Adjustable center winding transmission device for setting machine

CN224740488UActive Publication Date: 2026-09-11JIANGSU RIXIN PRINTING & DYEING MASCH CO LTD
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Patent Information

Application Number
CN202521769579.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-20
Publication Date
2026-09-11
Estimated Expiration
2035-08-20

AI Technical Summary

Technical Problem

[0003]定型机出布中心收卷作业时,中心收卷传动部分是固定位置,只能依靠万向联轴器作微调,不能前后、上下、左右移动

Benefits of technology

[0010]与现有技术相比,本实用新型的优点在于:一种定型机用可调式中心收卷传动装置,结构简单,操作便捷,能够对卷布辊减速马达、传动联轴器进行前后、上下、左右位置调整,满足不同规格的卷布架收卷作业,无需另外制作卷布架。

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a adjustable center winding transmission device for setting machine belongs to setting machine technical field. Including winding frame, be equipped with the first moving plate on the winding frame, the first moving plate is located on the winding frame through first drive mechanism, and first drive mechanism drives the horizontal transverse movement of first moving plate, be equipped with the second moving frame on the first moving plate, the second moving frame is located on the first moving plate through second drive mechanism, and second drive mechanism drives the horizontal longitudinal movement of second moving frame, the second moving frame is equipped with the third moving plate, the third moving plate is located on the side of second moving frame through third drive mechanism, and third drive mechanism drives the vertical movement of third moving plate, be provided cloth roll reduction motor on the third moving plate. The present application simple structure, convenient operation can carry out the front and back, up and down, left and right position adjustment of cloth roll reduction motor, transmission coupling, satisfies the cloth frame winding operation of different specifications.
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Description

Technical Field

[0001] This utility model relates to an adjustable center winding transmission device for a stenter, belonging to the technical field of stenter technology. Background Technology

[0002] A setting machine is a machine used in industrial manufacturing for setting fabric shapes, primarily for setting woven fabrics. Generally, a setting machine uses heat transfer oil to heat the air inside the machine, which then heats the fabric. Once the fabric reaches a certain temperature and is held for a certain period, its structure changes, achieving the setting purpose.

[0003] During the central winding operation of the fabric at the setting machine, the central winding drive is in a fixed position and can only be finely adjusted using a universal coupling; it cannot move forward, backward, up, down, or left and right. Customers often use fabric roll frames with varying lengths, heights, and even widths, requiring them to manufacture a new batch of roll frames that match the position of the central winding drive to meet their needs. Summary of the Invention

[0004] The technical problem to be solved by this utility model is to provide an adjustable center winding transmission device for a setting machine, which is easy to operate and can adjust the position of the winding transmission part in front and behind, up and down, and left and right, so that different specifications of fabric rolls can meet the winding requirements.

[0005] The technical solution adopted by this utility model to solve the above problems is as follows: an adjustable center winding transmission device for a setting machine, including a winding frame, a first movable plate on the winding frame, the first movable plate being mounted on the winding frame via a first driving mechanism, the first driving mechanism driving the first movable plate to move horizontally; a second movable frame on the first movable plate, the second movable frame being mounted on the first movable plate via a second driving mechanism, the second driving mechanism driving the second movable frame to move horizontally longitudinally; a third movable plate on the side of the second movable frame, the third movable plate being mounted on the side of the second movable frame via a third driving mechanism, the third driving mechanism driving the third movable plate to move vertically; a fabric roll reduction motor is mounted on the third movable plate, the output shaft of the fabric roll reduction motor being connected to a transmission coupling; when the first movable plate moves horizontally, it drives the fabric roll reduction motor and the transmission coupling to move horizontally horizontally synchronously; when the second movable plate moves horizontally longitudinally, it drives the fabric roll reduction motor and the transmission coupling to move horizontally longitudinally synchronously; when the third movable plate moves vertically, it drives the fabric roll reduction motor and the transmission coupling to move vertically synchronously.

[0006] The first driving mechanism includes two parallel first guide rails arranged horizontally. First sliders are respectively mounted on the first guide rails. The first moving plate is fixed on the first slider. A first screw is arranged horizontally between the two first guide rails. A first nut is provided at the bottom of the first moving plate. The first nut is sleeved on the first screw. A first adjusting motor drives the first screw to rotate, so that the first nut moves along the first screw, thereby driving the first moving plate and the first slider to move horizontally along the first guide rails.

