High Mechanical Value Glass Insulator Long Lifespan For Tower Substation Applications
High Mechanical Value Glass Insulator for Tower and Substation Applications
Data Sheet
| Standard Type | Spacing(mm) | Diameter (mm) | Creepage Distance(mm) | Standard Coupling | Mechanical Faiing Load(kN) |
| U40B | 110 | 175 | 190 | 11 | 40 |
| U70BS | 127 | 255 | 320 | 16 | 70 |
| U70BL | 146 | 255 | 320 | 16 | 70 |
| U100BS | 127 | 255 | 320 | 16 | 100 |
| U100BL | 146 | 255 | 320 | 16 | 100 |
| U120B | 146 | 255 | 320 | 16 | 120 |
| U120BS | 127 | 255 | 320 | 16 | 120 |
| U160BL |
170 |
280 | 400 | 20 | 160 |
| U160BM | 155 | 280 | 400 | 20 | 160 |
| U160BS | 146 | 280 | 400 | 20 | 160 |
| U210B | 170 | 280 | 400 | 20 | 210 |
| U240B | 170 | 280 | 400 | 24 | 240 |
| U300B | 195 | 330 | 490 | 24 | 300 |
| U420B | 205 | 380 | 550 | 28 | 420 |
| U550B | 240 | 380 | 620 | 32 | 550 |
The fabrication of standard glass insulators starts with melting a precise blend of silica sand and raw materials at extreme temperatures. This molten glass is shaped in molds, then rapidly tempered to create compressive surface stress—significantly enhancing mechanical strength and guaranteeing harmless shattering upon breakage. Rigorous thermal shock tests and visual inspections eliminate defective units before assembly. Approved glass shells are permanently joined to metal caps and pins with high-strength cement. Final mechanical and electrical testing confirms complete reliability prior to packaging and distribution.
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