Product Abstract
Hog Ye silicone ruuber's New Energy Vehicle Battery Thermal Insulation Foaming Silicone Rubber is automotive flame-retardant safety Addition Curing Silicone, EV battery pack heat insulation buffer RTV Silicone Foam. Made from UL94 V0 flame-retardant automotive liquid silicone, this thermal runaway barrier Foam Silicone features high-efficiency heat insulation, flame retardancy, cell expansion buffering and moisture proofing, with adjustable 3-7 times safety foaming ratio. It is applied to EV power battery cell gap filling, battery pack shell heat insulation liner, new energy vehicle thermal management gasket, battery module shockproof filler. Matched with automotive precision safety Mold Silicone, the flame-retardant Foamed Silicone forms anti-explosion thermal isolation Silicone Sponge for new energy vehicle battery system protection.
Product Overview
This automotive battery grade two-component liquid silicone adopts ceramic flame-retardant formula, which can form a heat insulation protective layer at high temperature to block battery thermal runaway spread. As low-stress elastic Addition Curing Silicone, it effectively absorbs battery charging and discharging expansion stress to avoid cell extrusion damage. After closed-cell safety foaming, it forms flame-retardant heat-insulating Silicone Sponge. Different from ordinary flammable foam, this self-extinguishing RTV Silicone Foam meets automotive safety standards, belonging to new energy vehicle core safety protective Foaming Silicone Rubber.
Core Product Features & Advantages
1. Thermal runaway isolation: Ceramic flame-retardant structure of Foaming Silicone Rubber blocks high-temperature heat spread of battery cells.
2. Expansion stress buffering: Elastic toughness ofliquid silicone adapts battery charging and discharging volume change.
3. Automotive flame retardancy: V0-level self-extinguishingFoam Silicone improves vehicle battery safety factor.
4. Damp proof insulation: Inert stable Addition Curing Silicone prevents battery pack internal short circuit caused by moisture.
5. Vehicle standard molding: Fits automotive battery module standardized Mold Silicone batch production.
6. Long cycle durability: Cured Foamed Silicone maintains performance throughout vehicle service life.
Step-by-Step Usage Instructions
1. Flame-retardant stirring: Stir automotive battery A/B liquid silicone evenly to fully disperse ceramic fire-resistant additives.
2. Accurate proportional mixing: Mix 1:1 steadily for 3 minutes to stabilize thermal insulation and flame-retardant performance.
3. Safety defoaming treatment: Remove internal bubbles to ensure uniform force of battery Silicone Sponge.
4. Automotive mold shaping: Mold forming via vehicle battery dedicated Mold Silicone to obtain safety RTV Silicone Foam.
Application Scenarios
Electric vehicle power battery cell gap filler, battery pack outer shell heat insulation pad, new energy vehicle thermal management system sealing strip, battery module anti-collision shockproof foam. The flame-retardant Foamed Silicone effectively reduces new energy vehicle battery safety risks.
Precautions
Avoid sharp metal piercing; structural damage will weaken the thermal isolation performance of Addition Curing Silicone.
Packaging & Storage
200KG automotive grade sealed barrel, constant temperature dry storage, keep flame-retardant heat insulation of raw Foam Silicone.
FAQ
Q1: Can it block battery thermal runaway spread effectively?
A1: Ceramicized Foaming Silicone Rubber forms high-temperature resistant isolation layer instantly.
Q2: Adapt battery expansion and contraction during vehicle operation?
A2: High-elasticity Addition Curing Silicone buffers cell expansion stress without deformation.
Q3: Match standardized vehicle battery parts with Mold Silicone?
A3: High-precision RTV Silicone Foam fully complies with new energy vehicle battery assembly standards.