市場調査レポート
商品コード
1419584

アジア太平洋地域の電気自動車 (EV) 用バッテリーハウジング市場:分析・予測 (2023-2032年)

Asia-Pacific Electric Vehicle (EV) Battery Housing Market - Analysis and Forecast, 2023-2032

出版日: | 発行: BIS Research | ページ情報: 英文 93 Pages | 納期: 1~5営業日

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価格
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本日の銀行送金レート: 1USD=155.95円
アジア太平洋地域の電気自動車 (EV) 用バッテリーハウジング市場:分析・予測 (2023-2032年)
出版日: 2024年02月01日
発行: BIS Research
ページ情報: 英文 93 Pages
納期: 1~5営業日
  • 全表示
  • 概要
  • 図表
  • 目次
概要

中国を除くアジア太平洋地域の電気自動車 (EV) 用バッテリーハウジングの市場規模は、2023年の5億3,050万米ドルから、予測期間中は15.15%のCAGRで推移し、2032年には18億8,820万米ドルに達すると予測されています。

同市場の成長は、電気自動車への関心の高まり、充電インフラの拡大、軽量素材への要求、走行距離の向上への追求などが原動力になると予測されています。

主要市場統計
予測期間 2023-2032年
2023年評価 5億3,050万米ドル
2032年予測 18億8,820万米ドル
CAGR 15.15%

アジア太平洋地域の電気自動車 (EV) 用バッテリーハウジングの市場は、主に同地域全体のEV需要の急増に牽引され、力強い成長を遂げています。各国政府が環境に優しい輸送ソリューションを奨励し、意欲的な排出削減目標を設定しているため、EVの導入が急速に進んでいます。都市部や主要道路沿いでの充電インフラの拡大も、この成長をさらに後押ししています。また、エネルギー効率と走行距離を向上させるため、バッテリーハウジングに軽量素材が採用される傾向が強まっており、進化を続けるEV技術と歩調を合わせています。さらに、同地域は自動車製造業が活況であり、バッテリーハウジング製造の中心地となっています。そのため、市場は継続的な拡大が見込まれており、進化する電動モビリティの展望において、メーカー、投資家、ステークホルダーに大きな機会を提供しています。

当レポートでは、アジア太平洋地域の電気自動車 (EV) 用バッテリーハウジングの市場を調査し、市場概要、市場成長への各種影響因子の分析、市場規模の推移・予測、主要国別の詳細分析、主要企業の分析などをまとめています。

市場の分類

セグメンテーション1:セル形態別

  • パウチ型セル
  • 円筒形セル
  • 角型セル

セグメンテーション2:自動車タイプ別

  • 2輪車
  • 3輪車
  • オフロード車
  • 商用車
  • 乗用車

セグメンテーション3:素材タイプ別

  • スチール
  • アルミニウム
  • GFRP
  • CFRP

セグメンテーション4:電池化学タイプ別

  • リチウムイオン
  • 鉛酸
  • その他

セグメンテーション5:部品タイプ別

  • トップカバー
  • ボトムカバー
  • その他

セグメンテーション6:国別

  • 日本
  • 韓国
  • その他

目次

エグゼクティブサマリー

調査範囲

第1章 市場

  • 業界の展望
    • EVの動向:現在と将来
    • EV用バッテリーハウジング市場:概要
    • サプライチェーン分析
  • 事業力学
    • 事業促進要因
    • 事業上の課題
    • 事業戦略
    • 経営戦略
    • 事業機会

第2章 地域

  • アジア太平洋と日本
    • 市場
    • 用途
    • 製品
    • アジア太平洋と日本 (国別)
  • 中国
    • 市場
    • 用途
    • 製品

第3章 市場:競合ベンチマーキング・企業プロファイル

  • 主要サプライヤー
  • 競合ベンチマーキング
    • 市場シェア分析
  • 企業プロファイル
    • UACJ Corporation
    • Hanwha Solutions Advanced Materials
    • Minth Group
    • Hitachi Metals, Ltd.
    • Teijin Limited

