Isolation tank assembly and container

By simplifying the structure of the isolation trench assembly, including a first base plate, a first wall plate, a second wall plate, and an intermediate wall plate, the problem of complex structure of isolation trench assemblies in the prior art is solved, and effective isolation and simplified arrangement of high-voltage and low-voltage cables are achieved.

CN224318637UActive Publication Date: 2026-06-02DONGGUAN SOUTHERN CIMC LOGISTIC EQUIP MFG CO +2

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
DONGGUAN SOUTHERN CIMC LOGISTIC EQUIP MFG CO
Filing Date
2025-06-05
Publication Date
2026-06-02

AI Technical Summary

Technical Problem

Existing isolation trench components have complex structures, making it difficult to effectively isolate and arrange high-voltage and low-voltage cables, and are also inconvenient to manufacture.

Method used

The isolation trench assembly with a simplified structure includes a first base plate, a first wall plate, a second wall plate, and an intermediate wall plate. These components form a high-voltage trench and a low-voltage trench, and wiring notches are provided on the wall plates, which simplifies the cable layout and processing.

Benefits of technology

It achieves effective isolation between high-voltage and low-voltage cables, avoids radiation interference, simplifies cable layout and processing, and improves processing efficiency.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN224318637U_ABST
    Figure CN224318637U_ABST
Patent Text Reader

Abstract

This utility model discloses an isolation channel assembly and a container. The isolation channel assembly includes a first base plate, a first wall plate, a second wall plate, and a middle wall plate. The first wall plate extends above the first base plate and is connected to it. The second wall plate extends above the first base plate and is connected to it, with a first wiring notch and a second wiring notch at its top. The middle wall plate extends above the first base plate and is connected to it, with a third wiring notch at its top. Thus, the middle wall plate separates high-voltage cables and low-voltage cables, preventing interference between them. The structures of the first base plate, first wall plate, second wall plate, and middle wall plate are all simple and easy to manufacture. The first, second, and third wiring notches facilitate cable routing, with both high-voltage and low-voltage cables entering or leaving the isolation channel assembly from the side of the second wall plate away from the first wall plate, facilitating wiring.
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Description

Technical Field

[0001] This utility model relates to the field of containers, and more specifically to isolation trough components and containers. Background Technology

[0002] Existing energy storage containers contain batteries. These batteries are connected to high-voltage and low-voltage cables. The energy storage containers also contain insulating duct assemblies to separate the high-voltage and low-voltage cables.

[0003] The isolation channel assembly includes a base plate, wall panels, and isolation elements. The plane containing the base plate is perpendicular to the plane containing the wall panels. The wall panels are attached to one end of the base plate and extend above the base plate.

[0004] The isolator is positioned above the base plate and connected to it. The isolator is formed by repeatedly bending a sheet material. It is located on the side of the wall panel and spaced apart from it. This creates two separate isolation spaces on either side of the isolator. High-voltage and low-voltage cables are respectively housed in these two spaces, thus isolating them. However, the isolator has a complex structure. Utility Model Content

[0005] The utility model description section introduces a series of simplified concepts, which will be further described in detail in the detailed embodiments section. This utility model description section is not intended to limit the key features and essential technical features of the claimed technical solution, nor is it intended to determine the scope of protection of the claimed technical solution.

[0006] To at least partially solve the above-mentioned technical problems, the present invention provides an isolation groove assembly, the isolation groove assembly comprising:

[0007] First base plate;

[0008] The first wall panel extends above the first base plate and is connected to the first base plate;

[0009] The second wall panel extends above the first base plate and is connected to the first base plate. The top of the second wall panel has a first wiring notch and a second wiring notch, which are spaced apart.

[0010] The intermediate wall panel extends above the first base plate and connects to the first base plate. The top of the intermediate wall panel has a third wiring notch, which is located at the corresponding first wiring notch.

[0011] Along the first setting direction of the first base plate, the first wall panel, the intermediate wall panel and the second wall panel are arranged alternately to form a separated high-pressure tank and a first low-pressure tank.

