½ÃÀ庸°í¼­
»óǰÄÚµå
1357392

¹æÅº¿ë º¹ÇÕÀç·á ½ÃÀå - ¼¶À¯ Á¾·ùº°, Á¦Ç°º°, ¿ëµµº° ¹× ¿¹Ãø(2023-2032³â)

Ballistic Composites Market - By Fiber Type (Aramid Fiber-Based, Ultra-High Molecular Weight Polyethylene), By Product (Polymer Matrix Composite, Ceramic Matrix Composite, Metal Matrix Composite), By Application & Forecast, 2023 - 2032

¹ßÇàÀÏ: | ¸®¼­Ä¡»ç: Global Market Insights Inc. | ÆäÀÌÁö Á¤º¸: ¿µ¹® 150 Pages | ¹è¼Û¾È³» : 2-3ÀÏ (¿µ¾÷ÀÏ ±âÁØ)

    
    
    




¡Ø º» »óǰÀº ¿µ¹® ÀÚ·á·Î Çѱ۰ú ¿µ¹® ¸ñÂ÷¿¡ ºÒÀÏÄ¡ÇÏ´Â ³»¿ëÀÌ ÀÖÀ» °æ¿ì ¿µ¹®À» ¿ì¼±ÇÕ´Ï´Ù. Á¤È®ÇÑ °ËÅ並 À§ÇØ ¿µ¹® ¸ñÂ÷¸¦ Âü°íÇØÁֽñ⠹ٶø´Ï´Ù.

¼¼°è ¹æÅº¿ë º¹ÇÕÀç·á ½ÃÀåÀº 2023³âºÎÅÍ 2032³â±îÁö ¿¬Æò±Õ 7.5%ÀÇ ¼ºÀå·üÀ» ±â·ÏÇÒ °ÍÀ¸·Î ¿¹»óµË´Ï´Ù.

¾Èº¸¿¡ ´ëÇÑ ¿ì·Á¿Í ÷´Ü Àå°© ¼Ö·ç¼Ç¿¡ ´ëÇÑ Çʿ伺ÀÌ ³ô¾ÆÁö¸é¼­ °æ·®È­ ¹× °í°­µµ ¼ÒÀç¿¡ ´ëÇÑ ¼ö¿ä°¡ Áõ°¡Çϰí ÀÖ½À´Ï´Ù. ¶ÇÇÑ, º¹ÇÕÀç·áÀÇ ±â¼ú ¹ßÀüÀ¸·Î ¹æÅº ¼º´ÉÀÌ Çâ»óµÇ¸é¼­ ±¹¹æ ¹× ¹ý ÁýÇà ºÐ¾ß¿¡¼­ º¹ÇÕÀç·áÀÇ Ã¤ÅÃÀÌ Áõ°¡Çϰí ÀÖ½À´Ï´Ù. ¶ÇÇÑ, Àü ¼¼°èÀûÀ¸·Î ±º»ç ¿¹»êÀÌ Áõ°¡ÇÏ°í ±ºÀÎÀÇ »ýÁ¸¼º¿¡ ´ëÇÑ °ü½ÉÀÌ ³ô¾ÆÁö¸é¼­ ½ÃÀå ¼ºÀå¿¡ ±â¿©Çϰí ÀÖ½À´Ï´Ù.

2023³â 10¿ù, ÀÎÅױ׸®½º ÄÄÆ÷ÁöÆ® USA´Â Áö³­ÇØ Ãâ½ÃÇÑ ¹æÅºº¹ 'Å©¶óÅõ½º ¿þÀ̺ê'°¡ ¹Ì °ø±º 582 Ç︮ÄßÅÍ ±º´ÜÀ¸·ÎºÎÅÍ Ã¹ ¹øÂ° ´ëÇü ÁÖ¹®À» ¹Þ¾Ò´Ù°í ¹ßÇ¥Çß½À´Ï´Ù. Ç×°ø¿ìÁÖ »ê¾÷°ú ÀÚµ¿Â÷ »ê¾÷µµ °¡º±°í ³»±¸¼ºÀÌ ¶Ù¾î³­ ¹æÅº¿ë º¹ÇÕÀç·á¸¦ äÅÃÇØ ¹æÅº º¹ÇÕÀç »ê¾÷ÀÇ È®ÀåÀ» µÞ¹ÞħÇϰí ÀÖ½À´Ï´Ù.

¼¼¶ó¹Í ¸ÅÆ®¸¯½º º¹ÇÕÀç·á ºÎ¹®Àº 2023³âºÎÅÍ 2032³â±îÁö Å« ¼ºÀåÀ» º¸ÀÏ °ÍÀ¸·Î ¿¹»óµÇ¸ç, CMC´Â ¶Ù¾î³­ °­µµ¿Í °æµµ¸¦ °¡Áö°í ÀÖ¾î Àå°©¿ë¿¡ ÀûÇÕÇÕ´Ï´Ù. °æ·®À¸·Î ÀÎÇØ ±âµ¿¼º°ú º¸È£·ÂÀÌ Çâ»óµÇ¾î ±¹¹æ ¹× ¹ýÁýÇà±â°ü¿¡¼­ äÅÃÀ» ÃËÁøÇÒ ¼ö ÀÖ½À´Ï´Ù. º¸¾È¿¡ ´ëÇÑ ¿ì·Á°¡ Áö¼ÓµÇ´Â °¡¿îµ¥ ¹æÅº º¸È£¿ë CMC¿¡ ´ëÇÑ ¼ö¿ä´Â °è¼Ó Áõ°¡Çϰí ÀÖÀ¸¸ç, ¹æÅº¿ë º¹ÇÕÀç·á ½ÃÀåÀÇ ¼ºÀå¿¡ ¸Å¿ì Áß¿äÇÑ ¿ªÇÒÀ» Çϰí ÀÖ½À´Ï´Ù.