第4章 調査手法

図表

List of Figures

  • Figure 1: Asia-Pacific Electric Vehicle Battery Housing Market Overview, $Billion, 2022-2032
  • Figure 2: Asia-Pacific Electric Vehicle Battery Housing Market (by Vehicle Type), $Million, 2022-2032
  • Figure 3: Asia-Pacific Electric Vehicle Battery Housing Market (by Material), $Million, 2022-2032
  • Figure 4: Asia-Pacific Electric Vehicle Battery Housing Market (by Cell Format), $Million, 2022-2032
  • Figure 5: Asia-Pacific Electric Vehicle Battery Housing Market (by Battery Chemistry), $Million, 2022-2032
  • Figure 6: Asia-Pacific Electric Vehicle Battery Housing Market (by Component Type), $Million, 2022-2032
  • Figure 7: Electric Vehicle Battery Housing Market (by Region), 2022
  • Figure 8: Industry Trends
  • Figure 9: Average Battery Housing Cost
  • Figure 10: Supply Chain Analysis of the Electric Vehicle Battery Housing Market
  • Figure 11: Business Dynamics: Electric Vehicle Battery Housing Market
  • Figure 12: Key Business Strategies, 2018-2022
  • Figure 13: Product Development (by Company), 2018-2022
  • Figure 14: Market Development (by Company), 2018-2022
  • Figure 15: Key Corporate Strategies, 2018-2022
  • Figure 16: Mergers and Acquisitions (by Company), 2018-2022
  • Figure 17: Partnerships, Joint Ventures, Collaborations, and Alliances (by Company), 2018-2022
  • Figure 18: Electric Vehicle Battery Housing Market: Competitive Benchmarking, 2022
  • Figure 19: UACJ Corporation: R&D Analysis, $Million, 2020-2021
  • Figure 20: Minth Group: R&D Analysis, $Million, 2020-2022
  • Figure 21: Hitachi Metals, Ltd.: R&D Analysis, $Million, 2020-2022
  • Figure 22: Teijin Limited: R&D Analysis, $Million, 2021-2022
  • Figure 23: Research Methodology
  • Figure 24: Top-Down and Bottom-Up Approach
  • Figure 25: Assumptions and Limitations

