Adhesive Breathable Vent For Brake Fluid Reservoir Waterproof Dustproof
Product Details
| Color: | White | Thickness: | 0.10 – 0.50 Mm |
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| Air Permeability: | Gurley:3 – 30 S/100ml @ 300 Ml | Water Entry Pressure: | ≥ 400 KPa |
| Waterproof Rating: | IP68 | Moisture Vapor Transmission Rate: | 8,000 – 18,000 G/m²·24h |
| Oleophobicity Grade: | ≥ 7 | 90° Peel Strength: | ≥ 15 N/25mm |
| Operating Temperature: | -40°C To +150°C | Size: | Customizable |
| Material Compliance: | PFAS Free | Chemical Resistance: | Corrosion-resistant,Acid-resistant |
| Highlight |
Adhesive Breathable Brake Fluid Vent,Reservoir Waterproof Dustproof Vent,Gore Membrane Vent |
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Product Description
Adhesive Breathable Vent For Brake Fluid Reservoir Waterproof Dustproof
The adhesive breathable vent for brake fluid reservoirs is a precision pressure equalization solution engineered specifically for the safety-critical brake hydraulic system. It combines a high-performance ePTFE waterproof breathable membrane—treated for exceptional glycol and brake fluid resistance—with a durable, automotive-grade adhesive backing. This vent is applied to the reservoir cap or reservoir body vent port, providing the atmospheric reference that the brake system requires for proper operation while maintaining an absolute barrier against water, brake dust, road grime, and airborne contaminants. It continuously allows the small volumes of air exchange necessary to compensate for brake fluid level changes during pad wear and thermal expansion/contraction of the fluid, without allowing moisture into the hygroscopic brake fluid. By keeping the brake fluid sealed from atmospheric humidity, this vent helps maintain the fluid's high boiling point, preserving brake pedal feel and preventing vapor lock even under hard braking.
Automotive brake fluid—typically DOT 3, DOT 4, or DOT 5.1—is glycol-based and extremely hygroscopic. It actively absorbs moisture from the surrounding air. Even a small amount of absorbed water dramatically lowers the fluid's boiling point: a 3% water content can reduce the boiling point from over 230°C to below 150°C. Under hard braking, this can cause the fluid to boil in the caliper, creating compressible vapor bubbles that result in a soft, sinking brake pedal and significantly increased stopping distances—a critical safety hazard. The brake fluid reservoir must be vented to atmosphere to allow fluid level changes as brake pads wear (fluid level drops) and as the fluid thermally expands and contracts. A simple open vent allows the necessary air exchange but exposes the hygroscopic fluid to continuous moisture ingress. Fine brake dust from pad wear, road debris, and wash water can also enter through an open vent, contaminating the fluid and causing accelerated wear of the master cylinder piston seal and ABS hydraulic unit valves. The reservoir vent must provide the necessary atmospheric connection without the contamination and moisture penalties of an open hole.
The adhesive breathable vent provides the precise air exchange the brake system needs while blocking the moisture and contaminants that degrade its performance. Applied over the reservoir vent port on the cap or body, the ePTFE membrane allows the slow, small-volume breathing required for fluid level changes—typically milliliters of air per day, not liters per minute. The membrane's microporous structure and specialized glycol-resistant oleophobic treatment completely block liquid water, including the moisture-laden humid air that would otherwise condense inside the reservoir. It also blocks fine brake dust, road particulates, and wash water. The membrane is specifically tested for long-term compatibility with glycol-based brake fluids, ensuring it does not degrade, swell, or lose its waterproof properties after years of fluid contact. The adhesive backing bonds securely to the reservoir cap or body material—typically polypropylene, polyamide, or metal—and maintains its seal through the full automotive temperature range.
