• Liquid Cold Plate With Friction Stir Welding Process Friction Stir Welding(FSW)
Liquid Cold Plate With Friction Stir Welding Process Friction Stir Welding(FSW)

Liquid Cold Plate With Friction Stir Welding Process Friction Stir Welding(FSW)

商品の詳細:

起源の場所: 中国広東省東莞市
ブランド名: UCHI
証明: UL.VDE,SGS,REACH,CQC,CSA.ISO.ROHS,CUL

お支払配送条件:

最小注文数量: 1000個
価格: 交渉可能
パッケージの詳細: バルク
受渡し時間: 5~7日
支払条件: T/T、Paypal、ウェスタン・ユニオン、お金のグラム
供給の能力: 1ヶ月あたりの5000,000,000PCS
ベストプライス 連絡先

詳細情報

表面処理: プレス+表面仕上げ ノイズ: ≤60dB
クーラントの種類: クーラントの種類 サイズ: カスタマイズ可能
処理: 不動態化熱伝導 IP等級: IP65
使用温度範囲: -40℃~120℃ 騒音範囲: 9.5-25
熱伝導率: 400W/m・K 深いプロセス: CNC加工
基材: アルミニウムか銅
ハイライト:

Friction stir welded liquid cooling plate

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High-performance liquid cold plate

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Durable FSW liquid cooling plate

製品の説明

Friction Stir Welding (FSW) Liquid Cold Plate

Friction Stir Welding (FSW) liquid cold plate is an aluminum alloy heat dissipation component. It joins the base plate with flow channels and the cover plate into a whole via solid-state welding without material melting, featuring high reliability, leak resistance and vibration resistance.

2. Working Principle

  1. Machine flow channel grooves on the base plate.
  2. Place the cover plate on top and clamp the assembly rigidly.
  3. A rotating stirring pin presses down and travels along the joint. Friction heat softens the metal into a plastic state.
  4. The plasticized metal is backfilled and forged behind the stirring pin, forming a dense weld seam.
  5. The entire process involves no material melting, welding wire, brazing filler metal or shielding gas.
Schematic Diagram of Friction Stir Welding Principle

3. Core Advantages

Superior Strength: The weld strength reaches 90–95% of the base metal, much higher than that of brazed joints (approximately 50–70%).

Excellent Leak Tightness: The dense weld is free of pores. Its burst pressure exceeds 1.5 MPa, ensuring no leakage under long-term high pressure.

Minimal Deformation: As a solid-state welding process with a narrow heat-affected zone, the flatness is controlled within 0.1 mm/m.

Fatigue & Vibration Resistance: Refined metal grains enable stable performance under vibrating and thermal cycling conditions such as vehicle and energy storage applications.

Lightweight Design: Wall thickness can be reduced (e.g., from 1.5 mm to 1.0 mm), cutting weight by 20–30%.

Eco-friendly: No welding fume or brazing material contamination, with low energy consumption.

Flexible Design: Compatible with complex flow channels including serpentine channels, microchannels and special-shaped channels.

4. Common Materials

  • Aluminum Alloy: 6061/6063 (balanced strength and thermal conductivity); 1050/1070 (high thermal conductivity).
  • Copper Alloy: Higher thermal conductivity, applied to scenarios with ultra-high heat flux.
  • Dissimilar Materials: Aluminum-copper, aluminum-stainless steel (unique advantage of FSW technology).

5. Typical Applications

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