CN220032611U - Sample storage device for steel bar sampling detection - Google Patents

Sample storage device for steel bar sampling detection Download PDF

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Publication number
CN220032611U
CN220032611U CN202321228856.5U CN202321228856U CN220032611U CN 220032611 U CN220032611 U CN 220032611U CN 202321228856 U CN202321228856 U CN 202321228856U CN 220032611 U CN220032611 U CN 220032611U
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frame
loading
fixed
frame body
storage device
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CN202321228856.5U
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Chinese (zh)
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狄晓峰
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Hubei Jingyang Building Materials Co ltd
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Hubei Jingyang Building Materials Co ltd
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Abstract

The utility model provides a sample storage device for steel bar sampling detection, which comprises a movable seat, wherein a frame body is fixed on the movable seat, two sides of the frame body are respectively provided with corresponding openings, a loading frame with two sides penetrating through the openings at two sides of the frame body respectively is arranged in the frame body, and a group of openings at two sides of the frame body are respectively arranged; the top of loading frame articulates there is the apron, and the top surface of apron contacts with the top surface in the opening, and one side of loading frame is fixed with the label box, and the bottom of loading in the frame is inlayed and is had a magnet. The utility model can store the reinforcing steel bars of different production batches or different models in a classified way, avoids the disorder of placing the reinforcing steel bars, and simultaneously avoids the damage, blurring or loss of labels, thereby being convenient for staff to take the reinforcing steel bars.

