Powder Metallurgy Targets Manufacturer & Supplier for the Kazakhstan Market

High-Purity Thin-Film Coatings & Advanced Ceramics Tailored for Industrial Value Chains and Mining Systems in Kazakhstan

Featured Metallurgy Targets

Premium Grade Sputtering Materials Engineered for High-Performance Industrial Coating Applications

Tungsten titanium alloy target 300mm WTi Target

Tungsten titanium alloy target 300mm WTi Target for Almaty Semiconductor Clusters

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High-Purity 300mm Cr Target

High-Purity 300mm Cr Target for Ust-Kamenogorsk Precision Tooling

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High-purity tungsten target 300mm W Target

High-purity tungsten target 300mm W Target for Karaganda Heavy Metallurgical Industries

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Reliable 300mm WSi Target

Reliable 300mm WSi Target for Pavlodar Electro-Optical Thin Films

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19 Years of Advanced Ceramics & Metallurgy Excellence

Shanghai Creative Advanced Materials Co., Ltd.

Established in the Shanghai Industrial Comprehensive Development Zone, Shanghai Creative Advanced Materials Co., Ltd. (SCA) is a recognized high-tech pioneer specializing in semiconductor ceramic targets, powder metallurgy targets, advanced ceramic components, neutron absorption materials, and polymer configurations. We integrate state-of-the-art research, advanced tooling systems, and rigorous quality inspection to deliver global-standard materials directly to developing economies across Central Asia, with a primary focus on the Kazakhstan industrial zone.

With nineteen years of technological growth, SCA provides deep material traceability from basic powders to finished sputtering targets. Each custom target configuration undergoes ultra-high-pressure compaction, precise vacuum sintering, and micrometric surface processing to meet the needs of modern semiconductor, optic, photovoltaic, and tool-coatings industries.

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SCA Production Facility
19+
Years of Metallurgy Experience
100+
Core Patents & Technologies
200+
Metallurgy Professionals
5000+
Satisfied Global Customers

Kazakhstan's Evolving Metallurgical & Industrial Demands

Kazakhstan stands as a central pillar of heavy metallurgy and mineral extraction in Central Asia, anchored by critical resource nodes in Ust-Kamenogorsk (Oskemen), Karaganda, and Zhezkazgan. While traditionally focused on raw mineral extraction (such as copper, zinc, chrome, and tungsten), the nation is undergoing a major shift. The Kazakh Government's industrial roadmaps now prioritize the local manufacturing of high-value end products, advanced tools, and wear-resistant coatings.

This industrial transition drives demand for physical vapor deposition (PVD) technology. High-precision PVD sputtering processes require powder metallurgy targets to apply ultra-dense coatings onto wear-resistant mining drills, hydraulic valve stems, aerospace turbines, and protective sheets used in severe Siberian environments. SCA meets this demand by supplying specialized tungsten, molybdenum, chromium, and multi-element targets. Our target designs are engineered to handle the extreme thermal and kinetic stresses found in modern vacuum deposition systems.

Solving Industrial Challenges in Heavy Machinery & Resource Extraction

A major operational challenge for Kazakh industrial plants is the rapid wear of machinery components due to abrasive quartz sands and corrosive mineral slurries. Standard electrolytic or thermal coatings often crack or fail under heavy stress. Thin-film deposition using high-density powder metallurgy targets solves this issue. For example:

  • Boron Carbide (B4C) & Silicon Carbide (SiC) Sputtered Layers: Offer extreme hardness to prevent surface degradation on drill heads and structural valves.
  • High-Purity Chromium (Cr) and MoTi Alloys: Provide corrosion resistance for petrochemical pipelines in western Kazakhstan.
  • Tungsten Titanium (WTi) and Tungsten Silicide (WSi) Layers: Supply thermal and diffusion barriers for precision optics and power grid controllers.

By shifting to advanced PVD coatings supplied by SCA, operators can extend component life, reduce downtime, and cut maintenance costs across major industrial sites.

