A creel transport table

CN224783013UActive Publication Date: 2026-09-22FOSHAN SANSHUI SHANLONG TEXTILE PRINTING & DYEING FAB CO LTD
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Patent Information

Application Number
CN202522065589.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-23
Publication Date
2026-09-22
Estimated Expiration
2035-09-23

AI Technical Summary

Benefits of technology

1. 运输台设置助力组件、升降组件和支撑组件等,无需借助梯子、升降车等爬升或提升工具进行锁头拆、紧工作,降低了操作成本;

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Abstract

The application relates to the technical field of textiles, in particular to a bobbin loading frame conveying table, which comprises a conveying frame, an assisting assembly, a lifting assembly, two groups of supporting assemblies and a locking assembly, the conveying frame is installed on a horizontal ground, the lifting assembly is fixed on the conveying frame, the assisting assembly is arranged along the length direction of the conveying frame, is in sliding connection with the conveying frame and is connected with the output end of the lifting assembly, each group of the supporting assemblies is arranged on the two sides of the assisting assembly and is hinged at one end of the assisting assembly, and the locking assembly is arranged on the conveying frame and is in abutment with the supporting assemblies; the assisting assembly comprises an assisting part and an assisting frame, the supporting assembly comprises a supporting part and a resistance part arranged on the supporting part, the locking assembly comprises a slide locking part, a fixing part and an elastic part, the lifting mechanism comprises a transmission part, a guide part and a driving part, and the assisting frame further comprises a buffer part and a positioning piece. The application has the technical effects of conveniently conveying the bobbin loading frame, stably supporting the bobbin loading frame and flexibly lifting the bobbin loading frame.
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Description

Technical Field

[0001] The present application relates to the technical field of textiles, in particular to a cheese loading rack transport table. Background Art

[0002] In the textile industry, the production scale of cheese is expanding day by day, and various related links have become increasingly important. Among them, the transportation, loading and unloading of cheese loading racks have become one of the key links. Efficient and stable transportation, loading and unloading can greatly guarantee the smooth progress of the cheese production process, improve the overall production efficiency, and play a decisive role in enhancing the market competitiveness of textile enterprises. The cheese loading rack transport table plays an indispensable role in this process, and it is directly related to whether the cheese loading rack can complete the transportation, loading and unloading tasks safely and quickly.

[0003] In the existing textile production environment, in order to solve the problems of transportation, loading and unloading of cheese loading racks, conventional transport tables have adopted some customary means in design and operation. When it comes to loosening and tightening the locking heads of cheese loading racks, since the height of the transport table top is fixed and lacks necessary auxiliary operating structures, workers often can only complete the operation relying on external tools. A common method is to climb by means of a ladder, climb to a suitable height through the ladder to operate the locking head; or use lifting equipment such as a lift truck to send workers to the corresponding position. This The use of additional tools not only increases the operation cost, but also has potential safety hazards. Meanwhile, frequent use of tools prolongs the operation time and reduces the working efficiency. The space of the transport table itself is not reasonably utilized to assist workers in operation. Utility Model Content

[0004] In order to improve the problems that the transport table lacks auxiliary operating structures, requires additional climbing or lifting tools for loosening and tightening the locking head, resulting in high operation cost and low efficiency, the present application provides a cheese loading rack transport table.

[0005] The present application provides a cheese loading rack transport table, which adopts the following technical solution: A cheese loading rack transport table comprises a transport rack, a power-assisted component, a lifting component and two groups of support components. The transport rack is installed on a horizontal ground, and the lifting component is fixedly installed on the transport rack; the power-assisted component is arranged along the length direction of the transport rack and is slidably connected with the transport rack; the power-assisted component is connected with the output end of the lifting component; one group of support components is distributed on each side of the power-assisted component, and one ends of the two groups of support components are respectively hinged with the power-assisted component; a locking component is arranged on the transport rack, each group of support components is respectively connected with one group of locking components, and the locking component abuts against the end of the support component away from the end connected with the power-assisted component and is located below the support component.

[0006] By adopting the above technical solution, the transport platform has an assist component, a lifting component, a support component, and a locking component. The assist component can slide along the transport frame under the action of the lifting component and drive the support component to move. It can assist workers in loosening and tightening the lock without the need for additional climbing or lifting tools, thereby reducing operating costs, eliminating safety hazards, and improving work efficiency.

