Telescopic super-long leading tape storage device
By designing a scalable, ultra-long lead-ahead belt storage device, the problems of low efficiency and safety hazards in the storage and transportation of carbon steel lead-ahead belts have been solved, achieving efficient and safe storage and transportation of carbon steel lead-ahead belts.
Patent Information
- Application Number
- CN202423121488.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-17
- Publication Date
- 2025-12-09
- Estimated Expiration
- 2034-12-17
AI Technical Summary
During the cold rolling process, the storage and transportation efficiency of carbon steel strips is low and there are safety hazards, especially when they are frequently transferred between continuous annealing units and preparation units that are far apart, which can easily lead to accidents.
Design a retractable ultra-long lead belt storage device, including telescopic mechanisms in the length and width directions, guiding mechanisms, locking mechanisms, anti-slip and anti-overflow mechanisms, and hoisting mechanisms. Through the cooperation of these mechanisms, efficient storage and transportation of carbon steel lead belts can be achieved.
It increases the storage capacity and transportation efficiency of carbon steel conveyor belts, reduces safety risks, avoids shaking and spillage, and ensures the safety of the transportation process.
Smart Images

Figure CN223645249U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of lead-ahead storage technology, and in particular to a retractable ultra-long lead-ahead storage device. Background Technology
[0002] The currently used ZR22B54 20-roll Sendzimir reversible cold rolling mill has a maximum rolling force of 800t. Employing a reversible rolling mode, it can roll a 2.3mm thick raw material coil into cold-rolled products with a thickness of 0.2 to 0.6mm. To reduce production costs, a raw material guide strip welding process is added before rolling. Using welding equipment at the preparation unit, carbon steel guide strips with a length of 10 to 20m and a width of 3.0 to 6.0mm are welded to both the head and tail of the raw material coil. These carbon steel guide strips are used during the rolling process to clamp the inner ring of the mandrel, reducing the unrolled section length of the raw material coil and improving the yield of the rolled product.
[0003] Before the annealing process of cold-hardened products, special equipment is needed at the inlet of the continuous annealing unit to cut off the carbon steel guide strips from the head and tail of the raw material coils. After collecting the carbon steel guide strips, they are returned to the preparation unit for reuse. However, in actual operation, due to the long distance between the inlet of the continuous annealing unit and the preparation unit, 10 to 15 tons of carbon steel guide strips need to be cut off and stored at the inlet of the continuous annealing unit. After these carbon steel guide strips are bundled and tied, they are hoisted back to the preparation unit. If the production capacity is large, the carbon steel guide strips need to be frequently moved. If the carbon steel guide strips are moved in the current way, not only is the operation inefficient, but the safety factor is also low, and accidents such as scratches, drops, and collisions are likely to occur.
[0004] Based on the above factors, a retractable ultra-long lead-ahead storage device has been invented. Utility Model Content
[0005] To address the aforementioned technical problems, a retractable, ultra-long guide belt storage device is provided. This invention not only improves the efficiency of hoisting carbon steel guide belts but also enhances the safety factor during such hoisting. The technical means employed in this invention are as follows:
[0006] A retractable ultra-long lead-ahead storage device includes a storage device body, the storage device body including a length-direction telescopic mechanism, a first length-direction storage seat and a second length-direction storage seat; the telescopic direction of the length-direction telescopic mechanism is consistent with the length direction of the storage device body; the first length-direction storage seat and the second length-direction storage seat are respectively installed at both ends of the telescopic direction of the length-direction telescopic mechanism.
[0007] Furthermore, the storage device body also includes a length direction guiding mechanism; the length direction guiding mechanism includes a length direction slide groove and a length direction slide rod, the length direction of the length direction slide rod is consistent with the length direction of the length direction slide groove, the length direction slide rod is installed in the length direction slide groove and can move along the length direction of the length direction slide groove; the length direction slide groove and the length direction slide rod are respectively installed on a first length direction storage base and a second length direction storage base, and the length direction of the length direction slide groove and the length direction of the length direction slide rod are both consistent with the length direction of the storage device body.
[0008] Furthermore, the storage device body also includes a length direction locking mechanism; the length direction locking mechanism includes a length direction locking bolt and a length direction locking nut, the length direction locking nut being threaded onto the shank of the length direction locking bolt; the shank of the length direction locking bolt can pass through a length direction sliding groove and a length direction sliding rod along the width direction of the storage device body, when the shank of the length direction locking bolt passes through the length direction sliding groove and the length direction sliding rod along the width direction of the storage device body and the length direction locking nut is threaded onto the shank of the length direction locking bolt, the length direction sliding groove and the length direction sliding rod are located between the head of the length direction locking bolt and the length direction locking nut.
