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Global Metal Injection Molding Market to Reach $4.6 Billion by 2027Īmid the COVID-19 crisis, the global market for Metal Injection Molding estimated at US$2.9 Billion in the year 2020, is projected to reach a revised size of US$4.6 Billion by 2027, growing at a CAGR of 6.6% over the analysis period 2020-2027.
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A short-term phased recovery by key geography is also addressed. The 295-page report presents concise insights into how the pandemic has impacted production and the buy side for 20. The publisher brings years of research experience to the 9th edition of this report. Metal injection molding of carbon steelsĢ9.DUBLIN-( BUSINESS WIRE)-The "Metal Injection Molding - Global Market Trajectory & Analytics" report has been added to 's offering. Metal injection molding of super alloysĢ8. Metal injection molding of heavy alloys, refractory metals, and hard metalsĢ7. Metal injection molding (MIM) of high speed tool steelsĢ6. Metal injection molding (MIM) of soft magnetic materialsĢ5. Metal injection molding (MIM) of thermal management materials in microelectronicsĢ4. Metal injection molding (MIM) of titanium and titanium alloysĢ3. Metal injection molding (MIM) of stainless steelsĢ2. Part 4 Metal injection molding of specific materialsĢ1. Metal injection molding of large components Powder space holder metal injection molding (PSH-MIM) of micro-porous metalsĢ0. Two-material/two-colour powder metal injection molding (2C-PIM)ġ9. Automation of metal injection molding processġ8. Micro metal injection molding (MicroMIM)ġ7. Part 3 Special metal injection molding processesġ6. Control of carbon content in metal injection molding (MIM) Qualification of metal injection molding (MIM)ġ5. Common defects in metal injection molding (MIM)ġ4. Modeling and simulation of metal injection molding (MIM)ġ3. Characterization of feedstock in metal injection molding (MIM)ġ2. Sintering methods for metal injection molding (MIM)ġ1. Debinding methods in metal injection molding (MIM)ġ0. Molding of components in metal injection molding (MIM)ĩ. Tooling for metal injection molding (MIM)Ĩ. Powder binder formulation and compound manufacture in metal injection molding (MIM)ħ. Powders for metal injection molding (MIM)ĥ. Designing for metal injection molding (MIM)Ĥ. Applications for metal injection molding – firearm, medical, industrial, and automotiveģ. Metal powder injection molding (MIM): Key trends and marketsĢ. With its distinguished editor and expert team of international contributors, the Handbook of Metal Injection Molding is an essential guide for all those involved in the high-volume manufacture of small precision parts, across a wide range of high-tech industries such as microelectronics, biomedical and aerospace engineering. Finally, part four explores metal injection molding of particular materials, and has been expanded to include super alloys and precious metals. Special metal injection molding processes are the focus of part three, which provides comprehensive coverage of micro components, two material/two color structures, and porous metal techniques. Part two provides a detailed review of quality issues, including feedstock characterisation, modeling and simulation, methods to qualify a MIM process, common defects and carbon content control. Part one discusses the fundamentals of the metal injection molding process with chapters on topics such as component design, important powder characteristics, compound manufacture, tooling design, molding optimization, debinding, and sintering.
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Building upon the success of the first edition, this new edition includes the latest developments in the field and expands upon specific processing technologies. Handbook of Metal Injection Molding, Second Edition provides an authoritative guide to this important technology and its applications. Metal injection molding combines the most useful characteristics of powder metallurgy and plastic injection molding to facilitate the production of small, complex-shaped metal components with outstanding mechanical properties.