CN219858181U - Storage box for placing engineering measuring instrument - Google Patents

Storage box for placing engineering measuring instrument Download PDF

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Publication number
CN219858181U
CN219858181U CN202320938488.7U CN202320938488U CN219858181U CN 219858181 U CN219858181 U CN 219858181U CN 202320938488 U CN202320938488 U CN 202320938488U CN 219858181 U CN219858181 U CN 219858181U
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China
Prior art keywords
placing
clamping
fixed
cavity
grooves
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CN202320938488.7U
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Chinese (zh)
Inventor
李智涛
马驰原
田晓宁
王荟鹏
岳刚存
韩冬
王静
张阳
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Henan Wanchang Road And Bridge Engineering Co ltd
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Henan Wanchang Road And Bridge Engineering Co ltd
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Priority to CN202320938488.7U priority Critical patent/CN219858181U/en
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Abstract

The utility model belongs to the technical field of storage boxes, and particularly relates to a storage box for placing engineering measuring instruments. The beneficial effects are that: through setting up rack and placing the dish staff and can place the precision instrument that the measurement was used and the apparatus that the measurement was used separately, can guarantee like this that the bin is not scratched by measuring instrument when transporting the in-process or the staff looks for the instrument in the case, improves measuring instrument's security.

Description

Storage box for placing engineering measuring instrument
Technical Field
The utility model belongs to the technical field of storage boxes, and particularly relates to a storage box for placing engineering measuring instruments.
Background
The existing storage box for placing engineering measuring instruments is mostly used for placing a precise instrument and a measuring instrument together, so that the measuring instrument is scratched easily by the storage box in the conveying process or when workers find the instrument in the box body, the measuring instrument is damaged, the existing storage box has no extended protection structure, and if the rainwater in the storage box is opened in rainy days, the rainwater easily falls onto the measuring instrument, so that the measuring instrument is damaged.
Disclosure of Invention
The object of the present utility model is to provide a storage box for placing engineering measuring instruments in order to solve the above-mentioned problems.
The utility model realizes the above purpose through the following technical scheme:
the storage box for placing engineering measuring instruments comprises a box body and a box door hinged with the front end of the box body, wherein the interior of the box body is divided into an upper placing cavity and a lower placing cavity through a partition plate, a placing rack is arranged in the upper placing cavity, a placing tray is arranged in the lower placing cavity, and a shielding mechanism is arranged in the box body above the upper placing cavity;
placement frame through first sliding component slidable mounting is last to place the intracavity, the rack includes the board of placing of U type, the upper end of placing the board border face is fixed with the frame of U type through a plurality of connecting rods, the bottom of frame and the top fixed connection of connecting rod, evenly be fixed with a plurality of couples on the inside wall of frame both sides and the inner wall of frame rear side, the return frame that is fixed respectively on two inside walls of placing the board and the back wall is located under the couple, evenly be provided with a plurality of parts of placing on the diapire of placing the board.
Preferably, the placing component comprises two placing blocks which are symmetrically arranged, the upper ends of the placing blocks are provided with U-shaped grooves, and the openings of the U-shaped grooves on the two placing blocks are opposite.
Preferably, the first sliding component comprises two first clamping strips which are fixed at the bottom of the placing plate in parallel, the first clamping strips are matched with first clamping holes formed in the upper end of the partition plate, first clamping blocks respectively fixed at the rear ends of two sides of the placing plate are matched with first clamping grooves formed in the side wall of the upper placing cavity, and the first clamping grooves do not extend to the front end of the side wall of the upper placing cavity.
Preferably, the placing tray is slidably mounted in the lower placing cavity through the second sliding component, a T-shaped partition plate is fixed in the placing tray, and the partition plate and the placing tray form two first placing grooves positioned on the rear side of the placing tray and a second placing groove positioned on the front side of the placing tray, and the second placing groove is larger than the first placing groove.
Preferably, the second sliding component comprises two second clamping strips which are fixed at the bottom of the placing tray in parallel, the second clamping strips are matched with second clamping holes formed in the bottom wall of the lower placing cavity, second clamping blocks respectively fixed at the rear ends of two sides of the placing tray are matched with second clamping grooves formed in the side wall of the lower placing cavity, and the second clamping grooves do not extend to the front end of the side wall of the lower placing cavity.
