Powder Metallurgy: Technologies and Global Markets

  • ID: 3632322
  • Report
  • Region: Global
  • 130 pages
  • BCC Research
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until Dec 31st 2018
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Global Market for Powder Shipments is Set to Reach 4.3 billion Pounds ($13.5 billion) in 2020
This report aims to provide the most up-to-date information on the current status of the global powder metallurgy market and to assess its growth potential during the period from 2014 to 2020. The different types of metal powders and their consumption in different applications are of particular interest.

Reasons for Doing this Study

The powder metallurgy (PM) industry has seen steady growth since the 1980s, with much of this growth derived from metal powder-based parts used to replace castings, forgings and machined parts. The industry has consistently demonstrated that it can meet manufacturer demand at a lower cost compared with other technologies.

PM technology is still evolving, and the industry has adopted particulates, i.e., powders and materials not made solely of metals. Products are also changing, and PMs can be adapted or modified to meet their demands. BCC Research last examined this market in May 2014, and now considers this an appropriate time to analyze recent developments.

Scope of the report:

This report analyzes the PM industry on a global basis, including manufacturing capability and consumption by regional markets. It also examines industry standards, government and industry support, and other key factors related to the success of PM.

Market drivers within the industry are identified. The quantity and value of various powders and parts shipments are projected from 2014 to 2015, and then over a five-year period from 2015 to 2020. Technological issues and trends are projected and other influential factors are discussed.

The report identifies major manufacturers of powder metal and other related materials, such as ceramics and nanopowders, special alloys and metal matrix composites. It also includes companies that make parts and components for automotive products, industrial and tooling equipment, recreation and hobby items, appliances, business machines and other products.

Use this report to:

- Assess powder metallurgy (PM) industry on a Global scale, including manufacturing capability and consumption by regional markets.
- Present current trends and issues associated with PM industry, apart from other influential factors.
- Identify major manufacturers of powder metal and other related materials, such as ceramics and nanopowders, special alloys and metal matrix composites.
- Quantify global PM powders and parts shipments with values from 2014 and 2015, and a five year projection from 2015 to 2020.

Highlights:

- The global market for powder shipments reached 3.3 billion pounds, a value of $8 billion in 2015, and should reach 4.3 billion pounds ($13.5 billion) in 2020, demonstrating a compound annual growth rate (CAGR) of 5.1% in volume terms and 10.9% in market value from 2015 to 2020.
- The global market for shipments of powder metal-based parts totaled 2.8 billion pounds, $19.8 billion, in 2014 and 2.9 billion pounds, $19.1 billion, in 2015. The market should total 3.8 billion pounds, $31.6 billion in 2020 at a CAGR of 5.0% from 2015 to 2020.
- The volume of aluminum powder shipped is projected to grow at a 7.8% CAGR between 2015 and 2020
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Chapter 1: Introduction
- STUDY GOAL AND OBJECTIVES
- REASONS FOR DOING THE STUDY
- SCOPE OF REPORT
- METHODOLOGY
- INFORMATION SOURCES
- ANALYSTS' CREDENTIALS
- RELATED BCC RESEARCH REPORTS
- BCC RESEARCH WEBSITE
- DISCLAIMER

Chapter 2: SUMMARY
- Table Summary : GLOBAL POWDER METALLURGY PARTS AND POWDER SHIPMENTS,THROUGH 2020
- Figure Summary : GLOBAL POWDER METALLURGY PARTS AND POWDER SHIPMENTS,2014-2020

Chapter 3: OVERVIEW
- HISTORY
- POWDER METALLURGY PROCESS
- MAKING METAL POWDERS
- POWDER METALLURGY APPLICATIONS

Chapter 4: INDUSTRY STRUCTURE
- INDUSTRY STRUCTURE
- KEY COMPANIES IN THE POWDER METALLURGY INDUSTRY
- CHARACTERISTICS OF THE 2015 POWDER METALLURGY INDUSTRY
- POWDER METALLURGY MANUFACTURING BY REGION
- CONSUMPTION OF POWDER METALLURGY PRODUCTS BY REGION
- MARKET LEADERS
- COMPANY PROFILES

Chapter 5: TECHNOLOGY
- CONVENTIONAL POWDER METALLURGY
- FULLY DENSE PROCESSING
- HIGH-DENSITY PROCESSING OF FERROUS METAL PARTS
- ADDITIVE MANUFACTURING
- SECONDARY OPERATIONS
- METAL POWDER PRODUCTION AND PROCESSING
- RECENT DEVELOPMENTS
- PATENT ANALYSIS

