In the global race for semiconductor sovereignty and renewable energy efficiency, Shanghai Creative Advanced Materials Co., Ltd. (SCA) stands as a vanguard. As a premier China Whiting Ceramics manufacturer and global supplier of high-purity technical materials, we bridge the gap between material science and industrial application. The "Whiting" or advanced technical ceramic sector has transitioned from traditional pottery to high-performance sintering, serving as the backbone for 5G infrastructure, electric vehicle (EV) power modules, and next-generation nuclear reactors.
The global advanced ceramics market is projected to grow at a CAGR of 6.5% through 2030. China’s role has shifted from a raw material exporter to a high-end component innovator. Today, "Whiting Ceramics" (referring to technical grade white and specialized advanced ceramics) are no longer just passive components; they are active functional materials used in Sputtering Targets for thin-film deposition and Neutron Absorber Cores for nuclear safety.
Known as "Black Diamond," our B₄C is synthesized for maximum hardness (second only to diamond). Application scenarios include nuclear shielding and ballistic armor for aerospace platforms.
SiC is critical for the semiconductor revolution. Our SiC components offer superior thermal conductivity and chemical inertness, ideal for wafer processing and valve cores.
We provide high-purity (99.99%+) Chromium, Tungsten-Titanium, and Molybdenum targets. These are the "ink" for the semiconductor thin-film deposition process.
Our E-E-A-T principles are embedded in our 8-step manufacturing excellence:
Providing Alumina (Al₂O₃) and SiC components for Etch and CVD/PVD processes. Our targets are optimized for 300mm wafer technology.
Neutron absorbing materials including Gadolinium Oxide and Europium Oxide cores, providing safety for modern power plants.
MoTi and CrSi alloy targets designed for hard, wear-resistant coatings on engine components and cutting tools.
We utilize a multi-modal sintering approach. For complex geometries, we use Pressureless Sintering, while for high-density requirements in targets, we employ Hot Isostatic Pressing (HIP) to eliminate internal porosity, ensuring 99.9% theoretical density.
SCA provides full-record traceability. Every unit is assigned a serial number linked to its raw material batch, sintering parameters, and final CMM size testing report, aligning with ISO 9001 and high-tech semiconductor requirements.
The trend is towards "Ceramic Miniaturization" and "Multi-Functional Composites." We are currently researching Alumina-Silicon Carbide composites that offer the electrical insulation of Alumina with the thermal shock resistance of SiC.