[0009] Furthermore, the first length-direction storage base includes a first width-direction telescopic mechanism, a first width-direction storage base, and a second width-direction storage base. The telescopic direction of the first width-direction telescopic mechanism is consistent with the width direction of the storage device body. The first width-direction storage base and the second width-direction storage base are respectively installed at both ends of the telescopic direction of the first width-direction telescopic mechanism. The second length-direction storage base includes a second width-direction telescopic mechanism, a third width-direction storage base, and a fourth width-direction storage base. The telescopic direction of the second width-direction telescopic mechanism is consistent with the width direction of the storage device body. The third width-direction storage base and the fourth width-direction storage base are respectively installed at both ends of the telescopic direction of the second width-direction telescopic mechanism.
[0010] Furthermore, the first length-direction storage base also includes a first width-direction guiding mechanism; the first width-direction guiding mechanism includes a first width-direction sliding groove and a first width-direction sliding rod, the length direction of the first width-direction sliding rod is consistent with the length direction of the first width-direction sliding groove, the first width-direction sliding rod is installed in the first width-direction sliding groove and can move along the length direction of the first width-direction sliding groove; the first width-direction sliding groove and the first width-direction sliding rod are respectively installed on the first width-direction storage base and the second width-direction storage base, the length directions of the first width-direction sliding groove and the first width-direction sliding rod are both consistent with the width direction of the storage device body; the second length-direction storage base also includes a second width-direction guiding mechanism; the second width-direction guiding mechanism includes a second width-direction sliding groove and a second width-direction sliding rod, the length direction of the second width-direction sliding rod is consistent with the length direction of the second width-direction sliding groove, the second width-direction sliding rod is installed in the second width-direction sliding groove and can move along the length direction of the second width-direction sliding groove; the second width-direction sliding groove and the second width-direction sliding rod are respectively installed on the third width-direction storage base and the fourth width-direction storage base, the length directions of the second width-direction sliding groove and the second width-direction sliding rod are both consistent with the width direction of the storage device body.
[0011] Furthermore, the first length-direction storage base also includes a first width-direction locking mechanism; the first width-direction locking mechanism includes a first width-direction locking bolt and a first width-direction locking nut, the first width-direction locking nut being threaded onto the shank of the first width-direction locking bolt; the shank of the first width-direction locking bolt can pass through a first width-direction sliding groove and a first width-direction sliding rod along the length direction of the storage device body. When the shank of the first width-direction locking bolt passes through the first width-direction sliding groove and the first width-direction sliding rod along the length direction of the storage device body and the first width-direction locking nut is threaded onto the shank of the first width-direction locking bolt, the first width-direction sliding groove and the first width-direction sliding rod are located at the head of the first width-direction locking bolt and the first width-direction locking nut. The second length direction storage base also includes a second width direction locking mechanism; the second width direction locking mechanism includes a second width direction locking bolt and a second width direction locking nut, the second width direction locking nut being threaded onto the shank of the second width direction locking bolt; the shank of the second width direction locking bolt can pass through the second width direction sliding groove and the second width direction sliding rod along the length direction of the storage device body, when the shank of the second width direction locking bolt passes through the second width direction sliding groove and the second width direction sliding rod along the length direction of the storage device body and the second width direction locking nut is threaded onto the shank of the second width direction locking bolt, the second width direction sliding groove and the second width direction sliding rod are located between the head of the second width direction locking bolt and the second width direction locking nut.
[0012] Furthermore, the storage device body also includes an anti-slip mechanism; the anti-slip mechanism includes a first baffle and a second baffle; the first baffle is installed on the first length direction storage seat at one end away from the second length direction storage seat, and the second baffle is installed on the second length direction storage seat at one end away from the first length direction storage seat.
[0013] Furthermore, the storage device body also includes an anti-overflow mechanism; the anti-overflow mechanism includes a first stop post and a second stop post; the first stop post can be installed on the end of the storage base in the first width direction away from the storage base in the second width direction or on the end of the storage base in the third width direction away from the storage base in the fourth width direction, and the second stop post can be installed on the end of the storage base in the second width direction away from the storage base in the first width direction or on the end of the storage base in the fourth width direction away from the storage base in the third width direction.