[0007] Preferably, the assistive component includes an assistive frame and an assistive part. The assistive frame is slidably mounted on the transport frame, and the assistive part is rotatably mounted on the middle of the assistive frame. There are multiple assistive parts, which are arranged in rows on the transport frame, with at least two rows.

[0008] By adopting the above technical solution, the sliding auxiliary frame on the transport frame can drive the auxiliary parts to move; multiple auxiliary parts arranged in rows and at least two rows facilitate smoother transport of yarn loading frames on the transport platform, improve the problem of the lack of auxiliary operating structure on the transport platform, avoid the use of additional climbing or lifting tools, reduce operating costs and improve work efficiency.

[0009] Preferably, each set of support components includes a support portion, one end of which is hinged to the assist frame, and the other end of which abuts against the locking component.

[0010] By adopting the above technical solution, a support part is set in the yarn loading frame transport platform that is hinged to the auxiliary frame and abuts against the locking component. This can play a supporting role, provide conditions for operators to step on or walk, and enable workers to perform lock loosening and tightening work on the transport platform. This improves the situation where the transport platform lacks auxiliary operating structures, reduces the reliance on additional climbing or lifting tools, thereby reducing operating costs and improving work efficiency.

[0011] Preferably, the support portion is provided with a resistance portion, which is laid on the surface of the support portion and has elasticity.

[0012] By adopting the above technical solution, laying an elastic resistance layer on the support can increase the friction of the support, improve the stability of workers walking or stepping, and avoid the safety problem of slipping due to unstable support during operation.

[0013] Preferably, the locking assembly includes a sliding lock part, a fixing part, and an elastic part. The support frame has multiple hollow guide parts. One end of the sliding lock part passes through the guide part, and the other end passes through another set of guide parts. Elastic parts are respectively fitted on the body of the sliding lock part located inside the guide part. Limiting parts are respectively fitted on the body of the sliding lock part located inside the guide part. The limiting parts are fixedly connected to the sliding lock part. One end of the elastic part abuts against the limiting part, and the other end abuts against the inner surface of the guide part. The elastic part is elastic. A set of fixing parts is respectively connected to each end of the sliding lock part. One end of the fixing part is fixedly connected to the sliding lock part, and the other end is inserted into the support part. Locking parts are respectively inserted at both ends of the sliding lock part. One end of the locking part passes through the guide part and is inserted into the sliding lock part. The other end is connected to the outer surface of the guide part through a chain.

[0014] By adopting the above technical solution, in the initial state, the fixing part is inserted into the support part, and locking parts are also simultaneously inserted into both ends of the sliding lock part to restrict the sliding of the sliding lock part along the axial direction of the guide part. When it is necessary to clean the support part, remove the locking parts inserted into both ends of the sliding lock part, push the part of the sliding lock part that is not connected to the guide part to move downward relative to the booster frame, the limiting part pushes the elastic part to move downward along the axial direction of the guide part, the fixing part disengages from the support part, the thrust is released, the elastic part pushes the fixing part to reset, the support part loses the support of the fixing part, the end of the support part away from the hinge of the booster frame swings downward, the support part is in an inclined state, causing some debris to fall off the support part, and then the remaining debris on the support part is cleaned with a brush. When locking the support part, push the part of the sliding lock part that is not connected to the guide part, the limiting part pushes the elastic part to move downward along the axial direction of the guide part, raising the support part to a state parallel to the ground, the thrust is released, the elastic part pushes the fixing part to reset and insert into the support part, and the locking parts are also simultaneously inserted into both ends of the sliding lock part to lock the sliding lock part and lock the support part. The above solution allows the sliding lock to slide stably within the guide section, working in conjunction with the elastic and limiting sections. The fixing section is inserted into the support section, enabling a secure connection and locking of the support assembly. The locking section locks the sliding lock, ensuring that the entire locking assembly stably supports the support section, thus providing stable conditions for workers to step on or walk on the support assembly. This prevents the support assembly from shaking or shifting during operation, solving the problem of the lack of auxiliary operating structures on the transport platform. It eliminates the need for additional climbing or lifting tools, reducing operating costs and improving work efficiency.

