Storage rack for wire rods

By designing a storage rack for strips, the problem of inconvenience in storage and access of strips is solved, and efficient, stable and safe storage effects are achieved, adapting to different needs and simplifying maintenance.

CN222958614UActive Publication Date: 2025-06-10CHINA RAILWAY 19TH BUREAU GRP EAST CHINA ENG CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422096206.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-28
Publication Date
2025-06-10
Estimated Expiration
2034-08-28

AI Technical Summary

Technical Problem

In the prior art, the storage and access of consumables such as strips are generally ring-shaped inconvenient, resulting in difficulties in the use process.

Method used

A storage rack for a strip is designed including a base, a movable first and second support seats, and an inclined and vertically extending support rod. The support rod is provided with a partition and a stop, and the adjustability of the support seat and the length of the support rod are achieved through the slide and the stop.

Benefits of technology

It realizes efficient storage and access of strips, adapts to the needs of strips of different sizes, shapes or weights, improves storage stability, security and space utilization, and simplifies maintenance and maintenance.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN222958614U_ABST
    Figure CN222958614U_ABST
Patent Text Reader

Abstract

The utility model relates to the field of storage tools, and provides a storage rack for wire rods. The storage rack for the wire rod comprises a base; the first supporting seat is movably installed on the base, a first supporting rod is arranged on the first supporting seat, and the first supporting rod extends upwards in an inclined mode; and the second supporting seat is movably installed on the base, a second supporting rod is arranged on the second supporting seat, the second supporting rod extends vertically, and the axis of the second supporting seat and the axis of the first supporting rod are arranged in a staggered mode. According to the storage rack for the wire rods, the structure is flexible and changeable, the adaptability and the use efficiency of the storage rack are improved, the storage stability is ensured, the wire rods can be stacked and stored orderly and compactly, the storage space is greatly saved, a worker can take and place the wire rods conveniently, the storage and taking requirements of the wire rods of different specifications can be better met, and the working efficiency is improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the field of storage tools, and provides a storage rack for wire rods. Background Art

[0002] In the related art, for the storage of consumables such as wire rods which are generally in a ring shape, they are mostly stored in a stacked form, which makes it very inconvenient to take and use consumables such as wire rods which are generally in a ring shape during the taking and using process. Content of the Utility Model

[0003] An embodiment of the utility model provides a storage rack for wire rods, which is used to solve the defect that it is inconvenient to store and take wire rods in the related art, and realizes the efficient storage and taking of wire rods.

[0004] An embodiment of the utility model provides a storage rack for wire rods, including:

[0005] A base;

[0006] A first support seat, movably installed on the base, a first support rod is arranged on the first support seat, and the first support rod extends obliquely upward;

[0007] A second support seat, movably installed on the base, a second support rod is arranged on the second support seat, the second support rod extends vertically, and the second support seat is arranged in a dislocation manner with respect to the axis where the first support rod is located.

[0008] According to an embodiment of the utility model, along the length direction of the first support rod, a plurality of partition members are arranged on the first support rod.

[0009] According to an embodiment of the utility model, from the first support seat to the end of the first support rod, the height of the partition member gradually increases.

[0010] According to an embodiment of the utility model, the partition member and the first support rod are integrally formed.

[0011] According to an embodiment of the utility model, a stop member is arranged on the first support rod, and the stop member is arranged at a position on the first support rod corresponding to the first support seat.

[0012] According to an embodiment of the utility model, a reinforcing rib is arranged between the first support rod and the first support seat.

[0013] According to an embodiment of the utility model, a first slideway and a second slideway are arranged on the base, the first support seat is arranged on the first slideway, and the second support seat is arranged on the second slideway.

[0014] According to an embodiment of the present utility model, there are multiple first sliding tracks, and the multiple first sliding tracks are arranged in parallel; there are multiple second sliding tracks, and the multiple second sliding tracks are arranged in parallel.

[0015] According to an embodiment of the present utility model, along the length direction of the first sliding track, first limiting members are arranged at both ends of the first sliding track; along the length direction of the second sliding track, second limiting members are arranged at both ends of the second sliding track.

[0016] According to an embodiment of the present utility model, the length of the first support rod and / or the second support rod is adjustable.