Description

Sample storage device for steel bar sampling detection
Technical Field
The utility model relates to the technical field of storage devices, in particular to a sample storage device for steel bar sampling detection.
Background
The steel bars are steel for reinforced concrete and prestressed reinforced concrete, after the steel bars are produced, quality detection is needed, one or more steel bars produced in the same batch are extracted for sampling detection, so that whether the quality of the steel bars meets the standard is judged; in the process of sampling detection, the steel bars involve steps of transportation, storage, taking and the like, so that each steel bar needs to be marked so as to be convenient for staff to distinguish; however, the steel bars for sampling detection are stacked in the trolley at present, and labels are stuck on the steel bars, but when the steel bars are placed in the trolley, the steel bars are placed in disorder and are inconvenient to take, and due to collision and the like, the labels on the steel bars are damaged, blurred or lost, so that the steel bars are easy to mix up, and various information of the steel bars cannot be distinguished.
Disclosure of Invention
The utility model discloses a sample storage device for steel bar sampling detection, which solves the problems that steel bars are placed in a trolley in a disordered manner, the steel bars are inconvenient to take, and the steel bars are easy to mix after labels on the steel bars are damaged, blurred or lost.
In order to solve the technical problems, the utility model adopts the following technical scheme:
the sample storage device for the steel bar sampling detection comprises a movable seat, wherein a frame body is fixed on the movable seat, two sides of the frame body are provided with corresponding openings, a loading frame with two sides penetrating through the openings at two sides of the frame body respectively is arranged in the frame body, and a group of openings at two sides of the frame body are respectively arranged; the top of loading frame articulates there is the apron, and the top surface of apron contacts with the top surface in the opening, and one side of loading frame is fixed with the label box, and the bottom of loading in the frame is inlayed and is had a magnet.
Compared with the prior art, the utility model has the following beneficial effects:
respectively placing the sampled and detected steel bars in a group of loading frames according to different production batches or models, then placing corresponding labels in label boxes on the loading frames, and respectively penetrating the group of loading frames through a group of openings on two sides of the frame body to fix the loading frames on the frame body; meanwhile, after the steel bars are contacted with the first magnet, the first magnet can adsorb the steel bars, so that the situation that the steel bars in the loading frame shake randomly or a plurality of steel bars in the same loading frame collide with each other in the moving process of the moving seat is avoided, and the steel bars can be effectively stored; the utility model can store the reinforcing steel bars of different production batches or different models in a classified way, avoids the disorder of placing the reinforcing steel bars, and simultaneously avoids the damage, blurring or loss of labels, thereby being convenient for staff to take the reinforcing steel bars.
Drawings
FIG. 1 is a schematic diagram of the structure of the present utility model in elevation;
FIG. 2 is a schematic cross-sectional view of a loading frame of the present utility model;
FIG. 3 is a schematic cross-sectional view of a loading cartridge of the present utility model.
In the figure: 1. a movable seat; 2. a frame; 21. iron sheet; 22. a stop block; 23. a suction bar; 3. a loading frame; 31. a cover plate; 32. a label box; 33. a sponge block; 34. a first magnet; 4. a shielding frame; 5. an iron plate; 51. a baffle; 52. a second magnet; 6. a connecting block; 61. a loading barrel; 62. a sponge cushion; 7. a sealing plug; 71. a label frame; 72. a suction block; 73. a rubber block; 8. push handle.
Detailed Description
The details of the present utility model are described below in conjunction with the accompanying drawings and examples.
As shown in fig. 1 and 2, the utility model provides a sample storage device for steel bar sampling detection, which comprises a movable seat 1, wherein a frame body 2 is fixed on the movable seat 1, two sides of the frame body 2 are respectively provided with corresponding openings, a loading frame 3, two sides of which respectively penetrate through the openings at two sides of the frame body 2, is arranged in the frame body 2, and a group of openings at two sides of the frame body 2 are respectively arranged; the top of loading frame 3 articulates there is apron 31, and the top surface of apron 31 contacts with the top surface in the opening, and loading frame 3's one side is fixed with label box 32, and loading frame 3's bottom is inlayed and is had first magnet 34. Multiple groups of openings can be arranged on the openings on two sides of the frame body 2, and the multiple groups of openings are arranged from front to back so as to be convenient for placing more loading frames 3 on the frame body 2; after the workers can place the steel bars of different production batches or different types in the loading frame 3 respectively, one side of the loading frame 3 sequentially penetrates through the openings corresponding to the two sides of the frame body 2, the loading frame 3 is fixed on the frame body 2, the bottom of the loading frame 3 is contacted with the bottom surface in the opening, the top of the cover plate 31 is contacted with the top surface in the opening, after the steel bars stored in the loading frame 3 are contacted with the first magnet 34, the first magnet 34 can absorb the steel bars, random shaking of the steel bars is avoided, and the stability of the steel bars is improved; the staff can then place the label that writes with each item information of reinforcing bar in label box 32 to when sampling detection, the staff can be quick distinguish different reinforcing bars.
As shown in fig. 1, a shielding frame 4 is fixed on one side of the frame 2, the inner wall of the shielding frame 4 contacts with one side of the loading frame 3, an iron plate 5 positioned above the loading frame 3 is fixed on the other side of the frame 2, a baffle plate 51 in sliding connection penetrates through the iron plate 5, a second magnet 52 positioned below the loading frame 3 is fixed on the baffle plate 51, and one surface of the baffle plate 51 contacts with the label box 32. The shielding frame 4 can block one side of the loading frame 3, and after the loading frame 3 is completely placed on the frame body 2, the baffle plate 51 can be slid downwards to enable the baffle plate 51 to be in contact with the label box 32 or effectively fix the loading frame 3, so that the loading frame 3 is prevented from falling off from the frame body 2; when the loading frame 3 needs to be taken out, a worker slides the baffle plate 51 upwards, so that the second magnet 52 is contacted with the iron plate 5 and then is adsorbed on the iron plate 5, and the baffle plate 51 is fixed, so that the worker can conveniently take the loading frame 3 off the frame body 2.
As shown in fig. 1 and fig. 3, a group of connecting blocks 6 are fixed in the frame 2, the connecting blocks 6 and the loading frame 3 are distributed in a staggered manner, a group of concave holes are formed in one surface of the connecting blocks 6, a loading barrel 61 is inserted into the concave holes, one end of the loading barrel 61 is in threaded connection with a sealing plug 7, and a label frame 71 is fixed on the sealing plug 7. Connection blocks 6 as shown in fig. 1, the top and bottom surfaces of one connection block 6 are respectively in contact with the bottom surface of one loading frame 3 and the top surface of a cover plate 31 on the other loading frame 3; the length of the loading barrel 61 is smaller than that of the loading frame 3, a worker can place shorter steel bars in the loading barrel 61, then seal the loading barrel 61 by using the sealing plug 7, and then insert the loading barrel 61 into the concave hole so that the sealing plug 7 contacts with the connecting block 6 (the orientation shown in fig. 1 contacts with the front surface of the connecting block 6); the staff can then place the label with the information written on the reinforcing bars in the label frame 71 for the convenience of the staff to check.
As shown in fig. 2 and 3, a sponge pad 62 is fixed to the inner wall of the loading barrel 61, and a sponge block 33 is fixed to the inner wall of the loading frame 3. The arrangement of the foam-rubber cushion 62 and the foam-rubber block 33 can avoid the generation of larger noise after the reinforcing steel bars strike the inner wall of the loading cylinder 61 or the loading frame 3, and can protect the loading cylinder 61 and the loading frame 3; the sponge block 33 can also protect the first magnet 34 and prevent the steel bar from directly contacting the first magnet 34.
As shown in fig. 3, a magnet block 72 is fixed to the surface of the sealing plug 7 located in the loading barrel 61, and a rubber block 73 is fixed to the surface of the magnet block 72 facing away from the sealing plug 7. When the steel bar is put into the loading barrel 61, one end of the steel bar can be contacted with the rubber block 73, the steel bar is adsorbed by the iron absorbing block 72, the steel bar is prevented from shaking randomly, and the rubber block 73 can protect the iron absorbing block 72.
As shown in fig. 1, the top of the frame 2 is hinged with a stop block 22, a magnet bar 23 is embedded on the stop block 22, and an iron sheet 21 matched with the magnet bar 23 is embedded on one surface of the frame 2. When the loading cylinder 61 is inserted into the concave hole, the loading cylinder 61 can be blocked by the stop block 22, one surface of the stop block 22 is contacted with the label frame 71, and when the iron sheet 21 is contacted with the iron sheet 23, the stability of the stop block 22 can be increased, and the stop block 22 is prevented from shaking randomly.
As shown in fig. 1, the baffle 51 and the stopper 22 are respectively made of transparent plastic plates. The baffle 51 and the stop 22 are made of transparent plastic plates, so that a worker can more intuitively check label information in the label box 32 or the label frame 71.
As shown in fig. 1, a push handle 8 is fixed on the movable base 1. The pushing handle 8 is convenient for a worker to push the movable seat 1 to move.
When the novel steel bar loading device is used, longer steel bars can be placed in the loading frame 3, shorter steel bars can be placed in the loading barrel 61, the first magnet 34 can adsorb the steel bars in the loading frame 3, random shaking of the steel bars is avoided, and the magnet block 72 can adsorb the steel bars in the loading barrel 61, and random shaking of the steel bars is avoided; then, one side of the loading frame 3 sequentially passes through the openings corresponding to the two sides of the frame body 2, so that the loading frame 3 is fixed on the frame body 2, the loading barrel 61 is inserted into the concave holes on the connecting block 6, and the loading barrel 61 is fixed, so that reinforcing steel bars of different types or production batches are classified and stored, the reinforcing steel bars are prevented from being mixed together, and a subsequent worker can conveniently take the required reinforcing steel bars after checking information of labels in the label box 32 or the label frame 71; when the steel bar is taken out, the worker can take out the corresponding loading frame 3 or the loading cylinder 61.
Finally, it is noted that the above embodiments are only for illustrating the technical solution of the present utility model and not for limiting the same, and although the present utility model has been described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that modifications and equivalents may be made thereto without departing from the spirit and scope of the technical solution of the present utility model, which is intended to be covered by the scope of the claims of the present utility model.