List of Tables

  • Table 1: Asia-Pacific Electric Vehicle Battery Housing Market Overview
  • Table 2: Impact of Business Drivers
  • Table 3: Incentive Schemes Prevailing in Some Major Electric Vehicle-Producing Countries
  • Table 4: Impact of Business Restraints
  • Table 5: Impact of Business Opportunities
  • Table 6: Comparison of Different Materials for EV Battery Enclosure
  • Table 7: Effect of Thermal Conditions on EV Batteries
  • Table 8: Electric Vehicle Battery Housing Market (by Region), $Million, 2022-2032
  • Table 9: Electric Vehicle Battery Housing Market (by Region), Million Units, 2022-2032
  • Table 10: Asia-Pacific and Japan Electric Vehicle Battery Housing Market (by Cell Format), $Million, 2022-2032
  • Table 11: Asia-Pacific and Japan Electric Vehicle Battery Housing Market (by Cell Format), Million Units, 2022-2032
  • Table 12: Asia-Pacific and Japan Electric Vehicle Battery Housing Market (by Battery Chemistry), $Million, 2022-2032
  • Table 13: Asia-Pacific and Japan Electric Vehicle Battery Housing Market (by Battery Chemistry), Million Units, 2022-2032
  • Table 14: Asia-Pacific and Japan Electric Vehicle Battery Housing Market (by Vehicle Type), $Million, 2022-2032
  • Table 15: Asia-Pacific and Japan Electric Vehicle Battery Housing Market (by Vehicle Type), Thousand Units, 2022-2032
  • Table 16: Asia-Pacific and Japan Electric Vehicle Battery Housing Market (by Material), $Million, 2022-2032
  • Table 17: Asia-Pacific and Japan Electric Vehicle Battery Housing Market (by Material), Million Units, 2022-2032
  • Table 18: Asia-Pacific and Japan Electric Vehicle Battery Housing Market (by Component), $Million, 2022-2032
  • Table 19: Japan Electric Vehicle Battery Housing Market (by Cell Format), $Million, 2022-2032
  • Table 20: Japan Electric Vehicle Battery Housing Market (by Cell Format), Thousand Units, 2022-2032
  • Table 21: Japan Electric Vehicle Battery Housing Market (by Battery Chemistry), $Million, 2022-2032
  • Table 22: Japan Electric Vehicle Battery Housing Market (by Battery Chemistry), Thousand Units, 2022-2032
  • Table 23: Japan Electric Vehicle Battery Housing Market (by Vehicle Type), $Million, 2022-2032
  • Table 24: Japan Electric Vehicle Battery Housing Market (by Vehicle Type), Thousand Units, 2022-2032
  • Table 25: Japan Electric Vehicle Battery Housing Market (by Material), $Million, 2022-2032
  • Table 26: Japan Electric Vehicle Battery Housing Market (by Material), Thousand Units, 2022-2032
  • Table 27: Japan Electric Vehicle Battery Housing Market (by Component), $Million, 2022-2032
  • Table 28: South Korea Electric Vehicle Battery Housing Market (by Cell Format), $Million, 2022-2032
  • Table 29: South Korea Electric Vehicle Battery Housing Market (by Cell Format), Thousand Units, 2022-2032
  • Table 30: South Korea Electric Vehicle Battery Housing Market (by Battery Chemistry), $Million, 2022-2032
  • Table 31: South Korea Electric Vehicle Battery Housing Market (by Battery Chemistry), Thousand Units, 2022-2032
  • Table 32: South Korea Electric Vehicle Battery Housing Market (by Vehicle Type), $Million, 2022-2032
  • Table 33: South Korea Electric Vehicle Battery Housing Market (by Vehicle Type), Thousand Units, 2022-2032
  • Table 34: South Korea Electric Vehicle Battery Housing Market (by Material), $Million, 2022-2032
  • Table 35: South Korea Electric Vehicle Battery Housing Market (by Material), Thousand Units, 2022-2032
  • Table 36: South Korea Electric Vehicle Battery Housing Market (by Component), $Million, 2022-2032
  • Table 37: Rest-of-Asia-Pacific and Japan Electric Vehicle Battery Housing Market (by Cell Format), $Million, 2022-2032
  • Table 38: Rest-of-Asia-Pacific and Japan Electric Vehicle Battery Housing Market (by Cell Format), Thousand Units, 2022-2032
  • Table 39: Rest-of-Asia-Pacific and Japan Electric Vehicle Battery Housing Market (by Battery Chemistry), $Million, 2022-2032
  • Table 40: Rest-of-Asia-Pacific and Japan Electric Vehicle Battery Housing Market (by Battery Chemistry), Thousand Units, 2022-2032
  • Table 41: Rest-of-Asia-Pacific and Japan Electric Vehicle Battery Housing Market (by Vehicle Type), $Million, 2022-2032
  • Table 42: Rest-of-Asia-Pacific and Japan Electric Vehicle Battery Housing Market (by Vehicle Type), Thousand Units, 2022-2032
  • Table 43: Rest-of-Asia-Pacific and Japan Electric Vehicle Battery Housing Market (by Material), $Million, 2022-2032
  • Table 44: Rest-of-Asia-Pacific and Japan Electric Vehicle Battery Housing Market (by Material), Thousand Units, 2022-2032
  • Table 45: Rest-of-Asia-Pacific and Japan Electric Vehicle Battery Housing Market (by Component), $Million, 2022-2032
  • Table 46: China Electric Vehicle Battery Housing Market (by Cell Format), $Million, 2022-2032
  • Table 47: China Electric Vehicle Battery Housing Market (by Cell Format), Million Units, 2022-2032
  • Table 48: China Electric Vehicle Battery Housing Market (by Battery Chemistry), $Million, 2022-2032
  • Table 49: China Electric Vehicle Battery Housing Market (by Battery Chemistry), Million Units, 2022-2032
  • Table 50: China Electric Vehicle Battery Housing Market (by Vehicle Type), $Million, 2022-2032
  • Table 51: China Electric Vehicle Battery Housing Market (by Vehicle Type), Thousand Units, 2022-2032
  • Table 52: China Electric Vehicle Battery Housing Market (by Material), $Million, 2022-2032
  • Table 53: China Electric Vehicle Battery Housing Market (by Material), Million Units, 2022-2032
  • Table 54: China America Electric Vehicle Battery Housing Market (by Component), $Million, 2022-2032
  • Table 55: Who Supplies Whom
  • Table 56: Market Share Analysis, 2022
目次
Product Code: AME1836SS

“The Asia-Pacific Electric Vehicle (EV) Battery Housing Market (excluding China) Expected to Reach $1,888.2 Million by 2032.”

Introduction to Asia-Pacific Electric Vehicle Battery Housing Market

The Asia-Pacific electric vehicle battery housing market (excluding China) is projected to reach $1,888.2 million by 2032 from $530.5 million in 2023, growing at a CAGR of 15.15% during the forecast period 2023-2032. The growth of the electric vehicle battery housing market is projected to be driven by increased interest in electric vehicles, the expansion of charging infrastructure, the requirement for lighter materials, and the quest for improved driving range, among other factors.