[0017] For the storage rack for wire rods provided by the embodiment of the present utility model, by designing that the first support seat and the second support seat are both movably installed on the base, the structure of the entire storage rack is more flexible and variable. Users can adjust the positions of the first support seat and the second support seat according to actual needs, so as to adapt to the storage requirements of wire rods of different sizes, shapes or weights, improving the adaptability and use efficiency of the storage rack. The first support rod extends obliquely upward, providing a stable support surface for the wire rods, effectively preventing the wire rods from rolling or tilting during storage, and ensuring the stability of storage. At the same time, the second support rod extends vertically and is arranged in a staggered manner with the first support rod, which not only increases the overall stability of the storage rack, but also reduces the stress concentration caused by a single support point, improving the safety of the storage rack. The combination of the obliquely arranged first support rod and the vertically arranged second support rod forms different storage spaces, enabling the wire rods to be stacked orderly and compactly, greatly saving storage space. This design is especially suitable for efficiently storing a large number of wire rods in a limited space, improving the space utilization rate. Due to the design of the first support rod and the second support rod, the wire rods can naturally form a certain inclination angle or interval when stored, facilitating the staff to pick and place operations. At the same time, the design of the movable support seat enables the support position to be adjusted when necessary to better adapt to the access requirements of wire rods of different specifications, improving the work efficiency. The storage rack of the embodiment of the present utility model has a relatively simple structure, mainly composed of a base, a support seat and a support rod, with few components, easy to process and assemble, thereby reducing the manufacturing cost. At the same time, the simple structure is also convenient for subsequent maintenance and repair. Description of the Drawings

[0018] In order to more clearly illustrate the technical solutions in the present utility model or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the drawings in the following description are some embodiments of the present utility model. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0019] Figure 1It is a schematic structural diagram of an angle of the storage rack for wire rods provided by the present utility model.

[0020] Figure 2 It is a schematic structural diagram of another angle of the storage rack for wire rods provided by the present utility model.

[0021] Reference numerals:

[0022] 100, base; 102, first support seat; 104, first support rod; 106, second support seat; 108, second support rod; 110, partition member; 112, stopper; 114, reinforcing rib; 116, first slideway; 118, second slideway. Detailed implementation manners

[0023] The following further describes in detail the implementation manners of the present utility model in conjunction with the drawings and embodiments. The following embodiments are used to illustrate the present utility model, but cannot be used to limit the scope of the present utility model.

[0024] As Figures 1 to 2 shown, an embodiment of the present utility model provides a storage rack for wire rods, including a base 100; a first support seat 102, movably installed on the base 100, a first support rod 104 is arranged on the first support seat 102, and the first support rod 104 extends obliquely upward; a second support seat 106, movably installed on the base 100, a second support rod 108 is arranged on the second support seat 106, the second support rod 108 extends vertically, and the axis where the second support seat 106 is located is misaligned with the axis where the first support rod 104 is located.

[0025] According to the storage rack for wire rods provided by the embodiments of the present utility model, by designing that the first support seat 102 and the second support seat 106 are both movably installed on the base 100, the structure of the entire storage rack becomes more flexible and variable. Users can adjust the positions of the first support seat 102 and the second support seat 106 according to actual needs, so as to adapt to the storage requirements of wire rods of different sizes, shapes or weights, improving the adaptability and use efficiency of the storage rack. The first support rod 104 extends obliquely upward, providing a stable support surface for the wire rods, effectively preventing the wire rods from rolling or tilting during storage, and ensuring the stability of storage. At the same time, the second support rod 108 extends vertically and is arranged offset from the first support rod 104, which not only increases the overall stability of the storage rack, but also reduces the stress concentration caused by a single support point, improving the safety of the storage rack. The combination of the obliquely arranged first support rod 104 and the vertically arranged second support rod 108 forms different storage spaces, enabling the wire rods to be stacked orderly and compactly, greatly saving storage space. This design is especially suitable for efficiently storing a large number of wire rods in a limited space, improving the space utilization rate. Due to the design of the first support rod 104 and the second support rod 108, the wire rods can naturally form a certain inclination angle or interval when stored, facilitating the picking and placing operations of the staff. At the same time, the design of the movable support seat enables the support position to be adjusted when necessary to better adapt to the access requirements of wire rods of different specifications, improving the work efficiency. The storage rack of the embodiments of the present utility model has a relatively simple structure, mainly composed of a base 100, support seats and support rods, with few components, easy to process and assemble, thereby reducing the manufacturing cost. At the same time, the simple structure is also convenient for subsequent maintenance and upkeep.