[0014] Furthermore, the storage device body also includes a pad mechanism; the pad mechanism includes a pad groove, a pad rod, a pad locking bolt, and a pad locking nut. The length direction of the pad rod is consistent with the length direction of the pad groove. The pad rod is installed in the pad groove and can move along the length direction of the pad groove. The pad locking nut can be threaded onto the rod of the pad locking bolt. The pad groove can be installed on a storage seat in a first width direction or a storage seat in a third width direction. The pad rod can be installed on a storage seat in a second width direction. The storage unit can also be installed on a fourth width direction storage unit. The length direction of the pad groove and the length direction of the pad rod are both consistent with the width direction of the storage device body. The shank of the pad locking bolt can pass through the pad groove and the pad rod along the length direction of the storage device body. When the shank of the pad locking bolt passes through the pad groove and the pad rod along the length direction of the storage device body and the pad locking nut is threaded onto the shank of the pad locking bolt, the pad groove and the pad rod are located between the head of the pad locking bolt and the pad locking nut.
[0015] Furthermore, the storage device body also includes a hoisting mechanism; the hoisting mechanism includes a first lifting lug and a second lifting lug; the first lifting lug can be installed on the end of the storage base in the first width direction away from the storage base in the second width direction or on the end of the storage base in the third width direction away from the storage base in the fourth width direction, and the second lifting lug can be installed on the end of the storage base in the second width direction away from the storage base in the first width direction or on the end of the storage base in the fourth width direction away from the storage base in the third width direction.
[0016] This utility model has the following advantages:
[0017] 1. In this utility model, the control length-direction telescopic mechanism drives the first length-direction storage seat and the second length-direction storage seat to move in opposite directions, increasing the length of the storage device body, enabling this utility model to store longer carbon steel guide belts, increasing the storage capacity of the carbon steel guide belts of this utility model, and thus improving the transportation efficiency of the carbon steel guide belts of this utility model.
[0018] 2. In this utility model, the length direction slide groove and the length direction slide rod can guide the first length direction storage seat and the second length direction storage seat, so that there will be no shaking in the width direction of the storage device body between the first length direction storage seat and the second length direction storage seat.
[0019] 3. In this utility model, the length direction slide groove and the length direction slide rod are clamped together by the length direction locking bolt and the length direction locking nut, thereby locking the length of the storage device body.
[0020] 4. In this utility model, the first width-direction telescopic mechanism drives the first width-direction storage seat and the second width-direction storage seat to move in opposite directions, and the second width-direction telescopic mechanism drives the third width-direction storage seat and the fourth width-direction storage seat to move in opposite directions, thereby increasing the width of the storage device body. This enables the utility model to store wider carbon steel guide belts, increases the storage capacity of the carbon steel guide belts, and thus improves the transportation efficiency of the carbon steel guide belts.
[0021] 5. In this utility model, the first width direction slide groove and the first width direction slide rod can guide the first width direction storage base and the second width direction storage base, so that there will be no shaking of the storage device body in the length direction between the first width direction storage base and the second width direction storage base; at the same time, the second width direction slide groove and the second width direction slide rod can guide the third width direction storage base and the fourth width direction storage base, so that there will be no shaking of the storage device body in the length direction between the third width direction storage base and the fourth width direction storage base.
[0022] 6. In this utility model, the first width direction slide groove and the first width direction slide rod are clamped together by the first width direction locking bolt and the first width direction locking nut, and the second width direction slide groove and the second width direction slide rod are clamped together by the second width direction locking bolt and the second width direction locking nut, thereby locking the width of the storage device body.
[0023] 7. In this utility model, the first baffle and the second baffle can prevent the carbon steel guide belt in this utility model from moving along the length of the storage device body.
[0024] 8. In this utility model, the first and second stop posts can prevent the carbon steel guide strip on this utility model from overflowing from both sides of the width direction of the storage device body.
[0025] 9. In this utility model, the pad groove and the pad rod can support the carbon steel guide belt on this utility model, preventing the carbon steel guide belt from directly contacting the storage seats in the first width direction, the second width direction, the third width direction, and the fourth width direction; at the same time, the pad groove and the pad rod are clamped together by the pad locking bolt and the pad locking nut, thereby locking the length of the pad mechanism.
