氮化硼陶瓷零件圆盘merits

氮化硼陶瓷零件圆盘整体呈现出非常典型的圆盘式精密功能结构,由外圈圆环、弧形开槽、中心凸台以及顶部半球结构组成,具有明显的高温工装、热场支撑和绝缘定位零件特征。产品表面洁白细腻、层级分明、边缘圆润规整,体现出较高的加工精度和材料品质。

Description

氮化硼陶瓷零件圆盘-氮化硼陶瓷环-氮化硼陶瓷结构件-陶瓷可加工-来图定制

氮化硼陶瓷具备优异的高温稳定性,即使在持续高热环境中也能保持结构完整,不易变形。同时其在高温条件下仍拥有可靠的电绝缘性能,并兼顾良好的导热能力,可实现热量均匀传递。此外,该材料对熔融金属、玻璃及部分高温介质不易发生粘附,具有良好的化学稳定性和实用价值,特别适合高温精密工业场景。

  • 耐高温性能极强
  • 高温绝缘稳定
  • 导热均匀性好
  • 抗热冲击能力强
  • 耐腐蚀抗粘附

氮化硼陶瓷结构件的核心性能

Performance indicators typical parameter Description of performance
intensity 1.9 to 2.2 g/cm³ Lightweight construction for easy equipment installation and thermal management
Maximum operating temperature 1800°C (inert atmosphere) Structural stability at high temperatures
heat conductivity 30-60 W/m-K High thermal conductivity and uniform temperature distribution
coefficient of thermal expansion 1.5 × 10-⁶ /K Excellent thermal shock resistance
bending strength 40-100 MPa Certain mechanical strength
dielectric strength 10⁶ V/m Excellent electrical insulation properties
chemical stability Does not react with most metals High purity melting without pollution
lubricating property talented Easy detachment of the melt and easy cleaning

这些性能使氮化硼结构件在高温、高真空及腐蚀性气氛中仍能保持极高稳定性,尤其适用于对材料纯度要求极高的场合,如半导体晶体生长与金属化蒸发。

氮化硼陶瓷结构件的制造工艺

Raw material selection and proportioning

Great Ceramic selects high purity boron nitride powder (purity ≥99.9%) and adds a small amount of binder phase (such as alumina or silicon nitride) according to the different application requirements, in order to enhance the sintering density and mechanical properties.

Molding process

Cold Isostatic Pressing (CIP) or Hot Press Sintering (HP).

  • CIP molding Suitable for large crucible sizes, guaranteeing dimensional accuracy and structural homogeneity;

  • The hot press sintering process results in crucible structures with higher densities and better thermal conductivity.

Sintering and post-processing

Boron nitride ceramics are usually sintered at temperatures between 1800 and 2000°C. The sintering temperature of boron nitride ceramics is usually between 1800 and 2000°C.
Great Ceramic performs controlled sintering in a vacuum and inert gas environment to minimize oxidation and impurity introduction.
The final result is CNC precision machining to achieve high dimensional accuracy and smooth surfaces to meet customer requirements for sealing and assembly accuracy.

氮化硼陶瓷结构件的主要应用领域

  • 高纯金属与合金熔炼:氮化硼陶瓷结构件广泛应用于 Ti、Zr、Al、Mg、Fe、Si 等金属的高纯熔炼和铸造;BN 的化学惰性可防止金属污染,提高材料纯度,尤其适合航空航天合金与半导体金属化工艺。

  • Vacuum Evaporation and Physical Vapor Deposition (PVD): In thin-film deposition and coating equipment, BN crucibles are used as evaporation source containers with excellent thermal stability and anti-pollution properties; compared with graphite crucibles, BN is less likely to react with evaporated materials, ensuring the purity and color consistency of the coating.