[0026] Please continue to refer to Figures 1 to 2 , the base 100 serves as the basic support part of the entire storage rack. The base 100 is designed to be stable and can bear the weights of the first support seat 102, the second support seat 106 and the wire rods thereon. The base 100 can be made of metal, plastic or other durable materials to ensure its stability and durability.

[0027] The first support seat 102 is movably installed on the base 100, allowing users to adjust its position according to needs. The first support seat 102 is provided with a first support rod 104, and this support rod extends obliquely upward, forming an inclined support surface. This design helps the wire rods to remain stable during storage, preventing rolling or tilting.

[0028] The first support rod 104 is a key component connecting the first support seat 102 and the wire rods. It extends obliquely upward, providing the necessary support force for the wire rods. At the same time, the inclined angle can be optimized according to the size and weight of the wire rods to ensure the best storage effect.

[0029] Similar to the first support base 102, the second support base 106 is also movably mounted on the base 100. However, a vertically extending second support rod 108 is provided on the second support base 106. This design aims to provide additional support points, increase the overall stability of the storage rack, and allow the wire rods to be stacked in the vertical direction.

[0030] The second support rod 108 extends vertically and is arranged offset from the first support rod 104. This layout helps to reduce stress concentration and improve the load-bearing capacity of the storage rack. At the same time, the vertical support rods also facilitate the stacking of wire rods.

[0031] According to an embodiment of the present invention, along the length direction of the first support rod 104, a plurality of partition members 110 are provided on the first support rod 104.

[0032] In a specific embodiment of the present invention, in order to further improve the orderliness and safety of wire rod storage, along the length direction of the first support rod 104, a plurality of partition members 110 are provided on the first support rod 104. These partition members 110 are fixed to the first support rod 104 at certain intervals, forming a plurality of independent storage areas or levels for separating and supporting different layers or groups of wire rods.

[0033] The partition members 110 can be made of the same or similar material as the first support rod 104 to ensure their strength and durability. They can be in the form of simple cross beams, partitions or clamps, etc. The specific shape and structural design depend on factors such as the size, shape and weight of the wire rods. By adjusting the number, spacing and position of the partition members 110, users can flexibly configure the storage space on the storage rack to meet different storage requirements.

[0034] The setting of the partition members 110 enables the wire rods to be stacked and stored in a certain level and order, avoiding chaos and interlacing, and improving the orderliness and manageability of storage. The partition members 110 not only serve as separators but also provide additional support points for the wire rods. They share the pressure of the wire rods on the first support rod 104, enhancing the load-bearing capacity and stability of the storage rack. On the inclined first support rod 104, the partition members 110 can effectively prevent the wire rods from slipping or rolling due to gravity, ensuring the safety of storage. Through the configuration of the partition members 110, users can divide storage spaces of different sizes according to needs to adapt to the storage requirements of wire rods of different sizes and quantities, thereby improving space utilization. The partition members 110 make the access and management of wire rods more convenient. Users can easily identify different layers or groups of wire rods and perform operations such as classification, counting or inspection.

[0035] According to an embodiment of the present utility model, from the end of the first support base 102 to the end of the first support rod 104, the height of the separator 110 gradually increases.

[0036] In a specific embodiment of the present utility model, for the separator 110 provided on the first support rod 104, a design with a gradually increasing height is adopted. Specifically, starting from the first support base 102 and extending along the length direction of the first support rod 104 towards its end, the height of the separator 110 gradually increases. This design enables each separator 110 to better adapt to and support the wire rod located above it. Especially on the inclined first support rod 104, this design with an increasing height is particularly important.

