A post-cutting epoxy reinforcing steel bar storage device used in an epoxy reinforcing steel production line

CN224739978UActive Publication Date: 2026-09-11NO 5 ENGINEERING COMPANY LTD OF CCCC FIRST HARBOR ENGINEERING COMPANY LTD +1
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Patent Information

Application Number
CN202522178578.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-15
Publication Date
2026-09-11
Estimated Expiration
2035-10-15

AI Technical Summary

Technical Problem

[0003]有鉴于此,本实用新型的目的在于提出一种环氧钢筋生产线中使用的下料后环氧钢筋储存装置,用于解决环氧钢筋下料后随意堆放,导致涂层易损的问题

Benefits of technology

[0020]通过上述技术方案,通过在置物架上设置两个沿长度方向相对设置的导向件,形成明确的导向边界,有效限制环氧钢筋在储存过程中的移动方向,避免钢筋在落料时因滑移而导致堆放紊乱或掉落,提升储存的有序性与安全性,通过在置物架表面设有用于可拆卸连接止挡件的锁止机构,使得止挡件的安装与拆卸更加灵活,便于根据不同规格或长度的钢筋进行适配性调整,同时止挡件与导向件及置物架共同构成半封闭的储存部,在环氧钢筋落入储存部后能有效定位并限制其移动,避免环氧涂层因钢筋碰撞或滑动而产生损伤,从而保证成品环氧钢筋的质量。

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Abstract

The utility model provides a kind of epoxy reinforcing bar storage device used after discharging in epoxy reinforcing bar production line, comprising: stand, guide piece and stop piece;The number of guide piece is two, two the guide piece is oppositely arranged on the upper surface of the stand along the length direction of the stand, the upper surface of the stand is equipped with the locking mechanism for detachably connecting the stop piece, the stop piece, two the guide piece and the upper surface of the stand constitute the storage part for storing epoxy reinforcing bar;The guide piece includes fixed guiding section and mounting section, the upper surface of the stand is equipped with the mounting mechanism for connecting the mounting section.Such, by reasonable layout guide piece and stop piece, epoxy reinforcing bar can be effectively prevented from rolling or misplacement, avoid epoxy coating damage, improve storage stability.
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Description

Technical Field

[0001] This utility model belongs to the technical field of epoxy rebar production equipment, and in particular relates to a post-feeding epoxy rebar storage device used in an epoxy rebar production line. Background Technology

[0002] In modern construction engineering, epoxy-coated steel bars are widely used in structures with high durability requirements, such as bridges, tunnels, and marine engineering projects, due to their excellent corrosion resistance. Epoxy-coated steel bars are typically formed by coating ordinary steel bars with epoxy resin. The manufacturing process includes multiple stages such as steel bar pretreatment, coating, curing, cooling, and cutting. In the entire production line, "cutting" refers to the process of transferring the finished epoxy-coated steel bars off the production line. However, due to a lack of specialized equipment, some production lines simply stack the epoxy-coated steel bars directly on the ground or ordinary racks after cutting, which can easily cause scratches or damage to the epoxy coating, thus affecting its anti-corrosion performance. Utility Model Content

[0003] In view of this, the purpose of this utility model is to propose a post-cut epoxy rebar storage device used in epoxy rebar production lines to solve the problem of easy damage to the coating caused by random stacking of epoxy rebar after cutting.

[0004] To achieve the above objectives, the technical solution of this utility model is implemented as follows:

[0005] A post-cut epoxy rebar storage device used in an epoxy rebar production line includes: a shelf, a guide, and a stop.

[0006] The number of guide members is two, and the two guide members are arranged opposite to each other on the upper surface of the shelf along the length direction of the shelf. The upper surface of the shelf is provided with a locking mechanism for detachably connecting the stop member. The stop member, the two guide members and the upper surface of the shelf constitute a storage part for storing epoxy steel bars.

[0007] The guide component includes a guide section and a mounting section that are fixedly connected, and the upper surface of the shelf is provided with a mounting mechanism for connecting the mounting section.

[0008] Furthermore, the installation mechanism includes an installation component and a limiting component;

[0009] The mounting component is fixedly connected to the upper surface of the shelf. The mounting section includes a vertically fixed limiting plate and a mounting plate. The guide section is constructed as a guide plate. The guide plate is fixedly connected to the limiting plate. The angle between the limiting plate and the guide plate is 120°. The mounting component has a mounting groove for receiving the mounting plate. The limiting component is disposed on the upper surface of the mounting component to limit and fix the mounting plate in the mounting groove.