[0015] Preferably, the lifting assembly includes a transmission part, a guide part, and a drive part. The two ends of the transmission part are rotatably connected to the transport frame, and the transmission part passes through one end of the auxiliary frame and is rotatably connected to the auxiliary frame. The two ends of the guide part are fixedly connected to the transport frame, and the guide part passes through the auxiliary frame away from the end connected to the transmission part and is slidably connected to the auxiliary frame.

[0016] By adopting the above technical solution, the transmission part is rotatably connected to the transport frame and passes through the auxiliary frame for rotatable connection. The guide part is fixedly connected to the transport frame at both ends and passes through the auxiliary frame for slidable connection. The drive part drives the transmission part to rotate, which allows the auxiliary frame to slide smoothly along the guide part, realizing the smooth lifting and lowering of the auxiliary component. The height of the auxiliary component can be adjusted without the need for additional climbing or lifting tools, thereby avoiding the increased cost, safety hazards and reduced efficiency caused by using additional tools. It also makes it convenient for workers to loosen and tighten the locking head of the yarn loading frame.

[0017] Preferably, the assist frame is provided with a buffer part, one end of which is fixedly connected to the assist frame, and the other end is disposed towards the guide part.

[0018] By adopting the above technical solution, the buffer part can play a buffering role during the downward swing of the support part, reducing the impact force of the collision between the support part and the auxiliary frame or the traction force at the rotating connection between the support part and the auxiliary frame, thereby protecting the auxiliary frame and the support part, reducing the risk of component damage, and improving the service life of the transport platform.

[0019] Preferably, the assist frame is provided with a positioning component, which is installed on one side of the assist part and slidably installed on the assist frame. The positioning component is fitted with a retaining component, and the retaining component is elastic. The positioning component has a force-reducing part, which is rotatably connected to the body of the positioning component.

[0020] By adopting the above technical solution, the positioning component and its retaining component on the assist frame can realize the positioning function. At the same time, the elasticity of the retaining component makes the positioning more flexible and stable. The force-reducing part on the positioning component can reduce the friction between it and other components. Together with the assist component, it can make the yarn loading frame move more smoothly on the transport platform, so that the positioning component slides into the bottom of the yarn loading frame, restricting the sliding of the yarn loading frame. This is beneficial for workers to keep the yarn loading frame stable and ensure safety when performing lock opening and closing operations.

[0021] In summary, this application has the following beneficial effects: 1. The transport platform is equipped with assist components, lifting components, and support components, eliminating the need for ladders, lifting vehicles, or other climbing or lifting tools to loosen or tighten the locks, thus reducing operating costs; 2. It avoids the safety hazards associated with using additional tools; 3. It eliminates the need for frequent use of additional tools, reducing operation time and improving work efficiency; 4. The assist wheels of the assist component facilitate the movement of the yarn loading frame on the transport platform, making operation more convenient; 5. The rubber pads on the support increase friction, making the support more stable. Attached Figure Description

[0022] Figure 1This embodiment discloses an overall structural view of a yarn loading rack transport platform; Figure 2 This embodiment discloses a cross-sectional view of a yarn loading rack transport platform; Figure 3 This is another cross-sectional view of a yarn loading rack transport platform disclosed in this embodiment.

[0023] Explanation of reference numerals in the attached figures: 1. Transport frame; 2. Assist component; 21. Assist frame; 22. Assist part; 23. Buffer part; 24. Guide part; 25. Positioning baffle; 3. Lifting component; 31. Transmission part; 32. Guide part; 33. Drive part; 4. Support component; 41. Support part; 42. Resistance part; 5. Locking component; 51. Slide lock part; 52. Fixing part; 53. Elastic part; 54. Locking part; 55. Limiting part; 6. Positioning element; 61. Force reduction part; 7. Holding element. Detailed Implementation

[0024] The present application will be further described in detail below with reference to the accompanying drawings.

[0025] This application discloses a yarn loading rack and transport platform, see [link to relevant documentation]. Figure 1 and Figure 2 The system includes a transport frame 1, an assist component 2, a lifting component 3, and two sets of support components 4. The transport frame 1 is installed on a level surface, providing a stable support foundation for the entire transport platform. The lifting component 3 is fixedly installed on the transport frame 1. The assist component 2 is arranged along the length of the transport frame 1 and is slidably connected to it. The assist component 2 is also connected to the output end of the lifting component 3, allowing the lifting component 3 to drive the assist component 2 to slide along the transport frame 1. A set of support components 4 is distributed on each side of the assist component 2, with one end of each set of support components 4 hinged to the assist component 2. The transport frame 1 is equipped with a locking component 5, with each set of support components 4 connected to a locking component 5. The locking component 5 abuts against the end of the support component 4 furthest from the end connected to the assist component 2 and is located below the support component 4. This arrangement ensures that the support component 4 provides stable support to the assist component 2 under the action of the locking component 5, thereby assisting workers in loosening and tightening the locking heads of the yarn loading frame, avoiding the use of additional tools, reducing operating costs and safety hazards, and improving work efficiency.

