Functional fiber heat setting device
Patent Information
- Application Number
- CN202521983059.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-16
- Publication Date
- 2026-08-21
- Estimated Expiration
- 2035-09-16
AI Technical Summary
[0004]为了解决上述技术问题,本实用新型提供一种功能性纤维热定型装置,以解决现有的纤维穿过装置内部的过程较为困难,导致装置的操作性能较差,不方便在装置上加装穿线措施,来使纤维可以快速穿过装置内部;加热筒产生的热量容易通过外壳传递至固定安装位置烫伤工作人员,不方便在加热筒外部加装防护措施,来防止加热筒烫伤员工的问题
方便纤维插入纤维穿线杆的插入孔内部并通过纤维锁紧钮锁紧固定,方便通过纤维穿线杆带动纤维向右移动穿过组装承载筒内部,解决了纤维穿过装置内部的过程较为困难,导致装置的操作性能较差,不方便在装置上加装穿线措施,来使纤维可以快速穿过装置内部的问题。
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Figure CN224663114U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of heat setting technology, and in particular relates to a functional fiber heat setting device. Background Technology
[0002] Functional fiber heat setting equipment is used to heat set chemical fibers with special functions. By precisely controlling parameters such as temperature, tension and time, it stabilizes the fiber molecular structure and maintains specific functional properties, ensuring that functional fibers maintain stable performance in subsequent processing and use. It is a key piece of equipment in the production of high-end textile materials.
[0003] Based on the above, the inventors have discovered the following shortcomings in existing functional fiber heat setting devices: 1. The process of fibers passing through the inside of the device is relatively difficult, resulting in poor operating performance of the device. It is inconvenient to add threading measures to the device so that the fibers can pass through the inside of the device quickly. 2. The heat generated by the heating cylinder can easily be transferred through the outer shell to the fixed installation location, burning the staff. It is inconvenient to install protective measures on the outside of the heating cylinder to prevent employees from being burned. Utility Model Content
[0004] To address the aforementioned technical problems, this utility model provides a functional fiber heat setting device. This addresses the issues of existing devices where the process of fibers passing through the device is difficult, resulting in poor operational performance and making it inconvenient to add threading measures to the device to allow fibers to pass through quickly; and the heat generated by the heating cylinder can easily be transferred through the outer shell to the fixed installation position, causing burns to workers, and it is inconvenient to add protective measures to the outside of the heating cylinder to prevent burns to employees.
[0005] The purpose and effectiveness of this functional fiber heat setting device are achieved through the following specific technical means: A functional fiber heat setting device includes a device body; the device body is provided with a fiber threading rod, the fiber threading rod is generally U-shaped rod structure, the cross-section of the fiber threading rod is square structure, the lower end of the fiber threading rod has an insertion hole that runs through it from top to bottom, the lower end face of the fiber threading rod has a threaded hole, a fiber locking button is installed inside the threaded hole of the fiber threading rod, a threaded post is provided on the right side of the fiber locking button, and a rotating post with an anti-slip groove is provided on the left end face of the threaded post of the fiber locking button.
[0006] Furthermore, the outer circumference of the fiber heating cylinder is fitted with a heat insulation protective cylinder, the top wall of the heat insulation protective cylinder has a through hole that runs vertically through the middle, the left and right ends of the top wall of the heat insulation protective cylinder have U-shaped grooves that run vertically through the middle, and the outer circumference of the heat insulation protective cylinder has a semi-circular head plate with through holes running vertically through the middle at both the front and back.
[0007] Furthermore, a fiber heating cylinder is fitted around the outer circumference of the assembled bearing cylinder, and a through hole is provided in the middle of the top wall of the fiber heating cylinder. Wires are provided at both the left and right ends of the top of the outer circumference of the fiber heating cylinder.
[0008] Furthermore, an assembly anti-detachment cover is threadedly installed on the annular groove of the assembly bearing cylinder. The inner end face of the assembly anti-detachment cover has a threaded circular groove, the center of the assembly anti-detachment cover has a through hole that runs from left to right, and the outer circumference of the assembly anti-detachment cover has a rotating groove that runs from left to right in a circular array.
[0009] Furthermore, the lower end of the fixed bearing column is threadedly installed with an assembly bearing cylinder. A threaded blind hole is opened in the middle of the top of the outer circumference of the assembly bearing cylinder, and threaded annular grooves are opened on the outer circumference of both the left and right ends of the assembly bearing cylinder.
[0010] Furthermore, a fixed bearing post is fitted on the crossbar above the fiber threading rod. The lower end of the fixed bearing post has a threaded outer circumference, the top end face of the fixed bearing post has a regular hexagonal groove, and the upper part of the fixed bearing post has a square hole that runs through from left to right.
[0011] Compared with the prior art, the present invention has the following beneficial effects: The fiber can be easily inserted into the insertion hole of the fiber threading rod and locked in place by the fiber locking button. It also allows the fiber to be moved to the right by the fiber threading rod and pass through the assembly carrier cylinder. This solves the problem that the process of the fiber passing through the device is difficult, resulting in poor operation of the device and making it inconvenient to add threading measures to the device so that the fiber can pass through the device quickly.
