disorder, and ensuring the silk winding efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 It is a schematic diagram of wire winding in the prior art.
[0014] Figure 2 A schematic diagram of wire winding provided in an embodiment of the present application.
[0015] Figure 3 This is a top view of the installation of the material storage component provided in an embodiment of the present application.
[0016] Figure 4 A schematic diagram of the internal structure of the guide component provided in an embodiment of the present application.
[0017] Among them, 1. material storage component; 2. mounting shaft; 3. partition; 31. material storage chamber; 32. water hole; 4. pressing component; 41. wire trough; 5. wire winding roller; 51. driving motor; 61. first hinge shaft; 62. second hinge shaft; 63. cover plate; 64. emptying slot; 71. guide component; 72. guide through hole; 73. telescopic component; 74. countersunk hole; 8. silk cocoon. DETAILED DESCRIPTION
[0018] In order to better understand the above technical solution, the above technical solution will be described in detail below with reference to the accompanying drawings and specific implementation methods.
[0019] Reference Figure 2 and Figure 3As shown, the embodiment of the present application discloses a silk winding mechanism for preventing silk from sticking, comprising: a storage component 1, which is hollow inside and stores water; a mounting shaft 2, which is vertically arranged in the storage component 1; a plurality of partitions 3, which are installed in the storage component 1 in a circular array with the central axis of the mounting shaft 2 as the center; one side of the partition 3 is connected to the mounting shaft 2, and the other side is connected to the inner wall surface of the storage component 1, thereby forming a plurality of storage chambers 31 for storing cocoons 8 in the storage component 1; a pressing component 4, which is arranged above the storage chamber 31; a silk passing groove 41, which is opened on the pressing component 4 for silk to pass through; a silk winding roller 5, which is rotatably arranged above the storage component 1 for receiving silk; a drive motor 51, which is used to drive the silk winding roller 5 to rotate to complete the silk winding.
[0020] Specifically, during the silk winding work, silk cocoons 8 are stored in each storage chamber 31. The staff manually pulls the silk from a cocoon 8 in each storage chamber 31 through the silk groove 41 of the pressing component 4 and attaches it to the silk winding roller 5. The silk winding roller 5 is driven to rotate by the driving motor 51, and the silk winding operation can be performed on the silk cocoons 8 in different storage chambers 31 respectively.
[0021] In the present invention, a pressing component 4 is provided to press the cocoon 8, which can prevent the cocoon 8 from being dragged away from the water surface, ensure that the cocoon 8 is immersed in water, and prevent the cocoon 8 that is out of the water surface from coming into contact with the silk on other cocoons 8, thereby eliminating the situation of silk adhesion and disorder, and ensuring the silk winding efficiency.
[0022] Specifically, the wire winding mechanism also includes: an installation groove, which is opened on the installation shaft 2; a first hinge shaft 61, which is arranged in the installation groove, and one end of the pressing component 4 is rotatably mounted on the first hinge shaft 61. The pressing component 4 rotates around the first hinge shaft 61, which can drive the pressing component 4 away from the end of the first hinge shaft 61 to overlap the storage component 1; a limiting component, which is arranged on the installation shaft 2, and is used to limit the pressing component 4 from rotating around the first hinge shaft 61.
[0023] During use, the staff can move the pressing component 4 to rotate around the first hinge shaft 61, so as to drive the pressing component 4 away from the discharging component. The pressing component 4 is placed vertically, and the top of the storage chamber 31 can be emptied, which is convenient for the staff to pull the silk on the unwound cocoon 8. The pressing component 4 can be moved around the first hinge shaft 61 to re-attach the pressing component 4 to the storage component 1 to perform the pressing work on the cocoon 8.
[0024] In this embodiment, the limiting component includes: a second hinge shaft 62, which is arranged on the mounting shaft 2; a cover plate 63, which is rotatably mounted on the second hinge shaft 62 and is used to press the pressing component 4; a venting groove 64, which is opened on the cover plate 63 for the pressing component 4 to pass through. The cover plate 63 rotates around the second hinge shaft 62, and can align / misalign the venting groove 64 and the pressing component 4.
[0025] Specifically, the staff can rotate the cover plate 63 to align the venting groove 64 and the pressing component 4, so that the top of the pressing component 4 can be emptied to allow the pressing component 4 to rotate around the first hinge shaft 61; similarly, by misaligning the venting groove 64 and the pressing component 4, the pressing component 4 can be pressed by the cover plate 63 to limit the rotation of the pressing component 4 around the first hinge shaft 61.