Preferably, the shielding mechanism comprises a containing groove arranged on the box body above the upper placing cavity, a shielding plate is slidably arranged in the containing groove through a third sliding component, and the upper end face of the shielding plate is of an arc-shaped structure.
Preferably, the third sliding component comprises two third clamping strips fixed at the upper end of the shielding plate, the third clamping strips are matched with third clamping holes formed in the top of the accommodating groove, third clamping blocks respectively fixed at the rear ends of two sides of the shielding plate are matched with third clamping grooves formed in the side walls of the accommodating groove, and the third clamping grooves do not extend to the front ends of the side walls of the accommodating groove.
Preferably, the cross section of the hook is L-shaped, and an arc-shaped concave surface is formed at the upper end of the horizontal edge of the hook.
The beneficial effects are that: the precise instrument used for measurement and the instrument used for measurement can be placed separately by setting the placing rack and the placing plate, so that the storage box is prevented from being scratched by the measuring instrument in the conveying process or when the worker searches the instrument in the box, and the safety of the measuring instrument is improved; through setting up shielding mechanism staff can open the sunshade when rainwater weather, can avoid the staff to get when putting the instrument in rainwater weather like this that the rainwater falls into on the measuring instrument, prevent that the rainwater from causing measuring instrument short circuit, cause the measurement inaccuracy.
Drawings
In order to more clearly illustrate the embodiments of the utility model or the technical solutions of the prior art, the drawings that are necessary for the description of the embodiments or the prior art will be briefly described, it being obvious that the drawings in the following description are only some embodiments of the utility model and that other drawings can be obtained according to these drawings without inventive faculty for a person skilled in the art.
FIG. 1 is a perspective view of a storage case for holding an engineering measurement instrument according to the present utility model;
FIG. 2 is a cross-sectional view of a storage case for holding an engineering measurement instrument according to the present utility model;
FIG. 3 is a block diagram of a rack for holding storage bins for engineering measurement instruments according to the present utility model;
FIG. 4 is a diagram of a construction of a shutter for a storage case for an engineering measurement instrument according to the present utility model;
FIG. 5 is a diagram of a placement tray configuration for a storage box for placing an engineering measurement instrument according to the present utility model;
fig. 6 is a block diagram of the inside of a storage box for placing engineering measuring instruments according to the present utility model.
The reference numerals are explained as follows:
1. a case; 11. a receiving groove; 111. a third clamping hole; 112. a third clamping groove; 12. an upper placement cavity; 121. a first clamping groove; 13. a lower placement cavity; 131. a second clamping groove; 132. a second clamping hole; 2. a door; 3. a partition plate; 31. a first clamping hole; 4. a shutter; 41. a third clamping strip; 42. a third clamping block; 43. a fixed block; 5. placing a plate; 51. a frame; 52. placing a block; 53. a hook; 54. a mold frame; 55. a first clamping block; 56. the first clamping strip; 6. placing a tray; 61. a first placement groove; 62. a second placement groove; 63. a second clamping strip; 64. a second clamping block; 7. a partition plate.
Detailed Description
The technical scheme of the utility model is further explained below with reference to the accompanying drawings:
as shown in fig. 1-6, a storage box for placing engineering measuring instruments comprises a box body 1, a box door 2 hinged with the front end of the box body 1, handles are fixed on the upper end face of the box body 1, ear walls are respectively fixed on the box body 1 and the box door 2, the interior of the box body 1 is divided into an upper placing cavity 12 and a lower placing cavity 13 by a partition plate 3, a containing groove 11 is formed in the upper portion of the box body 1, the containing groove 11 is located above the upper placing cavity 12, a shielding plate 4 is slidably mounted in the containing groove 11, the upper end face of the shielding plate 4 is of an arc-shaped structure, rainwater accumulation can be avoided, two third clamping strips 41 are fixed on the upper end face of the shielding plate 4 and symmetrical with the center line of the length of the shielding plate 4, the third clamping strips 41 are slidably mounted in third clamping holes 111, the third clamping holes 111 are formed in the top of the containing groove 11, the rear ends of the two sides of the 4 are respectively fixed with third clamping blocks 42, the third clamping blocks 42 are slidably mounted in the third clamping grooves 112, the third clamping grooves 112 are formed in the side walls 11, the side walls of the containing groove 11 are arranged, the side walls of the third clamping grooves 11 are formed in the containing grooves 11, the side walls are not extending from the upper side walls of the third clamping grooves 11 to the containing grooves 12 to the front of the containing groove 12, and the upper side walls of the containing grooves 12 extend from the front of the containing grooves 1 to the upper side of the containing grooves 12, and the front of the placing boxes are arranged in the containing grooves 12, and the front of the side of the holding grooves can be prevented from the front of the side of the holding grooves 12 is arranged.