KEY MARKET STATISTICS
Forecast Period2023 - 2032
2023 Evaluation$530.5 Million
2032 Forecast$1,888.2 Million
CAGR15.15%

Market Introduction

The Asia-Pacific (APAC) electric vehicle battery housing market is experiencing robust growth, primarily driven by the soaring demand for electric vehicles (EVs) across the region. With governments encouraging eco-friendly transportation solutions and setting ambitious emissions reduction targets, there is a rapid adoption of EVs. The expansion of charging infrastructure, both in urban areas and along major roadways, further supports this growth. Moreover, lightweight materials are being increasingly employed in battery housings to enhance energy efficiency and driving range, aligning with the ever-evolving EV technology. Additionally, the APAC region boasts a thriving automotive manufacturing sector, making it a focal point for battery housing production. As a result, the APAC electric vehicle battery housing market is poised for continued expansion, offering significant opportunities for manufacturers, investors, and industry stakeholders in the evolving electric mobility landscape.

Market Segmentation:

Segmentation 1: by Cell Format

  • Pouch Cell
  • Cylindrical Cell
  • Prismatic Cell

Segmentation 2: by Vehicle Type

  • 2-Wheeler
  • 3-Wheeler
  • Off Road Vehicles
  • Commercial Vehicles
  • Passenger Vehicles

Segmentation 3: by Material Type

  • Steel
  • Aluminium
  • GFRP
  • CFRP

Segmentation 4: by Battery Chemistry Type

  • Lithium-Ion
  • Lead Acid
  • Others

Segmentation 5: by Component Type

  • Top Cover
  • Bottom Cover
  • Others

Segmentation 6: by Country

  • Japan
  • South Korea
  • Rest-of-Asia-Pacific and Japan

How can this report add value to an organization?

Product/Innovation Strategy: The leading electric vehicle OEMs are continuously working to manufacture and sell vehicles with higher range. The growing need for affordable and high-performing electric vehicle battery housing is one of the major factors for the growth of the electric vehicle battery housing market. The market is more on the consolidated side at present, where electric vehicle battery housing manufacturers have been successful to a certain extent in strengthening their market position in the APAC market. However, with the rise of electric vehicles with better ranges, the existing established players are expected to face stiff competition from emerging players. Moreover, partnerships and collaborations are expected to play a crucial role in strengthening market position over the coming years, with the companies focusing on bolstering their technological capabilities and gaining a dominant market share in the electric vehicle battery housing industry.

Growth/Marketing Strategy: The electric vehicle battery housing market has been growing at a rapid pace. The market offers enormous opportunities for existing and emerging market players. Some of the strategies covered in this segment are mergers and acquisitions, product launches, partnerships and collaborations, business expansions, and investments. The strategies preferred by companies to maintain and strengthen their market position primarily include partnerships, agreements, and collaborations.

Competitive Strategy: The key players in the APAC electric vehicle battery housing market analyzed and profiled in the study include steel suppliers, aluminium suppliers, plastics suppliers, electric vehicle battery housings manufacturers that develop, maintain, and market electric vehicle battery housings. Moreover, a detailed competitive benchmarking of the players operating in the electric vehicle battery housing market has been done to help the reader understand the ways in which players stack against each other, presenting a clear market landscape. Additionally, comprehensive competitive strategies such as partnerships, agreements, and collaborations are expected to aid the reader in understanding the untapped revenue pockets in the market.

Key Market Players and Competition Synopsis

The companies that are profiled have been selected based on inputs gathered from primary experts and analyzing company coverage, product portfolio, and market penetration.

Some prominent names established in this market are:

