CN217418815U - Data structure protection structure of pipeline cathodic protection data acquisition instrument - Google Patents

Data structure protection structure of pipeline cathodic protection data acquisition instrument Download PDF

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Publication number
CN217418815U
CN217418815U CN202221011577.9U CN202221011577U CN217418815U CN 217418815 U CN217418815 U CN 217418815U CN 202221011577 U CN202221011577 U CN 202221011577U CN 217418815 U CN217418815 U CN 217418815U
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Prior art keywords
cover
opening
data acquisition
outer layer
acquisition instrument
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CN202221011577.9U
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Chinese (zh)
Inventor
林宝祺
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China Shipping Guangdong Natural Gas Co Ltd
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China Shipping Guangdong Natural Gas Co Ltd
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Priority to CN202221011577.9U priority Critical patent/CN217418815U/en
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Abstract

The utility model discloses a data structure protective structure of pipeline cathodic protection data acquisition instrument relates to data acquisition technical field. The utility model discloses a: the box body is internally provided with a containing cavity for containing the data acquisition instrument, one side of the box body is provided with an opening, the box body comprises an inner layer and an outer layer, the containing cavity is positioned in the inner layer, and a first opening for exposing a probe of the data acquisition instrument is arranged at the same side position of the inner layer and the outer layer; the protective cover is provided with meshes in a spread mode and covers the first opening; and the blocking cover is hinged at the opening. The utility model discloses an establish inside the appearance chamber of box and make can put into the instrument inside the box, make when wholly meetting the collision through the design of the elastic connection spare between inlayer and the outside, can be to the transmission of reduction collision dynamics to inside to played the cushioning effect to inside, in order to protect the instrument.