Advanced Material Portfolio

Specialty Ceramic Materials Synthesized for High-Strength, Anti-Wear, and High-Temperature Applications

Boron Carbide (B₄C)

One of the hardest artificially synthesized materials on Earth, second only to diamond. Widely used for soldier body armor, armored tank plates, helicopter shielding, and as neutron absorption materials in nuclear reactors. It also serves as an abrasive media in semiconductor manufacturing and high-velocity sandblasting nozzles.

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Silicon Carbide (SiC)

A highly stable, synthetic crystalline compound of silicon and carbon. Crucial for manufacturing high-precision structural ceramic components used in semiconductor processing, solar energy systems, and high-frequency optoelectronics. SiC excels in high-hardness wear plates, engine parts, and thermal protection barriers.

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Alumina (Al₂O₃)

An industrial-grade ceramic material with excellent electrical insulation, thermal conductivity, and chemical stability. It is widely used in high-voltage isolators, plasma-resistant processing tools, gas-laser waveguides, and wear-resistant liners for material transport chutes.

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Boron Nitride (BN)

Known for its high thermal conductivity and excellent chemical resistance. It is stable in contact with molten metals and remains inert under harsh acidic conditions. BN is ideal for high-temperature crucibles, electrical insulators, heat sinks, and rocket propulsion nozzles.

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Production Flow Control

A Comprehensive Quality Control Pipeline Ensuring Defect-Free Metallurgy Target Synthesis

01

Raw Materials Control

We source ultra-pure metal and ceramic precursor powders. Each batch is verified for grain size, distribution, and impurity levels before entering production.

02

Spray Granulation

We optimize slurry composition and grain uniformity, using specialized spray drying to produce spherical, free-flowing granulated powders with consistent density.

03

Cold Pressing

Automated high-capacity uniaxial and isostatic pressing machines consolidate the granulated powders into uniform green compacts with high green density.

04

Advanced Sintering

We use state-of-the-art sintering methods—including hot pressing, pressureless sintering, reaction sintering, and vacuum HIP—to achieve near-theoretical density.

05

Precision Machining

We machine targets to exact customer drawings using imported CNC centers and grinders, ensuring tight dimensional tolerances and flat surfaces.

06

Testing & Inspection

We test target properties using CMM scanners, ultrasonic fault detectors, X-ray diffraction, and ICP-OES to confirm phase purity and structural integrity.

07

Cleaning & Packaging

We clean targets in a dedicated class-10,000 cleanroom to remove organic residues, followed by vacuum sealing in protective, moisture-barrier packaging.

08

Logistics & Delivery

Our experienced logistics team manages global shipping, customs clearance, and secure packing to ensure safe, on-time delivery across Kazakhstan.

Compliance & Supply Chain Logistics

Localization, Customs Union, & EAC Compliance

Shipping advanced metallurgical targets to Kazakhstan requires strict compliance with the Eurasian Economic Union (EAEU) regulations. At SCA, we handle the certification and logistics documentation required for a smooth supply chain. Our operations are aligned with GOST-K standards, and we provide complete technical documentation in both Russian and English, including chemical analysis certificates, safety data sheets, and certificate of origin forms.

Our strategic location in Shanghai enables efficient shipping routes. We leverage direct rail networks through Khorgos and Almaty to provide fast, reliable delivery. This bypasses long shipping times, helping Kazakh customers minimize inventory costs and secure their supply of critical sputtering materials.

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Technical Roadmap: The Next Generation of Sputtering Targets

As PVD processes evolve to handle higher powers and faster deposition rates, sputtering targets must meet increasingly demanding standards. In high-power magnetron sputtering (HiPIMS), targets must withstand high thermal loads without cracking or losing composition control. SCA is continually refining our powder metallurgy processes to meet these requirements:

  • Microstructure Engineering: Restricting the average grain size to under 50 micrometers to prevent localized arcing and ensure uniform film deposition.
  • Gas Impurity Reduction: Reducing oxygen, nitrogen, and hydrogen impurities to below 100 ppm, preventing film embrittlement.
  • Rotatable Targets: Developing tubular, rotatable targets that offer higher material utilization than traditional planar configurations.