[0010] Furthermore, a retaining plate is fixedly connected to the upper surface of the shelf. The retaining plate and the mounting member are arranged opposite to each other along the length direction of the shelf, and a limiting part is formed between the retaining plate and the mounting member to limit the limiting plate.

[0011] Furthermore, the limiting component includes a limiting post, a limiting rod, a limiting spring, a limiting sleeve, and a limiting baffle.

[0012] The limiting post is fixed to the upper surface of the mounting component, and the mounting component has a cavity. The mounting component has a through hole, and the through hole, the cavity, and the mounting groove are interconnected. The limiting spring, the limiting sleeve, and the limiting baffle are all located within the cavity. The limiting sleeve is movably sleeved on the limiting rod, and the limiting baffle is fixed to the limiting rod. The limiting spring is movably sleeved on the limiting rod and located between the limiting sleeve and the limiting baffle. One end of the limiting rod extends into the mounting groove through the through hole, and the other end of the limiting rod extends out of the cavity through an opening in the mounting component.

[0013] Furthermore, the mounting plate is provided with a plug slot corresponding to the limiting plug.

[0014] Furthermore, the upper surface of the storage section is provided with a rubber pad layer;

[0015] The number of rubber pads is multiple, and the multiple rubber pads are spaced apart along the length of the shelf.

[0016] Furthermore, the storage section is also provided with a binding slot, and there are multiple binding slots. The multiple binding slots are spaced apart along the length of the shelf, and each binding slot is located between two adjacent rubber pad layers.

[0017] Furthermore, the cross-sectional area of ​​the rubber pad layer gradually decreases from the opening of the storage section to the locking mechanism.

[0018] Furthermore, the stop member includes a stop block and a stop plate fixedly connected. The stop block is provided with a slot and a guide hole communicating with the slot. The locking mechanism includes a locking spring, a locking rod, a fixing plate, and a locking plate. The fixing plate is fixedly connected to the stop plate. The fixing plate is provided with a through hole for the locking rod to pass through. The locking plate is fixedly connected to the locking rod. One end of the locking rod away from the fixing plate extends into the slot through the guide hole. The locking spring is sleeved on the locking rod. One end of the locking spring abuts against the fixing plate, and the other end abuts against the locking plate. The upper surface of the shelf is provided with a locking groove corresponding to the locking rod.

[0019] Furthermore, the locking rod is also provided with a locking hole.

[0020] Through the above technical solution, by setting two guide members arranged opposite each other along the length direction on the shelf, a clear guiding boundary is formed, which effectively restricts the movement direction of epoxy steel bars during storage, and avoids the steel bars from slipping and causing stacking disorder or falling when they are dropped, thus improving the orderliness and safety of storage. By setting a locking mechanism on the surface of the shelf for detachable connection of the stop members, the installation and removal of the stop members are more flexible, and it is easy to make adaptive adjustments according to steel bars of different specifications or lengths. At the same time, the stop members, guide members and shelf together form a semi-enclosed storage part, which can effectively position and restrict the movement of epoxy steel bars after they fall into the storage part, and prevent the epoxy coating from being damaged by the collision or sliding of the steel bars, thereby ensuring the quality of the finished epoxy steel bars. Attached Figure Description

[0021] The accompanying drawings, which form part of this utility model, are used to provide a further understanding of the utility model. The illustrative embodiments of the utility model and their descriptions are used to explain the utility model and do not constitute an undue limitation of the utility model. In the drawings:

[0022] Figure 1 This is a schematic diagram of the structure of a storage device provided in an exemplary embodiment of this disclosure from one angle;

[0023] Figure 2 This is a schematic diagram of the storage device provided in an exemplary embodiment of this disclosure from another angle;

[0024] Figure 3 This is a cross-sectional view of the installation mechanism provided in an exemplary embodiment of this disclosure;

[0025] Figure 4 This is a schematic diagram of the locking mechanism provided in an exemplary embodiment of this disclosure;

[0026] Figure 5 This is a schematic diagram of the structure of the locking rod and locking plate provided in an exemplary embodiment of this disclosure;

[0027] Figure 6 This is a schematic diagram of the structure of the guide provided in an exemplary embodiment of this disclosure.