[0026] 10. In this utility model, the utility model and the carbon steel guide belt are lifted by the first lifting lug and the second lifting lug. Attached Figure Description
[0027] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0028] Figure 1 This is an overall structural diagram of a retractable ultra-long lead-stretcher storage device according to Embodiment 1 of this utility model;
[0029] Figure 2 This is an overall structural diagram of the length direction guiding mechanism and the length direction locking mechanism in Embodiment 1 of this utility model;
[0030] Figure 3 This is an overall structural diagram of the second width direction guiding mechanism and the second width direction locking mechanism in Embodiment 1 of this utility model;
[0031] Figure 4 This is an overall structural diagram of the first width direction guiding mechanism and the first width direction locking mechanism in Embodiment 1 of this utility model;
[0032] Figure 5 This is an overall structural diagram of the pad block mechanism in Embodiment 1 of this utility model;
[0033] Reference numerals: 1-First baffle; 2-First width direction storage seat; 3-Second width direction storage seat; 4-First lifting lug; 5-Second lifting lug; 6-First stop post; 7-Second stop post; 8-Length direction telescopic mechanism; 9-Length direction guide mechanism; 10-Second width direction guide mechanism; 11-Third width direction storage seat; 12-Fourth width direction storage seat; 13-Second width direction telescopic mechanism; 14-Second baffle; 15-Padded block mechanism; 16-First width direction telescopic mechanism; 17-First width direction guide mechanism; 18-Length direction locking mechanism; 19-First width direction locking mechanism; 20-Second width direction... Locking mechanism; 901 - Length direction slide groove; 902 - Length direction slide rod; 1001 - Second width direction slide groove; 1002 - Second width direction slide rod; 1501 - Pad slide groove; 1502 - Pad slide rod; 1503 - Pad locking nut; 1504 - Pad locking bolt; 1701 - First width direction slide groove; 1702 - First width direction slide rod; 1801 - Length direction locking nut; 1802 - Length direction locking bolt; 1901 - First width direction locking nut; 1902 - First width direction locking bolt; 2001 - Second width direction locking nut; 2002 - Second width direction locking bolt. Detailed Implementation
[0034] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.
[0035] Example 1:
[0036] like Figures 1 to 5 As shown, a retractable ultra-long lead-ahead storage device includes a storage device body, which includes a length-direction telescopic mechanism 8, a first length-direction storage seat, and a second length-direction storage seat. The telescopic direction of the length-direction telescopic mechanism 8 is consistent with the length direction of the storage device body. The first length-direction storage seat and the second length-direction storage seat are respectively installed at both ends of the telescopic direction of the length-direction telescopic mechanism 8.
[0037] In this embodiment, the first length direction storage base includes a first width direction telescopic mechanism 16, a first width direction storage base 2, and a second width direction storage base 3. The telescopic direction of the first width direction telescopic mechanism 16 is consistent with the width direction of the storage device body. The first width direction storage base 2 and the second width direction storage base 3 are respectively installed at both ends of the telescopic direction of the first width direction telescopic mechanism 16. The second length direction storage base includes a second width direction telescopic mechanism 13, a third width direction storage base 11, and a fourth width direction storage base 12. The telescopic direction of the second width direction telescopic mechanism 13 is consistent with the width direction of the storage device body. The third width direction storage base 11 and the fourth width direction storage base 12 are respectively installed at both ends of the telescopic direction of the second width direction telescopic mechanism 13.
[0038] Specifically, the length-direction telescopic mechanism 8 includes two length-adjusting cylinders. The two ends of one length-adjusting cylinder are detachably mounted on the first width-direction storage seat 2 and the third width-direction storage seat 11, respectively. The two ends of the other length-adjusting cylinder are detachably mounted on the second width-direction storage seat 3 and the fourth width-direction storage seat 12, respectively. The first width-direction telescopic mechanism 16 and the second width-direction telescopic mechanism 13 are both width-adjusting cylinders. The two ends of the first width-direction telescopic mechanism 16 are detachably mounted on the first width-direction storage seat 2 and the second width-direction storage seat 3, respectively. The two ends of the second width-direction telescopic mechanism 13 are detachably mounted on the third width-direction storage seat 11 and the fourth width-direction storage seat 12, respectively.
[0039] In this embodiment, the storage device body further includes a length direction guiding mechanism 9; the length direction guiding mechanism 9 includes a length direction groove 901 and a length direction slide rod 902, the length direction of the length direction slide rod 902 is consistent with the length direction of the length direction groove 901, the length direction slide rod 902 is installed in the length direction groove 901 and can move along the length direction of the length direction groove 901; the length direction groove 901 and the length direction slide rod 902 are respectively installed on a first length direction storage base and a second length direction storage base, and the length direction of both the length direction groove 901 and the length direction slide rod 902 are consistent with the length direction of the storage device body.
