THREE-MODE GEOMAGNETIC DETECTOR
20220308247 ยท 2022-09-29
Assignee
Inventors
Cpc classification
G01V3/081
PHYSICS
G08G1/146
PHYSICS
International classification
G01V3/08
PHYSICS
Abstract
A three-mode geomagnetic detector is provided. The detector includes an upper cover, a lower casing, and an inner container. A bottom of the inner container is detachably connected to a bottom of the upper cover, the inner container is sleeved within the upper cover, and the upper cover is snap-fitted to the lower casing. Through the design of the inner container, the use of an O-shaped sealing ring is avoided, such that poor sealing caused by the O-shaped sealing ring deformation due to vehicle rolling is avoided, and opening for replacement of components is convenient.
Claims
1. A three-mode geomagnetic detector comprising an upper cover, a lower casing, and an inner container, wherein a bottom of the inner container is detachably connected to a bottom of the upper cover, the inner container is sleeved within the upper cover, and the upper cover is snap-fitted to the lower casing.
2. The three-mode geomagnetic detector according to claim 1, wherein the upper cover is provided with an external thread, the lower casing is provided with a plurality of protrusions for tightly clamping the external thread, and the external thread is snap-fitted to the protrusions.
3. The three-mode geomagnetic detector according to claim 1, wherein the bottom of the inner container is provided with a junction, the bottom of the upper cover is provided with a mounting portion, the junction is provided with first holes, the mounting portion is provided with second holes aligned with the first holes, and the first holes and the second holes are connected by first screws.
4. The three-mode geomagnetic detector according to claim 3, wherein the upper cover is provided with a cover plate, and the cover plate covers the lower casing.
5. The three-mode geomagnetic detector according to claim 1, wherein the inner container is internally provided with supporting columns, a spacer is arranged on the supporting columns, the spacer is provided with third holes, which are connected to the supporting columns by second screws.
6. The three-mode geomagnetic detector according to claim 5, wherein the cover plate is provided with an indication mark for indicating an opening direction of the upper cover.
7. The three-mode geomagnetic detector according to claim 6, wherein the cover plate (15) is provided with a groove and a digital scale.
8. The three-mode geomagnetic detector according to claim 1, wherein the upper cover is made of a transparent material.
9. The three-mode geomagnetic detector according to claim 8, wherein the upper cover is made of a transparent Polycarbonate (PC) material.
10. The three-mode geomagnetic detector according to claim 1, wherein the lower casing is provided with uneven parts.
11. The three-mode geomagnetic detector according to claim 2, wherein the bottom of the inner container is provided with a junction, the bottom of the upper cover is provided with a mounting portion, the junction is provided with first holes, the mounting portion is provided with second holes aligned with the first holes, and the first holes and the second holes are connected by first screws.
12. The three-mode geomagnetic detector according to claim 2, wherein the inner container is internally provided with supporting columns, a spacer is arranged on the supporting columns, the spacer is provided with third holes, which are connected to the supporting columns by second screws.
13. The three-mode geomagnetic detector according to claim 4, wherein the inner container is internally provided with supporting columns, a spacer is arranged on the supporting columns, the spacer is provided with third holes, which are connected to the supporting columns by second screws.
14. The three-mode geomagnetic detector according to claim 2, wherein the upper cover is made of a transparent material.
15. The three-mode geomagnetic detector according to claim 4, wherein the upper cover is made of a transparent material.
16. The three-mode geomagnetic detector according to claim 6, wherein the upper cover is made of a transparent material.
17. The three-mode geomagnetic detector according to claim 7, wherein the upper cover is made of a transparent material.
18. The three-mode geomagnetic detector according to claim 2, wherein the lower casing is provided with uneven parts.
19. The three-mode geomagnetic detector according to claim 4, wherein the lower casing is provided with uneven parts.
20. The three-mode geomagnetic detector according to claim 6, wherein the lower casing is provided with uneven parts.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0018]
[0019]
[0020]
[0021]
[0022]
[0023]
[0024]
[0025] List of the reference characters: 1 upper cover; 11 external thread; 12 mounting portion; 121 second hole; 13 groove; 14 digital scale; 15 cover plate; 16 indication mark; 2 lower casing; 21 protrusion; 22 uneven part; 3 inner container; 31 junction; 311 first hole; 32 supporting column; 4 spacer; and 41 third hole.
DETAILED DESCRIPTION OF THE EMBODIMENTS
[0026] The present disclosure will be further described below in conjunction with the drawings and implementations.
[0027] As shown in
[0028] The upper cover 1 is provided with an external thread 11. The lower casing 2 is provided with a plurality of protrusions 21 for tightly clamping the external thread 11. The external thread 11 is snap-fitted to the protrusion 21. The external thread 11 being snap-fitted to the protrusion 21 means that the external thread 11 is screwed and snap-fitted into the protrusion 21 such that the upper cover 1 is clamped to the lower casing 2 tightly.
[0029] The bottom of the inner container 3 is provided with a junction 31. The bottom of the upper cover 1 is provided with a mounting portion 12. The junction 31 is provided with first holes 311. The mounting portion 12 is provided with second holes 121 aligned with the first holes 311. The first holes 311 are connected to the second holes 121 by first screws.
[0030] The inner container 3 is internally provided with supporting columns 32. A spacer 4 is arranged on the supporting columns 32. The spacer 4 is provided with third holes 41, which are connected to the supporting column 32 by second screws. There are 3 the third holes 41 in the spacer 4, and there are 3 the supporting columns 32. Both the third holes 41 and the supporting columns 32 are arranged in a triangle shape, which makes the spacer more stable. The second screws pass through the third holes 41 and then enter into apertures provided in the supporting columns 32 to be fixed.
[0031] The upper cover 1 is provided with a cover plate 15, and the cover plate 15 covers the lower casing 2.
[0032] The cover plate 15 is provided with an indication mark 16 for indicating an opening direction of the upper cover 1.
[0033] The cover plate 15 is provided with a groove 13 and a digital scale 14.
[0034] The upper cover 1 is made of a transparent material.
[0035] The upper cover 1 is made of a transparent PC material.
[0036] The lower casing 2 is provided with uneven parts 22.
[0037] The various embodiments in the specification are described progressively, and each embodiment mainly illustrates the differences from other embodiments, and the same or similar parts among the various embodiments can be referred to each other.
[0038] The foregoing descriptions of the disclosed embodiments enables those skilled in the art to implement or use the present disclosure. Various modifications to these embodiments will be obvious to those skilled in the art, and general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present disclosure. Therefore, the present disclosure shall not be limited to these embodiments shown herein, but should conform to the widest scope consistent with the principles and novel features disclosed herein.