Material Comparison

Compare verified engineering materials side by side with condition-specific mechanical properties.

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Material A (Baseline)
Material B (Comparison)
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Temper & Metallurgical Context Qualification:The selected records contain different or missing source contexts. Values shown in separate rows are not directly matched. Typical and estimated values are not guaranteed minima; matching context alone does not establish interchangeability.
1. Identity, Classification & Standards
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ParameterEthylene Propylene Diene Rubber (EPDM)Nitrile Butadiene Rubber (NBR)
Material FamilyRubber & ElastomersRubber & Elastomers
SubfamilyWeathering & Chemical Resistant ElastomersOil & Fuel Resistant Elastomers
ASTM DesignationEPDMNBR
ISO DesignationEPDMNBR
ASTM-D2000 DesignationType BA / CAType BF / BG / CH
2. Chemical Composition Limits (wt %)Source-specific limits and typical values
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ElementEthylene Propylene Diene Rubber (EPDM)Nitrile Butadiene Rubber (NBR)
4. Contextual Mechanical PropertiesUnit: SI
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Mechanical ParameterEthylene Propylene Diene Rubber (EPDM)Peroxide-Cured High-Temperature CompoundNitrile Butadiene Rubber (NBR)Standard 70 Shore A O-Ring Vulcanizate (Medium ACN ~33%)
Compression Set (22h at 100°C) · Peroxide-Cured High-Temperature Compound · RANGE · 100 °CUnit: %15–30 %15–30 %
7. Fabrication & Processing Comparison
Ethylene Propylene Diene Rubber (EPDM) Characteristics:

Machinability: Cryogenically machined; waterjet cut without abrasive garnets for pure elastomer gaskets.

Formability / Cold Working: Readily compounded in internal mixers with high paraffinic oil and carbon black loading. Extruded into dense and sponge weatherstrip profiles with continuous microwave/hot-air vulcanization (HAV) lines; precision injection molded.

Heat Treatment & Annealing: Vulcanized via sulfur-accelerator systems for rapid extrusion cure or organic peroxide systems (dicumyl peroxide, DTBP) for superior compression set, heat resistance up to 150°C, and steam resistance.

Nitrile Butadiene Rubber (NBR) Characteristics:

Machinability: Cryogenically deflashed with polycarbonate media or liquid nitrogen tumbling; turned on CNC lathes equipped with frozen chuck fixtures.

Formability / Cold Working: Readily compounded in internal mixers with carbon black, plasticizers (phthalates, adipates), and cure packages. Formed by high-precision compression, transfer, and multi-cavity injection molding; extruded into fuel hose inner tubes.

Heat Treatment & Annealing: Vulcanized with sulfur/accelerator packages for optimal dynamic fatigue or peroxide cure packages for improved compression set and heat resistance up to 120°C.