[0028] Explanation of reference numerals in the attached figures:

[0029] 1. Shelf; 101. Card plate; 1011. Limiting part; 102. Rubber pad; 103. Bundling through groove; 104. Locking groove; 2. Locking mechanism; 201. Locking spring; 202. Locking rod; 2021. Locking hole; 203. Fixing plate; 204. Locking plate; 3. Guide section; 301. Guide plate; 4. Mounting section; 401. Limiting plate; 402. Mounting plate; 4021. Insertion groove; 5. Mounting component; 501. Mounting groove; 502. Through hole; 6. Limiting component; 601. Limiting post; 6011. Cavity; 602. Limiting insertion rod; 603. Limiting spring; 604. Limiting sleeve plate; 605. Limiting baffle; 7. Stop block; 701. Card groove; 8. Stop baffle. Detailed Implementation

[0030] It should be noted that, unless otherwise specified, the embodiments and features described in these embodiments of the present invention can be combined with each other.

[0031] In the description of this utility model, it should be understood that the terms "center," "longitudinal," "lateral," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," and "outer," etc., indicating orientation or positional relationships based on the orientation or positional relationships shown in the accompanying drawings, are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model. Furthermore, the terms "first," "second," etc., are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Thus, features defined with "first," "second," etc., may explicitly or implicitly include one or more of that feature. In the description of this utility model, unless otherwise stated, "a plurality of" means two or more.

[0032] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.

[0033] The present invention will now be described in detail with reference to the accompanying drawings and embodiments.

[0034] In the specific embodiments provided in this disclosure, a post-cut epoxy rebar storage device is provided for use in an epoxy rebar production line, with reference to... Figures 1 to 6 As shown, the epoxy rebar storage device used in the epoxy rebar production line after unloading includes: a shelf 1, guide members, and stop members. There are two guide members, which are arranged opposite each other on the upper surface of the shelf 1 along the length direction of the shelf 1. The upper surface of the shelf 1 is provided with a locking mechanism 2 for detachably connecting the stop members. The stop members, the two guide members, and the upper surface of the shelf 1 constitute a storage part for storing epoxy rebar. At the same time, the guide members include a guide section 3 and an installation section 4 that are fixedly connected. The upper surface of the shelf 1 is provided with an installation mechanism for connecting the installation section 4.

[0035] Through the above technical solution, by setting two guide members arranged opposite each other along the length direction on the shelf 1, a clear guide boundary is formed, which effectively restricts the movement direction of epoxy steel bars during storage, and avoids the steel bars from being stacked disorderly or falling due to slippage when being dropped, thus improving the orderliness and safety of storage. By setting a locking mechanism 2 on the surface of the shelf 1 for detachable connection of the stop members, the installation and removal of the stop members are more flexible, and it is easy to make adaptive adjustments according to steel bars of different specifications or lengths. At the same time, the stop members, guide members and shelf 1 together form a semi-enclosed storage part, which can effectively position and restrict the movement of epoxy steel bars after they fall into the storage part, and prevent the epoxy coating from being damaged by the collision or slippage of the steel bars, thereby ensuring the quality of the finished epoxy steel bars.

[0036] In addition, the guide component consists of a guide section 3 and an installation section 4. The guide section 3 is used to guide the epoxy steel bars during unloading, so that the epoxy steel bars can be smoothly and steadily discharged into the storage section under the guidance of the guide section 3. The installation section 4 is fixed by an installation mechanism set on the shelf 1, so that the guide component can be stably and firmly installed on the shelf 1. At the same time, the installation mechanism can make the guide component have good disassembly, making it easy for personnel to disassemble and replace the guide component.

[0037] In some implementations, reference Figures 1 to 3 As shown, the installation mechanism includes an installation component 5 and a limiting component 6. The installation component 5 is fixed to the upper surface of the shelf 1. The installation section 4 includes a limiting plate 401 and an installation plate 402 that are vertically fixed. The guide section 3 is constructed as a guide plate 301, which is fixed to the limiting plate 401. The installation component 5 has an installation groove 501 for receiving the installation plate 402. The limiting component 6 is disposed on the upper surface of the installation component 5 to limit and fix the installation plate 402 in the installation groove 501. The two limiting plates 401 arranged opposite to each other can limit the epoxy rebar, so that the epoxy rebar is stably placed in the storage section.