[0012] The heat-insulating protective sleeve is conveniently fitted onto the outside of the fiber heating cylinder and limited by a fixed support column and an assembled anti-detachment cover. The heat-insulating protective sleeve is conveniently fixed to the installation position with bolts for heat insulation. This solves the problem that the heat generated by the heating cylinder can easily be transferred through the outer shell to the fixed installation position and burn the workers, and that it is inconvenient to install protective measures on the outside of the heating cylinder to prevent employees from being burned by the heating cylinder. Attached Figure Description
[0013] Figure 1 This is a schematic diagram of the main structure of this utility model.
[0014] Figure 2 This is a cross-sectional structural diagram of the present invention.
[0015] Figure 3 This is a disassembled structural diagram of the present invention.
[0016] Figure 4 This is a schematic diagram of the threading state of this utility model.
[0017] Figure 5This is an assembly diagram of the fiber threading rod and fiber locking button of this utility model.
[0018] Figure 6 This is an assembly diagram of the fixed support column and the assembled support cylinder of this utility model.
[0019] In the diagram: 1. Device body; 2. Fiber threading rod; 3. Fiber locking button; 4. Fixed support column; 5. Assembled support cylinder; 6. Assembled anti-detachment cover; 7. Fiber heating cylinder; 8. Heat insulation protective cylinder. Detailed Implementation
[0020] The embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples.
[0021] Example 1: As shown in the attached document Figure 1 To be continued Figure 6 As shown: This utility model provides a functional fiber heat setting device, including a device body 1; the device body 1 is provided with a fiber threading rod 2, which facilitates the movement and threading of fibers. The fiber threading rod 2 has a U-shaped rod structure, which can be placed inside and outside the assembly support cylinder 5 at the same time. The cross-section of the fiber threading rod 2 is a square structure, which can be used to prevent rotation by passing through the square hole of the fixed support column 4. The lower end of the fiber threading rod 2 has an insertion hole that runs through it from top to bottom, which facilitates the insertion of fibers into it. The lower end face of the fiber threading rod 2 has a threaded hole, which facilitates the installation of a fiber locking button 3 by thread. The fiber locking button 3 is installed inside the threaded hole of the fiber threading rod 2, which facilitates the locking and fixing of fibers. The right side of the fiber locking button 3 is provided with a threaded post, which facilitates the installation of the fiber locking button 3 by thread. The left end face of the threaded post of the fiber locking button 3 is provided with a rotating post with an anti-slip groove. The fiber locking button 3 is rotated to prevent slippage. A fixed bearing post 4 is fitted on the crossbar above the fiber threading rod 2 to facilitate anti-rotation, guidance, and bearing of the fiber threading rod 2. The lower end of the fixed bearing post 4 has a threaded outer circumference, which facilitates the fixed bearing post 4 to be installed on the assembly bearing cylinder 5 through the thread. The top end face of the fixed bearing post 4 has a regular hexagonal groove, which facilitates the fixed bearing post 4 to be rotated and disassembled with tools. The upper part of the fixed bearing post 4 has a square hole that runs through from left to right, which facilitates the insertion of the fiber threading rod 2 into the hole. The lower end of the fixed bearing post 4 is threaded to install the assembly bearing cylinder 5, which facilitates the bearing of each component. The top center of the outer circumference of the assembly bearing cylinder 5 has a threaded blind hole, which facilitates the installation of the fixed bearing post 4 through the thread. The outer circumference of both the left and right ends of the assembly bearing cylinder 5 has a threaded annular groove, which facilitates the installation of the anti-detachment cover 6 through the thread.
[0022] The assembly support cylinder 5 has an assembly anti-detachment cover 6 threaded onto its annular groove for heat retention. The inner end face of the assembly anti-detachment cover 6 has a threaded groove for easy threaded installation. The center of the assembly anti-detachment cover 6 has a through-hole for easy passage of the fiber threading rod 2 and fibers. The outer circumference of the assembly anti-detachment cover 6 has a rotating groove for easy rotation and disassembly using a special tool. A fiber heating cylinder 7 is fitted around the outer circumference of the assembly support cylinder 5 for heating the fibers inside. The top wall of the fiber heating cylinder 7 has a through-hole. The support column 4 passes through the fiber heating cylinder 7. Wires are provided at both ends of the top of the outer circumference of the fiber heating cylinder 7 to facilitate connection of the fiber heating cylinder 7 to an external power control device. A heat insulation protective cylinder 8 is fitted around the outer circumference of the fiber heating cylinder 7 to provide heat insulation protection. A through hole is provided in the middle of the top wall of the heat insulation protective cylinder 8 to facilitate the passage of the support column 4. U-shaped grooves are provided at both ends of the top wall of the heat insulation protective cylinder 8 to facilitate the placement of the wires of the fiber heating cylinder 7 inside. Semi-circular head plates with through holes are provided at the front and back of the outer circumference of the heat insulation protective cylinder 8 to facilitate the installation of the heat insulation protective cylinder 8 in a suitable position by bolts.
