CN217443456U - Sliding disc for 10kV handcart type switch cabinet nuclear phase instrument - Google Patents
Sliding disc for 10kV handcart type switch cabinet nuclear phase instrument Download PDFInfo
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- CN217443456U CN217443456U CN202122832383.7U CN202122832383U CN217443456U CN 217443456 U CN217443456 U CN 217443456U CN 202122832383 U CN202122832383 U CN 202122832383U CN 217443456 U CN217443456 U CN 217443456U
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Abstract
The utility model discloses a 10kV handcart-type cubical switchboard nuclear phase appearance is with smooth dish, including first U type frame, second U type frame, first L type frame and second L type frame, first U type frame includes first sleeve, second sleeve and third sleeve, second U type frame includes fourth sleeve, fifth sleeve and sixth sleeve, first L type frame includes seventh sleeve and eighth sleeve. The equipment is suitable for the nuclear phase work of the 10kV handcart type switch cabinet, during the nuclear phase, a tester does not need to enter the switch cabinet, the nuclear phase instrument can be directly pushed into the switch cabinet, and the upper and lower insulating baffles in the cabinet are opened to complete the nuclear phase through supporting the baffle connecting rod in the cabinet, so that the safety is improved; the nuclear phase instrument can be freely adjusted in the transverse direction and the longitudinal direction, so that the nuclear phase instrument can be suitable for nuclear phase work of all 10kV handcart type switch cabinets in transformer substations, and has universality; the operation is very convenient, only one person is needed to operate and monitor, and the working benefit is improved.
Description
Technical Field
The utility model relates to a nuclear phase appearance technical field especially relates to a 10kV handcart-type cubical switchboard is sliding tray for nuclear phase appearance.
Background
Before the new equipment is put into operation or after the new equipment is overhauled, equipment with possibly changed phase is put into operation of a system, phase sequence is checked to be the same, and then the phase alignment can be carried out at the same time. The method is complex in operation and long in time consumption, and people are easily subjected to electric shock when hands extend into the switch cabinet, so that the potential safety hazard is great. Therefore, a new phase detector has to be introduced to revolutionize the method, reduce the phase detection time, and reduce the safety risk. A few switch cabinet manufacturers design special nuclear phase auxiliary tools for own products, but the switch cabinets manufactured by the manufacturers have different sizes, so the tools can only play a role in the switch cabinets of the manufacturers, the universality is avoided, and the cost is increased if the corresponding auxiliary tools are purchased completely.
SUMMERY OF THE UTILITY MODEL
This neotype aim at: in order to solve the problems, the sliding disc for the 10kV handcart type switch cabinet nuclear phase instrument is provided.
In order to realize the purpose, the novel device adopts the following technical scheme:
the utility model provides a 10kV handcart-type cubical switchboard nuclear phase slide tray for appearance, includes first U type frame, second U type frame, first L type frame and second L type frame, first U type frame includes first sleeve, second sleeve and third sleeve, second U type frame includes fourth sleeve, fifth sleeve and sixth sleeve, first L type frame includes seventh sleeve and eighth sleeve, second L type frame includes ninth sleeve and tenth sleeve, the side of first U type frame, second U type frame, first L type frame and second L type frame all is provided with the gyro wheel.
Preferably, the fifth sleeve is located in the second sleeve, the fifth sleeve and the second sleeve are slidably connected, the sixth sleeve is located in the third sleeve, and the sixth sleeve and the third sleeve are slidably connected.
Preferably, the seventh sleeve is located in the fourth sleeve, the seventh sleeve and the fourth sleeve are slidably connected, the eighth sleeve is located in the tenth sleeve, the eighth sleeve and the tenth sleeve are slidably connected, the ninth sleeve is located in the first sleeve, and the ninth sleeve and the first sleeve are slidably connected.
Preferably, the end portions of the fifth sleeve, the sixth sleeve, the eighth sleeve and the ninth sleeve are uniformly provided with limiting holes, the end portions of the second sleeve, the third sleeve, the tenth sleeve and the first sleeve are provided with positioning holes, and positioning pins are arranged in the positioning holes.
Preferably, the side surfaces of the second sleeve and the fifth sleeve are provided with U-shaped pull rings.
Preferably, the top of the seventh sleeve and the ninth sleeve is provided with a limit groove.