The rack is installed in placing chamber 12 through first slip subassembly slidable, the rack includes the board of placing of U type 5, the opening part of placing board 5 is towards the opening part of box 1, the upper end of placing board 5 border face is the rectangle and is fixed with 4 connecting rods, the upper end of 4 connecting rods is fixed with the frame 51 of U type, the bottom of frame 51 and the top fixed connection of connecting rod, evenly be fixed with a plurality of couples 53 on the inside wall of frame 51 both sides respectively on the inside wall of frame 51 both sides, also evenly be fixed with a plurality of couples 53 on the inner wall of frame 51 rear side, the cross section of couple 53 sets up to L shape, the arc concave surface has been seted up to the horizontal edge of couple 53, be fixed with back form frame 54 on the both inner walls of placing board 5 respectively, also be fixed with back form frame 54 on the back wall of placing board 5, the instrument lower extreme swing range that can avoid hanging is great like this, have spacing effect, evenly be provided with three on the intermediate position of placing the diapire of board 5 diapire and place the part and include two place piece 52, two place the piece and have the U-shaped groove on the opposite opening 52 on the two side of the U-shaped groove that the length of placing the piece 5.
The first sliding component comprises two first clamping strips 56 which are fixed at the bottom of the placing plate 5 in parallel, the two first clamping strips 56 are symmetrical about the central line of the length of the placing plate 5, the first clamping strips 56 are matched with the first clamping holes 31 formed in the upper end of the partition plate 3, the rear ends of the two sides of the placing plate 5 are respectively fixed with a first clamping block 55, the first clamping blocks 55 are slidably mounted in first clamping grooves 121, the first clamping grooves 121 are formed in the two side walls of the upper placing cavity 12 respectively, and the first clamping grooves 121 extend forwards from the rear wall of the upper placing cavity 12 but do not extend to the front end of the upper placing cavity 12, so that the first clamping blocks 55 can be prevented from sliding out of the first clamping grooves 121.
The placing tray 6 is slidably mounted in the lower placing cavity 13 through a second sliding component, a T-shaped partition plate 7 is fixed in the placing tray 6, the partition plate 7 and the placing tray 6 form two first placing grooves 61 positioned on the rear side of the placing tray 6 and a second placing groove 62 positioned on the front side of the placing tray 6, the second placing groove 62 is larger than the first placing groove 61, the second sliding component comprises two second clamping strips 63 which are parallelly fixed at the bottom of the placing tray 6, the two second clamping strips 63 are symmetrical about the central line of the length of the placing tray 6, the second clamping strips 63 are slidably mounted in second clamping holes 132, the second clamping holes 132 are formed in the bottom wall of the lower placing cavity 13, the rear ends of the two sides of the placing tray 6 are respectively fixed with second clamping blocks 64, the second clamping blocks 64 are slidably mounted in second clamping grooves 131, the second clamping grooves 131 are respectively formed in two side walls of the lower placing cavity 13, and the second clamping grooves 131 extend forwards from the rear wall of the lower placing cavity 13 but do not extend to the front end of the lower placing cavity 13, so that the second clamping blocks 64 can slide out of the second clamping blocks 131.
Working principle: when the measuring instrument is used, a worker hangs a measuring instrument which can be hung on the placing frame, the measuring instrument which can not be hung is placed on the two placing blocks 52, the precision instrument which is used for engineering measurement is placed on the placing disc 6, the precision instrument which can not be used for engineering measurement is respectively and correspondingly placed in the placing grooves with different sizes, when the measuring instrument is used by the worker in rainy days, the fixing block 43 is pushed to the outer side of the box body 1 by hands, the fixing block 43 drives the shielding plate 4 to slide outwards, and the third clamping strip 41 and the third clamping block 42 on the shielding plate 4 slide in the corresponding third clamping holes 111 and the third clamping grooves 112 respectively, so that the effect of shielding rain is achieved.
The foregoing has shown and described the basic principles, principal features and advantages of the utility model. It will be understood by those skilled in the art that the present utility model is not limited to the embodiments described above, and that the above embodiments and descriptions are merely illustrative of the principles of the present utility model, and various changes and modifications may be made without departing from the spirit and scope of the utility model, which is defined in the appended claims.

