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市場調查報告書 - 228063

全球奈米複合材料·奈米粒子·奈米黏土·奈米碳管市場:亞太地區

Global Markets for Nanocomposites, Nanoparticles, Nanoclays, and Nanotubes -- Focus on Asia-Pacific

出版商 BCC Research
出版日期 內容資訊 英文 145 Pages
價格
全球奈米複合材料·奈米粒子·奈米黏土·奈米碳管市場:亞太地區 Global Markets for Nanocomposites, Nanoparticles, Nanoclays, and Nanotubes -- Focus on Asia-Pacific
出版日期: 2012年01月10日 內容資訊: 英文 145 Pages
簡介

2010年亞太地區的奈米複合材料消費量,推測為4萬4,488公噸(約3億900萬美元)。今後預計將從2011年的5萬708公噸(3億4,800萬噸)以數量16.6%的年平均成長率、金額17.7%的年平均成長率成長,到2016年將達到10萬9,124公噸(7億8,700萬美元)的規模。

本報告提供全球及亞太地區的奈米複合材料市場現況與展望調查分析,奈米複合材料的性質,奈米複合材料種類與用途,全球及亞太地區的市場規模實際成果預測(∼2016年:奈米複合材料類型·不同用途),主要的市場趨勢,市場發展因素,市場佔有率,並彙整主要企業簡介等,為您概述為以下內容。

第1章 簡介

第2章 摘要整理

第3章 奈米複合材料:概要

  • 一般概要
  • 奈米複合材料和傳統複合材料費的一般性質
  • 奈米複合材料的各種類型·性質·用途

第4章 專利分析

  • 專利和專利申請:各類型奈米複合材料
  • 專利趨勢的轉變
  • 專利擁有者

第5章 全球奈米複合材料市場:2010-2016年

  • 摘要

第6章 亞太地區的奈米複合材料市場:2010-2016年

  • 摘要
  • 詳細內容市場預測

第7章 其他奈米複合材料市場:2010-2016年

  • 摘要

第8章 奈米複合材料產業

  • 主要企業
  • 市場佔有率

第9章 企業簡介

  • AGILENT TECHNOLOGIES
  • ALCOA CLOSURE SYSTEMS INTL.
  • ALPS ELECTRIC CO., LTD.
  • ALTAIR NANOTECHNOLOGIES, INC.
  • AMERICAN BOWLING SERVICE, INC.
  • BASELL POLYOLEFINS CO. N.V.
  • BAYER AG
  • CLARIANT INTERNATIONAL AG
  • EASTON-BELL SPORTS, INC.
  • E. I. DU PONT DE NEMOURS AND CO.
  • ESPIN TECHNOLOGIES, INC.
  • EVONIK DEGUSSA GMBH
  • FOSTER CORP.
  • FRONTIER CARBON CORP.
  • GENERAL MOTORS CORP.
  • HOLMENKOL SPORT-TECHNOLOGIES GMBH
  • HONEYWELL INTL., INC.
  • HYPERION CATALYSIS INTL., INC.
  • INFRAMAT CORP.
  • INMAT, LLC
  • KABELWERK EUPEN AG
  • LG CHEM
  • 三菱化學
  • NANOCOR, INC.
  • NANOGATE TECHNOLOGIES GMBH
  • NANOLEDGE
  • NANOSYS, INC.
  • NEOMAX MATERIALS CO., LTD.
  • NOBLE POLYMERS
  • Panasonic
  • PENTRON CLINICAL TECHNOLOGIES, LLC
  • POLYONE CORP.
  • RTP CO.
  • SABIC INNOVATIVE PLASTICS, LLC
  • SCIPERIO, INC.
  • 昭和電工
  • SIM COMPOSITES, INC.
  • SOUTHERN CLAY PRODUCTS, INC.
  • SOUTHWEST NANOTECHNOLOGIES, INC.
  • SUD-CHEMIE AG
  • Ube Industries, Ltd.
  • Unitika
  • VALSPAR CORP.
  • WILSON SPORTING GOODS CO.
  • ZYVEX CORP.

