Wire harness arrangement heat dissipation belt
By designing a harness finishing heat sink including a harness belt and a tightening rope, the problems of poor flexibility and insufficient heat dissipation performance of the harness finishing tightening belt in the prior art are solved, and flexible fixation and effective heat dissipation of multiple cables are achieved.
Patent Information
- Application Number
- CN202421666210.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-12
- Publication Date
- 2025-06-03
- Estimated Expiration
- 2034-07-12
AI Technical Summary
The existing wiring harness finishing tightening belts have poor flexibility when fixing multiple cables, poor fixing effect, and insufficient heat dissipation performance, which cannot meet the needs of photovoltaic field inverters and other scenarios.
A wire harness finishing heat dissipation belt is designed, including a heat dissipation belt and a tight bundle rope. A cavity is provided inside the heat dissipation belt for passing through multiple cables. The outer wall is provided with a first hole and a second hole. The tight bundle rope passes through the first hole. The heat dissipation belt is fixed to the cable by shrinking, and heat dissipation is dissipated through the second hole.
This design can flexibly adjust the size of the cavity in the heat dissipation belt, adapt to different numbers of cables, effectively preventing cables from being messy, and at the same time, the heat dissipation effect of the cable is ensured through the heat dissipation design of the second hole.
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Figure CN222940468U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of cable heat dissipation, in particular to a wire harness arrangement heat dissipation belt. Background Art
[0002] There are a large number of DC photovoltaic cables in the inverters of the photovoltaic power station area. The DC photovoltaic cables are intricate and the DC cables extending from inside the corrugated pipe are of different lengths. In photovoltaic projects, wind power projects, water conservancy and hydropower, thermal power, and building electrical engineering projects, it is usually necessary to ensure the aesthetics of the cable layout, and the wire harness arrangement is more important.
[0003] At present, some tightening belts used for wire harness arrangement lack a certain degree of flexibility. For the case of a large number of cables, their fixing effect is poor, and the heat dissipation degree cannot meet the requirements. In view of this, in order to ensure the basic safety and aesthetics, prevent the cable mess from causing line damage during later maintenance, resulting in equipment damage and economic losses, etc., a wire harness arrangement heat dissipation belt that can effectively solve the above problems is needed. Summary of the Utility Model
[0004] The technical problem to be solved by the utility model is: in view of the above problems, to provide a wire harness arrangement heat dissipation belt.
[0005] The technical solution adopted by the utility model is: a wire harness arrangement heat dissipation belt, characterized by comprising:
[0006] A heat dissipation belt, inside which there is a cavity capable of allowing multiple cables to pass through. A plurality of first holes and second holes are provided on the outer wall of the heat dissipation belt, and the second holes are used for dissipating heat from the cables;
[0007] A tightening rope passes through the first holes, and the tightening rope can fix the cables by contraction of the heat dissipation belt.
[0008] By the above technical means, multiple cables are passed through the cavity of the heat dissipation belt, and by pulling the two ends of the tightening rope, it drives the heat dissipation belt to fix the cables, so that the heat dissipation belt has good adaptability to fixing different numbers of cables. At the same time, the second holes on the heat dissipation belt can dissipate heat from the cables, ensuring the heat dissipation effect of the bundled and gathered cables.
[0009] In some embodiments, stainless steel rings are provided in both the first holes and the second holes.
[0010] In some embodiments, the heat dissipation belt is made of PC environmentally friendly flame retardant plastic material.
[0011] The beneficial effects of the utility model are:
[0012] 1. By passing multiple cables through the cavity of the heat dissipation belt and then pulling the tightening rope to drive the heat dissipation belt to fix the cables in the cavity, the cooperation of the tightening rope and the heat dissipation belt can flexibly adjust the size of the cavity in the heat dissipation belt, so that it has good adaptability to different numbers of cables, effectively preventing the cables from being messy. At the same time, the second holes provided on the heat dissipation belt can fully dissipate the heat accumulated by the cables. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 is a schematic diagram of the installation structure of the present application.
[0014] Figure 2 is a schematic diagram of the assembly structure of the heat dissipation belt and the tightening rope in the present application.
[0015] Figure 3 is a schematic diagram of the heat dissipation belt structure in the present application.
