ZURÜCK ZUM HUB
Technisch

EPDM vs FKM: Which Material is Better for Industrial Steam Applications?

EPDM vs FKM: Which Material is Better for Industrial Steam Applications?

Artikel teilen

Teilen Sie diesen technischen Beitrag mit Ihrem Engineering-Team.

EPDM vs FKM for Industrial Steam Applications

Material Overview

Selecting the right elastomer for steam applications requires evaluating temperature resistance, compression set, and chemical compatibility. EPDM (Ethylene Propylene Diene Monomer) and FKM (Fluorocarbon Rubber) are common choices, but their performance differs significantly under steam conditions.

Key Technical Parameters

Both materials must comply with IATF 16949 for automotive-grade quality, ASTM D2000 for material classification, and ISO 3601 for hydraulic seal standards. Below are critical performance metrics:

Parameter EPDM FKM
Temperature Range -50°C to +150°C (short-term 175°C) -20°C to +200°C (short-term 230°C)
Compression Set (ASTM D395, 22h @ 150°C) 15-25% 20-35%
Steam Resistance (Saturated, 150°C) Excellent (low swell) Good (moderate degradation)

Artikel teilen

Teilen Sie diesen technischen Beitrag mit Ihrem Engineering-Team.

Technische Updates abonnieren

Erhalten Sie neue Material-Insights und Engineering-Notizen per E-Mail.

Verwandte Artikel

05. Apr. 2026

Commercial Aircraft Interiors: Meeting Smoke and Toxicity Standards (FST).

Commercial Aircraft Interiors: Meeting Smoke and Toxicity Standards (FST) Problem Statement Polymer components in aircraft interiors must pass FAR 25.853 flammability tests while maintaining mechanical performance. Standard EPDM fails at 180°C with toxic smoke emission (HCN >100 ppm). Material Science Analysis Chloroprene rubber (CR) releases HCl gas during combustion. Fluorosilicone (FVMQ) provides superior thermal stability […]

Artikel lesen

04. Apr. 2026

Carbon Black Fillers: How Particle Size Impacts Reinforcement and Conductivity.

Carbon Black Fillers: How Particle Size Impacts Reinforcement and Conductivity Problem Statement Carbon black fillers in rubber compounds face challenges in balancing reinforcement, conductivity, and aging resistance. Smaller particle sizes improve reinforcement but reduce conductivity. Larger particles enhance conductivity but compromise tensile strength and abrasion resistance. Material Science Analysis Carbon black’s reinforcing properties depend on […]

Artikel lesen

04. Apr. 2026

Textile Dyeing Machines: High-Temperature Resistance in Acidic Dye Baths.

Textile Dyeing Machines: High-Temperature Resistance in Acidic Dye Baths Problem Statement Textile dyeing machines operate in acidic dye baths at temperatures up to 200°C. Standard elastomers degrade rapidly due to hydrolysis and chemical attack, leading to compression set failure and seal leakage. Material Science Analysis EPDM and NBR fail in acidic environments due to their […]

Artikel lesen

Benötigen Sie technische Beratung?

Unser Ingenieurteam kann Ihnen helfen, diese Materialerkenntnisse auf Ihr spezifisches Projekt anzuwenden.

ANGEBOT ANFORDERN