  • UACJ Corporation
  • Minth Group
  • Hanwha Solutions Advanced Materials

Table of Contents

Executive Summary

Scope of the Study

1. Markets

  • 1.1. Industry Outlook
    • 1.1.1. Electric Vehicle Trends: Current and Future
    • 1.1.2. Electric Vehicle Battery Housing Market: Overview
      • 1.1.2.1. Timeline: Evolution of the EV Battery Industry
      • 1.1.2.2. Increasing EV Range: Decreasing Battery Pack Weight
      • 1.1.2.3. Securing the Supply of Lithium-Ion Batteries by EV Manufacturers
    • 1.1.3. Supply Chain Analysis
  • 1.2. Business Dynamics
    • 1.2.1. Business Drivers
      • 1.2.1.1. Increasing Demand for EVs Globally
      • 1.2.1.2. Rising Concern Toward the Environment
      • 1.2.1.3. Increasing Government Support
      • 1.2.1.4. Growing EV Battery Production and Robust Design Requirements
      • 1.2.1.5. Continuously Declining Price of Li-Ion Battery
    • 1.2.2. Business Challenges
      • 1.2.2.1. Lack of Standardization
      • 1.2.2.2. Underdeveloped Value Chain for Raw Materials in Developing Countries
      • 1.2.2.3. Development of Electric Roads
    • 1.2.3. Business Strategies
      • 1.2.3.1. Product Development
      • 1.2.3.2. Market Development
    • 1.2.4. Corporate Strategies
      • 1.2.4.1. Mergers and Acquisitions
      • 1.2.4.2. Partnerships, Joint Ventures, Collaborations, and Alliances
    • 1.2.5. Business Opportunities
      • 1.2.5.1. Light Weight Battery Housing Systems: From Steel to Aluminum
      • 1.2.5.2. Housing with Integrated Cooling Systems
      • 1.2.5.3. Composite Battery Housings: Lightweight and Safe
      • 1.2.5.4. Battery Swapping Systems

2. Region

  • 2.1. Asia-Pacific and Japan
    • 2.1.1. Market
      • 2.1.1.1. Key Manufacturers and Suppliers in Asia-Pacific and Japan
      • 2.1.1.2. Business Challenges
      • 2.1.1.3. Business Drivers
    • 2.1.2. Application
      • 2.1.2.1. Asia-Pacific and Japan Electric Vehicle Battery Housing Market (by Cell Format), Volume and Value Data
      • 2.1.2.2. Asia-Pacific and Japan Electric Vehicle Battery Housing Market (by Battery Chemistry), Volume and Value Data
      • 2.1.2.3. Asia-Pacific and Japan Electric Vehicle Battery Housing Market (by Vehicle Type), Volume and Value Data
    • 2.1.3. Product
      • 2.1.3.1. Asia-Pacific and Japan Electric Vehicle Battery Housing Market (by Material), Volume and Value Data
      • 2.1.3.2. Asia-Pacific and Japan Electric Vehicle Battery Housing Market (by Component), Value Data
    • 2.1.4. Asia-Pacific and Japan (by Country)
      • 2.1.4.1. Japan
        • 2.1.4.1.1. Market
          • 2.1.4.1.1.1. Buyer's Attributes
          • 2.1.4.1.1.2. Key Manufacturers and Suppliers in Japan
          • 2.1.4.1.1.3. Business Challenges
          • 2.1.4.1.1.4. Business Drivers
        • 2.1.4.1.2. Application
          • 2.1.4.1.2.1. Japan Electric Vehicle Battery Housing Market (by Cell Format), Volume and Value Data
          • 2.1.4.1.2.2. Japan Electric Vehicle Battery Housing Market (by Battery Chemistry), Volume and Value Data
          • 2.1.4.1.2.3. Japan Electric Vehicle Battery Housing Market (by Vehicle Type), Volume and Value Data
        • 2.1.4.1.3. Product
          • 2.1.4.1.3.1. Japan Electric Vehicle Battery Housing Market (by Material), Volume and Value Data
          • 2.1.4.1.3.2. Japan Electric Vehicle Battery Housing Market (by Component), Value Data
      • 2.1.4.2. South Korea
        • 2.1.4.2.1. Market
          • 2.1.4.2.1.1. Buyer's Attributes
          • 2.1.4.2.1.2. Key Manufacturers and Suppliers in South Korea
          • 2.1.4.2.1.3. Business Challenges
          • 2.1.4.2.1.4. Business Drivers
        • 2.1.4.2.2. Application
          • 2.1.4.2.2.1. South Korea Electric Vehicle Battery Housing Market (by Cell Format), Volume and Value Data
          • 2.1.4.2.2.2. South Korea Electric Vehicle Battery Housing Market (by Battery Chemistry), Volume and Value Data
          • 2.1.4.2.2.3. South Korea Electric Vehicle Battery Housing Market (by Vehicle Type), Volume and Value Data
        • 2.1.4.2.3. Product
          • 2.1.4.2.3.1. South Korea Electric Vehicle Battery Housing Market (by Material), Volume and Value Data
          • 2.1.4.2.3.2. South Korea Electric Vehicle Battery Housing Market (by Component), Value Data
      • 2.1.4.3. Rest-of-Asia-Pacific and Japan
        • 2.1.4.3.1. Market
        • 2.1.4.3.2. Key Manufacturers and Suppliers in Rest-of-Asia-Pacific and Japan
        • 2.1.4.3.3. Business Challenges
        • 2.1.4.3.4. Business Drivers
        • 2.1.4.3.5. Application
          • 2.1.4.3.5.1. Rest-of-Asia-Pacific and Japan Electric Vehicle Battery Housing Market (by Cell Format), Volume and Value Data
          • 2.1.4.3.5.2. Rest-of-Asia-Pacific and Japan Electric Vehicle Battery Housing Market (by Battery Chemistry), Volume and Value Data
          • 2.1.4.3.5.3. Rest-of-Asia-Pacific and Japan Electric Vehicle Battery Housing Market (by Vehicle Type), Volume and Value Data
        • 2.1.4.3.6. Product
          • 2.1.4.3.6.1. Rest-of-Asia-Pacific and Japan Electric Vehicle Battery Housing Market (by Material), Volume and Value Data
          • 2.1.4.3.6.2. Rest-of-Asia-Pacific and Japan Electric Vehicle Battery Housing Market (by Component), Value Data
  • 2.2. China
    • 2.2.1. Market
      • 2.2.1.1. Key Manufacturers and Suppliers in China
      • 2.2.1.2. Business Challenges
      • 2.2.1.3. Business Drivers
    • 2.2.2. Application
      • 2.2.2.1. China Electric Vehicle Battery Housing Market (by Cell Format), Volume and Value Data
      • 2.2.2.2. China Electric Vehicle Battery Housing Market (by Battery Chemistry), Volume and Value Data
      • 2.2.2.3. China Electric Vehicle Battery Housing Market (by Vehicle Type), Volume and Value Data
    • 2.2.3. Product
      • 2.2.3.1. China Electric Vehicle Battery Housing Market (by Material), Volume and Value Data
      • 2.2.3.2. China America Electric Vehicle Battery Housing Market (by Component), Value Data

