Shockproof stabilizing mechanism of polyester yarn winding machine

By designing buffer and adjustment components on the polyester filament winding machine, the problem of difficulty in adjusting the level of traditional fixed feet has been solved, thus achieving stable operation of the equipment and improving product quality.

CN224150079UActive Publication Date: 2026-04-21ZHEJIANG HEWU TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHEJIANG HEWU TECHNOLOGY CO LTD
Filing Date
2025-06-16
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

Traditional polyester filament winding machines have simple fixed foot structures that are difficult to adjust for leveling, resulting in uneven equipment operation, increased mechanical wear, and fluctuations in polyester filament winding tension, which affects product quality.

Method used

A shock-absorbing and stabilizing mechanism for a polyester filament winding machine was designed, comprising a buffer component and an adjustment component. Vibration is absorbed through a threaded structure and buffer components, and the level is adjusted by a rubber pad and an adjustment rod to ensure the stability of the equipment.

Benefits of technology

It effectively reduces equipment vibration, improves the stability of polyester filament winding and product quality, reduces mechanical wear, and adapts to the needs of different ground flatness.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a shockproof stabilizing mechanism of a polyester yarn winding machine. The shockproof stabilizing mechanism comprises a control machine main body, a winding machine main body, a mounting assembly, a plurality of buffer assemblies, a bottom plate and a plurality of adjusting assemblies, the winding machine main body is mounted at the top of the control machine main body; the mounting assembly is arranged at the bottom of the control machine main body; the multiple buffer assemblies are arranged on the two sides of the surface of the mounting assembly correspondingly. The bottom plate is arranged among the plurality of buffer assemblies; the multiple adjusting assemblies are arranged on the sides of the bottom plate correspondingly. According to the shockproof stabilizing mechanism of the polyester yarn winding machine, provided by the utility model, the stability of the control machine main body with the winding machine main body can be conveniently adjusted according to the unevenness of the ground when the control machine main body with the winding machine main body is mounted at a specified position; and meanwhile, when the control machine main body with the winding machine main body works, the influence of vibration on the winding operation of polyester yarns can be reduced.
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Description

Technical Field

[0001] This utility model relates to the field of polyester filament processing, and in particular to a shockproof and stabilizing mechanism for a polyester filament winding machine. Background Technology

[0002] Polyester filament is an important type of synthetic fiber. It is made from purified terephthalic acid (PTA) or dimethyl terephthalate (DMT) and ethylene glycol (EG) as raw materials. Through esterification or transesterification and polycondensation reactions, fiber-forming polymers—polyethylene terephthalate (PET)—are obtained, and then the fibers are made through spinning and post-treatment.

[0003] In the polyester filament production process, the winding machine is a key piece of equipment, responsible for winding the spun polyester filament into regular rolls. Its operational stability directly affects product quality and production efficiency.

[0004] A search revealed CN218403084U, which discloses a polyester filament winding machine, including a roller and a winding device base. The bottom outer wall of the roller is mounted to the top of the winding device base via a limiting mechanism. The middle part of the winding device base is threadedly connected to the outer wall of a threaded rod. The bottom end of the threaded rod is mounted at the middle of the top of a motor. The upper and middle ends of the outer wall of the winding device base are symmetrically equipped with locking mechanisms. This invention, under the action of the limiting mechanism and in conjunction with the threaded rotation of the threaded rod, can limit the position of the roller and the winding device base, enabling relatively stable winding of the coil on the outer wall of the roller. Simultaneously, it effectively avoids the shaking and collisions that occur with traditional devices, ensuring the working efficiency of the device during use.

[0005] However, in practical applications, traditional winding machines often face many problems due to deficiencies in the design of their bases: traditional fixed bases have simple structures and lack flexible adjustment functions. The factory ground is affected by factors such as construction precision and long-term settlement, making it difficult to guarantee absolute flatness. If the ground is uneven during the installation of the winding machine, the fixed bases cannot effectively adjust the level of the equipment, which will cause uneven force on the equipment during operation. This will not only aggravate the wear of mechanical parts, but also cause fluctuations in the winding tension of the polyester yarn, resulting in irregular winding and forming, quality defects such as uneven yarn cake end faces and overlapping yarn coils, which will increase the difficulty of subsequent processing.