Claims (8)

1. The utility model provides a sample storage device for steel bar sampling detection, includes and removes seat (1), its characterized in that: a frame body (2) is fixed on the movable seat (1), two sides of the frame body (2) are provided with corresponding openings, a loading frame (3) with two sides penetrating through the openings at two sides of the frame body (2) respectively is arranged in the frame body (2), and a group of openings at two sides of the frame body (2) are arranged; the top of loading frame (3) articulates there is apron (31), and the top surface of apron (31) contacts with the top surface in the opening, and one side of loading frame (3) is fixed with label box (32), and the bottom in loading frame (3) is inlayed and is had first magnet (34).
2. The sample storage device for rebar sampling test of claim 1, wherein: one side of the frame body (2) is fixed with a shielding frame (4), the inner wall of the shielding frame (4) is contacted with one side of the loading frame (3), the other side of the frame body (2) is fixed with an iron plate (5) positioned above the loading frame (3), a baffle plate (51) in sliding connection penetrates through the iron plate (5), a second magnet (52) positioned below the loading frame (3) is fixed on the baffle plate (51), and one surface of the baffle plate (51) is contacted with the label box (32).
3. The sample storage device for rebar sampling test of claim 1, wherein: a group of connecting blocks (6) are fixed in the frame body (2), the connecting blocks (6) are distributed in a staggered mode with the loading frame (3), a group of concave holes are formed in one face of each connecting block (6), a loading barrel (61) is inserted into each concave hole, one end of each loading barrel (61) is connected with a sealing plug (7) in a threaded mode, and a label frame (71) is fixed on each sealing plug (7).
4. A sample storage device for rebar sampling test according to claim 3, wherein: a foam-rubber cushion (62) is fixed on the inner wall of the loading barrel (61), and a foam-rubber block (33) is fixed on the inner wall of the loading frame (3).
5. A sample storage device for rebar sampling test according to claim 3, wherein: one surface of the sealing plug (7) positioned in the loading barrel (61) is fixed with a magnet block (72), and one surface of the magnet block (72) deviating from the sealing plug (7) is fixed with a rubber block (73).
6. The sample storage device for rebar sampling test of claim 2, wherein: the top of the frame body (2) is hinged with a stop block (22), a magnet strip (23) is inlaid on the stop block (22), and an iron sheet (21) matched with the magnet strip (23) is inlaid on one surface of the frame body (2).
7. The sample storage device for rebar sampling test of claim 6, wherein: the baffle plate (51) and the stop block (22) are respectively made of transparent plastic plates.
8. The sample storage device for rebar sampling test of claim 1, wherein: a pushing handle (8) is fixed on the movable seat (1).
CN202321228856.5U 2023-05-19 2023-05-19 Sample storage device for steel bar sampling detection Active CN220032611U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321228856.5U CN220032611U (en) 2023-05-19 2023-05-19 Sample storage device for steel bar sampling detection

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321228856.5U CN220032611U (en) 2023-05-19 2023-05-19 Sample storage device for steel bar sampling detection

Publications (1)

Publication Number Publication Date
CN220032611U true CN220032611U (en) 2023-11-17

Family

ID=88720152

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321228856.5U Active CN220032611U (en) 2023-05-19 2023-05-19 Sample storage device for steel bar sampling detection

Country Status (1)

Country Link
CN (1) CN220032611U (en)

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