[0012] According to the isolation trough assembly of this utility model, the high-voltage trough can be used to install high-voltage cables, and the first low-voltage trough can be used to install low-voltage cables. The intermediate wall panel separates the high-voltage cables and the low-voltage cables, preventing them from radiating and interfering with each other. In addition, it facilitates the arrangement of high-voltage cables and low-voltage cables. The high-voltage trough and the first low-voltage trough are formed by the first base plate, the first wall panel, the second wall panel, and the intermediate wall panel. The intermediate wall panel separates the high-voltage trough and the first low-voltage trough, thereby separating the high-voltage cables and the low-voltage cables. The structures of the first base plate, the first wall panel, the second wall panel, and the intermediate wall panel are all simple and easy to process. The setting of the first wiring notch, the second wiring notch, and the third wiring notch facilitates wiring. Both the high-voltage cables and the low-voltage cables extend into or leave the isolation trough assembly from the side of the second wall panel away from the first wall panel, which facilitates wiring.

[0013] Optionally, the isolation trench assembly includes a partition component, which comprises a first base plate, a first wall plate, a second wall plate, and an intermediate wall plate.

[0014] The separating component includes two first grooves and a second groove. The two first grooves are spaced apart. One end of the second groove is connected to one of the first grooves, and the other end of the second groove is connected to the other first groove.

[0015] Optionally, the separating component further includes an extension, one end of which communicates with the second groove.

[0016] The extension extends to the side of the second groove away from the first groove, and the end of the extension away from the second groove has a high-pressure end notch that connects to the high-pressure groove and a low-pressure end notch that connects to the first low-pressure groove.

[0017] Optionally, the isolation trench assembly includes a low-pressure component, which includes:

[0018] Second base plate;

[0019] The third wall panel extends above the second base plate and connects to the second base plate;

[0020] The fourth wall panel extends above the second base plate and connects to the second base plate;

[0021] Along the second setting direction of the second base plate, the third wall plate and the fourth wall plate are arranged alternately to form the second low-pressure tank;

[0022] The separator is connected to the low-pressure component, and the second low-pressure tank is connected to the first low-pressure tank.

[0023] Optionally, the low-pressure component is connected to the end of the first groove that is away from the second groove, so that the two ends of the second low-pressure groove are respectively connected to the first low-pressure grooves of the two first grooves.

[0024] Optionally, two first wall panels are respectively provided at the adjacent ends of the two first grooves.

[0025] Optionally, the isolation trench assembly includes fasteners, a bracket, and a partition component. The partition component includes multiple sub-partition components, the ends of which abut against each other to form the partition component. The sub-partition component includes a first base plate, a first wall plate, a second wall plate, and an intermediate wall plate.

[0026] The bracket is located below the sub-divider, and the ends of the sub-divider are overlapped and connected to the bracket by fasteners.

[0027] Optionally, the bracket includes a vertical wall, the top of which is bent and extended in a horizontal direction to form a support wall, and the end of the sub-dividing member overlaps with the support wall.

[0028] Optionally, the width of the high-pressure tank is greater than the width of the first low-pressure tank.

[0029] Optionally, the high-pressure opening of the high-pressure tank and the first low-pressure opening of the first low-pressure tank both face upwards, and / or

[0030] The first base plate, the first wall plate, and the second wall plate are constructed as a single integral structure, with the middle wall plate connected to the upper surface of the first base plate.

[0031] This utility model also provides a container, which includes a base frame and the aforementioned isolation trough assembly, the isolation trough assembly being located above the base frame and connected to the base frame.

[0032] According to the present invention, the container includes the aforementioned isolation trough assembly. The high-voltage trough can be used to install high-voltage cables, and the first low-voltage trough can be used to install low-voltage cables. The intermediate wall panel separates the high-voltage cables and the low-voltage cables to prevent them from radiating and interfering with each other. In addition, it facilitates the arrangement of high-voltage cables and low-voltage cables. The high-voltage trough and the first low-voltage trough are formed by the first bottom plate, the first wall panel, the second wall panel, and the intermediate wall panel. The intermediate wall panel separates the high-voltage trough and the first low-voltage trough, thereby separating the high-voltage cables and the low-voltage cables. The structures of the first bottom plate, the first wall panel, the second wall panel, and the intermediate wall panel are all simple and easy to process. The setting of the first wiring notch, the second wiring notch, and the third wiring notch facilitates wiring. Both the high-voltage cables and the low-voltage cables extend into or out of the isolation trough assembly from the side of the second wall panel away from the first wall panel, which facilitates wiring. Attached Figure Description

[0033] To make the advantages of this invention more readily apparent, the invention briefly described above will be described in more detail with reference to the specific embodiments shown in the accompanying drawings. It should be understood that these drawings depict only typical embodiments of the invention and should not be construed as limiting its scope of protection. The invention is described and explained with additional features and details through the drawings.