[0006] Therefore, it is necessary to provide a shock-absorbing and stabilizing mechanism for polyester filament winding machines to solve the above-mentioned technical problems. Utility Model Content

[0007] To address the aforementioned problems, this utility model provides a shock-absorbing and stabilizing mechanism for a polyester filament winding machine, which solves the problems of difficulty in leveling, vibration transmission, and stress concentration associated with traditional fixed feet in polyester filament winding machines.

[0008] To solve the above-mentioned technical problems, this utility model provides a shockproof and stabilizing mechanism for a polyester filament winding machine, comprising:

[0009] The main body of the control unit, the main body of the winding machine, the mounting components, multiple buffer components, the base plate, and multiple adjustment components;

[0010] The main body of the winding machine is mounted on top of the main body of the control machine;

[0011] The mounting assembly is disposed at the bottom of the main body of the control unit. The mounting assembly includes a mounting frame, multiple threaded seats and multiple threaded bolts. The mounting frame is sleeved on the bottom of the main body of the control unit. The multiple threaded seats are respectively installed on both sides of the mounting frame, and the multiple threaded bolts are respectively disposed inside the multiple threaded seats.

[0012] Multiple buffer components are respectively disposed on both sides of the mounting frame surface;

[0013] The base plate is disposed between the plurality of the buffer components;

[0014] Multiple adjustment components are respectively disposed on the side of the base plate.

[0015] Preferably, the buffer assembly includes a connecting block, a movable rod, a buffer element, and a stop block. The connecting block is connected to one side of the mounting frame, and the movable rod is movably disposed inside the connecting block.

[0016] Preferably, the buffer is sleeved on the surface of the movable rod, and the stop is connected to the top of the movable rod.

[0017] Preferably, rubber pads are sequentially adhered to the surface of the base plate from left to right.

[0018] The rubber pad effectively absorbs vibrations during device operation by increasing the friction of the contact surface and dispersing pressure, significantly improving overall stability. The fixed seat and the adjusting rod are linked by a threaded engagement or a sliding rail nesting structure, allowing users to precisely adjust the height of the adjusting seat by rotating or pushing / pulling to adapt to different working conditions.

[0019] Preferably, the adjustment assembly includes a fixed base, an adjustment rod, and an adjustment seat, wherein the fixed base is connected to the side of the base plate, and the adjustment rod is disposed inside the fixed base.

[0020] Preferably, the adjusting seat is connected to the bottom of the adjusting rod.

[0021] Preferably, a fixing component is provided between the control unit body and the mounting frame. The fixing component includes an external threaded block, a U-shaped mounting block and a threaded connecting sleeve. The external threaded block is connected to the surface of the control unit body. The U-shaped mounting block is sleeved on the surface of the external threaded block and connected to the mounting frame. The threaded connecting sleeve is threadedly connected to the surface of the external threaded block.

[0022] In summary, this utility model has the following beneficial effects:

[0023] This utility model provides a shockproof and stabilizing mechanism for a polyester filament winding machine. The mechanism includes a winding machine body, mounting components, multiple buffer components, a base plate, and multiple adjustment components at the bottom of the control machine body with the winding machine body. This allows for the adjustment of the stability of the control machine body with the winding machine body when it is installed in a designated position, based on the unevenness of the ground. At the same time, it can reduce vibration that may affect the winding operation of the polyester filament when the control machine body with the winding machine body is in operation.

[0024] When the control unit containing the winding machine vibrates during operation, the control unit drives the mounting frame, which in turn moves the connecting block across the surface of the movable rod. As the connecting block moves across the movable rod, it compresses and cushions the buffer component. When adjusting the entire control unit containing the winding machine after it has contacted the ground, the adjusting rod on the side of the base plate is rotated to move on the fixed seat, thus stabilizing the control unit. Attached Figure Description

[0025] Figure 1 A schematic diagram of a preferred embodiment of a shockproof and stabilizing mechanism for a polyester filament winding machine provided by this utility model;

[0026] Figure 2 for Figure 1 The enlarged schematic diagram of part A shown below;

[0027] Figure 3 for Figure 2 The enlarged schematic diagram of section B is shown below;

[0028] Figure 4 for Figure 1 The enlarged schematic diagram of section C is shown below;

[0029] Figure 5 for Figure 1 The diagram shows a three-dimensional structure of a polyester filament winding machine.