[0026] For details, see Figure 2 and Figure 3The assist component 2 includes an assist frame 21 and assist parts 22. The assist frame 21 is slidably mounted on the transport frame 1, and the assist parts 22 are rotatably mounted in the middle of the assist frame 21. Multiple assist parts 22 are provided, arranged in rows on the transport frame 1, with at least two rows. The assist frame 21 is made of stainless steel and has a frame structure, ensuring structural strength while reducing its own weight.

[0027] The assist unit 22 includes rollers, which are rotatably connected to the assist frame 21 via roller brackets. In this embodiment, the rollers are metal rollers, which can bear heavy loads and have high wear resistance, providing stable support for the movement of the yarn loading frame on the transport platform. In other embodiments, the rollers are made of rubber-coated iron cores, which provide friction and cushioning, while the iron core ensures sufficient strength. Alternatively, the assist unit 22 includes a roller, which is a hollow metal cylinder mounted on the assist frame 21 via bearings to achieve flexible rotation and facilitate the movement of the yarn loading frame.

[0028] For details, see Figure 2 and Figure 3 Each support assembly 4 includes a support part 41, one end of which is hinged to the assist frame 21. The support part 41 includes three sets of support plates, each a rectangular plate structure made of steel. The hinge connection to the assist frame 21 can be via a pin, allowing the support part 41 to rotate around the hinge point. The other end of the support part 41 abuts against a locking assembly 5. When the support part 41 is parallel to the horizontal ground, the locking assembly 5 can fix it in place, thus supporting the assist assembly 2.

[0029] Each support section 41 is equipped with a resistance section 42, which is laid on the surface of the support section 41 and is elastic. The resistance section 42 includes a corrugated rubber pad, which is laid on the support plate and fixed by bolts and nuts. The elastic resistance section 42 laid on the support section 41 increases the friction of the support section 41, improves the stability of workers walking or stepping on it, and avoids the safety problem of slipping due to unstable support during operation.

[0030] Further, see Figure 1 and Figure 2The locking assembly 5 includes a sliding lock portion 51, a fixing portion 52, and an elastic portion 53. The assist frame 21 has multiple hollow guide portions 24. One end of the sliding lock portion 51 passes through the guide portion 24, and the other end passes through another set of guide portions 24. Elastic portions 53 are fitted onto the main body of the sliding lock portion 51 located within the guide portion 24, and limiting portions 55 are fitted onto the main body of the sliding lock portion 51 located within the guide portion 24. The limiting portions 55 are fixedly connected to the sliding lock portion 51. One end of the elastic portion 53 abuts against the limiting portion 55, and the other end abuts against the inner surface of the guide portion 24. The elastic portion 53 is elastic. A set of fixing portions 52 is connected to each end of the sliding lock portion 51. One end of the fixing portion 52 is fixedly connected to the sliding lock portion 51, and the other end is inserted into the support portion 41. Locking parts 54 are respectively inserted into both ends of the sliding lock part 51. One end of the locking part 54 passes through the guide part 24 and is inserted into the sliding lock part 51, and the other end is connected to the outer surface of the guide part 24 through a chain.

[0031] For details, see Figure 2 and Figure 3 The guide section 24 includes a hollow guide cylinder, the outer wall of one end of which is fixedly connected to the assist frame 21 via a connecting rod. The sliding lock section 51 includes a U-shaped slide rod, with each end of the U-shaped slide rod passing through a set of guide cylinders. The elastic section 53 includes a first spring, with each end of the U-shaped slide rod fitted with a set of first springs, and the first springs are located inside the guide cylinders. The limiting section 55 includes a limiting piece, with each end of the U-shaped slide rod fitted with a set of limiting pieces, the limiting pieces abutting against one end of the first springs, and both ends of the U-shaped slide rod have protruding flash for positioning and fixing the limiting pieces. The limiting pieces are then fixed by screwing bolts into the limiting pieces and flash in sequence. The fixing section 52 includes a fixing rod, one end of which passes through the guide cylinder and is fixedly connected to the U-shaped slide rod. The guide cylinder has a guide groove in the axial direction to guide the fixing rod to slide along the axial direction of the guide cylinder, and the other end of the fixing rod is inserted into the support plate. The locking part 54 includes a locking rod, one end of which is connected to the guide cylinder via a chain, and the other end of which passes through the guide cylinder and is inserted into the U-shaped slide bar.