圖表

目錄

Abstract

REPORT HIGHLIGHTS

  • Global consumption of nanocomposites was an estimated 118,768 metric tons (MT) with a value of over $800 million in 2010. In 2011, the market should reach 138,389 metric tons and $920 million. By 2016, the market should amount to 333,043 metric tons and $2.4 billion, a five year compound annual growth rate (CAGR) of 19.2% in unit terms and 20.9% in value terms.
  • Asia-Pacific consumption of nanocomposites was an estimated 44,488 MT valued at nearly $309 million in 2010. BCC expects these figures to increase to 50,708 MT and $348 million in 2011, and 109,124 MT and $787 million in 2016, a CAGR of 16.6% in unit terms and 17.7% in value between 2011 and 2016.
  • Clay nanocomposites accounted for 45.3% of Asia-Pacific's total nanocomposite consumption by value in 2010 and was nearly $140 million. It is estimated that clay nanocomposites' market share will increase to 52.5% in 2016 and will reach $412.8 million.

SUMMARY FIGURE
GLOBAL CONSUMPTION OF NANOCOMPOSITES, 2010-2016
($ MILLIONS)

Source: BCC Research

STUDY BACKGROUND

Nanocomposites have been used commercially since Toyota introduced the first polymer/clay nanocomposite auto parts in the 1980s. Recently, advances in the ability to characterize, produce, and manipulate nanometer-scale materials have led to their increased use as fillers in new types of nanocomposites.

Manufacturers now mix nanoparticulate metals, oxides, and other materials with polymers and other matrix materials to optimize the composite's properties with respect to color/transparency, conductivity, flame retardancy, barrier properties, magnetic properties, and anticorrosive properties, as well as tensile strength, modulus, and heat distortion temperature. These composites offer users significantly enhanced properties compared to conventional composite and noncomposite materials.

Global consumption of nanocomposites has increased significantly since BCC published its last market analysis in 2009, reaching 118,768 metric tons (MT), with an estimated value of over $800 million in 2010. Nanocomposite consumption is growing rapidly, and is expected to reach 333,044 MT, or $2.4 billion in value, by 2016.

STUDY GOALS AND OBJECTIVES

Such rapid growth has raised expectations regarding nanocomposites' commercial potential. The overall goal of this updated report is to provide suppliers of advanced materials, entrepreneurs, investors, and others with information concerning emerging nanocomposite technologies and applications, along with a realistic assessment of their commercial potential.

Specific objectives include identifying segments of the nanocomposite market with the greatest commercial potential in the near to mid-term (i.e., 2011 to 2016), projecting future demand in these segments, and evaluating the challenges that must be overcome for each segment to realize its potential in order to estimate the probability of successful commercialization.

SCOPE AND FORMAT

The report addresses the global market for nanocomposites. Nanocomposites are a class of composites that have at least one component with nanoscale dimensions or structural features. This study, however, excludes certain materials (e.g., rubber to which carbon black nanoparticles have been added) that technically fit the definition of nanocomposites but have been in commercial use for decades.

The study format includes the following major elements:

  • Executive summary
  • Definitions
  • Milestones in the development of nanocomposites
  • Nanocomposites that are in commercial use or under development, associated technologies, and applications
  • Nanocomposites with the greatest commercial potential through 2016
  • Global nanocomposite market trends from 2010 to 2016
  • Factors that will influence the long-term development of the nanocomposites market
  • Nanocomposites industry structure and market shares

METHODOLOGY AND INFORMATION SOURCES

Projecting the market for emerging technologies such as nanocomposites, many with commercial potential that has not yet been fully proven, is a challenging task. This report uses a multiphase approach that includes both primary and secondary research methodologies to identify the nanocomposites with the greatest commercial potential and to quantify their market.

In the first phase of the analysis, BCC Research identified a long list of nanocomposites, including those that are still under development. BCC then undertook a literature review to identify those nanocomposites that are unlikely to make it into commercial production before 2016, resulting in a short list of nanocomposites that have near- to mid-term commercial potential.

In phase two, BCC mapped these nanocomposites against potential end-user industries and applications, such as the automotive and food packaging industries, to identify the nanocomposites with the greatest commercial potential in the time frame covered by this report. Selection criteria included size of the market, characteristics of competing materials, and similar considerations.

In the third phase, BCC focused on quantifying the potential market for these high-potential nanocomposites and identifying the main prerequisites for commercial success. Various methodologies and data sources were used to develop the projections, including trend-line projections, input-output analysis, and estimates of future demand from industry sources.