[0037] The increase in the height of the separator 110 can be achieved in various ways. For example, by changing the thickness and height dimensions of the separator 110 itself, or by adopting a special structural design at the connection between the separator 110 and the first support rod 104 to achieve a gradual transition in height. In addition, the spacing between the separators 110 can also be adjusted accordingly to ensure that the wire rods can be stacked stably on the separators 110 and prevent slipping or rolling.

[0038] The design of the gradually increasing height of the separator 110 enables each separator 110 to better adapt to and support the weight and pressure of the wire rod above it. Especially on the inclined first support rod 104, this design can ensure that the wire rods remain stable during the stacking process and prevent slipping or rolling due to the action of gravity. Through the design of the increasing height of the separator 110, a more stable structure can be formed during the stacking of the wire rods. Even in the case of a high stacking layer number, the lower separators 110 can provide sufficient supporting force to ensure the safety of the entire stacking structure. The design of the increasing height of the separator 110 helps to optimize the utilization of storage space. On the inclined first support rod 104, as the height increases, the spacing between the wire rods may gradually decrease. By adjusting the height and spacing of the separators 110, it can be ensured that the wire rods can not only remain stable during the stacking process but also make full use of the limited storage space. The design of the increasing height of the separator 110 also makes the operation of taking and placing the wire rods more convenient. Users can select separators 110 with different heights for taking and placing operations according to their needs, without worrying about the instability or difficulty in taking and placing the wire rods due to excessive stacking. Overall, this design of the increasing height of the separator 110 improves the user experience of the storage rack. Users can feel a more stable, safe and convenient storage effect during use, thereby increasing their satisfaction and trust in the product.

[0039] According to an embodiment of the present utility model, the separator 110 and the first support rod 104 are integrally formed.

[0040] In a specific embodiment of the present utility model, the partition member 110 and the first support rod 104 adopt an integrally formed design. This design means that the partition member 110 is not installed on the first support rod 104 as an independent component, but is directly integrated with the first support rod 104 during the manufacturing process to form an integral structure. Integral forming can be achieved through injection molding, casting, forging, or other suitable manufacturing processes, depending on the materials used and design requirements.

[0041] The integrally formed partition member 110 and the first support rod 104 have extremely high connection strength and stability, without the need for additional fixing parts or connection processes. This design not only simplifies the manufacturing process, reduces production costs, but also improves the overall strength and durability of the storage rack. At the same time, the integral structure also reduces potential safety hazards caused by loose or detached components.

[0042] The integral forming of the partition member 110 and the first support rod 104 makes the entire support structure more robust and durable. When carrying the tray bars, it can more effectively disperse and bear the pressure, reducing the risk of damage caused by stress concentration. The integrally formed design simplifies the manufacturing process and reduces the steps of assembly and debugging. This not only improves production efficiency but also reduces quality problems caused by improper assembly.

[0043] According to an embodiment of the present utility model, a stop member 112 is provided on the first support rod 104, and the stop member 112 is arranged at a position on the first support rod 104 corresponding to the first support base 102.

[0044] In a specific embodiment of the present utility model, in order to further enhance the storage stability and safety of the tray bars on the first support rod 104, a stop member 112 is particularly provided on the first support rod 104. The stop member 112 is installed at a position on the first support rod 104 corresponding to the first support base 102, that is, at one end close to the base 100. Its function is to serve as the starting limit point for stacking the tray bars, preventing the tray bars from slipping or exceeding the predetermined range from the starting end of the first support rod 104 during the stacking process.

[0045] The stop member 112 can be made of the same or similar material as the first support rod 104 to ensure its strength and durability. The shape and size design of the stop member 112 should consider the size, shape, and stacking method of the tray bars to ensure that it can effectively function as a stop. The stop member 112 can be installed on the first support rod 104 through welding, bolt connection, or other suitable fixing methods to ensure its stability and reliability.

[0046] The setting of the stopper 112 effectively prevents the wire rod from slipping off the starting end of the first support rod 104 or exceeding the predetermined range during the stacking process, thereby enhancing the stability of the wire rod storage. By restricting the stacking range of the wire rod, the stopper 112 reduces the safety hazards caused by the slipping or improper stacking of the wire rod, and improves the safety of use of the entire storage rack.

[0047] According to an embodiment of the present invention, a reinforcing rib 114 is provided between the first support rod 104 and the first support base 102.