[0032] In the initial state, the fixing part 52 is inserted into the support part 41, and the two ends of the sliding lock part 51 are also simultaneously fitted with locking parts 54 to restrict the sliding of the sliding lock part 51 along the axial direction of the guide part 24. When it is necessary to clean the support part 41, the locking parts 54 inserted into the two ends of the sliding lock part 51 are removed, and the part of the sliding lock part 51 that is not connected to the guide part 24 is pushed down relative to the booster frame 21. The limiting part 55 pushes the elastic part 53 down along the axial direction of the guide part 24, the fixing part 52 disengages from the support part 41, the pushing force is removed, the elastic part 53 pushes the fixing part 52 back to its original position, the support part 41 loses the support of the fixing part 52, and the end of the support part 41 that is away from the booster frame 21 swings down. The support part 41 is in an inclined state, causing some debris to fall off the support part 41. The remaining debris on the support part 41 is then cleaned with a brush.

[0033] When the support part 41 is locked, the part of the sliding lock part 51 that is not connected to the guide part 24 is pushed. The limiting part 55 pushes the elastic part 53 to move downward along the axial direction of the guide part 24, raising the support part 41 to a state parallel to the ground. The thrust is removed, and the elastic part 53 pushes the fixing part 52 to reset and insert into the support part 41. The two ends of the sliding lock part 51 are also simultaneously inserted into the locking part 54 to lock the sliding lock part 51 and lock the support part 41. In the above solution, the sliding lock part 51 is inserted into the guide part 24 and cooperates with the elastic part 53 and the limiting part 55 to enable the sliding lock part 51 to slide stably within the guide part 24; the fixing part 52 is inserted into the support part 41 to achieve a stable connection and locking of the support component 4; the locking part 54 locks the sliding lock part 51 to ensure that the entire locking component 5 can stably support the support part 41, thereby ensuring that the support component 4 can provide stable conditions for workers to step on or walk, and preventing the support component 4 from shaking or shifting during operation. This solves the problem of the lack of auxiliary operating structure on the transport platform, eliminates the need for additional climbing or lifting tools, reduces operating costs, and improves work efficiency.

[0034] Further, see Figure 2 and Figure 3 The assist frame 21 is provided with a buffer part 23. One end of the buffer part 23 is fixedly connected to the assist frame 21, and the other end is set towards the guide part 24.

[0035] Specifically, the buffer section 23 includes a second spring, a buffer rod, and a buffer support cylinder. One end of the buffer support cylinder is fixedly connected to the assist frame 21. The second spring is placed inside the buffer support cylinder. One end of the buffer rod is located inside the buffer support cylinder and abuts against the second spring, while the other end faces the guide cylinder. When the support plate is unlocked, the support plate swings downward toward the buffer rod. After the end of the buffer rod facing the guide cylinder contacts the support plate, the buffer rod pushes the second spring to compress, absorbing the impact force of the downward swing of the support plate, thereby protecting the assist frame 21 and the support section 41, reducing the risk of component damage, and improving the service life of the transport platform.

[0036] Further, see Figure 1 and Figure 2 The lifting assembly includes a transmission part 31, a guide part 32, and a drive part 33. The two ends of the transmission part 31 are rotatably connected to the transport frame 1, and the transmission part 31 passes through one end of the assist frame 21 and is rotatably connected to the assist frame 21. The two ends of the guide part 32 are fixedly connected to the transport frame 1, and the guide part 32 passes through the assist frame 21 away from the end connected to the transmission part 31 and is slidably connected to the assist frame 21.