Chapter 6: COMPETITIVE ENVIRONMENT
- ECONOMIC TRENDS
- MOTOR VEHICLE PRODUCTION
- INDUSTRY AND TRADE SUPPORT
- STANDARDS DEVELOPMENT

Chapter 7: POWDER METALLURGY MATERIALS AND PARTS MARKETS
- FERROUS POWDER METALS AND PARTS
- ALUMINUM POWDERS AND PARTS
- COPPER POWDERS AND COPPER-BASED PARTS
- NICKEL-BASED POWDERS AND PARTS
- MARKETS FOR TUNGSTEN AND MOLYBDENUM POWDERS AND ALLOY PM PARTS
- TIN POWDERS AND TIN-BASE PARTS
- PARTICULATES AND OTHER ADVANCED MATERIALS
- GLOBAL POWDER AND PARTS GROWTH

List of Tables

Summary Table : GLOBAL POWDER METALLURGY PARTS AND POWDER SHIPMENTS,THROUGH 2020
Table 1 : OVERVIEW OF THE POWDER METALLURGY PROCESS
Table 2 : BASIC POWDER MANUFACTURING PROCESSES
Table 3 : END-PRODUCTS THAT USE POWDER METALLURGY PARTS
Table 4 : GLOBAL POWDER METALLURGY INDUSTRY STRUCTURE,2015
Table 5 : KEY COMPANIES IN THE GLOBAL POWDER METALLURGY INDUSTRY
Table 6 : GLOBAL SHARE OF POWDER METALLURGY MANUFACTURING BY REGION,2014-2020
Table 7 : GLOBAL POWDER METALLURGY CONSUMPTION BY REGION,2014-2020
Table 8 : POWDER METALLURGY PROCESS
Table 9 : CONTINUOUS-SINTERING FURNACES BY TYPE
Table 10 : BASIC HOT ISOSTATIC PRESSING PROCESS
Table 11 : BASIC COLD ISOSTATIC PRESSING PROCESS
Table 12 : BASIC METAL INJECTION MOLDING PROCESS
Table 13 : WARM COMPACTING PROCESS
Table 14 : METALS USED IN ADDITIVE MANUFACTURING
Table 15 : SECONDARY OPERATIONS
Table 16 : WATER AND GAS ATOMIZATION PROCESS COMPARISONS
Table 17 : PARTICULATE MATERIALS
Table 18 : BENEFITS OF ADDED MATERIALS TO THE POWDER METALLURGY INDUSTRY
Table 19 : COMMONLY USED ADVANCED CERAMIC MATERIALS
Table 20 : COMMERCIAL APPLICATIONS FOR CERAMIC NANOPOWDERS
Table 21 : PATENTS BY AREA OF POWDER METALLURGY TECHNOLOGY,JANUARY 2008-NOVEMBER 2015
Table 22 : POWDER METALLURGY PATENTS BY REGION,JANUARY 2008-NOVEMBER 2015
Table 23 : COMPANIES WITH TWO OR MORE PATENTS, JANUARY 2008-NOVEMBER 2015
Table 24 : GLOBAL MOTOR VEHICLE PRODUCTION, THROUGH 2020
Table 25 : TRADE ASSOCIATIONS IN THE METAL POWDER INDUSTRIES FEDERATION
Table 26 : PENNSYLVANIA STATE UNIVERSITY CENTER FOR INNOVATIVE SINTERED PRODUCTS COLLABORATING UNIVERSITIES
Table 27 : EUROPEAN POWDER METALLURGY ASSOCIATION'S KEY GOALS
Table 28 : MAJOR OBJECTIVES OF POWDER METALLURGY ASSOCIATION OF INDIA
Table 29 : STANDARD U.S. SIEVE SIZES
Table 30 : SAMPLE PHYSICAL CHARACTERISTICS OF COMMERCIAL IRON-BASED POWDERS
Table 31 : SAMPLE COMPOSITION OF SINTERED AUTOMOTIVE STEEL STRUCTURAL COMPONENT MATERIALS
Table 32 : REPRESENTATIVE AUTOMOTIVE APPLICATIONS FOR POWDER METALLURGY PARTS
Table 33 : ADVANTAGES OF POWDER METALLURGIES IN AUTOMOTIVE APPLICATIONS
Table 34 : GLOBAL SHIPMENTS OF IRON AND STEEL POWDERS AND PARTS, THROUGH 2020
Table 35 : GLOBAL SHIPMENT TRENDS FOR MOTOR VEHICLES AND IRON AND STEEL POWDERS, 2007-2014
Table 36 : MAJOR APPLICATIONS FOR STAINLESS STEEL POWDERS
Table 37 : GLOBAL SHIPMENTS OF STAINLESS STEEL POWDERS AND PARTS,THROUGH 2020
Table 38 : ADVANTAGES OF ALUMINUM POWDER METALLURGY
Table 39 : METAL MATRIX COMPOSITE MANUFACTURING METHODS
Table 40 : GLOBAL SHIPMENTS OF ALUMINUM POWDER AND PARTS,THROUGH 2020
Table 41 : PRIMARY ADVANTAGES OF COPPER POWDER
Table 42 : GLOBAL COPPER POWDER AND PARTS SHIPMENTS, THROUGH 2020
Table 43 : NICKEL-POWDER PROPERTIES
Table 44 : NICKEL-POWDER APPLICATIONS BY POWDER TYPE
Table 45 : GLOBAL NICKEL POWDER AND PART SHIPMENTS, THROUGH 2020
Table 46 : GLOBAL TUNGSTEN AND MOLYBDENUM POWDER AND PARTS SHIPMENTS, THROUGH 2020
Table 47 : MAJOR TIN POWDER APPLICATIONS
Table 48 : GLOBAL TIN POWDER AND PARTS SHIPMENTS, THROUGH 2020
Table 49 : ALLOYS WITH HIGH-CARBON CONTENT
Table 50 : METHODS FOR MAKING NANOPOWDERS
Table 51 : PARTICULATE AND OTHER ADVANCED MATERIAL APPLICATIONS
Table 52 : GLOBAL PARTICULATE AND OTHER ADVANCED POWDER AND PARTS SHIPMENTS, THROUGH 2020
Table 53 : GLOBAL POWDER METAL SHIPMENT VOLUME AND MARKET SHARE BY MATERIAL TYPE,THROUGH 2020
Table 54 : GLOBAL POWDER METALLURGY VOLUME AND MARKET SHARE BY MATERIAL TYPE, THROUGH 2020
Table 55 : GLOBAL POWDER METALLURGY PARTS MARKET AND SHIPMENTS, 2014-2020
Table 56 : GLOBAL POWDER METALLURGY COMPONENT SHIPMENTS AND SHARE BY MARKET TYPE, 2014-2020

