CN212518150U - Protective structure of container type transformer substation - Google Patents

Protective structure of container type transformer substation Download PDF

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Publication number
CN212518150U
CN212518150U CN202020819893.3U CN202020819893U CN212518150U CN 212518150 U CN212518150 U CN 212518150U CN 202020819893 U CN202020819893 U CN 202020819893U CN 212518150 U CN212518150 U CN 212518150U
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China
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sliding
chassis
limiting plates
container
base
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CN202020819893.3U
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Chinese (zh)
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王会
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Tianjin Jiusheng Machinery Equipment Manufacturing Co ltd
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Tianjin Jiusheng Machinery Equipment Manufacturing Co ltd
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Abstract

The utility model discloses a protective structure of a container type transformer substation, which comprises a box type transformer substation body, a first base, a first sliding chassis, a second base and a second sliding chassis, wherein the first base comprises a first bottom plate and first limiting plates, a first sliding rod is connected between the two first limiting plates, a first sliding chute is arranged on the lower surface of the first sliding chassis, the first sliding rod is embedded into the first sliding chute, and a first buffer spring is sleeved on the first sliding rod; be equipped with the second base on the first slip chassis, the second base includes second bottom plate and second limiting plate, is connected with the second slide bar between two second limiting plates, and the lower surface on second slip chassis is equipped with the second spout, and in the second slide bar embedding second spout, the cover was equipped with second buffer spring on the second slide bar, and second buffer spring's both ends are contradicted on second slip chassis and second limiting plate, and the box-type substation body sets up the upper surface on second slip chassis. The utility model has the advantages of good protection effect and long service life.

