High-temperature quartz view windows are a type of viewing window designed to operate stably and without damage in high-temperature environments, such as in high-heat fields with open flames or in hot air environments without open flames.
- ayment method: By wire transfer or advance payment, depending on the quantity of the order.
- Delivery time: According to the order quantity.
- Transportation method: Sea freight or air freight, depending on the customer.
Remarks:
To confirm the order, The following parameters need to be provided: ① Square: length, width, thickness ② Circle: diameter, thickness ③ Accuracy ④ Quantity
物件内容 | 資産価値 |
---|---|
二酸化ケイ素 | 99.99% |
密度 | 2.2×10³ kg/cm³ |
硬度 | 5.5 - 6.5 モース硬度 570 KHN 100 |
引張強度 | 4.8×10⁷ Pa (N/mm2) (7000 psi) |
圧縮強度 | >1.1×10⁹Pa (160,000 psi) |
熱膨張係数 | 5.5×10-⁷cm/cm-°C (20°C-320°C) |
熱伝導率 | 1.4 W/m-°C |
比熱 | 670 J/kg-°C |
軟化点 | 1730度C(3146度F) |
アニーリングポイント | 1210度C(2210度F) |
ストレイン・ポイント | 1120度C(2048度F) |
作業温度 | 1200°C |
電気抵抗率 | 7×10⁷Ωcm (350°C) |
サイズ | カスタマイズ |
ロゴ | カスタマイズされたロゴ |
JGS1
Commonly known as UV-grade fused silica, this material exhibits exceptionally low dispersion and very high transmittance in the ultraviolet (UV) spectral range.
JGS2
Similar to JGS1, but may have variations in specific performance parameters such as transmittance and thermal expansion coefficient, depending on the manufacturer’s standards.
JGS3
Typically used in applications requiring higher purity or specialized performance characteristics. Specific performance parameters can vary based on the manufacturer.
高温耐性
Quartz glass, as the primary material for these view windows, exhibits extremely high-temperature resistance. Its softening point reaches approximately 1730°C, and it can be used continuously at 1100°C, with short-term use up to 1450°C. This enables high-temperature quartz view windows to withstand various high-temperature environments without deformation or fracture.
High Light Transmission
Quartz glass typically has a light transmittance greater than 90%, with transmittance exceeding 93% in the visible light range, and a high transmittance in the UV spectral range. This high light transmission allows high-temperature quartz view windows to provide a clear view of production processes within high-temperature equipment.
Chemical Stability
Quartz glass possesses excellent chemical stability, with almost no reaction to other acids, and acid resistance that is 30 times greater than ceramics and 150 times greater than stainless steel. This allows high-temperature quartz view windows to operate reliably over long periods in corrosive environments, such as acids and alkalis.
Low Thermal Expansion Coefficient
Quartz glass has a very low thermal expansion coefficient and can withstand sudden temperature changes. Even when heated to approximately 1100°C and then quickly placed into room-temperature water, it will not fracture.
アプリケーション・シナリオ
Quartz view windows have good light transmission across the entire spectrum from ultraviolet to infrared, with a visible light transmittance exceeding 93%. In the ultraviolet spectral range, the transmittance can reach over 80%.
Quartz view windows exhibit high dielectric strength and very low electrical conductivity (low dielectric loss). Even at high temperatures, their electrical conductivity and dielectric loss remain lower than those of many other materials, making them suitable as high-frequency and voltage insulation materials under high-temperature and mechanical stress conditions.
Quartz view windows possess excellent chemical stability and, with the exception of hydrofluoric acid, exhibit almost no chemical reactions with other acids, and have excellent corrosion resistance.
よくある質問
石英ガラスは硬くて脆い材料で、物理的、化学的性質が優れ、機械的硬度が非常に高く、電気絶縁性がよく、高温と耐食性に優れ、遅延性能が低く安定で、光透過性がよい。半導体、光学、電気、化学、航空宇宙、自動車などの分野で広く使用されている。硬くて脆い材料は加工が難しく、多くの分野で刃先の倒れが小さく、材料ロスが少なく、断面粗さが小さく、切断厚さ範囲が広い切断加工が急務となっている。石英ガラスの伝統的な切断方法は機械的切断、すなわち砥石切断である。非伝統的な切断方法には、ウォータージェット切断、電気化学放電ワイヤー切断、連続レーザー切断などがある。機械的切断はコストが低いが、ホイールと材料が接触するため工具の摩耗が大きく、材料が工具によって汚染されやすい。石英ガラスはエッジ崩壊、マイクロクラック、残留応力が発生しやすく、材料の強度や性能に影響する!曲線切断が難しく、研削や研磨などの後処理が必要。レーザー切断は材料に直接触れないため、接触応力がなく、複雑な曲線切断が可能です。ピコ秒レーザーは、スポット径が小さい、精度が高い、材料との作用時間が短い、作用面積が小さいなどの利点があり、硬くて脆い材料の加工に適しています。
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