Description

Data structure protection structure of pipeline cathodic protection data acquisition instrument
Technical Field
The utility model relates to a data acquisition equipment technical field, concretely relates to data structure protective structure of pipeline cathodic protection data acquisition instrument.
Background
Need use the data acquisition appearance in the protection work of pipeline negative pole, current data acquisition appearance is because often holding when using and remove everywhere, can meet the colliding with in the removal in-process unavoidably, and this just leads to the instrument to appear damaging very easily, and the probing head of evagination on the especially instrument, it is damaged by colliding with, consequently needs to provide a device that is used for protecting data acquisition appearance.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide an: pour the problem of colliding with easily for solving current data acquisition instrument in the use to cause the easy problem of damaging of instrument, the utility model provides a data structure protective structure of pipeline cathodic protection data acquisition instrument.
The utility model discloses a realize above-mentioned purpose and specifically adopt following technical scheme:
a data structure protective structure of a pipeline cathodic protection data acquisition instrument comprises:
the box body is internally provided with a containing cavity for containing the data acquisition instrument, one side of the box body is provided with an opening, the box body comprises an inner layer and an outer layer, the containing cavity is positioned in the inner layer, and a first opening for exposing a probe of the data acquisition instrument is arranged at the same side position of the inner layer and the outer layer;
the protective cover is provided with meshes in a spread mode and covers the first opening;
the elastic connecting piece is positioned between the inner layer and the outer layer and used for keeping the elastic connection between the inner layer and the outer layer;
the blocking cover is hinged at the opening;
the locking piece can fix the blocking cover in the current state when the blocking cover rotates to cover the opening;
the sliding cover is arranged on the outer layer in a sliding mode, a second opening is formed in the position, on the same side as the other position of the inner layer and the outer layer, of the inner layer, the second opening is used for exposing a button and a display screen of the data acquisition instrument, and when the sliding cover slides to a certain position, the second opening can be covered;
and when the sliding cover slides to cover the second opening, the limiting piece can limit the sliding cover to continuously slide.
Further, the elastic connecting piece is a plurality of first springs distributed between the opposite surfaces of the inner layer and the outer layer.
Furthermore, a sliding groove is formed in the outer layer, and the edge of the sliding cover is in sliding fit with the sliding groove.
Furthermore, the blocking cover is hinged with the outer layer through a hinge.
Further, the locking piece is a bolt with threads inserted on the outer layer, a slot is formed in the blocking cover and used for accommodating the end portion of the bolt, and when the blocking cover rotates to cover the opening, the bolt can be inserted into the slot.
Furthermore, the outer layer is provided with a jack, the limiting part comprises an insert block which is movably inserted into the jack and is elastically connected with the jack, the end part of the insert block is provided with an inclined surface, the sliding cover is provided with a containing groove which is used for containing the insert block, and when the insert block is not subjected to external force and the sliding cover slides to cover the second opening, the end part of the insert block is inserted into the containing groove.
Further, a second spring is connected between the insertion block and the insertion hole.
The utility model has the advantages as follows:
1. the utility model discloses an establish inside the appearance chamber of box and make can put into the instrument inside the box, make when wholly meetting the collision through the design of the elastic connection spare between inlayer and the outside, can be to the transmission of reduction collision dynamics to inside to played the cushioning effect to inside, in order to protect the instrument.
Drawings
FIG. 1 is a perspective view of the present invention;
fig. 2 is another perspective view of the present invention;
FIG. 3 is an effect diagram of the present invention when the cover is not covered with the opening;
FIG. 4 is an exploded view of the present invention;
figure 5 is a further perspective view of figure 4 in accordance with the present invention;
figure 6 is a front view of the present invention as shown in figure 4;
reference numerals: 1. a box body; 101. an inner layer; 102. an outer layer; 2. a first opening; 3. a protective cover; 4. an elastic connecting member; 401. a first spring; 5. a blocking cover; 6. a locking member; 601. a bolt; 7. a sliding cover; 8. a second opening; 9. a limiting member; 901. inserting a block; 10. a chute; 11. inserting slots; 12. a jack; 13. accommodating grooves; 14. a second spring.
Detailed Description
In order to make the objects, technical solutions and advantages of the embodiments of the present invention clearer, the drawings in the embodiments of the present invention are combined below to clearly and completely describe the technical solutions in the embodiments of the present invention.