Description

Protective structure of container type transformer substation
Technical Field
The utility model relates to a power equipment field, in particular to protective structure of container formula transformer substation.
Background
A container type transformer substation, also called a prefabricated transformer substation or a prefabricated transformer substation, is a factory prefabricated indoor and outdoor compact type distribution device which is composed of a high-voltage switch device, a distribution transformer and a low-voltage distribution device which are arranged into a whole according to a certain wiring scheme.
The box-type transformer substation is suitable for residential districts, urban public transformer, busy cities, construction power supplies and the like. Because the container type transformer substation is generally arranged outdoors, the container type transformer substation can be hit by flying stones or other objects randomly, and important electrical components in the container type transformer substation are easily damaged.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a protective structure of container formula transformer substation has that the protecting effect is good, advantage that life is high.
The above technical purpose of the present invention can be achieved by the following technical solutions:
a protective structure of a container type transformer substation comprises a box type transformer substation body, and further comprises a first base, a first sliding chassis, a second base and a second sliding chassis, wherein the first base comprises a first bottom plate and two first limiting plates which are respectively and vertically arranged at two ends of the first bottom plate, the two first limiting plates are arranged in parallel, a plurality of first sliding rods are connected between the two first limiting plates, a plurality of first sliding chutes are formed in the lower surface of the first sliding chassis, the first sliding rods are embedded into the first sliding chutes, a plurality of first buffer springs are sleeved on the first sliding rods, and two ends of the first buffer springs respectively abut against the side surface of the first sliding chassis and the first limiting plates;
the transformer substation comprises a first sliding chassis, and is characterized in that a second base is arranged on the first sliding chassis, the second base comprises a second bottom plate and two second limiting plates which are vertically arranged at two ends of the second bottom plate respectively, the two second limiting plates are arranged in parallel, a plurality of second sliding rods are connected between the two second limiting plates, a plurality of second sliding chutes are formed in the lower surface of the second sliding chassis, the second sliding rods are embedded into the second sliding chutes, planes where the second sliding rods are located and planes where the first sliding rods are located are parallel to each other, the second sliding rods are perpendicular to the first sliding rods, a plurality of second buffer springs are sleeved on the second sliding rods, two ends of each second buffer spring respectively abut against the side face of the second sliding chassis and the second limiting plate, and the box-type substation body is arranged on the upper surface of the second sliding chassis.
Through adopting above-mentioned technical scheme, in the first spout of first slide bar embedding for first slide chassis can make a round trip to slide on first slide bar. Because be equipped with first buffer spring between first slip chassis and the first limiting plate, and the both ends of first buffer spring are contradicted respectively on the side of first slip chassis and first limiting plate. When the box-type substation body receives the force which is the same as the length direction of the first sliding rod, the first buffer spring can be compressed, so that the impact force is absorbed, and the purpose of buffering and unloading force is achieved.
The second sliding rod is embedded into the second sliding groove, so that the second sliding chassis can slide back and forth on the second sliding rod. Because be equipped with second buffer spring between second slip chassis and the second limiting plate, and the both ends of second buffer spring are contradicted respectively on the side of second slip chassis and second limiting plate. When the box-type substation body receives the force which is the same as the length direction of the second sliding rod, the second buffer spring can be compressed, so that the impact force is absorbed, and the purpose of buffering and unloading force is achieved. The external impact force applied to the box-type substation body can be decomposed into a force in the same length direction as the first sliding rod and a force in the same length direction as the second sliding rod. The impact force is absorbed through the deformation of the first buffer spring and the second buffer spring, so that the container type transformer substation is good in protection effect and long in service life.
The utility model discloses further set up to: the upper surfaces of the first bottom plate and the second bottom plate are slopes in an inverted V shape.
Through adopting above-mentioned technical scheme, when the rainwater fell into on first bottom plate and the second bottom plate, the rainwater can flow down along the slope of the shape of falling V, can not cause the phenomenon of ponding, and is convenient and practical.
The utility model discloses further set up to: the box-type substation body includes the container lateral wall, the container lateral wall includes inlayer wall and outer wall, outer wall is equipped with the protruding strip of buffering that is used for absorbing the impact.
Through adopting above-mentioned technical scheme, set up the container lateral wall into bilayer structure, when outer wall suffered to the striking, thereby the buffering protruding strip can produce deformation and absorb the impact force, reaches the effect of the inside electrical components of protection inlayer wall and box-type substation body.
The utility model discloses further set up to: and a foam buffer layer is arranged between the inner layer wall and the outer layer wall.
Through adopting above-mentioned technical scheme, the foam buffer layer can further increase the buffering and unload the power effect.
The utility model discloses further set up to: the box-type substation body includes the container dog-ear, container dog-ear is equipped with rubber anticollision angle pad.
Through adopting above-mentioned technical scheme, when container dog-ear receives the striking, rubber anticollision angle pad can play the cushioning effect, and rubber anticollision angle pad also can increase the security simultaneously, avoids the people to hit container dog-ear and be injured.
Drawings
FIG. 1 is a schematic structural view of the present embodiment;
fig. 2 is a schematic structural division diagram of the present embodiment.
In the figure, 1, a box-type substation body; 2. a first base; 3. a first sliding chassis; 4. a second base; 5. a second sliding chassis; 6. buffering the raised strips; 7. a rubber anti-collision corner pad; 8. a first base plate; 9. a first limit plate; 10. a first slide bar; 11. a first chute; 12. a first buffer spring; 13. a second base plate; 14. a second limiting plate; 15. a second slide bar; 16. a second chute; 17. a second buffer spring.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
Example (b):
a protective structure of a container type substation, as shown in fig. 1 and 2, includes a box type substation body 1, a first base 2, a first sliding chassis 3, a second base 4, and a second sliding chassis 5. The box-type substation body 1 comprises a container side wall, the container side wall comprises an inner layer wall and an outer layer wall, the outer layer wall comprises a buffer convex strip 6 used for absorbing impact force, and a foam buffer layer is arranged between the inner layer wall and the outer layer wall. The box-type substation body 1 further comprises a container break angle, and a rubber anti-collision corner pad 7 is adhered to the container break angle.
As shown in fig. 1 and 2, the first base 2 includes a first bottom plate 8 and two first limiting plates 9 vertically welded to two ends of the first bottom plate 8, an upper surface of the first bottom plate 8 is an inverted V-shaped slope, the two first limiting plates 9 are arranged in parallel, three first sliding rods 10 are welded between the two first limiting plates 9, three first sliding chutes 11 are arranged on a lower surface of the first sliding chassis 3, the first sliding rods 10 are embedded in the first sliding chutes 11, first buffer springs 12 are sleeved on the first sliding rods 10, and two ends of the first buffer springs 12 respectively abut against the side surface of the first sliding chassis 3 and the first limiting plates 9;
a second base 4 is welded on the first sliding chassis 3, the second base 4 comprises a second bottom plate 13 and two second limiting plates 14 vertically welded at two ends of the second bottom plate 13 respectively, the upper surface of the second bottom plate 13 is an inverted V-shaped slope, the two second limiting plates 14 are arranged in parallel, three second sliding rods 15 are connected between the two second limiting plates 14, the lower surface of the second sliding chassis 5 is provided with three second sliding grooves 16, the second sliding rods 15 are embedded in the second sliding grooves 16, the plane of the second sliding rod 15 and the plane of the first sliding rod 10 are parallel to each other, the second sliding rod 15 and the first sliding rod 10 are perpendicular to each other, a second buffer spring 17 is sleeved on the second sliding rod 15, two ends of the second buffer spring 17 abut against the side face of the second sliding chassis 5 and the second limiting plate 14 respectively, and the box-type substation body 1 is welded on the upper surface of the second sliding chassis 5.
When the box-type substation body 1 is stressed by the force in the same length direction as the first sliding rod 10, the first buffer spring 12 is compressed, so that the impact force is absorbed, and the purpose of buffering and unloading force is achieved. When the box-type substation body 1 is subjected to the force in the same length direction as the second sliding rod 15, the second buffer spring 17 is compressed, so that the impact force is absorbed, and the purpose of buffering and unloading force is achieved. The external impact force applied to the box-type substation body 1 can be decomposed into a force in the same length direction as the first sliding rod 10 and a force in the same length direction as the second sliding rod 15. The impact force is absorbed through the deformation of the first buffer spring 12 and the second buffer spring 17, so that the container type transformer substation is good in protection effect and long in service life.
The above-described embodiments do not limit the scope of the present invention. Any modification, equivalent replacement, and improvement made within the spirit and principle of the above-described embodiments should be included in the protection scope of the technical solution.