In conclusion, due to the adoption of the technical scheme, the novel beneficial effects are as follows:
the equipment is suitable for the nuclear phase work of the 10kV handcart type switch cabinet, during the nuclear phase, a tester does not need to enter the switch cabinet, the nuclear phase instrument can be directly pushed into the switch cabinet, and the upper and lower insulating baffles in the cabinet are opened to complete the nuclear phase through supporting the baffle connecting rod in the cabinet, so that the safety is improved; the nuclear phase instrument can be freely adjusted in the transverse direction and the longitudinal direction, so that the nuclear phase instrument can be suitable for nuclear phase work of all 10kV handcart type switch cabinets in transformer substations, and has universality; the operation is very convenient, only one person is needed to operate and monitor, and the working benefit is improved.
Drawings
FIG. 1 is a schematic diagram illustrating a three-dimensional structure provided according to the present novel embodiment
Illustration of the drawings:
1. a first U-shaped frame; 101. a first sleeve; 102. a second sleeve; 103. a third sleeve; 2. a second U-shaped frame; 201. a fourth sleeve; 202. a fifth sleeve; 203. a sixth sleeve; 3. a first L-shaped frame; 301. a seventh sleeve; 302. an eighth sleeve; 4. a second L-shaped frame; 401. a ninth sleeve; 402. a tenth sleeve; 5. a limiting hole; 6. positioning pins; 7. a U-shaped pull ring; 8. a roller; 9. a limiting groove; 10. and (7) positioning the holes.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments of the present invention without any inventive step, are within the scope of the present invention.
Referring to fig. 1, the present invention provides a technical solution:
a sliding disc for a 10kV handcart type switch cabinet phase detector comprises a first U-shaped frame 1, a second U-shaped frame 2, a first L-shaped frame 3 and a second L-shaped frame 4, wherein the first U-shaped frame 1 comprises a first sleeve 101, a second sleeve 102 and a third sleeve 103, the second U-shaped frame 2 comprises a fourth sleeve 201, a fifth sleeve 202 and a sixth sleeve 203, the first L-shaped frame 3 comprises a seventh sleeve 301 and an eighth sleeve 302, the second L-shaped frame 4 comprises a ninth sleeve 401 and a tenth sleeve 402, and rollers 8 are arranged on the side surfaces of the first U-shaped frame 1, the second U-shaped frame 2, the first L-shaped frame 3 and the second L-shaped frame 4; the fifth sleeve 202 is positioned in the second sleeve 102, the fifth sleeve 202 is connected with the second sleeve 102 in a sliding way, the sixth sleeve 203 is positioned in the third sleeve 103, and the sixth sleeve 203 is connected with the third sleeve 103 in a sliding way; the seventh sleeve 301 is positioned in the fourth sleeve 201, the seventh sleeve 301 is slidably connected with the fourth sleeve 201, the eighth sleeve 302 is positioned in the tenth sleeve 402, the eighth sleeve 302 is slidably connected with the tenth sleeve 402, the ninth sleeve 401 is positioned in the first sleeve 101, and the ninth sleeve 401 is slidably connected with the first sleeve 101; limiting holes 5 are uniformly formed in the end portions of the fifth sleeve 202, the sixth sleeve 203, the eighth sleeve 302 and the ninth sleeve 401, positioning holes 10 are formed in the end portions of the second sleeve 102, the third sleeve 103, the tenth sleeve 402 and the first sleeve 101, and positioning pins 6 are arranged in the positioning holes 10; the side surfaces of the second sleeve 102 and the fifth sleeve 202 are both provided with U-shaped pull rings 7; the top of seventh sleeve 301 and ninth sleeve 401 is provided with spacing groove 9, and the nuclear phase appearance includes phase display, two insulating telescopic links, nuclear phase probe and reserve battery, installs the X, Y probe of the wireless nuclear phase appearance of 10kV on insulating telescopic link during the use, opens the phase display, carries out self calibration to wireless nuclear phase appearance, stretches into the cubical switchboard with the probe behind the mistake and carries out nuclear phase, and the nuclear phase result directly shows on the phase display, and the test result is succinct and clear.