  • 晶体生长与半导体封装:氮化硼陶瓷结构件是 GaAs、GaN、SiC、蓝宝石晶体生长 工艺中不可或缺的高温容器;其低热膨胀系数与高绝缘性有效防止晶体热应力裂纹,提高晶体完整性。

  • Glass melting and rare materials research: The BN crucible's resistance to moisture and corrosion makes it suitable for high-temperature research environments such as borosilicate and oxide glasses; it is widely used in scientific research institutes for high-temperature reactors, thermal analysis of materials, and synthesis experiments.

氮化硼陶瓷结构件的技术发展趋势与未来方向

氮化硼陶瓷结构件不仅是高温容器,更是高端制造体系中关键的功能部件。未来,其技术发展将呈现以下几个方向:

High purity and ultrafine crystal powder technology

  • Chemical vapor synthesis (CVD) with plasma spheronization was used to prepare ultrafine BN powders;

  • The grain size is controlled at 0.5-1 μm to improve the crucible density and mechanical strength;

  • Reduces the content of impurity ions (Na, Fe, Ca) to meet semiconductor-grade purity requirements.

Precision Molding and Intelligent Manufacturing

  • Introduction of 3D printing + Hot Isostatic Pressing (HIP) technology for one-piece molding of complex shaped crucibles;

  • CNC precision machining + digital inspection ensures dimensional accuracy of ±0.02 mm;

  • Apply AI to control the sintering curve and realize automatic optimization of process parameters.

Green and Circular Manufacturing

  • Development of renewable BN crucible re-sintering technology;

  • Recycling of used crucible powder reduces manufacturing energy consumption and carbon emissions;

  • Promote a green ceramic manufacturing system that is “pollution-free, high-purity and sustainable”.

Industry Trend Outlook

  • BN crucibles will become a standardized component in the epitaxial growth of compound semiconductors (SiC, GaN);

  • BN-Si₃N₄ composite crucibles will be the core structural material in hydrogen and aerospace high-temperature reaction systems;

  • In the future, BN crucibles are expected to be functionally integrated (thermal conductivity + insulation + shielding).

Technical and Manufacturing Advantages of Good Ceramics

As a professional manufacturer of advanced ceramics in China, Shenzhen Zhihao Ceramics Co., Ltd. focuses on the research, development and customization of high-performance ceramic materials, with the whole process technology system from raw material preparation, mold forming, sintering to precision processing.

Our strengths include:

  1. High purity raw material control: imported BN powder, purity ≥ 99.9%, impurity ion content is strictly controlled at ppm level.

  2. Multi-process molding system: CIP, HP or HIP molding process can be provided according to customers' needs.

  3. Precision machining capability: tolerance can be controlled at ±0.02mm, surface finish up to Ra0.2.

  4. Customized design service: support the customization of crucibles of different sizes, structures and applications (round, square, conical, multi-chamber type, etc.).

  5. Strict quality testing: Each batch of products is tested for density, thermal conductivity, microstructure and purity to ensure batch consistency.

Application examples and customer testimonials

致好陶瓷的氮化硼结构件已在多个行业获得客户验证:

  • Semiconductor industry: cooperated with many crystal growth equipment factories to provide BN crucible components for GaN and SiC crystals;

  • Optical coating industry: Used in evaporation source containers to stabilize the output of metal films;

  • Scientific research institutions and universities: long-term supply to materials laboratories for high-temperature reaction and composite material preparation experiments.

Customer feedback indicates that BN crucibles are significantly better than traditional alumina products in terms of durability and purity, with service life extended by 30% to 50%.

concluding remarks

Boron nitride ceramic crucible is not only a high-temperature container, but also an important basic material to support high-end manufacturing system.
Its unique properties in high-temperature insulating, reaction-resistant, and high-purity environments make it an irreplaceable key component for high-tech manufacturing.

ZhiHao Ceramics is committed to providing reliable advanced ceramic solutions for customers around the world, from research and development to mass production, the whole process of “precision manufacturing, quality-oriented” as the core concept.
Choose boron nitride ceramic crucibles for a future of stability, high purity and technological leadership.

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