[0034] Figure 1This is a perspective view of an isolation groove assembly according to a preferred embodiment of the present invention;

[0035] Figure 2 for Figure 1 A partially enlarged schematic diagram of point A of the isolation groove assembly;

[0036] Figure 3 for Figure 1 A partially enlarged schematic diagram of point B of the isolation groove assembly;

[0037] Figure 4 for Figure 1 A partially enlarged schematic diagram of point C of the isolation groove assembly; and

[0038] Figure 5 To adopt Figure 1 A three-dimensional schematic diagram of a container with isolation channel components.

[0039] Explanation of reference numerals in the attached figures

[0040] 110: Separator component; 111: Sub-separator component

[0041] 112: First groove section; 113: Second groove section

[0042] 114: Extension section; 115: High-voltage end notch

[0043] 116: Low-pressure end notch; 117: First low-pressure opening

[0044] 118: High-pressure opening; 121: First base plate

[0045] 122: First wall panel; 123: Second wall panel

[0046] 124: Intermediate wall panel; 125: High-pressure tank.

[0047] 126: First low-voltage slot; 127: First wiring gap

[0048] 128: Second routing gap 129: Third routing gap

[0049] 130: Low-voltage component; 131: Second base plate

[0050] 132: Third wall panel 133: Fourth wall panel

[0051] 134: Second low-pressure tank; 135: Second low-pressure opening

[0052] 140: Fastener 150: Bracket

[0053] 151: Vertical wall; 152: Supporting wall

[0054] 153: First support; 154: Second support

[0055] 155: First vertical wall 156: Second vertical wall

[0056] 160: Base frame; 170: Isolation plate Detailed Implementation

[0057] In the following description, numerous specific details are set forth in order to provide a more thorough understanding of the present invention. However, it will be apparent to those skilled in the art that embodiments of the present invention may be practiced without one or more of these details. In other instances, certain technical features well-known in the art have not been described in order to avoid confusion with embodiments of the present invention.

[0058] The preferred embodiments of this utility model will now be described with reference to the accompanying drawings. It should be noted that the terms "upper," "lower," and similar expressions used herein are for illustrative purposes only and are not intended to be limiting.

[0059] In this document, ordinal numbers such as “first” and “second” used in this invention are merely identifiers and do not include any other meaning, such as a specific order.

[0060] To fully understand the embodiments of this utility model, a detailed structure will be presented in the following description. Obviously, the implementation of the embodiments of this utility model is not limited to the specific details familiar to those skilled in the art. Preferred embodiments of this utility model are described in detail below; however, in addition to these detailed descriptions, this utility model may also include other embodiments.

[0061] This invention provides an isolation channel assembly. The isolation channel assembly can be used in shipping containers. The shipping container can be an energy storage container equipped with batteries. The isolation channel assembly can be fixed to the container's base frame 160 using fasteners. The isolation channel assembly can be used to house high-voltage cables and low-voltage cables, separating and shielding them.

[0062] Please refer to Figures 1 to 5 The isolation trough assembly includes a partition component 110. The partition component 110 includes a first base plate 121, a first wall plate 122, a second wall plate 123, and an intermediate wall plate 124.

[0063] The first base plate 121, the first wall panel 122, the second wall panel 123, and the intermediate wall panel 124 can all be flat plate structures. When the isolation channel assembly is installed in the container, the plane containing the first base plate 121 is perpendicular to the vertical direction D3.

[0064] It should be noted that the orientation described in this article is based on the orientation of the isolation trough assembly when it is installed in a container.

[0065] like Figures 2 to 4 As shown, the plane containing the first wall panel 122, the plane containing the second wall panel 123, and the plane containing the intermediate wall panel 124 are all perpendicular to the horizontal direction. The planes containing the first wall panel 122, the second wall panel 123, and the intermediate wall panel 124 are parallel to each other.

[0066] like Figure 2 As shown, a first wall panel 122 extends above a first base plate 121. The first wall panel 122 is connected to the first base plate 121. A second wall panel 123 extends above a first base plate 121. The second wall panel 123 is connected to the first base plate 121. An intermediate wall panel 124 extends above a first base plate 121. The intermediate wall panel 124 is connected to the first base plate 121.

[0067] Please continue to refer to this. Figure 2 The first base plate 121, the first wall plate 122, the second wall plate 123, and the intermediate wall plate 124 can all be rectangular plates. The length and width directions of the first base plate 121 are parallel to the horizontal direction. The length directions of the first base plate 121, the first wall plate 122, and the second wall plate 123 are parallel to the length direction of the intermediate wall plate 124. The thickness direction of the first base plate 121 is parallel to the vertical direction D3. The orientation of the first base plate 121 is its width direction.