[0023] The specific usage and function of this embodiment are as follows: In this utility model, when... Figure 1 As shown, when the device body 1 is in use, the heat insulation protective cylinder 8 is fixedly installed on the external equipment frame with bolts. The semi-circular head plate of the heat insulation protective cylinder 8 is locked and fixed with bolts, so that the wire of the fiber heating cylinder 7 extends to the outside through the U-shaped groove of the heat insulation protective cylinder 8, and the wire of the fiber heating cylinder 7 is connected to the external power control equipment to avoid high temperature damage to the wire of the fiber heating cylinder 7. At the same time, the heat insulation protective cylinder 8 is sleeved on the outside of the fiber heating cylinder 7, thereby blocking heat transfer and solving the problem that the heat generated by the heating cylinder can easily be transferred to the fixed installation position through the outer shell and burn the staff. Then, the end of the fiber to be processed is inserted into the insertion hole of the fiber threading rod 2. The fiber locking button 3 is rotated to engage with the thread of the fiber threading rod 2, so that the fiber locking button 3 moves to the right through the thread engagement, thereby fixing the fiber by pressing the fiber with the fiber locking button 3. Pulling the fiber threading rod 2 to the right moves the fiber through the assembly carrier cylinder 5, as shown in the figure. Figure 4 As shown, this enables the rapid passage of fibers, solving the problem that the process of fibers passing through the inside of the device is difficult, resulting in poor operation performance of the device. The U-shaped rod structure allows the fiber threading rod 2 to extend to both inside and outside the assembled support cylinder 5 at the same time. The square cross-section structure allows the fiber threading rod 2 to stop rotating through the square hole of the fixed support column 4, thereby ensuring the stability of the threading direction. The through hole of the assembled anti-detachment cover 6 allows the fiber threading rod 2 to move freely, while reducing heat loss.
[0024] Example 2: The difference from Example 1 is that the outer circumferential surface of the rotating column of the fiber locking button 3 can also be set as a frosted surface, thereby increasing the friction between the outer circumferential surface of the rotating column of the fiber locking button 3 and the hand, and preventing the rotation of the outer circumferential surface of the rotating column of the fiber locking button 3 from slipping.
[0025] Example 3: The difference from Example 1 is that the regular hexagonal groove of the fixed support column 4 can also be set as a regular heptagonal groove, so that the fixed support column 4 can only be rotated by a special tool that cooperates with the regular heptagonal groove, thus preventing non-workers from rotating and disassembling the fixed support column 4.
Claims
1. A functional fiber heat setting device, characterized in that: The device includes a main body (1); the main body (1) is provided with a fiber threading rod (2), the fiber threading rod (2) is a U-shaped rod structure, the cross section of the fiber threading rod (2) is a square structure, the lower end of the fiber threading rod (2) is provided with an insertion hole that runs through from top to bottom, the lower end face of the fiber threading rod (2) is provided with a threaded hole, a fiber locking button (3) is installed inside the threaded hole of the fiber threading rod (2), a threaded post is provided on the right side of the fiber locking button (3), and a rotating post with an anti-slip groove is provided on the left end face of the threaded post of the fiber locking button (3).
2. The functional fiber heat setting device as described in claim 1, characterized in that: The fiber threading rod (2) is fitted with a fixed bearing column (4) on the upper crossbar. The lower end of the fixed bearing column (4) is threaded around the outer circumference. The top end face of the fixed bearing column (4) is provided with a regular hexagonal groove. The upper part of the fixed bearing column (4) is provided with a square hole that runs through from left to right.
3. The functional fiber heat setting device as described in claim 2, characterized in that: The fixed support column (4) has an assembly support cylinder (5) installed at its lower end by thread. The assembly support cylinder (5) has a threaded blind hole in the middle of the top of its outer circumference. The assembly support cylinder (5) has threaded annular grooves on its outer circumference at both ends.
4. The functional fiber heat setting device as described in claim 3, characterized in that: An assembly anti-detachment cover (6) is installed on the annular groove of the assembly bearing cylinder (5) by threads. The inner end face of the assembly anti-detachment cover (6) is provided with a threaded circular groove. The center of the assembly anti-detachment cover (6) is provided with a through hole that runs from left to right. The outer circumference of the assembly anti-detachment cover (6) is provided with a rotating groove that runs from left to right in an annular array.
5. The functional fiber heat setting device as described in claim 4, characterized in that: The assembly support cylinder (5) is surrounded by a fiber heating cylinder (7) on its outer circumference. A through hole is provided in the middle of the top wall of the fiber heating cylinder (7), and wires are provided at both the left and right ends of the top of the outer circumference of the fiber heating cylinder (7).
6. The functional fiber heat setting device as described in claim 5, characterized in that: The fiber heating cylinder (7) is surrounded by a heat insulation protective cylinder (8) on its outer circumference. The top wall of the heat insulation protective cylinder (8) has a through hole that runs vertically through it. The top wall of the heat insulation protective cylinder (8) has U-shaped grooves that run vertically through it on both the left and right ends. The outer circumference of the heat insulation protective cylinder (8) has a semi-circular head plate with through holes running vertically through it on both the front and back.