As shown in fig. 1-6, an embodiment of the present invention provides a data structure protection structure of a pipeline cathode protection data acquisition instrument, including a box body 1, wherein an accommodating cavity is arranged inside the box body 1, the accommodating cavity is used for accommodating the data acquisition instrument, the instrument is placed in the accommodating cavity during use, one side of the box body 1 is provided with an opening, the box body 1 includes an inner layer 101 and an outer layer 102, the accommodating cavity is located inside the inner layer 101, so the opening penetrates through the whole inner layer 101 and the outer layer 102, when the instrument is placed, the instrument can be placed from the opening, the inner layer 101 and the outer layer 102 are provided with a first opening 2 at the same side position, which is equivalent to the box body 1, one side of the box body is provided with a first opening 2, a probe for the data acquisition instrument is exposed, the probe is used for collecting external information, and the probe must be exposed; the protective cover 3 is provided with meshes, the protective cover 3 is covered at the first opening 2, namely is fixed at the first opening 2 and covers the first opening 2 to protect the probe and prevent the probe from being collided by external facilities, and the meshes enable the interior of the probe to be communicated with the outside and do not hinder the normal detection of the probe; the elastic connecting piece 4 is positioned between the inner layer 101 and the outer layer 102 and is used for keeping the elastic connection between the inner layer 101 and the outer layer 102, so that when the outer layer 102 is impacted or collided, the transmission of external impact force to the inner layer 101 can be reduced, the protection effect on the inner layer 101 is realized, and the buffer effect is realized; the baffle cover 5 is hinged at the opening, the size of the lower part of the baffle cover 5 is the same as that of the opening, the baffle cover 5 is also two layers, comprises an inner cover and an outer cover, is connected with the inner cover and the outer cover through an elastic connecting piece 4 and is consistent with the structure of the box body 1; the locking piece 6 can fix the blocking cover 5 in the current state when the blocking cover 5 rotates to cover the opening, so that the blocking cover 5 covers the opening and locks the opening to cover the opening; the sliding cover 7 is slidably mounted on the outer layer 102, a second opening 8 is formed in the position, on the same side as the other side of the inner layer 101 and the outer layer 102, of the sliding cover 7, and is used for exposing a button and a display screen of the data acquisition instrument, the display screen and various buttons are arranged on the instrument and are located at the same position, so that the second opening 8 is used for facilitating operation of the button and observation of the display screen, when the sliding cover 7 slides to a certain position, the second opening 8 can be covered by the sliding cover 7 to protect the button and the display screen, and the sliding cover 7 is made of toughened glass, so that the sliding cover 7 has a transparent effect and is used for facilitating observation of the display screen inside; when the sliding cover 7 slides to cover the second opening 8, the limiting member 9 can limit the sliding cover 7 to continue sliding, which is equivalent to limit the sliding cover 7 at this position, so as to cover the second opening 8, thereby protecting the button and the display screen.
As shown in fig. 4-6, in some embodiments, the elastic connection member 4 is a plurality of first springs 401 distributed between the respective opposite surfaces of the inner layer 101 and the outer layer 102, and the elastic connection between the inner layer 101 and the outer layer 102 is maintained by the elastic force of the springs.
As shown in fig. 4 and 5, in some embodiments, outer layer 102 is configured with a sliding groove 10, and sliding cover 7 is slidably engaged with sliding groove 10 along the edge thereof, so that sliding cover 7 can slide on outer layer 102.
In some embodiments, flap 5 is hinged to outer layer 102, as shown in fig. 2.
As shown in fig. 3, in some embodiments, the locking member 6 is a bolt 601 threadedly inserted into the outer layer 102, wherein the outer layer 102 is provided with a corresponding through hole, the bolt 601 is inserted into the through hole and threadedly engaged with the wall of the hole, the blocking cover 5 is configured with a slot 11 for receiving an end portion of the bolt 601, and when the blocking cover 5 is rotated to cover the opening, the through hole is exactly aligned with the slot 11, so that the bolt 601 can be inserted into the slot 11 to fix the blocking cover 5, thereby limiting the blocking cover 5 to a current state to cover the opening.
As shown in fig. 4-6, in some embodiments, the outer layer 102 is configured with a socket 12, the limiting member 9 includes an insertion block 901 movably inserted into the socket 12 and elastically connected to the socket 12, the end of the insertion block 901 is configured with an inclined surface, where the inclined surface is an upper inclined surface and a lower inclined surface, i.e. two inclined surfaces, facing upward and downward respectively, the sliding cover 7 is configured with a receiving groove 13 for receiving the insertion block 901, when the insertion block 901 is not subjected to an external force and the sliding cover 7 slides to cover the second opening 8, the end of the insertion block 901 is inserted into the receiving groove 13, i.e. in this state, the receiving groove 13 is right above the insertion block 901, so that it can be inserted into the receiving groove 13, when the slider is to slide, the insertion block 901 will be interfered by the relation of the inclined surfaces and elastically retracts into the socket 12, so that the slider can slide, and when sliding again to this position, the insertion block 901 is inserted into the receiving groove 13 again, when the insert 901 is free from external force, only one part of the inclined plane protrudes outwards, so that the plane of the insert cannot influence the contact, the slide is limited at the position by the contact between the inclined planes, the gravity of the dead weight of the slide is fixed at the position, and the insert can slide when being driven by external force, so that the manual operation is facilitated.
As shown in fig. 4, in some embodiments, a second spring 14 is connected between the insert 901 and the jack 12 to satisfy the above-mentioned elastic connection between the insert 901 and the jack 12, and when the second spring 14 is in a normal state, it makes the inclined surface of the insert 901 just in an exposed state.
The previous description of the disclosed embodiments is provided to enable any person skilled in the art to make or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the generic principles defined herein may be applied to other embodiments without departing from the spirit or scope of the invention. Thus, the present invention is not intended to be limited to the embodiments shown herein but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims (7)