[0068] It is understood that, in embodiments not shown, the first setting direction of the first base plate may also be the length direction of the first base plate.

[0069] like Figure 1 and Figure 2 As shown, along the first setting direction of the first base plate 121, the first wall panel 122, the intermediate wall panel 124, and the second wall panel 123 are arranged alternately. That is, along the first setting direction of the first base plate 121, the intermediate wall panel 124 is located between the first wall panel 122 and the second wall panel 123. The width directions of the first wall panel 122, the second wall panel 123, and the intermediate wall panel 124 are all parallel to the vertical direction D3. The thickness directions of the first wall panel 122, the second wall panel 123, and the intermediate wall panel 124 are all parallel to the first setting direction of the first base plate 121.

[0070] Please continue to refer to this. Figure 2 The first base plate 121, the first wall plate 122, the intermediate wall plate 124, and the second wall plate 123 constitute a high-pressure tank 125 and a first low-pressure tank 126. The high-pressure tank 125 and the first low-pressure tank 126 are separated by the intermediate wall plate 124.

[0071] Specifically, in this embodiment, the gap between the first wall panel 122 and the intermediate wall panel 124 forms a high-pressure groove 125. The second wall panel 123 and the intermediate wall panel 124 form a first low-pressure groove 126.

[0072] The high-voltage channel 125 can be used to install high-voltage cables. The high-voltage cables located in the high-voltage channel 125 extend in the first installation direction along the first mounting direction of the first base plate 121. The first low-voltage channel 126 can be used to install low-voltage cables. The low-voltage cables located in the first low-voltage channel 126 extend in the first installation direction along the first mounting direction of the first base plate 121. In this way, the intermediate wall plate 124 separates the high-voltage cables and the low-voltage cables, preventing the high-voltage cables and low-voltage cables from radiating and interfering with each other. In addition, it facilitates the arrangement of high-voltage cables and low-voltage cables.

[0073] Please refer to Figure 1 and Figure 2 The top of the second wall panel 123 has a first wiring notch 127 and a second wiring notch 128. The top of the intermediate wall panel 124 has a third wiring notch 129. Along the first setting direction of the first base plate 121, the first wiring notch 127 and the second wiring notch 128 are spaced apart. There are multiple third wiring notches 129 and multiple first wiring notches 127. Each of the multiple third wiring notches 129 corresponds one-to-one with a multiple of the multiple first wiring notches 127. The correspondingly set third wiring notches 129 are located at the locations of the first wiring notches 127. That is, along the first setting direction of the first base plate 121, the correspondingly set third wiring notches 129 and first wiring notches 127 at least partially overlap. In other words, the projection of the edge of the third wiring notch 129 onto the projection plane perpendicular to the intermediate wall panel 124 at least partially overlaps with the projection of the edge of the first wiring notch 127 onto the projection plane.

[0074] Along the first setting direction of the first base plate 121, the intermediate wall plate 124 overlaps with the second wiring notch 128. That is, the projection of the intermediate wall plate 124 on the projection plane covers the projection of the edge of the second wiring notch 128 on the projection plane.

[0075] Cables (one of high-voltage and low-voltage cables) positioned between the intermediate wall panel 124 and the second wall panel 123 can pass through the second wiring notch 128. Cables (the other of high-voltage and low-voltage cables) positioned between the intermediate wall panel 124 and the first wall panel 122 can pass through the first wiring notch 127 and the third wiring notch 129. Thus, both high-voltage and low-voltage cables extend into or exit the isolation groove assembly from the side of the second wall panel 123 away from the first wall panel 122, facilitating wiring.

[0076] In this embodiment, the high-voltage groove 125 can be used to install high-voltage cables, and the first low-voltage groove 126 can be used to install low-voltage cables. The intermediate wall panel 124 separates the high-voltage cables and the low-voltage cables to prevent them from radiating and interfering with each other. In addition, it facilitates the arrangement of high-voltage cables and low-voltage cables. The high-voltage groove 125 and the first low-voltage groove 126 are formed by the first base plate 121, the first wall panel 122, the second wall panel 123 and the intermediate wall panel 124. The intermediate wall panel 124 separates the high-voltage groove 125 and the first low-voltage groove 126, thereby separating the high-voltage cables and low-voltage cables. The structures of the first base plate 121, the first wall panel 122, the second wall panel 123 and the intermediate wall panel 124 are simple and easy to process. The setting of the first wiring notch 127, the second wiring notch 128 and the third wiring notch 129 facilitates wiring. Both the high-voltage cables and the low-voltage cables extend into or out of the isolation groove assembly from the side of the second wall panel 123 away from the first wall panel 122, which facilitates wiring.

