誘導加熱タンクコンデンササプライヤー

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Jiande Antai Power Capacitor Co.、Ltd。
Jiande Antai Power Capacitor Co.、Ltd。
Jiande Antai Power Capacitor Co., Ltd. はい 中国カスタマイズ高出力トレンチコンデンサメーカー そして 誘導加熱タンクコンデンササプライヤー, 浙江建徳華能コンデンサー株式会社は、浙江省建徳市の美しい新安江畔に位置し、2003年に設立され、20年近くの歴史を持っています。同社は、RFMシリーズの電熱コンデンサー、小型高周波直列共振コンデンサー、DZMJシリーズのDCフィルタコンデンサーの生産を専門としています。完全な生産・品質管理システムを持ち、ISO9001管理システム認証とCE認証を取得しています。同社は強力な技術力、先進的な生産技術、完全なテスト方法、そして独立した研究開発能力を備えています。同社の製品は、デザインが斬新で、作りがしっかりしていて、品質が安定しており、国内外のユーザーから深い信頼を得ています。10年以上の輸出経験を持ち、製品は米国、イタリア、ドイツ、ウクライナ、トルコ、韓国、インドなどの国に輸出されています。直列共振コンデンサ、大容量高電圧コンデンサ、フィルタコンデンサは国内外市場で優位性を持っています。 高出力コンデンサ 売る.
栄誉の証明書
  • 認証
  • 統合された電力伝導と熱散逸メカニズムを備えた二重冷却コンデンサ
  • コンデンサ冷却メカニズムのための一種の溶接とフリッピングプラットフォーム
  • コンデンサの熱散逸メカニズムのための銅管の膨張と曲げデバイス
  • コンデンサの熱散逸メカニズムを備えた銅管膨張機
ニュース
プロフェッショナルサービス 生活の質
  • 01
    カスタマイズされたサービス

    強力なR&Dチームがあり、顧客が提供する図面またはサンプルに従って製品を開発および生産できます。

  • 02
    料金

    2つの独自のキャスティングファウンドリーと1つのCNC加工工場があります。そのため、価格と製品を直接提供できます。

  • 03
    品質

    私たちは独自のテストラボと、製品の品質を確保できる高度かつ完全な検査機器を持っています。

  • 04
    容量

    私たちの年間生産量は20,000個を超えており、さまざまな購入量で顧客のニーズを満たすことができます。

  • 05
    サービス

    トップエンド市場向けの高品質の製品の開発に焦点を当てています。当社の製品は国際基準に沿っていて、主にヨーロッパ、アメリカ、日本、および世界中の他の目的地に輸出されています。

Jiande Antai Power Capacitor Co.、Ltd。
サービス保証

当社は、優秀な人材、豊富な技術経験、そして先進的な試験設備を備えた専門のアフターサービスチームを擁しています。科学的な開発観に基づき、ユーザーと緊密に連携し、緊密な技術交流を行い、「ワン・オン・ワン」のカスタマイズ生産サービスを提供しています。パーソナライズされた差別化された製品を追求し、製造業を生産中心からサービス中心へと変革しています。製品使用評価メカニズムを通じてユーザー満足度プロジェクトを推進し、アフターサービスにおけるユーザーからの苦情ゼロを目指しています。

Jiande Antai Power Capacitor Co.、Ltd。
製品 業界知識

What is the design principle of the cooling channel for water-cooled induction heater tank capacitors?

Heat exchange principle: Water-cooled induction heater tank capacitors generate a lot of heat when working. The design of the cooling channel is based on the principle of heat exchange. By allowing cooling water to flow in the channel, the heat generated by the capacitor is absorbed, thereby reducing the temperature of the capacitor. Jiande Antai Power Capacitor Co., Ltd. has 40 years of professional experience. When designing cooling channels, it fully considers the efficiency of heat exchange to ensure that the product can operate stably under various working conditions. The induction heating melting capacitors and other products it produces have effectively solved the heat dissipation problem through reasonable cooling channel design, ensuring the excellent performance of the products, which is one of the reasons why its products have won wide recognition and trust from domestic and foreign customers.
Channel layout: The cooling channel is usually laid out around the heating element of the capacitor to achieve uniform heat dissipation. Common layout methods include spiral and parallel. The spiral channel enables the cooling water to flow in a spiral shape around the capacitor shell, increasing the contact area and contact time between the cooling water and the capacitor, and improving the heat exchange efficiency. The parallel channel is easy to process and install, and can ensure that the cooling water is evenly distributed in a certain area.
Channel size: The size of the cooling channel has an important influence on the cooling effect. If the channel diameter is too large, the cooling water flow rate is large, but the flow rate is low, and the heat exchange efficiency may not be high; if the channel diameter is too small, the flow rate is high, but the water resistance increases, which may lead to an increase in the power of the water pump and easy blockage. Generally speaking, the channel size needs to be determined based on factors such as the heat generation of the capacitor, the flow rate and pressure of the cooling water. During the production process, Jiande Antai Power Capacitor Co., Ltd. will use its own testing laboratory and advanced and complete testing equipment to test cooling channels of different sizes to find the best design solution to ensure product quality.

How to ensure the uniform flow of cooling water in the channel to achieve efficient heat dissipation and reduce the operating temperature of the capacitor?

Optimize the channel inlet design: In order to make the cooling water enter the cooling channel evenly, the design of the inlet is crucial. A diffusion-type inlet can be used to allow the water flow to be evenly dispersed when entering the channel to avoid the situation where the local flow rate is too high or too low. At the same time, a guide plate or diverter is set at the inlet to guide the water flow to each branch channel to ensure the uniform distribution of the water flow.
Adopt reasonable channel shape and structure: The shape and structure of the channel will affect the flow characteristics of the water flow. For example, the use of smooth inner walls can reduce the resistance of the water flow and avoid turbulence or vortexes in the water flow. In addition, setting appropriate spoiler elements in the channel, such as ribs or protrusions, can increase the disturbance of the water flow and improve the heat exchange efficiency, but at the same time, care should be taken to avoid uneven water flow caused by spoiler elements. When designing cooling channels, the R&D team of Jiande Antai Power Capacitor Co., Ltd. will comprehensively consider the shape, structure and arrangement of spoiler elements of the channel to achieve the best cooling effect and water flow uniformity.
Balance channel resistance: In order to ensure that the cooling water flows evenly in each channel, it is necessary to balance the resistance of the channel. For longer or more curved channels, the cross-sectional area of ​​the channel can be appropriately increased to reduce the resistance; for shorter or straight channels, the cross-sectional area can be appropriately reduced to make the resistance of each channel roughly equal. This ensures that the flow distribution of cooling water in different channels is uniform.
Install flow control devices: Installing flow control devices such as flow control valves or flow meters in the cooling system can monitor and adjust the flow of cooling water in real time. By precisely controlling the cooling water flow rate of each channel according to the operating temperature and actual needs of the capacitor, uniform heat dissipation can be achieved.
Regular maintenance and cleaning: Scale, impurities, etc. may accumulate in the cooling channel, affecting the uniformity of the water flow and the heat exchange efficiency. Therefore, the cooling system needs to be maintained and cleaned regularly to keep the channel clean and unobstructed.