[0030] In the diagram: 1. Main body of the control machine; 2. Main body of the winding machine.

[0031] 3. Mounting components; 31. Mounting frame; 32. Threaded seat; 33. Threaded bolt.

[0032] 4. Buffer assembly; 41. Connecting block; 42. Movable rod; 43. Buffer element; 44. Stop block.

[0033] 5. Base plate, 6. Rubber pad,

[0034] 7. Adjustment assembly; 71. Fixing base; 72. Adjustment rod; 73. Adjustment seat.

[0035] 8. Fixing component; 81. External threaded block; 82. U-shaped mounting block; 83. Threaded connecting sleeve. Detailed Implementation

[0036] The technical solutions in the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of this application without creative effort are within the scope of protection of this application.

[0037] like Figure 1-5 As shown in the embodiment of this application, a shock-absorbing and stabilizing mechanism for a polyester filament winding machine is disclosed, comprising:

[0038] 1. Control machine body; 2. Winding machine body; 3. Mounting assembly; 4. Multiple buffer assemblies; 5. Base plate; and 7. Multiple adjustment assemblies.

[0039] The main body 2 of the winding machine is mounted on top of the main body 1 of the control machine;

[0040] Mounting component 3 is located at the bottom of the control unit body 1. Mounting component 3 includes mounting frame 31, multiple threaded seats 32 and multiple threaded bolts 33. Mounting frame 31 is fitted onto the bottom of the control unit body 1. Multiple threaded seats 32 are respectively mounted on both sides of mounting frame 31. Multiple threaded bolts 33 are respectively located inside multiple threaded seats 32.

[0041] Multiple buffer components 4 are respectively disposed on both sides of the surface of the mounting frame 31;

[0042] The base plate 5 is positioned between multiple buffer components 4;

[0043] Multiple adjustment components 7 are respectively set on the sides of the base plate 5.

[0044] The buffer assembly 4 includes a connecting block 41, a movable rod 42, a buffer element 43, and a stop block 44. The connecting block 41 is connected to one side of the mounting frame 31, and the movable rod 42 is movably disposed inside the connecting block 41.

[0045] The buffer 43 is fitted onto the surface of the movable rod 42, and the stop 44 is connected to the top of the movable rod 42.

[0046] Rubber pads 6 are glued to the surface of the base plate 5 from left to right.

[0047] The rubber pad 6 provides stability during the use of the entire device, while the fixed base 71 and the adjusting rod 72 allow for vertical adjustment of the adjusting base 73.

[0048] The adjustment assembly 7 includes a fixed base 71, an adjustment rod 72, and an adjustment seat 73. The fixed base 71 is connected to the side of the base plate 5, and the adjustment rod 72 is disposed inside the fixed base 71.

[0049] The adjusting seat 73 is connected to the bottom of the adjusting rod 72.

[0050] A fixing component 8 is provided between the main body 1 of the control unit and the mounting frame 31. The fixing component 8 includes an external threaded block 81, a U-shaped mounting block 82 and a threaded connecting sleeve 83. The external threaded block 81 is connected to the surface of the main body 1 of the control unit, the U-shaped mounting block 82 is sleeved on the surface of the external threaded block 81 and connected to the mounting frame 31, and the threaded connecting sleeve 83 is threadedly connected to the surface of the external threaded block 81.

[0051] In use, when installing the mounting assembly 3 with multiple buffer components 4 and base plate 5 between the control unit body 1, first, the mounting frame 31 is fitted onto the bottom of the control unit body 1. Then, multiple bolts 33 are used to connect the control unit body 1 through multiple threaded seats 32 and the mounting frame 31. At the same time, when the mounting frame 31 is fitted onto the bottom of the control unit body 1, the U-shaped mounting block 82 at the top of the mounting frame 31 is driven to fit onto the surface of the external threaded block 81. Then, the threaded connecting sleeve 83 is used to thread the external threaded block 81 to use the entire device.