[0077] Optionally, such as Figure 1 As shown, the partition component 110 includes two first grooves 112 and a second groove 113. The two first grooves 112 are spaced apart along a first direction D1. The length direction of both first grooves 112 extends along a second direction D2. The length direction of the second groove 113 is parallel to the first direction D1. The second direction D2 is perpendicular to the first direction D1. The first direction D1 is parallel to the first setting direction of the first base plate 121. When the partition assembly is installed in a container, the first direction D1 is parallel to the width direction of the container. The second direction D2 is parallel to the length direction of the container. In the first groove 112, along the second direction D2, a high-pressure groove 125 and a first low-pressure groove 126 both extend from one end of the first groove 112 to the other end. In the second groove 113, along the first direction D1, a high-pressure groove 125 and a first low-pressure groove 126 both extend from one end of the second groove 113 to the other end.

[0078] It is understood that, in embodiments not shown, the first direction D1 may be parallel to the length direction of the container. The second direction D2 is parallel to the width direction of the container.

[0079] The first groove 112 and the second groove 113 each have a first base plate 121, a first wall plate 122, a second wall plate 123, and an intermediate wall plate 124. One end of the second groove 113 is connected to one end of a first groove 112. The other end of the second groove 113 is connected to one end of another first groove 112. One end of the second groove 113 is connected to one first groove 112, and the other end of the second groove 113 is connected to another first groove 112.

[0080] Specifically, one end of the high-voltage groove 125 of the second groove 113 is connected to one end of the high-voltage groove 125 of the first groove 112. The other end of the high-voltage groove 125 of the second groove 113 is connected to the other end of the high-voltage groove 125 of the other first groove 112. One end of the first low-voltage groove 126 of the second groove 113 is connected to one end of the first low-voltage groove 126 of the first groove 112. The other end of the first low-voltage groove 126 of the second groove 113 is connected to the other end of the first low-voltage groove 126 of the other first groove 112. This increases the length of the isolated cables (high-voltage cables and low-voltage cables).

[0081] Furthermore, the two first grooves 112 and the second groove 113 form a roughly U-shaped structure. Thus, the structure of the separator 110 is simple.

[0082] Alternatively, please continue to refer to Figure 1 The partition member 110 also includes an extension 114. The extension 114 also has a first base plate 121, a first wall plate 122, a second wall plate 123, and an intermediate wall plate 124. The length direction of the extension 114 is parallel to the second direction D2. One end of the extension 114 is connected to one end of the second groove 113. The extension 114 extends to the side of the second groove 113 away from the first groove 112. One end of the extension 114 is connected to one end of the second groove 113. Specifically, one end of the high-pressure groove 125 of the extension 114 is connected to one end of the high-pressure groove 125 of the first groove 112. One end of the first low-pressure groove 126 of the extension 114 is connected to one end of the first low-pressure groove 126 of the first groove 112.

[0083] like Figure 1 and Figure 4 As shown, the end of the extension 114 furthest from the second groove 113 has a high-voltage end notch 115 and a low-voltage end notch 116. The high-voltage end notch 115 connects to the high-voltage groove 125. The low-voltage end notch 116 connects to the first low-voltage groove 126. Thus, high-voltage cables can enter or exit the extension 114 through the high-voltage end notch 115. Low-voltage cables can enter or exit the extension 114 through the low-voltage end notch 116, facilitating wiring.

[0084] Optionally, such as Figure 1 and Figure 2 As shown, two first wall panels 122 are respectively provided at the ends of the two first grooves 112 that are close to each other. As a result, cables can be installed from the sides of the two first grooves 112 that are away from each other, which facilitates operation.

[0085] Alternatively, please refer to Figures 1 to 3The isolation slot assembly also includes fasteners 140 and brackets 150. Fasteners 140 may be screws. The partition member 110 includes multiple sub-partition members 111. Each sub-partition member 111 includes a first base plate 121, a first wall plate 122, a second wall plate 123, and an intermediate wall plate 124. The ends of the multiple sub-partition members 111 abut against each other to form the partition member 110. Therefore, the arrangement of the sub-partition members 111 facilitates installation.