[0040] Specifically, the first width direction storage seat 2 and the third width direction storage seat 11 are connected together by two length direction guide mechanisms 9; the second width direction storage seat 3 and the fourth width direction storage seat 12 are connected together by two length direction guide mechanisms 9.
[0041] In this embodiment, the storage device body further includes a length direction locking mechanism 18; the length direction locking mechanism 18 includes a length direction locking bolt 1802 and a length direction locking nut 1801, the length direction locking nut 1801 being threadedly engaged on the shank of the length direction locking bolt 1802; the shank of the length direction locking bolt 1802 can pass through the length direction sliding groove 901 and the length direction sliding rod 902 along the width direction of the storage device body, when the shank of the length direction locking bolt 1802 passes through the length direction sliding groove 901 and the length direction sliding rod 902 along the width direction of the storage device body and the length direction locking nut 1801 is threadedly engaged on the shank of the length direction locking bolt 1802, the length direction sliding groove 901 and the length direction sliding rod 902 are located between the head of the length direction locking bolt 1802 and the length direction locking nut 1801.
[0042] Specifically, both the length direction slide groove 901 and the length direction slide rod 902 are coaxially provided with elongated holes, and the rod of the length direction locking bolt 1802 can pass through the elongated holes on the length direction slide groove 901 and the length direction slide rod 902 along the width direction of the storage device body.
[0043] In this embodiment, the first length-direction storage base further includes a first width-direction guiding mechanism 17; the first width-direction guiding mechanism 17 includes a first width-direction sliding groove 1701 and a first width-direction sliding rod 1702, the length direction of the first width-direction sliding rod 1702 is consistent with the length direction of the first width-direction sliding groove 1701, the first width-direction sliding rod 1702 is installed in the first width-direction sliding groove 1701 and can move along the length direction of the first width-direction sliding groove 1701; the first width-direction sliding groove 1701 and the first width-direction sliding rod 1702 are respectively installed on the first width-direction storage base 2 and the second width-direction storage base 3, and the length directions of the first width-direction sliding groove 1701 and the first width-direction sliding rod 1702 are both perpendicular to the width of the storage device body. The directions are consistent; the second length direction storage base also includes a second width direction guide mechanism 10; the second width direction guide mechanism 10 includes a second width direction slide groove 1001 and a second width direction slide rod 1002, the length direction of the second width direction slide rod is consistent with the length direction of the second width direction slide groove 1001, the second width direction slide rod 1002 is installed in the second width direction slide groove 1001 and can move along the length direction of the second width direction slide groove 1001; the second width direction slide groove 1001 and the second width direction slide rod 1002 are respectively installed on the third width direction storage base 11 and the fourth width direction storage base 12, and the length direction of the second width direction slide groove 1001 and the length direction of the second width direction slide rod 1002 are both consistent with the width direction of the storage device body.
[0044] Specifically, the first width direction storage seat 2 and the second width direction storage seat 3 are connected together by two first width direction guide mechanisms 17; the third width direction storage seat 11 and the fourth width direction storage seat 12 are connected together by two second width direction guide mechanisms 10.
[0045] In this embodiment, the first length-direction storage base further includes a first width-direction locking mechanism 19; the first width-direction locking mechanism 19 includes a first width-direction locking bolt 1902 and a first width-direction locking nut 1901, the first width-direction locking nut 1901 being threadedly engaged with the shank of the first width-direction locking bolt 1902; the shank of the first width-direction locking bolt 1902 can pass through the first width-direction sliding groove 1701 and the first width-direction sliding rod 1702 along the length direction of the storage device body. When the shank of the first width-direction locking bolt 1902 passes through the first width-direction sliding groove 1701 and the first width-direction sliding rod 1702 along the length direction of the storage device body and the first width-direction locking nut 1901 is threadedly engaged with the shank of the first width-direction locking bolt 1902, the first width-direction sliding groove 1701 and the first width-direction sliding rod 1702 are located at the head of the first width-direction locking bolt 1902 and the first width-direction locking nut 1901. The second length direction storage base also includes a second width direction locking mechanism 20; the second width direction locking mechanism 20 includes a second width direction locking bolt 2002 and a second width direction locking nut 2001, the second width direction locking nut 2001 being threaded onto the shank of the second width direction locking bolt 2002; the shank of the second width direction locking bolt 2002 can pass through the second width direction sliding groove 1001 and the second width direction sliding rod 1002 along the length direction of the storage device body, when the shank of the second width direction locking bolt 2002 passes through the second width direction sliding groove 1001 and the second width direction sliding rod 1002 along the length direction of the storage device body and the second width direction locking nut 2001 is threaded onto the shank of the second width direction locking bolt 2002, the second width direction sliding groove 1001 and the second width direction sliding rod 1002 are located between the head of the second width direction locking bolt 2002 and the second width direction locking nut 2001.