3. Markets - Competitive Benchmarking & Company Profiles

  • 3.1. Key Suppliers
  • 3.2. Competitive Benchmarking
    • 3.2.1. Market Share Analysis
  • 3.3. Company Profiles
    • 3.3.1. UACJ Corporation
      • 3.3.1.1. Company Overview
        • 3.3.1.1.1. Role of UACJ Corporation in Electric Vehicle Battery Housing Market
        • 3.3.1.1.2. Product Portfolio
      • 3.3.1.2. R&D Analysis
      • 3.3.1.3. Analyst View
    • 3.3.2. Hanwha Solutions Advanced Materials
      • 3.3.2.1. Company Overview
        • 3.3.2.1.1. Role of Hanwha Solutions Advanced Materials in Electric Vehicle Battery Housing Market
        • 3.3.2.1.2. Product Portfolio
          • 3.3.2.1.2.1. Process Technology Analysis
      • 3.3.2.2. Business Strategies
        • 3.3.2.2.1. Market Developments
      • 3.3.2.3. Analyst View
    • 3.3.3. Minth Group
      • 3.3.3.1. Company Overview
        • 3.3.3.1.1. Role of Minth Group in Electric Vehicle Battery Housing Market
        • 3.3.3.1.2. Product Portfolio
      • 3.3.3.2. Corporate Strategies
        • 3.3.3.2.1. Partnership and Collaboration
      • 3.3.3.3. Business Strategies
        • 3.3.3.3.1. Market Developments
      • 3.3.3.4. R&D Analysis
      • 3.3.3.5. Analyst View
    • 3.3.4. Hitachi Metals, Ltd.
      • 3.3.4.1. Company Overview
        • 3.3.4.1.1. Role of Hitachi Metals, Ltd. in Electric Vehicle Battery Housing Market
        • 3.3.4.1.2. Product Portfolio
      • 3.3.4.2. R&D Analysis
      • 3.3.4.3. Analyst View
    • 3.3.5. Teijin Limited
      • 3.3.5.1. Company Overview
        • 3.3.5.1.1. Role of Teijin Limited in the Electric Vehicle Battery Housing Market
        • 3.3.5.1.2. Product Portfolio
          • 3.3.5.1.2.1. Processing Technology Analysis
      • 3.3.5.2. Business Strategies
        • 3.3.5.2.1. Market Developments
        • 3.3.5.2.2. Product Developments
      • 3.3.5.3. R&D Analysis
      • 3.3.5.4. Analyst View

4. Research Methodology

  • 4.1. Data Sources
    • 4.1.1. Primary Data Sources
    • 4.1.2. Secondary Data Sources
  • 4.2. Market Estimation and Forecasting
    • 4.2.1. Top-Down and Bottom-Up Approach