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Silicon Carbide Graphite Crucible for Aluminum, Copper and Precious Metal Melting

説明
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説明

silicon carbide graphite crucible

Silicon carbide graphite crucibles are high-performance refractory containers specifically designed for non-ferrous metal smelting, manufactured using high-quality natural flake graphite and silicon carbide (SiC) particles as main raw materials through advanced formula design and isostatic pressing.

The product combines the excellent thermal conductivity and good electrical conductivity of graphite with the superior wear resistance, corrosion resistance, and thermal shock resistance of silicon carbide, featuring rapid heating, 高い熱効率, strong resistance to molten metal erosion, and long service life.

Silicon carbide graphite crucibles can be used stably in temperature environments ranging from 400℃ to 1700℃, and their service life is 2 に 5 times longer than that of ordinary clay-graphite crucibles.

製品の特徴

  1. Graphite + Silicon Carbide Multiphase Design: Combining Thermal Conductivity and Wear Resistance

The main materials are natural flake graphite and silicon carbide particles, which have both high thermal conductivity and wear resistance. The thermal conductivity at room temperature is 140–150 W/(m・K), and at 800℃ it is 40–50 W/(m・K), which is fast and efficient, and shortens the melting time.

  1. Isostatic Pressing: Dense and Uniform Structure

Manufactured using isostatic pressing, the bulk density is 2.21-2.25 g/cm³, and the apparent porosity is 9-12%. The structure is uniform and dense, with a flexural strength of 8-12 MPa, and a service life 2-5 times longer than ordinary clay-graphite crucibles.

  1. Excellent Thermal Shock Resistance and Resistance to Rapid Temperature Changes

The coefficient of thermal expansion is 3.0-4.5 × 10⁻⁶/K, providing excellent thermal shock resistance. 4. Excellent resistance to molten metal erosion. It exhibits excellent resistance to molten aluminum, 銅, zinc, and other non-ferrous metals. It does not contaminate the molten metal, ensuring casting quality. The operating temperature range is 400-1700℃, covering the temperature requirements of most non-ferrous metal smelting processes.

  1. Moderate resistivity and high induction heating efficiency.

The resistivity at room temperature is 3.5-4.5×10⁻³Ω·CM, and at 800℃ it is 3.0-4.0×10⁻³Ω·CM, which is well-matched with medium-frequency induction heating, resulting in high efficiency in converting electrical energy into heat energy.

silicon carbide graphite crucible
かさ密度2.21 ~ 2.25 g/cm³
Apparent porosity9 ~ 12%
Flexural strength8 ~ 12 MPa
Electrical resistivity (24℃)3.5 ~ 4.5 × 10⁻³ Ω·cm
Electrical resistivity (800℃)3.0 ~ 4.0 × 10⁻³ Ω·cm

応用分野

  • Aluminum Alloy Smelting: Suitable for rapid smelting, heat preservation, and refining of aluminum and aluminum alloys. High thermal conductivity and heating efficiency significantly reduce smelting energy consumption.
  • Zinc Alloy Smelting: Suitable for smelting and heat preservation in hot-dip galvanizing, die casting, and other processes involving zinc alloys.
  • Copper Alloy Smelting: Suitable for smelting and heat preservation of copper and copper alloys. Temperature resistance up to 1700℃ meets the smelting temperature requirements for copper alloys.
  • Non-ferrous Metal Die Casting: Suitable for smelting and heat preservation of non-ferrous metals in the die casting industry.
  • Precious Metal Smelting: Suitable for smelting and recycling precious metals such as gold and silver.
  • Metal Recycling: Suitable for recycling and smelting non-ferrous metal scraps such as aluminum, 銅, and zinc.

会社概要

熱処理技術サービスとRを専門とする専門企業&D, 製造業, 高温電気炉の販売.

同社は-100℃から2600℃までの全温度範囲をカバーする高温電気炉の開発に注力しています。. 実験用電気炉などの製品を展開, 真空雰囲気炉, 工業用窯, 中周波誘導加熱装置. 主な製品にはボックス炉などがあります。, 管状炉, 昇降炉, プッシャーキルン, 台車炉, ロータリーキルン, トンネル窯, 各種専用中周波炉.

同社は技術革新を堅持しており、ISO9001およびEU CE認証を取得しています。. それは所有しています 21 登録商標, 29 特許, そして 27 ソフトウェアの著作権.

お支払い方法

TT

発送方法

電気炉は3層でパッケージ化されています: まずは発泡紙で包みます, その後プラスチックフィルムで包みます, そして最後に木箱に詰めていきます.

よくある質問 (よくある質問)

  1. What is the maximum operating temperature of a silicon carbide graphite crucible?

The operating temperature range of a silicon carbide graphite crucible is approximately 400℃ to 1700℃. The specific operating temperature depends on the smelting material, furnace type, and heating method.

  1. What metals are suitable for melting with silicon carbide graphite crucibles?

They are mainly suitable for melting non-ferrous metals such as aluminum, zinc alloys, and copper alloys. They can also be used for high-temperature melting of other low-melting-point alloys.

  1. What are the advantages of silicon carbide graphite crucibles compared to ordinary graphite crucibles?

Silicon carbide graphite crucibles, with the addition of a silicon carbide reinforcing phase, have higher wear resistance, corrosion resistance, and thermal shock resistance. Their service life is typically 2 に 5 times longer than that of ordinary clay graphite crucibles.

  1. What precautions should be taken when using a silicon carbide graphite crucible?

For first-time use, it is recommended to preheat slowly to avoid rapid thermal shock. During the melting process, avoid strong mechanical impacts and prevent prolonged dry-firing to extend the crucible’s service life.

  1. Does the company support customization of different specifications?

はい. We can customize silicon carbide graphite crucibles of different capacities, sizes, wall thicknesses, and structural forms according to customer needs, meeting the requirements of laboratory work, small-scale smelting, and continuous industrial production.

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