[0046] Specifically, both the first width-direction slide groove 1701 and the first width-direction slide rod 1702 are coaxially provided with elongated holes. The rod of the first width-direction locking bolt 1902 can pass through the elongated holes on the first width-direction slide groove 1701 and the first width-direction slide rod 1702 along the length direction of the storage device body. Both the second width-direction slide groove 1001 and the second width-direction slide rod 1002 are coaxially provided with elongated holes. The rod of the second width-direction locking bolt 2002 can pass through the elongated holes on the second width-direction slide groove 1001 and the second width-direction slide rod 1002 along the length direction of the storage device body.
[0047] In this embodiment, the storage device body further includes an anti-slip mechanism; the anti-slip mechanism includes a first baffle 1 and a second baffle 14; the first baffle 1 is installed on the first length direction storage seat at one end away from the second length direction storage seat, and the second baffle 14 is installed on the second length direction storage seat at one end away from the first length direction storage seat.
[0048] In this embodiment, the storage device body further includes an anti-overflow mechanism; the anti-overflow mechanism includes a first stop post 6 and a second stop post 7; the first stop post 6 can be installed on the end of the first width direction storage seat 2 away from the second width direction storage seat 3 and on the end of the third width direction storage seat 11 away from the fourth width direction storage seat 12, and the second stop post 7 can be installed on the end of the second width direction storage seat 3 away from the first width direction storage seat 2 and on the end of the fourth width direction storage seat 12 away from the third width direction storage seat 11.
[0049] Specifically, the overflow prevention mechanism is provided in several units and is evenly distributed on the storage device body along the length direction of the storage device body.
[0050] In this embodiment, the storage device body further includes a pad mechanism 15; the pad mechanism 15 includes a pad groove 1501, a pad rod 1502, a pad locking bolt 1504, and a pad locking nut 1503. The length direction of the pad rod 1502 is consistent with the length direction of the pad groove 1501. The pad rod 1502 is installed in the pad groove 1501 and can move along the length direction of the pad groove 1501. The pad locking nut 1503 can be threaded onto the rod portion of the pad locking bolt 1504. The pad groove 1501 can be installed on both the storage seat 2 in the first width direction and the storage seat 11 in the third width direction. The pad rod 1502 can be installed on both the storage seat 2 in the second width direction and the storage seat 11 in the third width direction. The storage base 3 can be installed on the fourth width direction storage base 12. The length direction of the pad groove 1501 and the length direction of the pad rod 1502 are both consistent with the width direction of the storage device body. The rod of the pad locking bolt 1504 can pass through the pad groove 1501 and the pad rod 1502 along the length direction of the storage device body. When the rod of the pad locking bolt 1504 passes through the pad groove 1501 and the pad rod 1502 along the length direction of the storage device body and the pad locking nut 1503 is threaded onto the rod of the pad locking bolt 1504, the pad groove 1501 and the pad rod 1502 are located between the head of the pad locking bolt 1504 and the pad locking nut 1503.
[0051] Specifically, the pad mechanism 15 is provided in several units and is evenly distributed on the storage device body along the length direction of the storage device body.
[0052] In this embodiment, the storage device body further includes a hoisting mechanism; the hoisting mechanism includes a first hoisting lug 4 and a second hoisting lug 5; the first hoisting lug 4 can be installed on the end of the first width direction storage seat 2 away from the second width direction storage seat 3 and on the end of the third width direction storage seat 11 away from the fourth width direction storage seat 12, and the second hoisting lug 5 can be installed on the end of the second width direction storage seat 3 away from the first width direction storage seat 2 and on the end of the fourth width direction storage seat 12 away from the third width direction storage seat 11.
[0053] Specifically, the hoisting mechanism is provided in several parts and is evenly distributed on the storage device body along the length direction of the storage device body.
[0054] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model, and are not intended to limit it. Although the utility model 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 or all of the technical features therein. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this utility model.