[0038] For example, the angle between the limiting plate 401 and the guide plate 301 is 120°, that is, a receiving port for receiving epoxy resin reinforcement is formed between the two oppositely arranged guide plates 301. Figure 1 and Figure 2 As shown, the width of the receiving port gradually decreases, which allows the guide to guide the epoxy rebar more smoothly, while avoiding excessive friction between the rebar and the guide, thus reducing the risk of coating damage.

[0039] In some implementations, reference Figures 1 to 3 As shown, in order to make the guide component more securely placed on the shelf 1, a clamping plate 101 is also fixedly connected to the upper surface of the shelf 1. The clamping plate 101 and the mounting component 5 are arranged opposite to each other along the length direction of the shelf 1. A limiting part 1011 is formed between the clamping plate 101 and the mounting component 5 to limit the limiting plate 401. That is, when the mounting plate 402 is limited and fixed in the mounting groove 501, the limiting plate 401 is limited by the clamping plate 101, ensuring that the guide component will not loosen or shift during the storage of epoxy steel bars. The limiting part 1011 plays a role in preventing the guide component from shifting position and enhances the structural stability of the guide component installed on the shelf 1.

[0040] In some implementations, reference Figures 1 to 3 As shown, the limiting component 6 consists of a limiting post 601, a limiting rod 602, a limiting spring 603, a limiting sleeve 604, and a limiting baffle 605, further enhancing the stability of the guide component after it is installed and fixed. Specifically, the limiting post 601 is fixed to the upper surface of the mounting component 5, and the mounting component 5 has a cavity 6011. The mounting component 5 has a through hole 502, and the through hole 502, the cavity 6011, and the mounting groove 501 are interconnected, allowing the limiting rod 602 to pass through the through hole 502 and extend into the mounting groove 501, thereby limiting and fixing the mounting plate 402 and ensuring that the guide component will not loosen or shift during use. The other end of the limiting rod 602 protrudes from the opening of the mounting component 5, allowing the user to manually push or release it. (Refer to...) Figure 3 It is known that the limiting rod 602, which passes through the opening and extends out of the mounting part 5, is provided with a pull ring to facilitate personnel to lift the limiting rod 602; the limiting spring 603 is set between the limiting sleeve 604 and the limiting baffle 605, and is sleeved on the limiting rod 602, so that the limiting rod 602 has elastic extension and retraction capability when in use, and can always elastically abut against the mounting plate 402 after being inserted into the mounting groove 501 to limit and fix it.

[0041] Meanwhile, to ensure that the limiting rod 602 can firmly limit and fix the mounting plate 402, a insertion slot 4021 is also provided on the mounting plate 402, that is, referring to Figure 3 and Figure 6As shown, when the limiting rod 602 extends through the through hole 502 into the mounting groove 501 under the elastic force of the limiting spring 603 and abuts against the mounting plate 402, the limiting rod 602 will extend into the insertion groove 4021, thereby realizing the insertion interlock between the limiting rod 602 and the mounting plate 402. This interlocking structure not only avoids the risk of displacement of the limiting rod 602 due to external force or vibration, but also enhances the overall connection strength between the guide and the shelf 1, so that the guide remains firmly in place during use, effectively preventing problems such as epoxy steel bars slipping, stacking disorder, or scratches on the epoxy coating caused by loosening.

[0042] In some implementations, reference Figure 1 and Figure 2 As shown, the upper surface of the storage section is provided with a rubber pad 102. There are multiple rubber pads 102, which are spaced apart along the length of the shelf 1. Specifically, the rubber pads 102 can effectively reduce the friction and impact of epoxy steel bars during the stacking process, reduce the scratches or bumps that occur when the epoxy steel bars come into contact with the surface of the storage section, thereby effectively protecting the epoxy coating from damage and ensuring that its excellent anti-corrosion performance is not compromised.

[0043] Furthermore, the spaced arrangement of multiple rubber pads 102 provides uniform support across the entire storage surface, preventing excessive stress concentration at a single point. This makes the storage surface more stable, reducing potential sinking or deformation of the reinforcing bars during storage. It also better disperses and buffers the impact force when the reinforcing bars fall, further ensuring the stability of the storage environment.