[0086] The bracket 150 is located below the sub-divider 111. The end of the sub-divider 111 overlaps the bracket 150. The end of the sub-divider 111 is connected to the bracket 150 by a fastener 140. Thus, the bracket 150 can firmly support the divider 111. In addition, the bracket 150 can increase the connection strength between adjacent sub-dividers 111.

[0087] like Figure 2 and Figure 3 As shown, the support 150 includes a vertical wall 151. The plane containing the vertical wall 151 is perpendicular to the horizontal direction. The top end of the vertical wall 151 bends and extends horizontally to form a support wall 152. The plane containing the support wall 152 is parallel to the horizontal direction. The end of the sub-divider 111 overlaps with the support wall 152. Therefore, the support 150 has high strength. Furthermore, the large contact area between the support wall 152 and the sub-divider 111 allows for more secure support of the sub-divider 111.

[0088] Furthermore, the bracket 150 is a sheet metal part formed by bending a sheet metal plate. As a result, the bracket 150 has high strength.

[0089] Furthermore, such as Figures 1 to 3 As shown, the bracket 150 includes a first bracket 153 and a second bracket 154. The vertical wall 151 of the first bracket 153 includes two first vertical walls 155 and a second vertical wall 156. The two first vertical walls 155 are spaced apart along a first direction D1. The second vertical wall 156 is located between the two first vertical walls 155. Along the first direction D1, one end of the second vertical wall 156 is connected to one end of one first vertical wall 155, and the other end of the second vertical wall 156 is connected to one end of the other first vertical wall 155. The upper end of the second vertical wall 156 bends and extends protrudes along a second direction D2 toward the first vertical wall 155 to form a support wall 152. The first bracket 153 is connected to the abutting ends of adjacent sub-separation members 111. The first bracket 153 is connected to the first groove 112. Thus, the first bracket 153 has high strength, high rigidity, and is not easily deformed. The first bracket 153 can more stably support the first groove 112. Furthermore, the ends of the interconnected sub-separation components 111 are connected by the first bracket 153, making it difficult for the interconnected sub-separation components 111 to deform relative to each other.

[0090] like Figures 1 to 3As shown, the difference between the second bracket 154 and the first bracket 153 is that the second bracket 154 does not have a second vertical wall 156, but has a first vertical wall 155 and a support wall 152. The two first grooves 112 and the second groove 113 are all connected to the second bracket 154, along with the low-pressure component 130 described later. Thus, the isolation groove assembly is connected to the container's underframe 160 via the first bracket 153 and the second bracket 154, allowing for a more stable installation on the container's underframe 160.

[0091] Optionally, such as Figure 1 and Figure 3 As shown, the isolation trough assembly includes a low-pressure component 130. The low-pressure component 130 includes a second base plate 131, a third wall plate 132, and a fourth wall plate 133. The second base plate 131, the third wall plate 132, and the fourth wall plate 133 are all flat plate structures.

[0092] The plane containing the second base plate 131 is perpendicular to the vertical direction D3. The upper surface of the second base plate 131 is flush with the upper surface of the first base plate 121. The lower surface of the second base plate 131 is flush with the lower surface of the first base plate 121. The second base plate 131 is connected to the first base plate 121. The planes containing the third wall plate 132 and the fourth wall plate 133 are both perpendicular to the second direction D2.

[0093] The third wall panel 132 extends above the second base plate 131. The third wall panel 132 is connected to one end of the second base plate 131 along the second direction D2. The fourth wall panel 133 extends above the second base plate 131. The third wall panel 132 is connected to the other end of the second base plate 131 along the second direction D2. The third wall panel 132 is connected to the second wall panel 123. The fourth wall panel 133 is connected to the first wall panel 122.

[0094] The second base plate 131, the third wall plate 132, and the fourth wall plate 133 are all rectangular plates. The length and width directions of the second base plate 131 are parallel to the horizontal direction. The length directions of the second base plate 131, the third wall plate 132, and the fourth wall plate 133 are all parallel to the first direction D1. The thickness direction of the second base plate 131 is parallel to the vertical direction D3. The second orientation of the second base plate 131 is its width direction. The width direction of the second base plate 131 is parallel to the second direction D2.

[0095] It is understood that, in embodiments not shown, the orientation of the second base plate can be the length direction of the second base plate.