Claims
1. A retractable, ultra-long lead-apart storage device, characterized in that, The storage device body includes a length-direction telescopic mechanism (8), a first length-direction storage base, and a second length-direction storage base. The telescopic direction of the length-direction telescopic mechanism (8) is consistent with the length direction of the storage device body; The first length direction storage seat and the second length direction storage seat are respectively installed at both ends of the length direction telescopic mechanism (8) in the telescopic direction.
2. The retractable ultra-long lead-apart storage device according to claim 1, characterized in that, The storage device body also includes a length direction guiding mechanism (9). The length direction guide mechanism (9) includes a length direction slide groove (901) and a length direction slide rod (902). The length direction of the length direction slide rod (902) is consistent with the length direction of the length direction slide groove (901). The length direction slide rod (902) is installed in the length direction slide groove (901) and can move along the length direction of the length direction slide groove (901). The length direction slide (901) and length direction slide (902) are respectively installed on the first length direction storage base and the second length direction storage base. The length direction of the length direction slide (901) and the length direction of the length direction slide (902) are both consistent with the length direction of the storage device body.
3. The retractable ultra-long lead-apart storage device according to claim 2, characterized in that, The storage device body also includes a length direction locking mechanism (18). The length direction locking mechanism (18) includes a length direction locking bolt (1802) and a length direction locking nut (1801), wherein the length direction locking nut (1801) can be threaded onto the shank of the length direction locking bolt (1802); The shank of the length direction locking bolt (1802) can pass through the length direction groove (901) and the length direction slide rod (902) along the width direction of the storage device body. When the shank of the length direction locking bolt (1802) passes through the length direction groove (901) and the length direction slide rod (902) along the width direction of the storage device body and the length direction locking nut (1801) is threaded onto the shank of the length direction locking bolt (1802), the length direction groove (901) and the length direction slide rod (902) are located between the head of the length direction locking bolt (1802) and the length direction locking nut (1801).
4. The retractable ultra-long lead-apart storage device according to claim 1, characterized in that, The first length direction storage base includes a first width direction telescopic mechanism (16), a first width direction storage base (2), and a second width direction storage base (3). The telescopic direction of the first width direction telescopic mechanism (16) is consistent with the width direction of the storage device body. The first width direction storage base (2) and the second width direction storage base (3) are respectively installed at both ends of the telescopic direction of the first width direction telescopic mechanism (16). The second length direction storage base includes a second width direction telescopic mechanism (13), a third width direction storage base (11), and a fourth width direction storage base (12). The telescopic direction of the second width direction telescopic mechanism (13) is consistent with the width direction of the storage device body. The third width direction storage base (11) and the fourth width direction storage base (12) are respectively installed at both ends of the telescopic direction of the second width direction telescopic mechanism (13).
5. A retractable ultra-long lead-stretcher storage device according to claim 4, characterized in that, The first length direction storage base also includes a first width direction guide mechanism (17); The first width direction guide mechanism (17) includes a first width direction slide groove (1701) and a first width direction slide rod (1702). The length direction of the first width direction slide rod (1702) is consistent with the length direction of the first width direction slide groove (1701). The first width direction slide rod (1702) is installed in the first width direction slide groove (1701) and can move along the length direction of the first width direction slide groove (1701). The first width direction slide groove (1701) and the first width direction slide rod (1702) are respectively installed on the first width direction storage base (2) and the second width direction storage base (3). The length direction of the first width direction slide groove (1701) and the length direction of the first width direction slide rod (1702) are both consistent with the width direction of the storage device body. The second length direction storage base also includes a second width direction guide mechanism (10); The second width direction guide mechanism (10) includes a second width direction slide groove (1001) and a second width direction slide rod (1002). The length direction of the second width direction slide rod (1002) is consistent with the length direction of the second width direction slide groove (1001). The second width direction slide rod (1002) is installed in the second width direction slide groove (1001) and can move along the length direction of the second width direction slide groove (1001). The second width direction slide groove (1001) and the second width direction slide bar (1002) are respectively installed on the third width direction storage base (11) and the fourth width direction storage base (12). The length direction of the second width direction slide groove (1001) and the length direction of the second width direction slide bar (1002) are both consistent with the width direction of the storage device body.