[0037] For details, see Figure 2 and Figure 3The transmission unit 31 includes a transmission screw, both ends of which are rotatably connected to the transport frame 1 via bearings. The transmission screw passes through the auxiliary frame 21 and is threadedly connected to the auxiliary frame 21. The guide unit 32 includes a guide rod, which is fixedly mounted on the transport frame 1. The guide rod passes through the auxiliary frame 21 at the end away from the end connected to the transmission screw, and is slidably connected to the auxiliary frame 21. The drive unit 33 includes a drive motor, which is fixedly mounted on the transport frame 1. One end of the transmission screw is fixedly connected to the output shaft of the drive motor.

[0038] Further, see Figure 2 and Figure 3 The assist frame 21 is provided with a positioning element 6, which is installed on one side of the assist part 22 and slidably mounted on the assist frame 21. The positioning element 6 is fitted with a retaining element 7, which is elastic. The retaining spring can keep the positioning element 6 in a certain position.

[0039] For details, see Figure 2 and Figure 3 The positioning member 6 has a force-reducing part 61, which is rotatably connected to the body of the positioning member 6.

[0040] The positioning component 6 includes a positioning frame, with both ends slidably connected to the assist frame 21. The assist frame 21 has a positioning groove for guiding the positioning frame to rise and fall relative to the assist frame 21. A positioning baffle 25 is fixedly mounted on one side of the positioning frame and is fixedly connected to the assist frame 21. The positioning baffle 25 is used to further position the yarn loading frame in conjunction with the positioning frame. The reducing element includes a reducing wheel, which is a small roller mounted on the positioning frame via bearings. The reducing wheel reduces the friction between the positioning component 6 and other components, facilitating the sliding of the positioning component 6. The retaining component 7 includes a retaining spring, which is sleeved on the positioning frame.

[0041] When the yarn package loading frame is placed on the transport platform, it slides down towards the positioning member 6 under the guidance of the assist unit 22. When the loading frame reaches the positioning member, it contacts the damping wheel on the positioning member. Under the weight of the loading frame, the positioning member moves downwards. When it contacts the positioning baffle 25, the positioning member, with the help of the retaining spring, engages with the bottom of the loading frame, thus positioning it. To unlock, the positioning member is pressed down, and the loading frame is removed, disengaging from the loading frame, completing the unlocking process.

[0042] Guide wheels are installed at the bottom of the transport frame 1, and the guide wheels are rotatably connected to the transport frame 1. Guide rails are installed on the horizontal ground, and the guide wheels are slidably connected to the guide rails. The installation of guide wheels and guide rails facilitates the movement of the transport platform carrying the yarn loading frame between the dyeing vat, unloading area and loading area, improving convenience and applicability.

[0043] The working principle of the yarn loading and transport platform of this application is as follows: The drive motor rotates the transmission screw, which drives the assist frame 21 to slide along the guide rod via a threaded connection, thereby realizing the lifting and horizontal movement of the assist component 2. The metal rollers or drums on the assist frame 21 provide support for the yarn loading frame. The metal rollers bear heavy loads and are wear-resistant, while the rubber-coated rollers provide both cushioning and friction.

[0044] Under the action of the first spring, the U-shaped slide bar of the locking assembly 5 inserts into the support plate via the fixing rod, locking the support part 41 in a horizontal position. When unlocking, the locking rod is pulled out, pushing the U-shaped slide bar to compress the spring, the fixing rod disengages from the support plate, and the support part 41 tilts downward to clear debris; when locking, the spring returns to its original position, pushing the fixing rod into the support plate, which, together with the locking rod, fixes the sliding lock part 51, forming a stable support.

[0045] When the yarn loading frame slides to the positioning part 6, the damping wheel (small roller) reduces friction, and the positioning frame moves down under the action of gravity, keeping the spring so that it is locked into the bottom of the loading frame to achieve positioning; the second spring of the buffer part 23 and the buffer rod absorb the impact force when the support part 41 swings down, protecting the components.

[0046] The above technical solution achieves efficient transportation and auxiliary operation of the yarn loading frame through mechanical structure and linkage design. Specifically, the support component 4 provides a stable stepping platform through the locking component 5, the assist component 2 assists the movement of the loading frame, the positioning component 6 ensures precise fixation of the loading frame, and the buffer part 23 reduces impact loss. No additional climbing tools are needed; the locking head can be directly loosened and tightened through the support component 4, reducing operating costs and improving work efficiency. The corrugated rubber pad increases friction to prevent workers from slipping; the buffer part 23 reduces component impact and extends equipment life. The stainless steel assist frame 21 balances strength and lightweight design; the metal rollers and rubber-coated design adapt to different load requirements; and the spring return mechanism of the locking component 5 enables quick locking and cleaning. This overcomes the shortcomings of traditional transport platforms lacking auxiliary operation structures, solves the safety hazards of manual climbing operations, and addresses the problems of unstable loading frame positioning and inconvenient cleaning, making it particularly suitable for efficient operation and safety protection during yarn loading.