[0096] Along the second setting direction of the second base plate 131, the third wall plate 132 and the fourth wall plate 133 are arranged alternately. The width direction of the third wall plate 132 and the width direction of the fourth wall plate 133 are both parallel to the vertical direction D3. The thickness direction of the third wall plate 132 and the thickness direction of the fourth wall plate 133 are both parallel to the second direction D2.

[0097] The second base plate 131, the third wall plate 132, and the fourth wall plate 133 constitute the second low-voltage trench 134. A separating member 110 connects to the low-voltage member 130. The second low-voltage trench 134 communicates with the first low-voltage trench 126. The trench assembly also includes a separating plate 170. The separating plate 170 is located at the end of the first trench 112 away from the second trench 113. The separating plate 170 connects to the end of the intermediate wall plate 124 and the end of the first wall plate 122. The separating plate 170 blocks the high-voltage trench 125, thus separating the second low-voltage trench 134 and the high-voltage trench 125. Therefore, the trench assembly has high strength. Furthermore, longer low-voltage cables can be arranged.

[0098] Furthermore, one end of the low-pressure component 130 is connected to the end of a first groove 112 that is away from the second groove 113. The other end of the low-pressure component 130 is connected to the end of another first groove 112 that is away from the second groove 113. The two ends of the second low-pressure groove 134 are respectively connected to the first low-pressure grooves 126 of the two first grooves 112.

[0099] Thus, the low-pressure component 130, the two first grooves 112, and the second groove 113 form a ring structure with circumferential sealing. Along the second direction D2, the fourth wall plate 133 is located on the side of the third wall plate 132 near the second groove 113. As a result, the isolation groove assembly has a simple structure and greater strength.

[0100] Optionally, the width of the high-voltage slot 125 (the dimension of the slot of the high-voltage slot 125 along the first direction D1) is greater than the width of the first low-voltage slot 126 (the dimension of the slot of the first low-voltage slot 126 along the first direction D1). The width of the high-voltage slot 125 is greater than the width of the second low-voltage slot 134 (the dimension of the slot of the second low-voltage slot 134 along the second direction D2). This fully utilizes the wiring space of the isolation slot assembly.

[0101] Optionally, such as Figures 1 to 4As shown, the high-voltage tank 125 has a high-voltage opening 118. The first low-voltage tank 126 has a first low-voltage opening 117. The second low-voltage tank 134 has a second low-voltage opening 135. The high-voltage opening 118 of the high-voltage tank 125, the first low-voltage opening 117 of the first low-voltage tank 126, and the second low-voltage opening 135 of the second low-voltage tank 134 all face upwards. The arrangement of the high-voltage opening 118, the first low-voltage opening 117, and the second low-voltage opening 135 facilitates heat dissipation. Furthermore, the upward orientation of the high-voltage opening 118, the first low-voltage opening 117, and the second low-voltage opening 135 facilitates the installation of high-voltage and low-voltage cables.

[0102] Optionally, the first base plate 121, the first wall plate 122, and the second wall plate 123 are constructed as an integrally formed structure. The intermediate wall plate 124 is connected to the upper surface of the first base plate 121. As a result, the overall strength of the first base plate 121, the first wall plate 122, and the second wall plate 123 is high.

[0103] This invention also provides a container. The container includes a base frame 160 and the aforementioned isolation trough assembly. The isolation trough assembly is located above and connected to the base frame 160.

[0104] In this embodiment, the container includes the aforementioned isolation trough assembly.

[0105] The high-voltage trough 125 can be used to install high-voltage cables, and the first low-voltage trough 126 can be used to install low-voltage cables. The intermediate wall panel 124 separates the high-voltage cables and the low-voltage cables to prevent them from radiating and interfering with each other. In addition, it facilitates the arrangement of high-voltage cables and low-voltage cables. The high-voltage trough 125 and the first low-voltage trough 126 are formed by the first base plate 121, the first wall panel 122, the second wall panel 123 and the intermediate wall panel 124. The intermediate wall panel 124 separates the high-voltage trough 125 and the first low-voltage trough 126, thereby separating the high-voltage cables and low-voltage cables. The structures of the first base plate 121, the first wall panel 122, the second wall panel 123 and the intermediate wall panel 124 are simple and easy to process. The setting of the first wiring notch 127, the second wiring notch 128 and the third wiring notch 129 facilitates wiring. Both high-voltage cables and low-voltage cables extend into or leave the isolation trough assembly from the side of the second wall panel 123 away from the first wall panel 122, which facilitates wiring.