Claims (8)

1. The utility model provides a bin for placing engineering measuring instrument, includes box (1), with box (1) front end articulated chamber door (2), its characterized in that: the inside of the box body (1) is divided into an upper placing cavity (12) and a lower placing cavity (13) through a partition board (3), a placing rack is arranged in the upper placing cavity (12), a placing disc (6) is arranged in the lower placing cavity (13), and a shielding mechanism is arranged in the box body (1) above the upper placing cavity (12);
placement frame through first slip subassembly slidable mounting in last cavity (12) of placing, the rack includes placing board (5) of U type, the upper end of placing board (5) border face is fixed with frame (51) of U type through a plurality of connecting rods, the bottom of frame (51) and the top fixed connection of connecting rod, evenly be fixed with a plurality of couples (53) on the inside wall of frame (51) both sides and on the inner wall of frame (51) rear side, the return frame (54) that are fixed respectively on two inside walls of placing board (5) and the back wall are located under couple (53), evenly be provided with a plurality of parts of placing on the diapire of placing board (5).
2. A storage case for placing engineering measurement instruments according to claim 1, wherein: the placing component comprises two placing blocks (52) which are symmetrically arranged, the upper ends of the placing blocks (52) are provided with U-shaped grooves, and the openings of the U-shaped grooves on the two placing blocks (52) are opposite.
3. A storage case for placing engineering measurement instruments according to claim 1, wherein: the first sliding assembly comprises two first clamping strips (56) which are fixed at the bottom of the placing plate (5) in parallel, the first clamping strips (56) are matched with first clamping holes (31) formed in the upper end of the partition plate (3), first clamping blocks (55) which are respectively fixed at the rear ends of two sides of the placing plate (5) are matched with first clamping grooves (121) formed in the side wall of the upper placing cavity (12), and the first clamping grooves (121) do not extend to the front end of the side wall of the upper placing cavity (12).
4. A storage case for placing engineering measurement instruments according to claim 1, wherein: placement dish (6) are through second slip subassembly slidable mounting in lower placement cavity (13), the inside of placement dish (6) is fixed with T type division board (7), division board (7) and placement dish (6) constitute two first standing grooves (61) that are located placement dish (6) rear side, are located second standing groove (62) of placement dish (6) front side, second standing groove (62) are greater than first standing groove (61).
5. A storage case for holding engineering measurement instruments according to claim 4, wherein: the second sliding assembly comprises two second clamping strips (63) which are fixed at the bottom of the placing tray (6) in parallel, the second clamping strips (63) are matched with second clamping holes (132) formed in the bottom wall of the lower placing cavity (13), second clamping blocks (64) which are respectively fixed at the rear ends of two sides of the placing tray (6) are matched with second clamping grooves (131) formed in the side wall of the lower placing cavity (13), and the second clamping grooves (131) do not extend to the front end of the side wall of the lower placing cavity (13).
6. A storage case for placing engineering measurement instruments according to claim 1, wherein: the shielding mechanism comprises a containing groove (11) formed in the box body (1) above the upper placing cavity (12), a shielding plate (4) is slidably mounted in the containing groove (11) through a third sliding assembly, and the upper end face of the shielding plate (4) is of an arc-shaped structure.
7. A storage case for placing engineering measurement instruments according to claim 6, wherein: the third sliding assembly comprises two third clamping strips (41) fixed at the upper end of the shielding plate (4), the third clamping strips (41) are matched with third clamping holes (111) formed in the top of the accommodating groove (11), third clamping blocks (42) respectively fixed at the rear ends of two sides of the shielding plate (4) are matched with third clamping grooves (112) formed in the side walls of the accommodating groove (11), and the third clamping grooves (112) do not extend to the front ends of the side walls of the accommodating groove (11).
8. A storage case for placing engineering measurement instruments according to claim 1, wherein: the cross section of the hook (53) is L-shaped, and an arc concave surface is formed at the upper end of the horizontal edge of the hook (53).
CN202320938488.7U 2023-04-24 2023-04-24 Storage box for placing engineering measuring instrument Active CN219858181U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320938488.7U CN219858181U (en) 2023-04-24 2023-04-24 Storage box for placing engineering measuring instrument

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320938488.7U CN219858181U (en) 2023-04-24 2023-04-24 Storage box for placing engineering measuring instrument

Publications (1)

Publication Number Publication Date
CN219858181U true CN219858181U (en) 2023-10-20

Family

ID=88371161

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320938488.7U Active CN219858181U (en) 2023-04-24 2023-04-24 Storage box for placing engineering measuring instrument

Country Status (1)

Country Link
CN (1) CN219858181U (en)

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