The report includes detailed descriptions of the data sources, assumptions, and methodologies that were used in developing the market projections. BCC Research's intent is to let readers judge the validity of its projections for themselves, thus enabling them to develop alternative market scenarios as they see fit.

ANALYST CEREDENTIALS

Andrew McWilliams, the author of this report, is a partner in the Boston-based international technology and marketing consulting firm 43rd Parallel, LLC.

Table of Contents

Global Markets for Nanocomposites, Nanoparticles, Nanoclays, and Nanotubes -- Focus on Asia-Pacific

Chapter - 1: INTRODUCTION - Complimentary

  • STUDY BACKGROUND
  • STUDY GOALS AND OBJECTIVES
  • INTENDED AUDIENCE
  • SCOPE AND FORMAT
  • METHODOLOGY AND INFORMATION SOURCES
  • ANALYST CREDENTIALS
  • RELATED BCC RESEARCH
  • BCC ON-LINE SERVICES
  • DISCLAIMER

Chapter - 2: EXECUTIVE SUMMARY

  • Table Summary: GLOBAL CONSUMPTION OF NANOCOMPOSITES, THROUGH 2016
  • Figure Summary: GLOBAL CONSUMPTION OF NANOCOMPOSITES, 2010-2016

Chapter - 3: NANOCOMPOSITES OVERVIEW

  • GENERAL DESCRIPTION
  • GENERAL PROPERTIES OF NANOCOMPOSITES VERSUS CONVENTIONAL COMPOSITES
  • TYPES OF NANOCOMPOSITES, THEIR PROPERTIES AND APPLICATIONS

Chapter - 4: PATENT ANALYSIS

  • PATENTS AND PATENT APPLICATIONS BY TYPE OF NANOCOMPOSITE
  • PATENT TRENDS OVER TIME
  • PATENT HOLDERS
    • Figure 1: U.S. NANOCOMPOSITES PATENTS BY TYPE, THROUGH OCTOBER 12, 2011

Chapter - 5: GLOBAL MARKET FOR NANOCOMPOSITES, 2010 - 2016

  • SUMMARY

Chapter - 6: ASIA-PACIFIC MARKETS FOR NANOCOMPOSITES, 2010 - 2016

  • SUMMARY
  • DETAILED MARKET PROJECTIONS

Chapter - 7: OTHER MARKETS FOR NANOCOMPOSITES, 2010 - 2016

  • SUMMARY

Chapter - 8: THE NANOCOMPOSITES INDUSTRY

  • COMPANIES
  • MARKET SHARES

Chapter - 9: COMPANY PROFILES

  • AGILENT TECHNOLOGIES
  • ALCOA CLOSURE SYSTEMS INTL.
  • ALPS ELECTRIC CO., LTD.
  • ALTAIR NANOTECHNOLOGIES, INC.
  • AMERICAN BOWLING SERVICE, INC.
  • BASELL POLYOLEFINS CO. N.V.
  • BAYER AG
  • CLARIANT INTERNATIONAL AG
  • EASTON-BELL SPORTS, INC.
  • E. I. DU PONT DE NEMOURS AND CO.
  • ESPIN TECHNOLOGIES, INC.
  • EVONIK DEGUSSA GMBH
  • FOSTER CORP.
  • FRONTIER CARBON CORP.
  • GENERAL MOTORS CORP.
  • HOLMENKOL SPORT-TECHNOLOGIES GMBH
  • HONEYWELL INTL., INC.
  • HYPERION CATALYSIS INTL., INC.
  • INFRAMAT CORP.
  • INMAT, LLC
  • KABELWERK EUPEN AG
  • LG CHEM
  • MITSUBISHI CHEMICAL CORP.
  • NANOCOR, INC.
  • NANOGATE TECHNOLOGIES GMBH
  • NANOLEDGE
  • NANOSYS, INC.
  • NEOMAX MATERIALS CO., LTD.
  • NOBLE POLYMERS
  • PANASONIC CORP.
  • PENTRON CLINICAL TECHNOLOGIES, LLC
  • POLYONE CORP.
  • RTP CO.
  • SABIC INNOVATIVE PLASTICS, LLC
  • SCIPERIO, INC.
  • SHOWA DENKO K.K.
  • SIM COMPOSITES, INC.
  • SOUTHERN CLAY PRODUCTS, INC.
  • SOUTHWEST NANOTECHNOLOGIES, INC.
  • SUD-CHEMIE AG
  • UBE INDUSTRIES, LTD.
  • UNITIKA, LTD.
  • VALSPAR CORP.
  • WILSON SPORTING GOODS CO.
  • ZYVEX CORP.

