Global Severe Plastic Deformation Market is classified on the basis of techniques, applications, and geography. Severe plastic deformation (SPD) are defined as metal forming processes in which a very large plastic strain is imposed on a bulk process in order to make an ultra-fine grained metal. The objective of the SPD processes for creating ultra-fine grained metal is to manufacture lightweight parts by using high strength metal for the safety and reliability of micro-parts and for environmental harmony.
The factors that propel the growth of the Severe Plastic Deformation Market include increasing demand and wide range of applications. Severe Plastic Deformation Market is classified on the basis of techniques as accumulative roll bonding (ARB), asymmetric rolling (ASR), equal channel angular extrusion, high pressure torsion (HPT), mechanical alloying/milling (MA/MM), repetitive corrugation and straightening (RCS), and others.
Severe Plastic Deformation Market is classified on the basis of applications as pharma & healthcare, defence, aerospace, biomedical, food and energy. Severe Plastic Deformation Industry is classified on the basis of asNorth America, Latin America, Western Europe, Eastern Europe, Asia Pacific, Japan and Middle East and Africa.
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The North American region consists of the U.S., and Canada. Latin America region consists of Mexico and Brazil. The Western European region consists of Germany, Italy, France, England and Spain. The Eastern European region consists of Poland and Russia.
Asia Pacific region consists of China, India, ASEAN, Australia & New Zealand. The Middle East and Africa region consists of GCC, South Africa and North Africa.
Some of the key players that fuel the growth of the Severe Plastic Deformation Industry include Advanced Diamond Technologies, Inc., Advanced Nano Products Co., Limited, Altair Nanotechnologies Inc., Arrowhead Pharmaceuticals, Inc., Bruker Corporation, Catalytic Materials, LLC, Chemat Technology Inc., eSpin Technologies, Inc., ELITech Group, Genefluidics, Inc., Hanwha Nanotech Corporation, Hybrid Plastics, Hyperion Catalysis International, Inc., Integran Technologies, Inc., Intrinsiq Materials Limited (IML), Luxtera, Inc., Nanocyl S.A., NanoMaterials Ltd, Nanosys, Inc., QuantumSphere, Inc., Raymor Industries, Inc., Rogue Valley Microdevices, Inc., Shenzhen Nanotech Port Co., Ltd., Starpharma Holdings, Teledyne Scientific & Imaging, LLC, and Unidym, Inc.
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