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Global Aerospace Raw Materials Market: 2012-2017, October 2012

October 2012 | | ID: G8B5BCA4F60EN
Lucintel

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Hit by global recession, the global aerospace raw materials industry declined during 2010-2011. It is now expected to grow to $29,104 million in 2017 with a CAGR of 4% over the next five years. Lucintel, a leading global management consulting and market research firm, has analyzed the emerging trends and growth opportunities of the aerospace raw materials market by material type and by aircraft type. It presents its findings in the report, “Global Aerospace Raw Materials Market: 2012-2017.”

One of the challenges that global aerospace raw materials suppliers face is the cancellation of orders from aircraft original equipment manufacturers as well as raw materials suppliers. In addition, the fabrication of raw materials requires a highly skilled labor force, which is difficult to acquire at low-cost wages.

Lucintel’s research indicates two major drivers of this market. The replacement of aircraft in mature markets, such as North America and Europe, will increase demand for aircraft in those regions, which will grow the demand for raw materials. The other primary driver is the anticipated dynamic growth in emerging markets due to increasing numbers of low-cost carriers, open sky policies, and air traffic growth.

This market study reports on industry size, industry trends (2006–2011), and forecast (2012–2017) for the global aerospace raw materials market. It focuses on the recent developments and an in-depth analysis of the factors shaping the outlook for the aerospace raw materials market. Increasing fuel prices and greenhouse gases emissions regulation will drive the demand for advanced aerospace materials. Industry players that take the opportunity to engage the proper partners for alliances and take advantage of the growth prospects present in the aerospace raw materials can be anticipated to benefit from the growth forecasts for this market.

This report can be utilized for business development, strategic planning, determination of market size and trends, competitive analysis, investment decisions, and joint product development in global aerospace raw materials market and tap the prevailing huge opportunities with detailed knowledge of this particular market.

This unique report from Lucintel will provide you with valuable information, insights, and tools needed to identify new growth opportunities and operate your business successfully in this market. This report will save hundreds of hours of your own personal research time and will significantly benefit you in expanding your business in this market. In today’s stringent economy, you need every advantage that you can find.
1. EXECUTIVE SUMMARY

2. GLOBAL AEROSPACE RAW MATERIALS MARKET BACKGROUND AND OVERVIEW

2.1: Aerospace raw materials market overview
2.2; Global aerospace raw materials supply chain
  2.2.1: Changes in global aerospace raw materials supply chain
2.3: Global aerospace raw materials market by various material types
  2.3.1: Aluminum and aluminum alloys in aerospace
  2.3.2: Titanium and titanium alloys in aerospace
  2.3.3: Steel and steel alloys in aerospace
  2.3.4: Nickel and nickel alloys in aerospace
  2.3.5: Composites in aerospace
2.4: Major players of global aerospace raw materials market
2.5: Company profiling of major players of aerospace raw materials industry
2.6: Material application: penetration of various materials on aircraft parts on the basis of consumption

3. GLOBAL AEROSPACE MATERIALS MARKET ANALYSIS

3.1: Global aerospace market
3.2: Global aerospace raw materials market overview
3.3: Global aerospace raw materials market by segments: (2011)
  3.3.1: Commercial aircraft segment
  3.3.2: Regional jets segment
  3.3.3: General aviation segment
  3.3.4: Helicopters segment
  3.3.5: Defense aircraft segment
3.4: Global aerospace raw materials market by region (2011)

4. GLOBAL AEROSPACE RAW MATERIALS MARKET TREND (2006-2011)

4.1: Trend for global aerospace materials market
4.2: Trend for global aerospace materials market by segments (2006-2011)
  4.2.1: Global commercial aircraft material market trend (2006-2011)
  4.2.2: Global regional aircraft material market (2006-2011)
  4.2.3: Global general aviation material market trend (2006-2011)
  4.2.4: Global helicopter material market trend (2006-2011)
  4.2.5: Global defense aircraft material market trend (2006-2011)

5. GLOBAL AEROSPACE RAW MATERIALS MARKET FORECAST (2012-2017)

5.1: Global aerospace raw materials market forecast overview
  5.1.1: Global commercial aircraft forecast by aircraft type 2012-2017
  5.1.2: Global aerospace raw materials market by various material types by buy weight and fly weight in 2017
5.2: Key drivers and challengers
5.3: Global aerospace raw materials market forecast (2012-2017)
5.4: Global aerospace raw materials market forecast by segment (2012-2017)
  5.4.1: Global commercial aircraft material market forecast (2012-2017)
  5.4.2: Global regional aircraft material market forecast (2012-2017)
  5.4.3: Global general aviation material market forecast (2012-2017)
  5.4.4: Global defense aircraft material market forecast (2012-2017)
  5.4.5: Global helicopter material market forecast (2012-2017)
5.5: Factors shaping the outlook for global aerospace raw materials market

6. EMERGING TRENDS AND GROWTH OPPORTUNITIES IN GLOBAL AEROSPACE RAW MATERIALS MARKET

6.1: Emerging trends in global aerospace raw materials market
6.2: Growth opportunity in global aerospace raw materials market