[0048] In a specific embodiment of the present invention, in order to enhance the connection strength and stability between the first support rod 104 and the first support base 102, a reinforcing rib 114 is particularly provided between the first support rod 104 and the first support base 102. As a structural reinforcement, the reinforcing rib 114 is designed to withstand and disperse the forces from the stacking of the wire rod, so as to reduce the stress concentration on the connection part, thereby extending the service life of the storage rack.

[0049] The reinforcing rib 114 can be made of the same or similar materials as the first support rod 104 and the first support base 102, such as metal, alloy or engineering plastic, etc., to ensure its strength and durability. Its shape and size design should consider the force condition and stress distribution of the connection part to maximize its reinforcement effect. The reinforcing rib 114 can be installed between the first support rod 104 and the first support base 102 by welding, bolt connection or other suitable fixing methods to ensure its stability and reliability.

[0050] The setting of the reinforcing rib 114 effectively enhances the connection strength between the first support rod 104 and the first support base 102, making the entire support structure more stable and reliable. By withstanding and dispersing the forces from the stacking of the wire rod, the reinforcing rib 114 improves the load-bearing capacity of the storage rack, enabling it to safely carry more wire rods. The reinforcing rib 114 reduces the stress concentration at the connection part, reduces the risk of damage caused by long-term stress, and thereby extends the service life of the storage rack. The addition of the reinforcing rib 114 improves the overall stability of the storage rack, enabling the wire rod to maintain a more stable state during the stacking process, and reducing the safety hazards caused by shaking or tilting.

[0051] According to an embodiment of the present invention, a first slideway 116 and a second slideway 118 are provided on the base 100, the first support base 102 is arranged on the first slideway 116, and the second support base 106 is arranged on the second slideway 118.

[0052] In a specific embodiment of the present utility model, in order to enhance the flexibility and adjustability of the storage rack, a first slideway 116 and a second slideway 118 are specially designed on the base 100. These two slideways allow the first support base 102 and the second support base 106 (or multiple support bases if more are included in the design) to slide and adjust on the base 100 to adapt to the storage requirements of wire rods of different sizes and shapes.

[0053] The first slideway 116 and the second slideway 118 are generally designed in the form of grooves or tracks, which can stably guide the support base to move in the horizontal direction. The bottom of the support base is equipped with sliding devices (such as sliders, pulleys or guide rails) that match the slideway to ensure that the support base can slide smoothly on the slideway and is not easily detached.

[0054] In addition, the design of the slideway can also include a locking mechanism that allows the user to fix the support base in place after adjusting it to the appropriate position to prevent it from moving or sliding during use. This locking mechanism can be a manually operated locking screw, buckle or button, etc.

[0055] Through the design of the first slideway 116 and the second slideway 118, the user can easily adjust the position of the support base on the base 100 to adapt to the storage requirements of wire rods of different sizes and shapes, improving the flexibility and applicability of the storage rack. The sliding adjustment function of the support base enables the user to adjust the storage layout of the wire rods according to needs, thereby making more reasonable use of the space of the storage rack and improving the space utilization rate.

[0056] According to an embodiment of the present utility model, there are multiple first slideways 116, and the multiple first slideways 116 are arranged in parallel; there are multiple second slideways 118, and the multiple second slideways 118 are arranged in parallel; along the length direction of the first slideway 116, first limit members are provided at both ends of the first slideway 116, and along the length direction of the second slideway 118, second limit members are provided at both ends of the second slideway 118.

[0057] In a specific embodiment of the present utility model, in order to further enhance the flexibility and safety of the storage rack, the slideway design on the base 100 is further optimized. Specifically, the first slideway 116 is designed to be multiple, and these first slideways 116 are arranged in parallel on the base 100. Similarly, the second slideway 118 is also designed to be multiple and arranged in parallel. Such a design allows the user to adjust the position of the support base within a larger range to adapt to more diverse storage requirements of wire rods.