[0007] The second drive mechanism includes two parallel second guide rails arranged horizontally and longitudinally. Second sliders are respectively mounted on the second guide rails, and the second movable frame is fixed on the second sliders. A second screw is provided between the two second guide rails, and a second nut is provided at the bottom of the second movable frame. The second nut is sleeved on the second screw. A second adjusting motor drives the second screw to rotate, so that the second nut moves along the second nut, thereby driving the second movable frame and the second slider to move horizontally and longitudinally along the second guide rails.

[0008] The third driving mechanism includes two vertically arranged third guide rails, each with a third slider mounted on it. A third moving plate is fixed to the third slider, and a third screw is provided between the two third guide rails. A third nut is provided on the outer side of the third moving plate and is fitted onto the third screw. A third adjusting motor drives the third screw to rotate, causing the third nut to move along the third screw, which in turn causes the third moving plate and the third slider to move vertically along the third guide rails.

[0009] The second movable frame is an L-shaped structural component.

[0010] Compared with the prior art, the advantages of this utility model are: an adjustable center winding transmission device for a setting machine has a simple structure and is easy to operate. It can adjust the position of the roll roller reduction motor and the transmission coupling in the front-back, up-down, and left-right directions to meet the winding operation of roll frames of different specifications, without the need to make a separate roll frame. Attached Figure Description

[0011] Figure 1 This is a schematic diagram of an adjustable center winding transmission device for a setting machine according to an embodiment of the present invention; Figure 2 for Figure 1 The left view; Figure 3 for Figure 1 The right view; In the figure, 1 is the winding frame, 2 is the first slider, 3 is the first guide rail, 4 is the first adjusting motor, 5 is the first moving plate, 6 is the second guide rail, 7 is the second slider, 8 is the second adjusting motor, 9 is the cloth winding roller reduction motor, 10 is the transmission coupling, 11 is the second moving frame, 12 is the third adjusting motor, 13 is the third moving plate, and 14 is the third guide rail. Detailed Implementation

[0012] The present invention will be further described in detail below with reference to the accompanying drawings and embodiments.

[0013] like Figure 1 , 2 As shown in Figure 3, an adjustable center winding transmission device for a setting machine in this embodiment includes a winding machine frame 1. A horizontally arranged first movable plate 5 is positioned above the winding machine frame 1. The first movable plate 5 is mounted on the winding machine frame 1 via a first driving mechanism, which drives the first movable plate 5 to move horizontally (left-right). A horizontally arranged L-shaped second movable frame 11 is positioned above the first movable plate 5. The second movable frame 11 is mounted on the first movable plate 5 via a second driving mechanism, which drives the second movable frame 11 to move horizontally (back-forward). A third movable plate 13 is positioned on the side of the second movable frame 11 via a third driving mechanism, which drives the third movable frame 13 to move vertically (up-down). A fabric roll reduction motor 9 is mounted on the third movable plate 13, and the fabric roll reduction motor 9 is connected to the fabric roll via a transmission coupling 10. When the first moving plate moves horizontally, it drives the fabric roll reduction motor and transmission coupling to move horizontally in sync. When the second moving plate moves horizontally longitudinally, it drives the fabric roll reduction motor and transmission coupling to move horizontally longitudinally in sync. When the third moving plate moves vertically, it drives the fabric roll reduction motor and transmission coupling to move vertically in sync, thereby adjusting the positions of the fabric roll reduction motor and transmission coupling in the front-back, up-down, and left-right directions to meet the needs of fabric roll frames of different sizes.

[0014] The aforementioned first driving mechanism includes two parallel first guide rails 3, which are arranged horizontally. A first slider 2 is respectively mounted on each of the first guide rails 3. A first moving plate 5 is fixed to the first slider 2. A horizontally arranged first screw is provided between the two first guide rails. A first nut is provided at the bottom of the first moving plate and is fitted onto the first screw. A first adjusting motor 4 drives the first screw to rotate, causing the first nut to move horizontally along the first screw, thereby driving the first moving plate and the first slider to move horizontally along the first guide rails, and subsequently driving the second moving frame and the third moving plate to move horizontally synchronously.