LIST OF FIGURES

Chapter 1. Executive Summary
Figure 1.1: Porter’s Five Forces Analysis for aerospace industry raw materials suppliers
Chapter 2. Global Aerospace Raw Materials Market Background and Overview
Figure 2.1: Global aerospace raw materials supply chain
Figure 2.2: Evolution of composites in commercial aircraft
Figure 2.3: Penetration of various materials on consumption basis in aircraft components
Figure 2.4: Usage of aluminum on B777 by aluminum series type
Figure 2.5: Usage of aluminum on Airbus Aircraft
Figure 2.6: Composites usage on Boeing
Figure 2.7: Penetration of aluminum and composites on consumption basis in various aircraft components
Figure 2.8: Material application: penetration of steel, nickel, titanium, and their alloys on aircraft parts on consumption basis
Chapter 3. Global Aerospace Materials Market Analysis
Figure 3.1: Aerospace industry size (2006-2017)
Figure 3.2: Global aircraft demand (2012-2031)
Figure 3.3: Global aerospace raw materials market in 2011
Figure 3.4: Buy material distribution in commercial aircraft segment in 2011
Figure 3.5: Buy material distribution in regional aircraft segment in 2011
Figure 3.6: Buy material distribution in general aviation segment in 2011
Figure 3.7: Buy material distribution in helicopters segment in 2011
Figure 3.8: Buy material distribution in defense aircraft segment in 2011
Figure 3.9: Regional breakdown of global aerospace raw materials market in 2011
Chapter 4. Global Aerospace Raw Materials Market Trend (2006-2011)
Figure 4.1: Total buy material distribution in dollar value of aerospace raw materials trend (2006-2011)
Figure 4.2: Total buy material distribution in million pounds of aerospace raw materials trend (2006-2011)
Figure 4.3: Total fly material distribution in dollar value of aerospace raw materials trend (2006-2011)
Figure 4.4: Total fly material distribution in million pounds of aerospace raw materials trend (2006-2011)
Figure 4.5: Total buy material distribution trend in million pounds in commercial aircraft (2006-2011)
Figure 4.6: Total buy material distribution trend in dollar value in commercial aircraft (2006-2011)
Figure 4.7: Total buy material distribution trend in million pounds in regional aircraft (2006-2011)
Figure 4.8: Total buy material distribution trend in dollar value in regional aircraft (2006-2011)
Figure 4.9: Total buy material distribution trend in million pounds in general aviation (2006-2011)
Figure 4.10: Total buy material distribution trend in dollar value in general aviation (2006-2011)
Figure 4.11: Total buy material distribution trend in million pounds in defense aircraft (2006-2011)
Figure 4.12: Total buy material distribution trend in dollar value in defense aircraft (2006-2011)
Figure 4.13: Total buy material distribution trend in million pounds in helicopter segment (2006-2011)
Figure 4.14: total buy material distribution trend in dollar value in helicopter segment (2006-2011)
Chapter 5: Global Aerospace Raw Materials Market Forecast (2012-2017)
Figure 5.1: Key drivers and challenges in global aerospace raw materials market
Figure 5.2: Total buy material distribution in million pounds of aerospace raw materials forecast (2012-2017)
Figure 5.3: Total buy material distribution in dollar value of aerospace raw materials forecast (2012-2017)
Figure 5.4: Total buy material distribution in million pounds of commercial aircraft forecast (2012-2017)
Figure 5.5: Total buy material distribution in dollar value of commercial aircraft forecast (2012-2017)
Figure 5.6: Total buy material distribution in million pounds of regional aircraft forecast (2012-2017)
Figure 5.7: Total buy material distribution in dollar value of regional aircraft forecast (2012-2017)
Figure 5.8: Total buy material distribution in million pounds of general aviation forecast (2012-2017)
Figure 5.9: Total buy material distribution in dollar value of general aviation forecast (2012-2017)
Figure 5.10: Total buy material distribution in million pounds of defense aircraft forecast (2012-2017)
Figure 5.11: Total buy material distribution in dollar value of defense aircraft forecast (2012-2017)
Figure 5.12: Total buy material distribution forecast in million pounds for helicopter segment (2012-2017)
Figure 5.13: Total buy material distribution forecast in dollar value for helicopter segment (2012-2017)
Figure 5.14: Factors shaping the outlook of the global aerospace raw materials market
Figure 5.15: Factors shaping advancement of the global aerospace raw materials market
Chapter 6: Emerging Trends in Global Aerospace Raw Materials Market
Figure 6.1: Emerging trends in global aerospace raw materials market
Figure 6.2: Growth opportunities in global aerospace raw materials market

LIST OF TABLES

Chapter 1. Executive Summary
Table 1.1: Global aerospace raw materials market parameters and attributes in 2011
Chapter 2. Global Aerospace Raw Materials Market Background and Overview
Table 2.1: Chemical and physical properties of aluminum
Table 2.2: Chemical and physical properties of titanium
Table 2.3: General properties of alloy steel
Table 2.4: Chemical and physical properties of nickel
Table 2.5: Composites structure weight savings
Table 2.6: Aircraft with considerable use of composite materials
Table 2.7: Major players in aerospace raw materials by material type
Chapter 3. Global Aerospace Materials Market Analysis
Table 3.1: Total materials consumption (buy weight and fly weight of all materials) in various market segments in 2011
Table 3.2: Total materials consumption (buy weight and fly weight of all materials) in commercial aircraft segment in 2011
Table 3.3: Total materials consumption (buy weight and fly weight of all materials) in regional jets segment in 2011
Table 3.4: Total materials consumption (buy weight and fly weight of all materials) in general aviation segment in 2011
Table 3.5: Total materials consumption (buy weight and fly weight of all materials) in helicopter segment in 2011
Table 3.6: Total materials consumption (buy weight and fly weight of all materials) in defense aircraft segment in 2011


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