[0016] Figure 4 is a schematic diagram of the tightening rope structure in the present application.
[0017] DESCRIPTION OF THE REFERENCE NUMERALS:
[0018] 1. Heat dissipation belt; 2. Tightening rope; 3. First hole; 4. Second hole; 5. Prestressed pipe pile; 6. Inverter; 7. Inverter fixing bracket; 8. Cable; 9. Bellows.
[0019] This specification includes references to "one embodiment" or "embodiments". The appearances of the phrases "in one embodiment" or "in embodiments" do not necessarily refer to the same embodiment. Specific features, structures, or characteristics may be combined in any suitable manner consistent with the present disclosure.
[0020] "Comprising", this term is open-ended. As used in the appended claims, this term does not exclude additional structures or steps.
[0021] "First", "second", etc. As used herein, these terms serve as labels for the nouns that precede them and do not imply any type of ordering (e.g., spatial, temporal, logical, etc.). DETAILED DESCRIPTION OF THE EMBODIMENTS
[0022] In order to enable those skilled in the art of the present technology to better understand the technical solution of the present utility model, the technical solution of the present utility model will be further described below in conjunction with specific embodiments.
[0023] In conjunction with Figures 1 to 4As shown, the present embodiment is a wire harness arrangement heat dissipation belt, comprising a heat dissipation belt 1 and a tightening rope 2. The interior of the heat dissipation belt 1 is provided with a cavity capable of allowing multiple cables 8 to pass through. The outer wall of the heat dissipation belt 1 is provided with multiple first holes 3 and second holes 4. The first holes 3 are evenly distributed. The aperture of the first holes 3 is customized with reference to the aperture of the tightening rope 2 and according to engineering requirements. The second holes 4 have an uneven aperture. A large amount of heat will be generated due to the aggregation of cables, which may easily cause a fire and burn the equipment. The second holes 4 can be used to dissipate heat for the cables 8. The tightening rope 2 passes through the first hole 3. The tightening rope 2 can be contracted to allow the heat dissipation belt 1 to fix the cables 8.
[0024] Furthermore, the heat dissipation belt 1 is made of PC environmentally friendly flame-retardant plastic material. In this embodiment, the materials used for the heat dissipation belt 1 and the tightening rope 2 should be guaranteed to have the characteristics of high quality, strong toughness, high temperature resistance and aging resistance.
[0025] Furthermore, stainless steel rings are provided in the first hole 3 and the second hole 4. The stainless steel rings in the first hole 3 can play a fixing role to prevent the PC heat dissipation belt 1 from being torn and damaged due to the tightening of the tightening rope 2 in the later stage.
[0026] In some implementation schemes, this embodiment is applied to fix multiple cables 8 of a photovoltaic field inverter 6. The inverter 6 is installed on a prestressed pipe pile 5 via an inverter fixing bracket 7. The output end of the inverter 6 is connected to multiple cables 8. Some cables 8 are provided with a heat dissipation belt 1. A tightening rope 2 is passed through the first hole 3 of the heat dissipation belt 1. The heat dissipation belt 1 is used to fix the cables 8 by pulling the tightening rope 2. After being fixed, some cables 8 are provided with a corrugated tube 9.
[0027] The above are all preferred embodiments of the present utility model, and are not intended to limit the protection scope of the present utility model. Therefore, any equivalent changes made based on the structure, shape, and principle of the present utility model should be included in the protection scope of the present utility model.
Claims
1. A wire harness arranging heat dissipation belt, characterized in that: include: A heat dissipation belt (1) is provided with a cavity inside thereof through which a plurality of cables (8) can pass, and a plurality of first holes (3) and second holes (4) are provided on an outer wall of the heat dissipation belt (1), wherein the second holes (4) are used to dissipate heat from the cables (8); A tightening rope (2) passes through the first hole (3), and the tightening rope (2) can be contracted to allow the heat dissipation belt (1) to fix the cable (8).
2. A wire harness arranging and heat dissipating belt according to claim 1, characterized in that: Stainless steel rings are provided in the first hole (3) and the second hole (4).
3. The wire harness arranging and heat dissipating belt according to claim 1, characterized in that: The heat dissipation belt (1) is made of PC environmentally friendly flame-retardant plastic material.