[0015] The aforementioned second driving mechanism includes two parallel second guide rails 6 arranged horizontally and longitudinally. Second sliders 7 are respectively mounted on the second guide rails 6, and a second movable frame 11 is fixed to the second sliders 7. A second screw is provided between the two second guide rails 6, and a second nut is provided at the bottom of the second movable frame. The second nut is sleeved on the second screw. A second adjusting motor 8 drives the second screw to rotate, causing the second nut to move horizontally and longitudinally along the second nut, thereby driving the second movable plate and the second slider to move horizontally and longitudinally along the second guide rails, and subsequently driving the third movable plate to move horizontally and longitudinally synchronously.

[0016] The aforementioned third drive mechanism includes two vertically arranged third guide rails 14, each with a third slider. A third moving plate 13 is fixed to the third slider. A third screw is provided between the two third guide rails. A third nut is provided on the outer side of the third moving plate and is sleeved on the third screw. A third adjusting motor 12 drives the third screw to rotate, causing the third nut to move vertically along the third screw, and causing the third moving plate to move vertically along the third guide rail.

[0017] This application has a simple structure and is easy to operate. It can adjust the position of the roll roller reduction motor and transmission coupling in the front-back, up-down, and left-right directions to meet the winding operation of roll frames of different specifications, without the need to make a separate roll frame.

[0018] In addition to the above embodiments, this utility model also includes other implementation methods. All technical solutions formed by equivalent transformation or equivalent substitution should fall within the protection scope of the claims of this utility model.

Claims

1. An adjustable center take-up drive for a setting machine characterized by: The device includes a winding frame, on which a first movable plate is mounted via a first driving mechanism, which drives the first movable plate to move horizontally. A second movable frame is mounted on the first movable plate via a second driving mechanism, which drives the second movable frame to move horizontally. A third movable plate is mounted on the side of the second movable frame via a third driving mechanism, which drives the third movable plate to move vertically. A fabric roll reduction motor is mounted on the third movable plate, and the output shaft of the fabric roll reduction motor is connected to a transmission coupling. When the first movable plate moves horizontally, it drives the fabric roll reduction motor and the transmission coupling to move horizontally synchronously. When the second movable plate moves horizontally, it drives the fabric roll reduction motor and the transmission coupling to move horizontally synchronously. When the third movable plate moves vertically, it drives the fabric roll reduction motor and the transmission coupling to move vertically synchronously.

2. The adjustable center take-up transmission device for a setting machine according to claim 1, characterized in that: The first driving mechanism includes two parallel first guide rails arranged horizontally. First sliders are respectively mounted on the first guide rails. The first moving plate is fixed on the first slider. A first screw is arranged horizontally between the two first guide rails. A first nut is provided at the bottom of the first moving plate. The first nut is sleeved on the first screw. A first adjusting motor drives the first screw to rotate, so that the first nut moves along the first screw, thereby driving the first moving plate and the first slider to move horizontally along the first guide rails.

3. The adjustable center take-up transmission device for a setting machine according to claim 1, characterized in that: The second drive mechanism includes two parallel second guide rails arranged horizontally and longitudinally. Second sliders are respectively mounted on the second guide rails, and the second movable frame is fixed on the second sliders. A second screw is provided between the two second guide rails, and a second nut is provided at the bottom of the second movable frame. The second nut is sleeved on the second screw. A second adjusting motor drives the second screw to rotate, so that the second nut moves along the second nut, thereby driving the second movable frame and the second slider to move horizontally and longitudinally along the second guide rails.

4. A center take-up drive for a setting machine according to claim 1, characterized in that: The third driving mechanism includes two vertically arranged third guide rails, each with a third slider mounted on it. A third moving plate is fixed to the third slider, and a third screw is provided between the two third guide rails. A third nut is provided on the outer side of the third moving plate and is fitted onto the third screw. A third adjusting motor drives the third screw to rotate, causing the third nut to move along the third screw, which in turn causes the third moving plate and the third slider to move vertically along the third guide rails.

5. An adjustable central take-up drive for a setting machine according to claim 1, characterized in that: The second movable frame is an L-shaped structural component.