List of Tables

  • Summary Table: GLOBAL CONSUMPTION OF NANOCOMPOSITES, THROUGH 2016
  • Table 1: PROPERTIES AND MAIN APPLICATIONS OF PRINCIPAL TYPES OF COMMERCIAL CLAY NANOCOMPOSITES
  • Table 2: OTHER CLAY NANOCOMPOSITES
  • Table 3: PRINCIPAL APPLICATIONS OF CLAY CONTAINING COMPOSITES
  • Table 4: CLAY NANOCOMPOSITE SUPPLIERS
  • Table 5: PROPERTIES AND MAIN APPLICATIONS FOR PRINCIPAL TYPES OF CERAMIC-CONTAINING NANOCOMPOSITES
  • Table 6: PRINCIPAL APPLICATIONS OF CERAMIC CONTAINING COMPOSITES
  • Table 7: CERAMIC NANOCOMPOSITE SUPPLIERS
  • Table 8: PROPERTIES OF CARBON NANOTUBE COMPOSITE
  • Table 9: PRINCIPAL APPLICATIONS OF NANOTUBE COMPOSITES
  • Table 10: CARBON NANOTUBE COMPOSITE SUPPLIERS
  • Table 11: CONSUMPTION OF NANOCOMPOSITES BY COUNTRY/REGION, THROUGH 2016
  • Table 12: GLOBAL CONSUMPTION OF NANOCOMPOSITES, THROUGH 2016
  • Table 13: NANOCOMPOSITES WITH THE LARGEST MARKETS, 2010 VS. 2016
  • Table 14: ASIA-PACIFIC CONSUMPTION OF NANOCOMPOSITES, THROUGH 2016
  • Table 15: ASIA-PACIFIC MARKET FOR CLAY NANOCOMPOSITES, THROUGH 2016
  • Table 16: ASIA PACIFIC MARKET FOR NYLON/MONTMORILLONITE NANOCOMPOSITES, THROUGH 2016
  • Table 17: ASIA-PACIFIC MARKET FOR EVA/MONTMORILLONITE NANOCOMPOSITES, THROUGH 2016
  • Table 18: ASIA-PACIFIC MARKET FOR OTHER CLAY NANOCOMPOSITES, THROUGH 2016
  • Table 19: ASIA-PACIFIC MARKET FOR CERAMIC NANOCOMPOSITES, 2010-2016
  • Table 20: ASIA-PACIFIC MARKET FOR POLYURETHANE/ALUMINA NANOCOMPOSITES, THROUGH 2016
  • Table 21: ASIA-PACIFIC CONSUMPTION OF ALUMINA/TITANIA NANOCOMPOSITES, THROUGH 2016
  • Table 22: ASIA-PACIFIC MARKET FOR TUNGSTEN CARBIDE NANOCOMPOSITES, THROUGH 2016
  • Table 23: ASIA-PACIFIC MARKET FOR CARBON NANOTUBE COMPOSITES, THROUGH 2016
  • Table 24: ASIA-PACIFIC AUTOMOTIVE MARKET FOR NYLON/NANOTUBE COMPOSITES, THROUGH 2016
  • Table 25: ASIA-PACIFIC MARKET FOR POLYCARBONATE/NANOTUBE COMPOSITES, THROUGH 2016
  • Table 26: ASIA-PACIFIC MARKET FOR POLYBUTYLENE TEREPHTHALATE/NANOTUBE COMPOSITES, THROUGH 2016
  • Table 27: ASIA-PACIFIC MARKET FOR POLYPHENYLENE/NANOTUBE COMPOSITES, THROUGH 2016
  • Table 28: ASIA-PACIFIC MARKET FOR EPOXY/CARBON NANOTUBE COMPOSITES, THROUGH 2016
  • Table 29: ASIA-PACIFIC MARKET FOR POLYURETHANE/FULLERENE NANOCOMPOSITES, THROUGH 2016
  • Table 30: ASIA-PACIFIC MARKET FOR PVOH/SWNT COMPOSITE FIBER, THROUGH 2016
  • Table 31: ASIA-PACIFIC MARKET FOR MAGNETIC NANOCOMPOSITES, THROUGH 2016
  • Table 32: ASIA-PACIFIC CONSUMPTION OF NANOBIOCOMPOSITES, THROUGH 2016
  • Table 33: ASIA-PACIFIC MARKET FOR PVOH/CELLULOSE NANOCOMPOSITES, THROUGH 2016
  • Table 34: ASIA-PACIFIC MARKET FOR COTTON/CLAY NANOCOMPOSITE FABRICS, THROUGH 2016
  • Table 35: ASIA-PACIFIC MARKET FOR OTHER NANOCOMPOSITES, 2010-2016
  • Table 36: ASIA-PACIFIC MARKET FOR NANOCOMPOSITE FUEL-CELL MEMBRANE, THROUGH 2016
  • Table 37: ASIA-PACIFIC MARKET FOR PHOTONIC BAND GAP NANOCOMPOSITES, THROUGH 2016
  • Table 38: OTHER MARKETS CONSUMPTION OF NANOCOMPOSITES, THROUGH 2016

