ハブに戻る
技術

HVAC Duct Connectors: Flexible Vibration Breaks for Sound Insulation.

HVAC Duct Connectors: Flexible Vibration Breaks for Sound Insulation.

この記事を共有

この技術記事をエンジニアチームへ共有できます。

HVAC Duct Connectors: Flexible Vibration Breaks for Sound Insulation

Problem Statement

HVAC duct connectors require materials that simultaneously dampen vibration (NVH reduction) and maintain sealing integrity under cyclic thermal stress (120°C to -40°C). Standard EPDM compounds fail due to compression set (>40% after 1,000 hours at 100°C) and ozone cracking at flex points.

Material Science Analysis

EPDM’s saturated backbone resists ozone but lacks thermal stability above 150°C. RubberQ’s HNBR compound (hydrogenated nitrile) crosslinks with peroxides, achieving:

  • Higher acrylonitrile content (34-38%) for fuel/oil resistance
  • Hydrogenation removes vulnerable C=C bonds, improving thermal aging
  • Silica-reinforced filler system reduces compression set to <15% (ASTM D395)

Technical Specifications

Parameter HNBR (RubberQ-7280) Standard EPDM FKM (Fluoroelastomer)
Shore A Hardness 70 ±5 65 ±10 75 ±3
Tensile Strength (MPa) 18.5 12.0 16.0
Elongation at Break (%) 320 400 200
Temperature Range (°C) -45 to +175 -50 to +150 -20 to +200
Compression Set (22h @ 150°C) 12% 35% 8%
Ozone Resistance (50pphm, 20% strain) No cracks (1,000h) No cracks (500h) No cracks (5,000h)

Standard Compliance

RubberQ’s IATF 16949-certified process controls:

  • Batch consistency via Mooney viscosity monitoring (ASTM D1646)
  • Adhesion testing per ASTM D429 (metal inserts)
  • Cleanliness validation to ISO 16232 Class 8 for duct airflow

For custom material compound development or IATF 16949 documentation, consult RubberQ’s engineering department.

この記事を共有

この技術記事をエンジニアチームへ共有できます。

技術アップデートを購読

材料知見とエンジニアリング事例をメールで受け取れます。

関連記事

2026年4月11日

Flame Retardancy: Meeting UL 94 V-0 Standards in Electronic Rubber Components.

Flame Retardancy: Meeting UL 94 V-0 Standards in Electronic Rubber Components Problem Statement Electronic rubber components often fail UL 94 V-0 flame retardancy tests due to insufficient thermal stability and inadequate flame retardant additives. Failures occur when materials ignite, drip, or sustain combustion beyond the acceptable limit. Material Science Analysis Standard elastomers like NBR and [&hellip;]

記事を読む

2026年4月11日

Tear Strength of Natural Rubber: Why Synthetic Alternatives Still Struggle in Heavy Mining.

Tear Strength of Natural Rubber: Why Synthetic Alternatives Still Struggle in Heavy Mining Problem Statement Natural rubber (NR) remains the gold standard for tear strength in heavy mining applications. Synthetic alternatives like NBR and EPDM often fail under extreme abrasion and high-stress conditions. These failures result from insufficient molecular chain flexibility and poor resistance to [&hellip;]

記事を読む

2026年4月11日

Global Logistics: How RubberQ Exports to Europe, North America, and Asia.

Global Logistics: How RubberQ Exports to Europe, North America, and Asia Problem Statement Global logistics for rubber components face challenges in maintaining material integrity during transit. Temperature fluctuations, humidity, and chemical exposure can degrade rubber properties, leading to compression set failure or chemical resistance loss. Material Science Analysis Standard rubber materials like NBR degrade under [&hellip;]

記事を読む

技術相談が必要ですか?

当社のエンジニアリングチームが、これらの材料インサイトをお客様の特定のプロジェクトに適用するお手伝いをします。

見積もり依頼