[0106] The base frame 160 includes a bottom crossbeam and a steel floor. The bottom end of the support 150 of the isolation trough assembly is connected to at least one of the upper surfaces of the bottom crossbeam and the upper surface of the steel floor via fasteners 140. This provides a strong connection between the isolation trough assembly and the base frame 160.

[0107] This utility model has been described through the above embodiments. However, it should be understood that the above embodiments are for illustrative purposes only and are not intended to limit the utility model to the described embodiments. Furthermore, those skilled in the art will understand that this utility model is not limited to the above embodiments, and many more variations and modifications can be made based on the teachings of this utility model, all of which fall within the scope of protection claimed by this utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.

[0108] Unless otherwise defined, the technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art. The terminology used herein is for descriptive purposes only and is not intended to limit the scope of the invention. Terms such as “component” as used herein may refer to a single part or a combination of multiple parts. Terms such as “installation” or “installation” as used herein may refer to one component being directly attached to another component or one component being attached to another component via an intermediary. A feature described in one embodiment herein may be applied, alone or in combination with other features, to another embodiment, unless that feature is not applicable in that other embodiment or is otherwise stated.

Claims

1. An isolation trench assembly, characterized by, The isolation slot assembly includes: First base plate; A first wall panel extends above the first base plate and is connected to the first base plate; The second wall panel extends above the first base plate and is connected to the first base plate. The top of the second wall panel has a first wiring notch and a second wiring notch, which are spaced apart. An intermediate wall panel extends above the first base plate and is connected to the first base plate. The top of the intermediate wall panel has a third wiring notch, which is located at the corresponding first wiring notch. Along the first setting direction of the first base plate, the first wall plate, the intermediate wall plate and the second wall plate are arranged in sequence at intervals to form a separated high-pressure tank and a first low-pressure tank.

2. The isolation slot assembly of claim 1, wherein, The isolation trench assembly includes a partition component, which comprises a first base plate, a first wall plate, a second wall plate, and an intermediate wall plate. The separating component includes two first grooves and a second groove, with the two first grooves spaced apart. One end of the second groove is connected to one of the first grooves, and the other end of the second groove is connected to the other first groove.

3. The isolation slot assembly of claim 2, wherein, The separating component further includes an extension, one end of which communicates with the second groove. The extension extends to the side of the second groove away from the first groove, and the end of the extension away from the second groove has a high-pressure end notch communicating with the high-pressure groove and a low-pressure end notch communicating with the first low-pressure groove.

4. The isolation tank assembly of claim 2, wherein, The isolation tank assembly includes a low-pressure component, which includes: Second base plate; A third wall panel extends above the second base plate and is connected to the second base plate; A fourth wall panel, which extends above the second base plate and is connected to the second base plate; Along the second setting direction of the second base plate, the third wall plate and the fourth wall plate are arranged alternately to form a second low-pressure tank; The separator is connected to the low-pressure component, and the second low-pressure tank is connected to the first low-pressure tank.

5. The isolation slot assembly of claim 4, wherein, The low-pressure component is connected to the end of the first slot that is away from the second slot, so that the two ends of the second low-pressure slot are respectively connected to the first low-pressure slots of the two first slots.

6. The isolation tank assembly of claim 2, wherein, Two first wall panels are respectively provided at the two adjacent ends of the two first grooves.

7. The isolation tank assembly of claim 1, wherein, The isolation groove assembly includes fasteners, brackets, and partition components. The partition component includes multiple sub-partition components, the ends of which abut against each other to form the partition component. Each sub-partition component includes a first base plate, a first wall plate, a second wall plate, and an intermediate wall plate. The bracket is located below the sub-divider, and the end of the sub-divider overlaps and is connected to the bracket via the fastener.

8. The isolation slot assembly of claim 7, wherein, The bracket includes a vertical wall, the top of which is bent and extended horizontally to form a support wall, and the end of the sub-dividing member overlaps the support wall.

9. The isolation tank assembly of claim 1, wherein, The width of the high-pressure tank is greater than the width of the first low-pressure tank.

10. The isolation groove assembly according to claim 1, characterized in that, The high-pressure opening of the high-pressure tank and the first low-pressure opening of the first low-pressure tank both face upwards, and / or The first base plate, the first wall plate, and the second wall plate are integrally formed, and the intermediate wall plate is connected to the upper surface of the first base plate.

11. A container characterized by The container includes a base frame and an isolation trough assembly according to any one of claims 1 to 10, the isolation trough assembly being located above the base frame and connected to the base frame.