Rotary guide needle winding system
Patent Information
- Application Number
- TH2301002999
- Authority / Receiving Office
- TH · TH
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2023-05-18
- Publication Date
- 2026-09-07
Smart Images

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Claims
------28 / 06 / 2566------(OCR)1. A winding system modified to wind wire on a frame in which the frame consists of a number of posts and a number of slots arranged alternately, and each post consists of two vertices opposite each other, and a central axis passes through the two vertices, in which the winding system consists of a guide needle and a rotation module. The guide needle consists of the central axis and includes semi-major and semi-minor distances. The semi-major distance is longer than the semi-minor distance, and the rotation module is connected to the guide needle, in which, when the guide needle is made to move along a winding path relative to the target post being wound and is positioned outside the two slots corresponding to the target post being wound, the rotation module drives the guide needle to rotate around the central axis, and the semi-major distance remains not parallel to the central axis.
3. A winding system according to claim 1 in which each slot is more than twice the width of the semi-minor distance of the guide needle.4.The rolling system according to claim 1, where the rolling path consists of an arc path located outside two corresponding slots on the two opposite sides of the rolling target post, where, as the guide needle is moved along the arc path, the rotation module begins to drive the guide needle to rotate around the central axis, and the semi-major distance remains not parallel to the central axis.
5. The rolling system according to claim 4, where the guide needle is moved along an arc path, the arc path consists of a starting point connected to an ending point through the midpoint, and the starting and ending points are located on the midline of two corresponding slots on the two opposite sides of the rolling target post, respectively, and have equal horizontal height relative to their corresponding vertices, where the midpoint is located on the central axis, and the midpoint is offset from the vertices corresponding to the starting and ending points. 6.The rolling system according to claim 5, where when the guide needle is moved to the starting position, the semi-major axis is parallel to the central axis, and when the guide needle is moved to the ending position, the semi-major axis is rotated by a rotation angle of 7. The rolling system according to claim 6, where when the guide needle passes through the central axis, the guide needle is rotated by half of the rotation angle and a safety distance is created between the guide needle and the corresponding vertex, where the offset = length of semi-major axis x cos (rotation angle / 2) + safety distance. The rolling system according to claim 6, where a center distance is created between the centerlines of two slots corresponding to two opposite sides of the rolling target column, where the offset = [center distance x tan (rotation angle - 90 degrees)] / 2.The winding system under claim1 is such that the winding paths consist of two straight paths positioned in two corresponding slots in sequence, aligning with the two opposite sides of the target column to be wound. When the guide needle is moved through the two corresponding slots along the straight paths, the semi-major axis of the guide needle is parallel to the central axis, and the rotation module stops, driving the guide needle to rotate.The winding system is tuned to wind wire onto a frame consisting of several posts and several slotted channels arranged alternately. The winding system incorporates a guide needle and a rotation module. The guide needle is equipped with a nozzle that guides the wire through the guide needle along the central axis of the guide needle. The guide needle is integrated with the central axis and includes semi-major and semi-minor distances; the semi-major distance is longer than the semi-minor distance. The rotation module is connected to the guide needle, where, when the winding system is moved relative to the target post, the winding of several posts and the wire passing through the nozzle is wound onto the target post. The rotation module selects to drive the guide needle to rotate around the central axis, and the wire passing through the nozzle is routed along the semi-major distance.11.A criterion 10 rolling system in which the guide needle is made to move along a rolling path relative to the rolling target post. The rolling path consists of two straight paths and two curved paths, and the straight and curved paths are alternately connected, where the two straight paths are spatially aligned with two corresponding slots on two opposite sides of the rolling target post, and the two curved paths are spatially aligned above and below the rolling target post, respectively.
12. A criterion 11 rolling system in which, when the guide needle is made to move through two corresponding slots along the straight path, the semi-major axis of the guide needle is parallel to the central axis and the rotation module stops driving the guide needle to rotate.13.The winding system according to claim11, where, when the guide needle is made to move relative to the target post, it is wound along an arc path and is positioned outside two slotted slots corresponding to the target post, the rotation module drives the guide needle to rotate around the central axis and the semi-major distance remains not parallel to the central axis.
14. The winding system according to claim10, where the rotation module consists of a motor, a belt drive, and a rotating section on which the guide needle is placed and the rotating section is connected to the motor via a belt drive, where, when the motor drives the belt drive to rotate the rotating section, the guide needle is rotated around the central axis.