Claims (5)

1. The utility model provides a protective structure of container formula transformer substation, includes box-type transformer substation body (1), characterized by: the sliding device is characterized by further comprising a first base (2), a first sliding chassis (3), a second base (4) and a second sliding chassis (5), wherein the first base (2) comprises a first bottom plate (8) and two first limiting plates (9) which are respectively and vertically arranged at two ends of the first bottom plate (8), the two first limiting plates (9) are arranged in parallel, a plurality of first sliding rods (10) are connected between the two first limiting plates (9), a plurality of first sliding chutes (11) are formed in the lower surface of the first sliding chassis (3), the first sliding rods (10) are embedded into the first sliding chutes (11), a plurality of first buffer springs (12) are sleeved on the first sliding rods (10), and two ends of each first buffer spring (12) are abutted to the side surface of the first sliding chassis (3) and the first limiting plates (9) respectively;
the second base (4) is arranged on the first sliding chassis (3), the second base (4) comprises a second bottom plate (13) and two second limiting plates (14) which are respectively and vertically arranged at two ends of the second bottom plate (13), the two second limiting plates (14) are arranged in parallel, a plurality of second sliding rods (15) are connected between the two second limiting plates (14), a plurality of second sliding chutes (16) are formed in the lower surface of the second sliding chassis (5), the second sliding rods (15) are embedded into the second sliding chutes (16), the plane where the second sliding rods (15) are located and the plane where the first sliding rods (10) are located are parallel, the second sliding rods (15) are mutually perpendicular to the first sliding rods (10), a plurality of second buffer springs (17) are sleeved on the second sliding rods (15), two ends of the second buffer springs (17) respectively abut against the side surface of the second sliding chassis (5) and the second limiting plates (14), the box-type substation body (1) is arranged on the upper surface of the second sliding chassis (5).
2. The protective structure of a container type substation according to claim 1, characterized in that: the upper surfaces of the first bottom plate (8) and the second bottom plate (13) are slopes in an inverted V shape.
3. The protective structure of a container type substation according to claim 2, characterized in that: the box-type substation body (1) includes the container lateral wall, the container lateral wall includes inlayer wall and outer wall, outer wall is equipped with buffering protruding strip (6) that are used for absorbing the impact.
4. A protective structure for a container type substation according to claim 3, characterized in that: and a foam buffer layer is arranged between the inner layer wall and the outer layer wall.
5. The protective structure of a container type substation according to claim 4, characterized in that: the box-type substation body (1) comprises a container break angle, and a rubber anti-collision corner pad (7) is arranged at the container break angle.
CN202020819893.3U 2020-05-15 2020-05-15 Protective structure of container type transformer substation Active CN212518150U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020819893.3U CN212518150U (en) 2020-05-15 2020-05-15 Protective structure of container type transformer substation

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020819893.3U CN212518150U (en) 2020-05-15 2020-05-15 Protective structure of container type transformer substation

Publications (1)

Publication Number Publication Date
CN212518150U true CN212518150U (en) 2021-02-09

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020819893.3U Active CN212518150U (en) 2020-05-15 2020-05-15 Protective structure of container type transformer substation

Country Status (1)

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CN (1) CN212518150U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113991470A (en) * 2021-09-09 2022-01-28 天津市威匡电气设备有限公司 Power equipment control cabinet

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113991470A (en) * 2021-09-09 2022-01-28 天津市威匡电气设备有限公司 Power equipment control cabinet

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