[0026] In this embodiment, the wire winding mechanism further includes: a water hole 32, which is opened on the partition 3 to connect two adjacent storage chambers 31, and the water level in each storage chamber 31 is consistent.
[0027] Reference Figure 4 As shown, in this embodiment, the winding mechanism also includes: a guide component 71, which is arranged between the winding roller 5 and the storage component 1; a guide through hole 72, which is opened in the guide component 71 for multiple strands of silk to pass through; a telescopic component 73, which is installed parallel to the central axis of the winding roller 5, and the guide component 71 is arranged on the piston rod of the telescopic component 73.
[0028] By driving the piston rod of the telescopic component 73 to perform linear reciprocating motion, the guide component 71 can be driven to perform reciprocating motion along the axial direction of the winding roller 5 , thereby guiding the silk to be evenly wound around the winding roller 5 .
[0029] In this embodiment, a conical countersunk hole 74 for guiding the silk threads to converge is further provided on the guiding component 71 , guiding multiple silk threads to converge into one strand and be received by the silk winding roller 5 .
[0030] Specifically, the telescopic component 73 can be an electric telescopic rod, a pneumatic cylinder, or a hydraulic cylinder.
[0031] Those skilled in the art will appreciate that, although preferred embodiments of the present invention have been described, those skilled in the art may make additional changes and modifications to these embodiments once they become aware of the underlying inventive concepts. Therefore, the appended claims are intended to be interpreted as including the preferred embodiments and all changes and modifications that fall within the scope of the present invention. Clearly, those skilled in the art may make various changes and modifications to the present invention without departing from the spirit and scope of the present invention. Thus, the present invention is intended to encompass such changes and modifications if they fall within the scope of the claims and equivalents of the present invention.
Claims
1. A silk winding mechanism for preventing silk from sticking, characterized in that: include: A material storage component (1) having a hollow interior and storing water; The shaft body (2) is installed vertically in the material storage component (1); A plurality of partitions (3) are installed in a circular array in the storage component (1) with the central axis of the mounting shaft (2) as the center; one side of the partition (3) is connected to the mounting shaft (2), and the other side is connected to the inner wall surface of the storage component (1), thereby forming a plurality of storage chambers (31) for storing cocoons (8) in the storage component (1); A pressing component (4) is arranged above the storage chamber (31); A silk threading groove (41) is provided on the pressing component (4) for the silk thread to pass through; A silk winding roller (5) is rotatably arranged above the material storage component (1) and is used to receive the silk; The driving motor (51) is used to drive the winding roller (5) to rotate to complete the winding.
2. The silk winding mechanism for preventing silk from sticking according to claim 1, characterized in that: Also includes: A mounting groove is provided on the mounting shaft (2); A first hinge shaft (61) is arranged in the mounting groove, and one end of the pressing component (4) is rotatably sleeved on the first hinge shaft (61). The pressing component (4) rotates around the first hinge shaft (61) to drive the end of the pressing component (4) away from the first hinge shaft (61) to overlap the storage component (1); The limiting component is arranged on the mounting shaft (2) and is used to limit the rotational movement of the pressing component (4) around the first hinge shaft (61).
3. The silk winding mechanism for preventing silk from sticking according to claim 2, characterized in that: The limiting components include: A second hinge shaft (62) is arranged on the mounting shaft body (2); A cover plate (63) is rotatably sleeved on the second hinge shaft (62) and is used for pressing the pressing component (4); The venting slot (64) is provided on the cover plate (63) for the pressing component (4) to pass through. The cover plate (63) rotates around the second hinge shaft (62) to align / displace the venting slot (64) and the pressing component (4).
4. The silk winding mechanism for preventing silk from sticking according to claim 1, characterized in that: Also includes: The water hole (32) is formed on the partition (3) to connect two adjacent material storage chambers (31).
5. The silk winding mechanism for preventing silk from sticking according to claim 1, characterized in that: Also includes: A guide component (71) is provided between the winding roller (5) and the material storage component (1); A guide through hole (72) is provided in the guide component (71) for allowing multiple strands of silk to pass through; The telescopic component (73) is installed parallel to the central axis of the wire winding roller (5), and the guide component (71) is arranged on the piston rod of the telescopic component (73).
6. The silk winding mechanism for preventing silk from sticking according to claim 1, characterized in that: The guide component (71) is also provided with a conical countersunk hole (74) for guiding the silk to gather.