[0052] When the control unit 1 with the winding machine body 2 operates at high speed, it generates vibration. The vibration energy is transmitted to the mounting frame 31 through the bottom of the control unit 1, driving the mounting frame 31 to slide the connecting block 41 on the surface of the movable rod 42 in a vertical direction. The guide pulley nested inside the connecting block 41 cooperates with the groove of the movable rod 42 to ensure the accuracy of the sliding trajectory. When the connecting block 41 moves to the preset buffer zone of the movable rod 42, its end contacts the buffer component 43 (such as a hydraulic damper or an elastic rubber column) and applies pressure. The buffer component 43 absorbs the vibration energy through compression deformation and converts the remaining energy into heat energy for dissipation, thereby effectively suppressing the transmission of vibration to the ground or adjacent equipment.

[0053] When the device needs to contact ground with varying flatness, the user can rotate the adjusting rod 72 on the side of the base plate 5. The adjusting rod 72 engages with the threaded structure of the fixed seat 71, converting the rotational motion into the vertical displacement of the adjusting seat 73. The level integrated at the bottom of the adjusting seat 73 provides real-time feedback on the tilt angle. The user can fine-tune the adjusting rod 72 based on the displayed data until the device is level. The contact surface between the adjusting seat 73 and the base plate 5 features an anti-slip toothed design, combined with the elastic support of the rubber pad 6, further enhancing the device's anti-tipping ability and ensuring the stable operation of the winding machine body 2 under complex working conditions.

[0054] The above description is merely a preferred embodiment of this utility model. The protection scope of this utility model is not limited to the above embodiments. All technical solutions falling within the scope of this utility model's concept are protected. It should be noted that for those skilled in the art, any improvements and modifications made without departing from the principle of this utility model should also be considered within the protection scope of this utility model.

Claims

1. A shockproof stabilizing mechanism for a polyester yarn winding machine, characterized by, include: The control machine body (1), the winding machine body (2), the mounting components (3), multiple buffer components (4), the base plate (5), and multiple adjustment components (7); The winding machine body (2) is mounted on top of the control machine body (1); The mounting component (3) is disposed at the bottom of the control body (1). The mounting component (3) includes a mounting frame (31), a plurality of threaded seats (32) and a plurality of threaded bolts (33). The mounting frame (31) is sleeved on the bottom of the control body (1). The plurality of threaded seats (32) are respectively installed on both sides of the mounting frame (31). The plurality of threaded bolts (33) are respectively disposed inside the plurality of threaded seats (32). Multiple buffer components (4) are respectively disposed on both sides of the surface of the mounting frame (31); The base plate (5) is disposed between the plurality of buffer components (4); Multiple adjustment components (7) are respectively disposed on the side of the base plate (5).

2. The anti-vibration stabilization mechanism for a polyester filament winding machine according to claim 1, characterized in that, The buffer assembly (4) includes a connecting block (41), a movable rod (42), a buffer element (43), and a stop block (44). The connecting block (41) is connected to one side of the mounting frame (31), and the movable rod (42) is movably disposed inside the connecting block (41).

3. The polyester yarn winder shock absorbing stabilizing mechanism of claim 2, wherein, The buffer (43) is fitted onto the surface of the movable rod (42), and the stop (44) is connected to the top of the movable rod (42).

4. The polyester yarn winder shock absorbing stabilizing mechanism of claim 1, wherein, The surface of the base plate (5) is covered with rubber pads (6) from left to right.

5. The polyester yarn winder shock absorbing stabilizing mechanism of claim 1, wherein, The adjustment assembly (7) includes a fixed seat (71), an adjustment rod (72) and an adjustment seat (73). The fixed seat (71) is connected to the side of the base plate (5), and the adjustment rod (72) is disposed inside the fixed seat (71).

6. The polyester yarn winder shock absorbing stabilizing mechanism of claim 5, wherein, The adjusting seat (73) is connected to the bottom of the adjusting rod (72).

7. The polyester yarn winder shock absorbing stabilizing mechanism of claim 1, wherein, A fixing component (8) is provided between the main body (1) of the controller and the mounting frame (31). The fixing component (8) includes an external thread block (81), a U-shaped mounting block (82) and a threaded connecting sleeve (83). The external thread block (81) is connected to the surface of the main body (1). The U-shaped mounting block (82) is sleeved on the surface of the external thread block (81) and connected to the mounting frame (31). The threaded connecting sleeve (83) is threaded to the surface of the external thread block (81).