1. A data structure protective structure of a pipeline cathode protection data acquisition instrument is characterized by comprising:
the box body (1) is internally provided with a containing cavity for containing a data acquisition instrument, one side of the box body (1) is provided with an opening, the box body (1) comprises an inner layer (101) and an outer layer (102), the containing cavity is positioned in the inner layer (101), and a first opening (2) is arranged at the same side position of the inner layer (101) and the outer layer (102) and used for exposing a probe of the data acquisition instrument;
a protective cover (3) with meshes distributed thereon, wherein the protective cover (3) covers the first opening (2);
the elastic connecting piece (4) is positioned between the inner layer (101) and the outer layer (102) and is used for keeping the elastic connection between the inner layer (101) and the outer layer (102);
a cover (5) hinged at the opening;
the locking piece (6) can fix the blocking cover (5) in the current state when the blocking cover (5) rotates to cover the opening;
the sliding cover (7) is arranged on the outer layer (102) in a sliding mode, a second opening (8) is formed in the position, on the same side as the other side of the inner layer (101) and the outer layer (102), of the inner layer and the outer layer, the button and the display screen of the data acquisition instrument are exposed, and when the sliding cover (7) slides to a certain position, the second opening (8) can be covered;
and the limiting piece (9) can limit the sliding cover (7) to continuously slide when the sliding cover (7) slides to cover the second opening (8).
2. The data structure protection structure of the pipeline cathodic protection data acquisition instrument as claimed in claim 1, wherein the elastic connecting piece (4) is a plurality of first springs (401) distributed between each opposite face of the inner layer (101) and the outer layer (102).
3. The data structure protection structure of the pipeline cathodic protection data acquisition instrument as claimed in claim 1, wherein the outer layer (102) is configured with a sliding groove (10), and the edge of the sliding cover (7) is in sliding fit with the sliding groove (10).
4. The data structure protection structure of the pipeline cathodic protection data acquisition instrument as claimed in claim 1, wherein the baffle cover (5) is hinged with the outer layer (102) through a hinge.
5. The data structure protection structure of the pipeline cathodic protection data acquisition instrument according to claim 1, wherein the locking piece (6) is a bolt (601) with threads inserted on the outer layer (102), the blocking cover (5) is configured with a slot (11) for receiving the end of the bolt (601), and when the blocking cover (5) is rotated to cover the opening, the bolt (601) can be inserted into the slot (11).
6. The data structure protecting structure of the data acquisition instrument for the cathodic protection of a pipeline according to claim 1, characterized in that the outer layer (102) is configured with a jack (12), the limiting member (9) comprises an insert block (901) movably inserted into the jack (12) and elastically connected to the jack (12), the end of the insert block (901) is configured with an inclined surface, the sliding cover (7) is configured with a receiving groove (13) for receiving the insert block (901), when the insert block (901) is not subjected to an external force and the sliding cover (7) slides to cover the second opening (8), the end of the insert block (901) is inserted into the receiving groove (13).
7. The data structure protection structure of the pipeline cathodic protection data acquisition instrument as claimed in claim 6, wherein a second spring (14) is connected between the insert block (901) and the insert hole (12).
CN202221011577.9U 2022-04-26 2022-04-26 Data structure protection structure of pipeline cathodic protection data acquisition instrument Active CN217418815U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221011577.9U CN217418815U (en) 2022-04-26 2022-04-26 Data structure protection structure of pipeline cathodic protection data acquisition instrument

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221011577.9U CN217418815U (en) 2022-04-26 2022-04-26 Data structure protection structure of pipeline cathodic protection data acquisition instrument

Publications (1)

Publication Number Publication Date
CN217418815U true CN217418815U (en) 2022-09-13

Family

ID=83185853

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221011577.9U Active CN217418815U (en) 2022-04-26 2022-04-26 Data structure protection structure of pipeline cathodic protection data acquisition instrument

Country Status (1)

Country Link
CN (1) CN217418815U (en)

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