Through partnerships with research centers, SCA is advancing our manufacturing techniques. We are ready to support Kazakhstan's growing high-tech and metallurgical industries with reliable, high-performance targets.

Industrial Product Range

High-Density Sputtering Targets Custom-Manufactured for Diverse Thin-Film Deposition Systems

Wholesale Iron Cobalt Tantalum alloy FeCoTa

Wholesale Iron Cobalt Tantalum alloy FeCoTa Targets for Magnetic Shielding

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Boron Carbide target special for PVD

China Boron Carbide target: special for PVD Protective Coating Applications

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Molybdenum target specifically used for sputter coating

Wholesale Molybdenum target: specifically used for sputter coating

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CrSi alloy target customizable

Wholesale CrSi alloy target: customizable to different specifications

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MoTi alloy target core material for hard coating

China MoTi alloy target: core material for hard coating and corrosion protection

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MoSi alloy target excellent Film uniformity

Wholesale MoSi alloy target: excellent Film uniformity for industrial optics

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Alumina target for manufacturing fields

Wholesale Alumina target: applied for multiple cutting-edge manufacturing fields

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Zinc Oxide Target excellent thin film property

China Zinc Oxide Target: excellent thin film property for optoelectronics

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Latest News & Metallurgy Insights

Stay Updated with Technological Breakthroughs and Advanced Material Engineering Trends

Zirconia Ceramic Industry in China

2026-07-02

China's Independent Zirconia Upgrades

Localized sintering technologies drive upgraded zirconia ceramic industry in China.

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Deep Cultivation in Sintering

2026-06-03

Deep Cultivation in the Sintering Technologies

Understanding advanced thermal pressing techniques and density control in metallurgy targets.

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Pressureless Sintering

2026-05-22

Advantages of Pressureless Sintering

How pressureless furnace technologies optimize structural ceramics and sputtering targets.

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Target Fabrication Advancements

2026-04-10

Target Fabrication Advancements

Exploring new methods for powder consolidation in multi-component alloy targets.

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Frequently Asked Questions

Expert Clarifications on Sputtering Target Parameters, Customs Support, and Sintering Technologies

What is the advantage of using powder metallurgy to manufacture sputtering targets?
Powder metallurgy is ideal for materials with high melting points or mismatched densities, where traditional casting fails. It ensures a uniform microstructure, consistent grain sizes, and avoids segregation in alloy targets. This results in stable, repeatable deposition rates and fewer defect particles during sputtering.
What purity levels are available for tungsten (W) and chromium (Cr) targets shipped to Kazakhstan?
SCA supplies high-purity tungsten and chromium targets with purities starting at 99.95%, reaching up to 99.999% (5N) for critical semiconductor applications. We provide a certificate of analysis (COA) with each batch, detailing impurity levels of trace metallic elements and gases.
How are targets packaged to prevent contamination during shipping to central Asia?
Each target is cleaned in an ultrasonic bath to remove cutting fluids and micro-particles, then dried. Next, they are double-sealed in moisture-barrier bags under vacuum or nitrogen. The sealed packages are placed in shock-absorbing cases to prevent damage during long-distance transit.
Does SCA support customs clearance within the Eurasian Economic Union (EAEU)?
Yes, we provide full shipping documentation compliant with EAEU customs regulations, including HS codes, packing lists, quality certificates, and certificates of origin. This helps facilitate smooth customs clearance at border crossings like Khorgos and Dostyk.
Can SCA produce custom alloy targets based on specific chemical formulas?
Yes, we specialize in producing custom multi-element alloy targets (such as FeCoTa, CrSi, MoTi, and MoSi). Our engineering team will review your specifications to optimize target density, geometry, and backing plate bonding for your system.