Convenient replacement structure for defect test simulation in GIS gas chamber
An internal defect and convenient technology, applied in the direction of testing dielectric strength, measuring devices, instruments, etc., can solve problems such as suspension defects, equipment insulation deterioration, metal particle defects, etc., to achieve simple and convenient layout defects, ensure discharge concentration, and facilitate The effect of the simulation test
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Embodiment 1
[0046] Such as Figure 1 to Figure 5 As shown, this example provides a convenient replacement structure for the test simulation of metal particles, tips, and suspension defects in the GIS gas chamber. The structure includes a single-hole elastic insulating tape and a metal tip.
[0047] In this embodiment, a metal tip with a diameter of 0.8mm and a length of 6mm is taken as an example, and the implementation principle is as follows:
[0048] Insert the metal tip vertically from the single-hole elastic insulating tape and pass through it, and use the elasticity of the insulating tape to fix the metal tip in the single-hole elastic insulating tape. By pulling both sides of the single-hole elastic insulating tape and pasting it on the conductor, the length of the hole-shaped elastic insulating tape is 13mm, the width is 7mm, and the thickness is 0.5mm. The metal tip can use the elasticity of the insulating tape to change its contact with the conductor surface or The contact pres...
Embodiment 2
[0050] Such as Figure 6 and Figure 7 As shown, this example provides a convenient replacement structure for the test simulation of metal particles, tips, and suspension defects in the GIS air chamber. The structure includes porous elastic insulating tapes and metal particles.
[0051] In this embodiment, metal particles with a diameter of 1 mm are taken as an example, and the implementation principle is as follows:
[0052] Insert 9 metal particles from the lower end of the porous elastic insulating tape and fix them in the insulating tape by using the elastic effect of the insulating tape. According to the experimental requirements, the porous elastic insulating tape has 3 rows and 3 columns in the center, and the center distance is 2mm. 9 holes, the hole diameter is set to 0.6mm according to the size of the metal particles, by pulling the two sides of the porous elastic insulating tape and pasting it on the conductor or insulating piece. When the metal particles are arra...
Embodiment 3
[0054] Such as Figure 8 to Figure 11 As shown, this example provides a convenient replacement structure for the test simulation of metal particles, tips, and suspension defects in the GIS air chamber, including grooved elastic insulating tapes and metal suspension sheets.
[0055] In this embodiment, a metal suspension sheet with a length of 20 mm, a width of 10 mm, and a thickness of 1 mm is taken as an example. The implementation principle is as follows:
[0056] The metal suspension sheet is horizontally inserted into the groove of the insulating tape from the upper end of the groove type elastic insulating tape. The grooved elastic insulating tape has a length of 30mm, a width of 10mm, and a thickness of 3mm. The grooved elastic insulating tape can be pasted with the same length and width as the grooved insulating tape, and the insulating tape of different thickness can change the gap distance between the metal suspension sheet and the conductor or insulator.
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