Against the backdrop of increasing safety and performance requirements in the lead-acid battery industry, a newly designed safety vent plug has emerged. Its innovative structure and precise parameters provide a new guarantee for the safety performance of lead-acid batteries. This product not only reflects the manufacturer's ultimate pursuit of details, but also represents a new height of the industry's technical level.
With an overall height of only 39 mm, this safety vent plug is compact and can be perfectly adapted to various types of lead-acid batteries while performing well in space utilization. Its top cover diameter is 35 mm, which complements the 35 mm base design, not only enhancing the structural stability of the product, but also ensuring good matching and convenience during assembly.
The unique retainer diameter (34.9 mm) and detail thickness (5.46 mm) further improve the sealing and pressure resistance, and can effectively prevent leakage and gas seepage during long-term use. The 19.8 mm spool diameter precisely adapts to different specifications of the inner cavity structure to ensure smooth exhaust and reduce the risk of blockage.
The vent plug adopts a 25.4mm snap/thread design, providing users with dual installation mode options. Whether it is traditional screw installation or modern snap-on assembly, it can be operated quickly, which improves assembly efficiency and reduces maintenance costs. This flexible design is not only suitable for large-scale industrial applications, but also meets the high convenience requirements of small and medium-sized users.
The biggest highlight of this safety vent plug is its multi-functional design. In traditional lead-acid battery applications, the main function of the vent plug is to release the gas generated by chemical reactions in the battery to prevent safety accidents caused by excessive internal pressure. This product has met international industry standards through precise manufacturing processes and strict quality control processes, and can maintain stable performance in extreme working environments.