[0058] In addition, to ensure that the movement of the support base on the slideway does not exceed a predetermined range, thereby avoiding possible damage or safety hazards, first limit members are provided at both ends of the first slideway 116 along the length direction of the first slideway 116; similarly, second limit members are provided at both ends of the second slideway 118 along the length direction of the second slideway 118. These limit members can be simple stoppers, screw nuts or other forms of fixing devices, and their function is to limit the maximum movement distance of the support base on the slideway to ensure that the support base is always within a safe movement range.

[0059] The multiple first slideways 116 and second slideways 118 arranged in parallel provide users with more adjustment options, enabling the position of the support base to more flexibly adapt to the storage requirements of wire rods of different sizes and shapes. The setting of the first limit members and the second limit members ensures that the movement of the support base on the slideway does not exceed a predetermined range, thereby avoiding damage or safety hazards caused by excessive movement.

[0060] According to an embodiment of the present utility model, the length of the first support rod 104 and / or the second support rod 108 is adjustable.

[0061] In a specific embodiment of the present utility model, in order to further improve the adaptability and flexibility of the storage rack, a function of adjustable length of the first support rod 104 and / or the second support rod 108 is specifically designed. This means that the user can adjust the length of the support rod according to actual needs to adapt to wire rods of different heights or different stacking requirements.

[0062] The function of adjustable length of the support rod can be achieved in various ways. For example, telescopic design: the support rod can be designed as a multi-section telescopic type, and the overall length is changed by adjusting the relative positions between the sections. This design is usually equipped with a locking mechanism to ensure stable fixation after the length is adjusted. Thread adjustment: One end or both ends of the support rod can be designed with threads and the length is adjusted by cooperating with nuts. The user only needs to rotate the nut to change the effective length of the support rod. Pin or buckle design: Multiple jacks or buckle points are provided on the support rod, and the user can select appropriate jacks or buckle points according to needs to fix the length of the support rod.

[0063] The design of adjustable length of the support rod enables the storage rack to adapt to more diverse storage requirements of wire rods. Whether it is wire rods of different heights or different stacking methods, they can be well supported. The user can adjust the length of the support rod at any time according to the actual use situation, without replacing the entire support rod or purchasing a new storage rack, improving the flexibility of use.

[0064] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it; although the present invention has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements on some of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.

Claims

1. A rack for wire rods, characterized in that: include: base(100); A first support seat (102) is movably mounted on the base (100), a first support rod (104) being provided on the first support seat (102), the first support rod (104) extending obliquely upward; A second support seat (106) is movably mounted on the base (100), a second support rod (108) is arranged on the second support seat (106), the second support rod (108) extends vertically, and the second support seat (106) and the first support rod (104) are arranged at an offset axis.

2. The rack for wire rod according to claim 1, characterized in that: A plurality of partitions (110) are provided on the first support rod (104) along the length direction of the first support rod (104).

3. The rack for wire rod according to claim 2, characterized in that: The height of the partition (110) gradually increases from the first support seat (102) to the end of the first support rod (104).

4. The rack for wire rod according to claim 2, characterized in that: The partition (110) and the first support rod (104) are integrally formed.

5. The rack for wire rod according to claim 1, characterized in that: A stopper (112) is provided on the first support rod (104), and the stopper (112) is provided at a position on the first support rod (104) corresponding to the first support seat (102).

6. The storage rack for wire rod according to claim 1, characterized in that: A reinforcing rib (114) is provided between the first support rod (104) and the first support seat (102).

7. The rack for wire rods according to any one of claims 1 to 6, characterized in that: A first slideway (116) and a second slideway (118) are arranged on the base (100); the first support seat (102) is arranged on the first slideway (116); and the second support seat (106) is arranged on the second slideway (118).

8. The storage rack for wire rod according to claim 7, characterized in that: There are a plurality of first slideways (116), and the plurality of first slideways (116) are arranged in parallel; there are a plurality of second slideways (118), and the plurality of second slideways (118) are arranged in parallel.

9. The storage rack for wire rod according to claim 7, characterized in that: First stoppers are provided at both ends of the first slideway (116) along the length direction of the first slideway (116), and second stoppers are provided at both ends of the second slideway (118) along the length direction of the second slideway (118).

10. The storage rack for wire rod according to any one of claims 1 to 6, characterized in that: The length of the first support rod (104) and / or the second support rod (108) is adjustable.