Specifically, as shown in fig. 1, the fifth sleeve 202 is located in the second sleeve 102, the fifth sleeve 202 is slidably connected with the second sleeve 102, the sixth sleeve 203 is located in the third sleeve 103, and the sixth sleeve 203 is slidably connected with the third sleeve 103; the seventh sleeve 301 is positioned in the fourth sleeve 201, the seventh sleeve 301 is slidably connected with the fourth sleeve 201, the eighth sleeve 302 is positioned in the tenth sleeve 402, the eighth sleeve 302 is slidably connected with the tenth sleeve 402, the ninth sleeve 401 is positioned in the first sleeve 101, and the ninth sleeve 401 is slidably connected with the first sleeve 101; the end parts of the fifth sleeve 202, the sixth sleeve 203, the eighth sleeve 302 and the ninth sleeve 401 are all uniformly provided with limiting holes 5, the end parts of the second sleeve 102, the third sleeve 103, the tenth sleeve 402 and the first sleeve 101 are provided with positioning holes 10, positioning pins 6 are arranged in the positioning holes 10, and the positioning pins 6 are inserted into the positioning holes 10 and the limiting holes 5.
Specifically, as shown in fig. 1, U-shaped pull rings 7 are disposed on the side surfaces of the second sleeve 102 and the fifth sleeve 202, and limit grooves 9 are disposed at the tops of the seventh sleeve 301 and the ninth sleeve 401, where the limit grooves 9 play a role in limiting the deflection of the sliding disk when in use.
The previous description of the 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 (6)
1. The utility model provides a 10kV handcart-type cubical switchboard nuclear phase slide disc for appearance which characterized in that, includes first U type frame (1), second U type frame (2), first L type frame (3) and second L type frame (4), first U type frame (1) includes first sleeve (101), second sleeve (102) and third sleeve (103), second U type frame (2) include fourth sleeve (201), fifth sleeve (202) and sixth sleeve (203), first L type frame (3) include seventh sleeve (301) and eighth sleeve (302), second L type frame (4) include ninth sleeve (401) and tenth sleeve (402), the side of first U type frame (1), second U type frame (2), first L type frame (3) and second L type frame (4) all is provided with gyro wheel (8).
2. The sliding disk for 10kV handcart type switch cabinet nuclear phase instrument according to claim 1, wherein the fifth sleeve (202) is located in the second sleeve (102), the fifth sleeve (202) is slidably connected with the second sleeve (102), the sixth sleeve (203) is located in the third sleeve (103), and the sixth sleeve (203) is slidably connected with the third sleeve (103).
3. The sliding disk for 10kV handcart type switch cabinet nuclear phase instrument according to claim 1, wherein the seventh sleeve (301) is located in the fourth sleeve (201), the seventh sleeve (301) is slidably connected with the fourth sleeve (201), the eighth sleeve (302) is located in the tenth sleeve (402), the eighth sleeve (302) is slidably connected with the tenth sleeve (402), the ninth sleeve (401) is located in the first sleeve (101), and the ninth sleeve (401) is slidably connected with the first sleeve (101).
4. The sliding disc for the 10kV handcart type switch cabinet nuclear phase instrument according to claim 1, wherein the end parts of the fifth sleeve (202), the sixth sleeve (203), the eighth sleeve (302) and the ninth sleeve (401) are uniformly provided with limiting holes (5), the end parts of the second sleeve (102), the third sleeve (103), the tenth sleeve (402) and the first sleeve (101) are provided with positioning holes (10), and positioning pins (6) are arranged in the positioning holes (10).
5. The sliding disc for the 10kV handcart type switch cabinet nuclear phase instrument according to claim 4, wherein the side surfaces of the second sleeve (102) and the fifth sleeve (202) are provided with U-shaped pull rings (7).
6. The sliding disc for the 10kV handcart type switch cabinet nuclear phase instrument according to claim 1, wherein the tops of the seventh sleeve (301) and the ninth sleeve (401) are provided with a limiting groove (9).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202122832383.7U CN217443456U (en) | 2021-11-18 | 2021-11-18 | Sliding disc for 10kV handcart type switch cabinet nuclear phase instrument |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202122832383.7U CN217443456U (en) | 2021-11-18 | 2021-11-18 | Sliding disc for 10kV handcart type switch cabinet nuclear phase instrument |
Publications (1)
Publication Number | Publication Date |
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CN217443456U true CN217443456U (en) | 2022-09-16 |
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CN202122832383.7U Active CN217443456U (en) | 2021-11-18 | 2021-11-18 | Sliding disc for 10kV handcart type switch cabinet nuclear phase instrument |
Country Status (1)
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CN (1) | CN217443456U (en) |
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2021
- 2021-11-18 CN CN202122832383.7U patent/CN217443456U/en active Active
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