| Parameter | Specification |
|---|---|
| Product Type | Adhesive Breathable Vent for Brake Fluid Reservoir |
| Membrane Material | ePTFE (glycol-resistant, oleophobic) |
| Adhesive Type | High-temperature acrylic or silicone (fluid-compatible) |
| Airflow | 10-50 ml/min @ 1 psi (optimized for low-volume breathing) |
| Water Entry Pressure | ≥ 80 kPa |
| Moisture Vapor Transmission Control | Engineered to minimize humidity ingress |
| Brake Fluid Compatibility | DOT 3, DOT 4, DOT 5.1 (glycol-based); tested for long-term immersion |
| Reservoir Compatibility | PP, PA, metal reservoir caps and bodies |
| Operating Temperature | -40°C to +120°C (reservoir environment) |
| Installation | Peel-and-stick adhesive application |
| Ingress Protection | IP65, IP67 compatible |
| Service Life | Designed for the vehicle's full brake fluid service interval |
Passenger car and light truck brake fluid reservoir caps
Motorcycle brake and clutch fluid reservoir vents
Commercial vehicle and bus brake fluid reservoirs
Hydraulic clutch fluid reservoirs
Racing and high-performance brake fluid reservoirs
ABS hydraulic unit atmospheric reference ports
The adhesive vent is placed over a small atmospheric reference port on the brake fluid reservoir cap or body. As the brake pads wear, the caliper pistons extend further, and the fluid level in the reservoir drops. This slight volume change draws a correspondingly small volume of air into the reservoir through the ePTFE membrane. As the fluid heats during braking and expands, a small volume of air exits. This slow, continuous breathing maintains ambient pressure inside the reservoir. The membrane's 0.2-0.5 micron pores are an absolute barrier to liquid water, brake dust, and road particulates. The glycol-resistant oleophobic treatment prevents brake fluid from wetting the membrane from the inside, and external moisture from penetrating from the outside. While no membrane is a perfect water vapor barrier, the ePTFE vent's minimal air exchange volume—matched to the small fluid level changes—limits total moisture transmission to a fraction of what an open vent would admit over the fluid service interval.
Identify the brake fluid type (DOT 3, DOT 4, etc.) and confirm glycol-resistant membrane compatibility.
Determine the reservoir vent port location and geometry: is the vent on the cap, the cap side, or the reservoir body?
Select the adhesive based on the reservoir cap material (PP, PA, metal) and the expected temperature range.
Measure the available vent port diameter or flat surface area for vent patch placement.
Test with complete reservoir assemblies under worst-case conditions: thermal cycling from -40°C to +120°C, fluid immersion, and long-term moisture transmission measurement.
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Q: Can the vent completely eliminate moisture ingress into the brake fluid over the service life?
A: The vent dramatically reduces moisture ingress compared to an open vent. Some minimal vapor transmission is inevitable with any breathable membrane. The fluid's boiling point is maintained significantly longer than with an open vent, and the system should still follow the manufacturer's recommended fluid change interval.
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Q: Does the vent prevent the "suck-back" of dirty fluid when the brake pads are pushed back during service?
A: The vent equalizes pressure during pad retraction but does not prevent the fluid movement that occurs during service procedures. Technicians should still follow proper brake service protocols.
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Q: Is the vent compatible with DOT 5 silicone-based brake fluid?
A: DOT 5 silicone fluid has different chemical properties. Our standard glycol-resistant vent is for DOT 3, 4, and 5.1. We can provide a silicone-fluid-compatible version upon request.
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Q: Can the vent withstand the pressure of a pressure brake bleeder used during service?
A: The vent is designed for atmospheric pressure equalization, not for positive pressure bleeding. The vent port should be temporarily sealed or bypassed during pressure bleeding operations.
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Q: Will the vent become blocked by crystallized brake fluid residue over time?
A: The oleophobic membrane resists fluid wetting. However, in reservoirs with heavy fluid slosh and prolonged high-temperature operation, an internal labyrinth or standoff can be incorporated into the vent port design to minimize direct fluid contact.
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