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A32 Lug Wear Resistant Butterfly Valves
  • A32 Lug Wear Resistant Butterfly Valves
  • A32 Lug Wear Resistant Butterfly Valves
  • A32 Lug Wear Resistant Butterfly Valves
  • A32 Lug Wear Resistant Butterfly Valves
  • A32 Lug Wear Resistant Butterfly Valves

A32 Lug Wear Resistant Butterfly Valves

Product Details
モデル番号:
A32
接続フォーム:
プロダクトによって決まりなさい
運転モード:
みみずギヤ
公称圧力:
JIS10-20K
チャネル:
タイプを直接介して
構造:
フローティングボールバルブ
タイプ:
プロダクトによって決まりなさい
応用:
産業用使用
サイズ:
プロダクトによって決まりなさい
状態:
新しい
品質:
高レベル
トランスポートパッケージ:
木製の箱
仕様:
プロダクトによって決まりなさい
商標:
ZEGOTA
起源:
中国
生産能力:
10000 PCS/月
Payment & Shipping Terms
最小注文数量
10
価格
200
Product Description

 

                A32 Lug Wear Resistant Butterfly Valves
 

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The A32 Lug Wear Resistant Butterfly Valves is a high-performance, compact industrial fluid control solution engineered for demanding industrial applications. Featuring a precision-engineered concentric design where the valve stem aligns perfectly with the disc centerline, this valve ensures smooth operation and reliable sealing in low-to-medium pressure systems. Constructed with robust materials such as ductile iron, stainless steel, or specialty alloys, and paired with corrosion-resistant EPDM, NBR, or high-temperatureseals, it operates effectively across a temperature range of -20°C to 200°C, handling diverse media including water, steam, oils, and mild acidic/alkaline fluids.
 

Its space-saving wafer-style flange design simplifies installation and reduces pipeline complexity, making it ideal for space-constrained environments like municipal water supply, HVAC systems, food processing, and chemical plants. The lightweight structure, combined with low-torque operation, supports manual worm gear, pneumatic, or electric actuators for rapid response and precise flow control. Certified to ISO 5211 drive interfaces and API 609 fire-safe standards, the valve offers bidirectional sealing, a lifespan exceeding 100,000 cycles, and easy maintenance through replaceable seat seals-significantly reducing lifecycle costs. Typical applications include pump station shutoff, heat exchanger isolation, and industrial circulation control, positioning it as an optimal choice for efficiency-driven operations and cost-effective infrastructure.