List of Figures

  • Summary Figure: GLOBAL CONSUMPTION OF NANOCOMPOSITES, 2010-2016
  • Figure 1: U.S. NANOCOMPOSITES PATENTS BY TYPE, THROUGH OCTOBER 12, 2011
  • Figure 2: ANNUAL TRENDS IN U.S. NANOTECHNOLOGY PATENTS BY TECHNOLOGY TYPE, 1998-2010
  • Figure 3: MAJOR NANOCOMPOSITE PATENT HOLDERS, AS OF OCT. 15, 2011
  • Figure 4: U.S. NANOCOMPOSITE PATENTS ISSUED SINCE 1976 BY ASSIGNEE TYPE
  • Figure 5: ASSIGNEES BY COUNTRY, AS OF OCT. 15, 2011
  • Figure 6: TRENDS IN GLOBAL NANOCOMPOSITE CONSUMPTION, 2010-2016
  • Figure 7: GLOBAL NANOCOMPOSITE CONSUMPTION BY GEOGRAPHICAL MARKET, 2010 VERSUS 2016
  • Figure 8: GLOBAL NANOCOMPOSITE CONSUMPTION BY TYPE, 2010 VERSUS 2016
  • Figure 9: GLOBAL NANOCOMPOSITE CONSUMPTION BY APPLICATION, 2010 VERSUS 2016
  • Figure 10: TRENDS IN ASIA-PACIFIC NANOCOMPOSITE CONSUMPTION, 2010-2016
  • Figure 11: ASIA-PACIFIC NANOCOMPOSITE CONSUMPTION BY TYPE, 2010 VS. 2016
  • Figure 12: ASIA-PACIFIC NANOCOMPOSITE CONSUMPTION BY APPLICATION, 2010 VS. 2016
  • Figure 13: ASIA-PACIFIC CONSUMPTION OF CLAY-BASED NANOCOMPOSITES BY END USE, 2010 VS. 2016
  • Figure 14: ASIA-PACIFIC NYLON/MONTMORILLONITE NANOCOMPOSITE CONSUMPTION, 2010
  • Figure 15: ASIA-PACIFIC CONSUMPTION OF CERAMIC NANOCOMPOSITES BY END USE, 2010 VS. 2016
  • Figure 16: ASIA-PACIFIC MARKET FOR CARBON NANOTUBE-BASED COMPOSITES, 2010 VS. 2016
  • Figure 17: ASIA-PACIFIC AUTOMOTIVE MARKETS FOR NYLON/NANOTUBE COMPOSITES, 2010
  • Figure 18: ASIA-PACIFIC MARKET FOR NANOBIOCOMPOSITES BY APPLICATION, 2016
  • Figure 19: ASIA-PACIFIC MARKET FOR OTHER COMPOSITES, 2016
  • Figure 20: TRENDS IN OTHER MARKETS NANOCOMPOSITE CONSUMPTION, 2010-2016
  • Figure 21: OTHER MARKETS NANOCOMPOSITE CONSUMPTION BY TYPE, 2010 VS. 2016
  • Figure 22: OTHER MARKETS NANOCOMPOSITE CONSUMPTION BY APPLICATION, 2010 VS. 2016
  • Figure 23: NANOCOMPOSITE MARKET SHARES, 2010
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