6. A retractable ultra-long lead-apart storage device according to claim 5, characterized in that, The first length direction storage base also includes a first width direction locking mechanism (19); The first width direction locking mechanism (19) includes a first width direction locking bolt (1902) and a first width direction locking nut (1901), wherein the first width direction locking nut (1901) can be threaded onto the rod of the first width direction locking bolt (1902); The shank of the first width direction locking bolt (1902) can pass through the first width direction slide groove (1701) and the first width direction slide rod (1702) along the length direction of the storage device body. When the shank of the first width direction locking bolt (1902) passes through the first width direction slide groove (1701) and the first width direction slide rod (1702) along the length direction of the storage device body and the first width direction locking nut (1901) is threaded onto the shank of the first width direction locking bolt (1902), the first width direction slide groove (1701) and the first width direction slide rod (1702) are located between the head of the first width direction locking bolt (1902) and the first width direction locking nut (1901). The second length direction storage base also includes a second width direction locking mechanism (20); The second width direction locking mechanism (20) includes a second width direction locking bolt (2002) and a second width direction locking nut (2001), wherein the second width direction locking nut (2001) can be threaded onto the rod portion of the second width direction locking bolt (2002); The shank of the second width direction locking bolt (2002) can pass through the second width direction slide groove (1001) and the second width direction slide bar (1002) along the length direction of the storage device body. When the shank of the second width direction locking bolt (2002) passes through the second width direction slide groove (1001) and the second width direction slide bar (1002) along the length direction of the storage device body and the second width direction locking nut (2001) is threaded onto the shank of the second width direction locking bolt (2002), the second width direction slide groove (1001) and the second width direction slide bar (1002) are located between the head of the second width direction locking bolt (2002) and the second width direction locking nut (2001).
7. A retractable ultra-long lead-stretcher storage device according to claim 1, characterized in that, The storage device body also includes an anti-tampering mechanism; The anti-slip mechanism includes a first baffle (1) and a second baffle (14); The first baffle (1) is installed on the first length direction storage seat at one end away from the second length direction storage seat, and the second baffle (14) is installed on the second length direction storage seat at one end away from the first length direction storage seat.
8. A retractable ultra-long lead-stretcher storage device according to claim 4, characterized in that, The storage device body also includes an overflow prevention mechanism; The overflow prevention mechanism includes a first baffle (6) and a second baffle (7); The first stop post (6) can be installed on the end of the first width direction storage seat (2) away from the second width direction storage seat (3) or on the end of the third width direction storage seat (11) away from the fourth width direction storage seat (12). The second stop post (7) can be installed on the end of the second width direction storage seat (3) away from the first width direction storage seat (2) or on the end of the fourth width direction storage seat (12) away from the third width direction storage seat (11).
9. A retractable ultra-long lead-apart storage device according to claim 4, characterized in that, The storage device body also includes a pad block mechanism (15). The pad block mechanism (15) includes a pad block groove (1501), a pad block rod (1502), a pad block locking bolt (1504), and a pad block locking nut (1503). The length direction of the pad block rod (1502) is consistent with the length direction of the pad block groove (1501). The pad block rod (1502) is installed in the pad block groove (1501) and can move along the length direction of the pad block groove (1501). The pad block locking nut (1503) can be threaded onto the rod of the pad block locking bolt (1504). The pad groove (1501) can be installed on either the first width direction storage seat (2) or the third width direction storage seat (11). The pad rod (1502) can be installed on either the second width direction storage seat (3) or the fourth width direction storage seat (12). The length direction of both the pad groove (1501) and the pad rod (1502) is consistent with the width direction of the storage device body. The rod of the pad locking bolt (1504) can extend along the width direction of the storage device body. The length of the body extends through the pad groove (1501) and the pad rod (1502). When the rod of the pad locking bolt (1504) extends through the pad groove (1501) and the pad rod (1502) along the length of the storage device body and the pad locking nut (1503) is threaded onto the rod of the pad locking bolt (1504), the pad groove (1501) and the pad rod (1502) are located between the head of the pad locking bolt (1504) and the pad locking nut (1503).
10. A retractable ultra-long lead-apart storage device according to claim 4, characterized in that, The storage device body also includes a hoisting mechanism; The hoisting mechanism includes a first lifting lug (4) and a second lifting lug (5); The first lifting lug (4) can be installed on the end of the first width direction storage seat (2) away from the second width direction storage seat (3) or on the end of the third width direction storage seat (11) away from the fourth width direction storage seat (12). The second lifting lug (5) can be installed on the end of the second width direction storage seat (3) away from the first width direction storage seat (2) or on the end of the fourth width direction storage seat (12) away from the third width direction storage seat (11).