List of Figures

Summary Figure : GLOBAL POWDER METALLURGY PARTS AND POWDER SHIPMENTS,2014-2020
Figure 1 : GLOBAL SHARE OF POWDER METALLURGY MANUFACTURING BY REGION,2014-2020
Figure 2 : GLOBAL POWDER METALLURGY CONSUMPTION BY REGION,2014-2020
Figure 3 : LEADING POWDER METALLURGY COMPONENT MANUFACTURERS,2014
Figure 4 : LEADING METALLURGY POWDER MANUFACTURERS,2014
Figure 5 : GLOBAL ANNUAL GROWTH RATE OF GROSS DOMESTIC PRODUCT,2013-2020
Figure 6 : GLOBAL SHIPMENTS OF IRON AND STEEL POWDERS AND PARTS, 2014-2020
Figure 7 : GLOBAL SHIPMENTS OF STAINLESS STEEL POWDERS AND PARTS,2014-2020
Figure 8 : GLOBAL SHIPMENTS OF ALUMINUM POWDERS AND PARTS,2014-2020
Figure 9 : GLOBAL COPPER POWDERS AND PARTS SHIPMENTS,2014-2020
Figure 10 : GLOBAL NICKEL POWDER AND PART SHIPMENTS,2014-2020
Figure 11 : GLOBAL TUNGSTEN AND MOLYBDENUM POWDER AND PARTS SHIPMENTS,2014-2020
Figure 12 : GLOBAL SHIPMENTS OF TIN POWDERS AND PARTS,2014-2020
Figure 13 : GLOBAL PARTICULATE AND OTHER ADVANCED POWDER AND PARTS SHIPMENTS,2014-2020
Figure 14 : MARKET SHARES OF PARTICULATES AND SPECIAL POWDERS, 2014
Figure 15 : GLOBAL SHIPMENT VOLUME OF POWDER MATERIALS BY MATERIAL TYPE,2014-2020
Figure 16 : GLOBAL MARKET SHARE FOR POWDER METAL SHIPMENTS BY MATERIAL TYPE,2014-2020
Figure 17 : GLOBAL POWDER METALLURGY SHIPMENT VOLUME BY MATERIAL TYPE,2014-2020
Figure 18 : GLOBAL MARKET SHARE FOR POWDER METALLURGY SHIPMENTS BY MATERIAL TYPE,2014-2020
Figure 19 : GLOBAL POWDER METALLURGY COMPONENT SHIPMENTS BY MARKET TYPE,2014-2020
Figure 20 : GLOBAL POWDER METALLURGY COMPONENT SHARE BY MARKET TYPE,2014-2020
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