[0044] In some implementations, reference Figure 1 and Figure 2 As shown, the cross-sectional area of ​​the rubber pad 102 gradually decreases from the opening of the storage section to the locking mechanism 2, which makes the overall structure of the rubber pad 102 present a sloping structure. Specifically, the sloping rubber pad 102 can naturally guide the steel bars to slide deeper into the storage section after they fall in, avoiding the problem of jamming or uneven stacking caused by the steel bars being concentrated at the opening position, and helping to improve the automatic alignment and uniform stacking effect of the steel bars.

[0045] In some implementations, reference Figure 1 and Figure 2As shown, the storage section is also provided with a binding channel 103. There are multiple binding channels 103, which are spaced apart along the length of the shelf 1. Each binding channel 103 is located between two adjacent rubber pads 102. Personnel can use the binding channels 103 to bind and package the epoxy steel bars in the storage section, so that multiple steel bars are bound into bundles in an orderly manner, avoiding confusion, slippage or misalignment of the steel bars during storage or transportation, and ensuring the stability and neatness of the steel bars during storage.

[0046] Meanwhile, since there are multiple binding slots 103, and these multiple binding slots 103 are spaced apart along the length of the shelf 1 and each binding slot 103 is located between two adjacent rubber pads 102, personnel can select the binding position before binding, making the binding position more accurate.

[0047] In some implementations, reference Figure 2 , Figure 4 and Figure 5 As shown, the stop component includes a stop block 7 and a stop plate 8 fixedly connected. The stop block 7 has a slot 701 and a guide hole communicating with the slot 701. The locking mechanism 2 includes a locking spring 201, a locking rod 202, a fixing plate 203, and a locking plate 204. The fixing plate 203 is fixedly connected to the stop plate 8. The fixing plate 203 has a through hole for the locking rod 202 to pass through, ensuring that the locking rod 202 can slide smoothly at the fixing plate 203. The locking plate 204 locks the locking rod 202. One end of the locking rod 202 away from the fixing plate 203 extends into the slot 701 through the guide hole. The locking spring 201 is sleeved on the locking rod 202. One end of the locking spring 201 abuts against the fixing plate 203, and the other end abuts against the locking plate 204. Specifically, under the elastic force of the locking spring 201, one end of the locking rod 202 can extend into the slot 701 through the guide hole and cooperate with the locking groove 104 provided on the upper surface of the shelf 1, thereby realizing reliable locking between the stop and the shelf 1.

[0048] For example, with the help of the elastic force of the locking spring 201, the locking rod 202 can automatically return to its original position and always remain engaged with the locking groove 104, effectively preventing the stop from loosening due to external force or vibration during use, thereby ensuring the sealing and stability of the epoxy rebar storage part; at the same time, the locking mechanism 2 has good disassembly, and the operator can easily push and pull the locking rod 202 to remove the locking rod 202 from the locking groove 104, thereby realizing the quick installation and disassembly of the stop and improving the overall flexibility and convenience of the stop during use.

[0049] In some implementations, reference Figure 5As shown, the locking rod 202 is also provided with a locking hole 2021. This locking hole 2021 can lock the position and height of the locking rod 202. That is, when it is necessary to disassemble the stop, the operator can pull the locking rod 202, so that one end of the locking rod 202 disengages from the locking groove 104, thereby releasing the fixed state of the stop. In order to ensure that the locking rod 202 will not affect the subsequent movement stroke during disassembly, when the locking rod 202 is pulled up, the locking hole 2021 will be pulled up above the fixing plate 203. At this time, the operator can use a metal rod such as a screw to limit the position of the locking rod 202, thereby preventing the locking rod 202 from sliding or shifting at will, and ensuring that it does not interfere with the movement process of the stop.

[0050] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A post-cutting epoxy reinforcement storage device used in an epoxy reinforcement production line, characterized by, include: Shelf (1), guides and stops; The number of guide members is two. The two guide members are arranged opposite to each other on the upper surface of the shelf (1) along the length direction of the shelf (1). The upper surface of the shelf (1) is provided with a locking mechanism (2) for detachably connecting the stop member. The stop member, the two guide members and the upper surface of the shelf (1) constitute a storage part for storing epoxy steel bars. The guide includes a guide section (3) and a mounting section (4) that are fixed together, and the upper surface of the shelf (1) is provided with a mounting mechanism for connecting the mounting section (4).