[0047] The above embodiments are only used to illustrate the technical solutions of this application, and are not intended to limit them. Although this application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of this application, and should all be included within the protection scope of this application.

Claims

1. A yarn loading and transport platform, characterized in that: The system includes a transport frame (1), an assist component (2), a lifting component (3), and two sets of support components (4). The transport frame (1) is installed on a horizontal ground, and the lifting component (3) is fixedly installed on the transport frame (1). The assist component (2) is arranged along the length of the transport frame (1) and is slidably connected to the transport frame (1). The assist component (2) is connected to the output end of the lifting component (3). A set of support components (4) is distributed on each side of the assist component (2), and one end of each set of support components (4) is hinged to the assist component (2). The transport frame (1) is provided with a locking component (5). Each set of support components (4) is connected to a set of locking components (5). The locking component (5) abuts against the end of the support component (4) away from the end connected to the assist component (2) and is located below the support component (4).

2. The yarn loading and transport platform according to claim 1, characterized in that: The assist component (2) includes an assist frame (21) and an assist part (22). The assist frame (21) is slidably mounted on the transport frame (1). The assist part (22) is rotatably mounted on the middle part of the assist frame (21). There are multiple assist parts (22). Multiple assist parts (22) are mounted in rows on the transport frame (1), and there are at least two rows.

3. The yarn loading and transport platform according to claim 2, characterized in that: Each set of support components (4) includes a support part (41), one end of which is hinged to the assist frame (21), and the other end abuts against the locking component (5).

4. The yarn loading rack and transport platform according to claim 3, characterized in that: The support (41) is provided with a resistance part (42), which is laid on the surface of the support (41) and has elasticity.

5. A yarn loading rack and transport platform according to claim 3, characterized in that: The locking assembly (5) includes a sliding lock part (51), a fixing part (52) and an elastic part (53). The support frame (21) has multiple hollow guide parts (24). One end of the sliding lock part (51) is inserted into the guide part (24), and the other end is inserted into another set of guide parts (24). The sliding lock part (51) is fitted with an elastic part (53) on its main body inside the guide part (24). The sliding lock part (51) is fitted with a limiting part (55) on its main body inside the guide part (24). The limiting part (55) is fixedly connected to the sliding lock part (51). One end of the elastic part (53) abuts against the limiting part (55), and the other end abuts against the inner surface of the guide part (24). The elastic part (53) is elastic. Each end of the sliding lock part (51) is connected to a set of fixing parts (52). One end of the fixing part (52) is fixedly connected to the sliding lock part (51), and the other end is inserted into the support part (41). Locking parts (54) are inserted into both ends of the sliding lock part (51). One end of the locking part (54) passes through the guide part (24) and is inserted into the sliding lock part (51), and the other end is connected to the outer surface of the guide part (24) through a chain.

6. The yarn loading rack and transport platform according to claim 1, characterized in that: The lifting assembly (3) includes a transmission part (31), a guide part (32) and a drive part (33). The two ends of the transmission part (31) are rotatably connected to the transport frame (1). The transmission part (31) passes through one end of the assist frame (21) and is rotatably connected to the assist frame (21). The two ends of the guide part (32) are fixedly connected to the transport frame (1). The guide part (32) passes through the assist frame (21) away from the end connected to the transmission part (31) and is slidably connected to the assist frame (21).

7. A yarn loading rack and transport platform according to claim 5, characterized in that: The assist frame (21) is provided with a buffer part (23), one end of which is fixedly connected to the assist frame (21), and the other end is set toward the guide part (24).

8. A yarn loading rack and transport platform according to claim 2, characterized in that: The assist frame (21) is provided with a positioning element (6), which is installed on one side of the assist part (22). The positioning element (6) is slidably installed on the assist frame (21). The positioning element (6) is fitted with a retaining element (7), and the retaining element (7) is elastic. The positioning member (6) has a force-reducing part (61), which is rotatably connected to the body of the positioning member (6).