2. A post-cutting epoxy reinforcement storage device for use in an epoxy reinforcement production line according to claim 1, characterized in that: The installation mechanism includes an installation component (5) and a limiting component (6); The mounting component (5) is fixedly connected to the upper surface of the shelf (1). The mounting section (4) includes a vertically fixed limiting plate (401) and a mounting plate (402). The guide section (3) is constructed as a guide plate (301). The guide plate (301) is fixedly connected to the limiting plate (401). The angle between the limiting plate (401) and the guide plate (301) is 120°. The mounting component (5) has a mounting groove (501) for receiving the mounting plate (402). The limiting component (6) is disposed on the upper surface of the mounting component (5) to limit and fix the mounting plate (402) in the mounting groove (501).

3. The post-cutting epoxy reinforcement storage device for use in an epoxy reinforcement production line according to claim 2, characterized in that: The upper surface of the shelf (1) is also fixedly connected to a card plate (101). The card plate (101) and the mounting member (5) are arranged opposite to each other along the length direction of the shelf (1). A limiting part (1011) is formed between the card plate (101) and the mounting member (5) to limit the limiting plate (401).

4. The post-cut epoxy reinforcement storage device for use in an epoxy reinforcement production line according to claim 2, characterized in that: The limiting component (6) includes a limiting post (601), a limiting rod (602), a limiting spring (603), a limiting sleeve (604), and a limiting baffle (605); The limiting post (601) is fixedly connected to the upper surface of the mounting member (5), and the mounting member (5) has a cavity (6011). The mounting member (5) is provided with a through hole (502). The through hole (502), the cavity (6011), and the mounting groove (501) are interconnected. The limiting spring (603), the limiting sleeve (604), and the limiting baffle (605) are all located in the cavity (6011). The limiting sleeve (604) is movably sleeved on the mounting groove. A limiting rod (602) is fixedly connected to the limiting baffle (605). The limiting spring (603) is movably sleeved on the limiting rod (602) and located between the limiting sleeve (604) and the limiting baffle (605). One end of the limiting rod (602) extends into the mounting groove (501) through the through hole (502), and the other end of the limiting rod (602) extends out of the cavity (6011) through the opening opened by the mounting member (5).

5. A post-cutting epoxy reinforcement storage device for use in an epoxy reinforcement production line as claimed in claim 4, characterized in that: The mounting plate (402) is provided with a plug groove (4021) corresponding to the limiting plug rod (602).

6. A post-cutting epoxy reinforcement storage device for use in an epoxy reinforcement production line as claimed in claim 1, characterized in that: The upper surface of the storage section is provided with a rubber pad layer (102); The number of rubber pads (102) is multiple, and the multiple rubber pads (102) are spaced apart along the length direction of the shelf (1).

7. A post-cutting epoxy reinforcement storage device for use in an epoxy reinforcement production line as claimed in claim 6, characterized in that: The storage section is also provided with a binding slot (103). There are multiple binding slots (103), which are spaced apart along the length of the shelf (1) and each binding slot (103) is located between two adjacent rubber pads (102).

8. A post-cutting epoxy reinforcement storage device for use in an epoxy reinforcement production line as claimed in claim 6, characterized in that: The cross-sectional area of ​​the rubber pad layer (102) gradually decreases from the opening of the storage section to the locking mechanism (2).

9. A post-cutting epoxy reinforcement storage device for use in an epoxy reinforcement production line as claimed in claim 1, characterized in that: The stop component includes a stop block (7) and a stop plate (8) fixedly connected together. The stop block (7) is provided with a slot (701) and a guide hole communicating with the slot (701). The locking mechanism (2) includes a locking spring (201), a locking rod (202), a fixing plate (203), and a locking plate (204). The fixing plate (203) is fixedly connected to the stop plate (8). The fixing plate (203) is provided with a through hole for the locking rod (202) to pass through. The locking plate (8) is fixedly connected to the stop plate (8). (204) The locking rod (202) is fixedly connected. One end of the locking rod (202) away from the fixing plate (203) extends into the slot (701) through the guide hole. The locking spring (201) is sleeved on the locking rod (202). One end of the locking spring (201) abuts against the fixing plate (203) and the other end abuts against the locking plate (204). The upper surface of the shelf (1) is provided with a locking groove (104) corresponding to the locking rod (202).

10. A post-cutting epoxy reinforcement storage device for use in an epoxy reinforcement production line according to claim 9, characterized in that: The locking rod (202) is also provided with a locking hole (2021).