Â÷·® Àå°© ºÐ¾ß´Â 2023³âºÎÅÍ 2032³â±îÁö µÎµå·¯Áø CAGRÀ» ±â·ÏÇÒ °ÍÀ¸·Î ¿¹»óµË´Ï´Ù. ±º¿ë Â÷·®°ú ¹ý ÁýÇà Â÷·®¿¡ ´ëÇÑ À§ÇùÀÌ Áõ°¡ÇÔ¿¡ µû¶ó °í±Þ º¸È£ ¼Ö·ç¼ÇÀÇ Çʿ伺ÀÌ °¡Àå ¸¹ÀÌ Áõ°¡Çϰí ÀÖ½À´Ï´Ù. ¹æÅº¿ë º¹ÇÕÀç·á´Â °æ·®, °í°­µµ Ư¼ºÀ¸·Î ÀÎÇØ ¼³µæ·Â ÀÖ´Â ¼Ö·ç¼ÇÀ» Á¦°øÇÕ´Ï´Ù. Â÷·® º¸È£ °­È­¿¡ ´ëÇÑ ¼ö¿ä°¡ °è¼Ó Áõ°¡ÇÔ¿¡ µû¶ó ¹æÅº¿ë º¹ÇÕÀç·áÀÇ Â÷·® Àå°© ½ÃÀå Á¡À¯À²Àº Áö¼ÓÀûÀ¸·Î Áõ°¡Çϰí ÀÖÀ¸¸ç, Àη°ú ÀÚ»êÀ» º¸È£ÇÏ´Â µ¥ Áß¿äÇÑ ¿ªÇÒÀ» Çϰí ÀÖ½À´Ï´Ù.

À¯·´ÀÇ ¹æÅº¿ë º¹ÇÕÀç·á ½ÃÀåÀº 2023³âºÎÅÍ 2032³â±îÁö »ó´çÇÑ CAGRÀ» º¸ÀÏ °ÍÀ¸·Î ¿¹»óµË´Ï´Ù. ÀÌ Áö¿ª¿¡¼­´Â ¾Èº¸¿¡ ´ëÇÑ ¿ì·Á°¡ ³ô¾ÆÁü¿¡ µû¶ó ±º´ë Çö´ëÈ­¿¡ ÁßÁ¡À» µÎ¸é¼­ ÷´Ü Àå°© ¼Ö·ç¼Ç¿¡ ´ëÇÑ Çʿ伺ÀÌ Áõ°¡Çϰí ÀÖ½À´Ï´Ù. °æ·®°ú °í°­µµÀÇ Æ¯¼ºÀ» °¡Áø ¹æÅº º¹ÇÕ¼ÒÀç´Â ±º¿ë°ú ¹Î°£¿ëÀ» ¸··ÐÇÏ°í ¼ö¿ä°¡ Áõ°¡Çϰí ÀÖ½À´Ï´Ù. À¯·´ ±¹°¡µéÀÌ ¾ÈÀü°ú º¸¾ÈÀ» ¿ì¼±½ÃÇÏ´Â °¡¿îµ¥, À¯·´ ¹æÅº¿ë º¹ÇÕÀç·á ½ÃÀåÀº ÀÌ·¯ÇÑ Àç·á¿¡ ´ëÇÑ ÀÇÁ¸µµ°¡ ³ô¾ÆÁö¸é¼­ ¼ö¿ä°¡ ±ÞÁõÇϰí ÀÖ½À´Ï´Ù.

¸ñÂ÷

Á¦1Àå Á¶»ç ¹æ¹ý°ú Á¶»ç ¹üÀ§

Á¦2Àå ÁÖ¿ä ¿ä¾à

Á¦3Àå ¹æÅº¿ë º¹ÇÕÀç·á »ê¾÷ ÀλçÀÌÆ®

  • »ýÅÂ°è ºÐ¼®
  • ¾÷°è¿¡ ´ëÇÑ ¿µÇâ¿äÀÎ
    • ¼ºÀå ÃËÁø¿äÀÎ
    • ¾÷°èÀÇ ÀáÀçÀû ¸®½ºÅ©¿Í °úÁ¦
  • ÀáÀç ¼ºÀå·Â ºÐ¼®
  • COVID-19 ¿µÇ⠺м®
  • ±ÔÁ¦ »óȲ
    • ¹Ì±¹
    • À¯·´
  • °¡°Ý ºÐ¼®, 2022³â
  • ±â¼ú Àü¸Á
    • ÇâÈÄ ½ÃÀå µ¿Çâ
  • Porters ºÐ¼®
  • PESTEL ºÐ¼®
  • ·¯½Ã¾Æ¡¤¿ìÅ©¶óÀ̳ª ÀüÀïÀÇ ¿µÇâ

Á¦4Àå °æÀï »óȲ

  • ¼­·Ð
  • ±â¾÷ ¸ÅÆ®¸¯½º ºÐ¼®
  • ¼¼°è ±â¾÷ Á¡À¯À² ºÐ¼®
  • °æÀï Æ÷Áö¼Å´× ¸ÅÆ®¸¯½º
  • Àü·« ´ë½Ãº¸µå

Á¦5Àå ¹æÅº¿ë º¹ÇÕÀç·á ½ÃÀå ±Ô¸ð¿Í ¿¹Ãø : ¼¶À¯ À¯Çüº° 2018-2032³â

  • ¾Æ¶ó¹Ìµå ¼¶À¯ ±â¹Ý
  • ÃʰíºÐÀÚ·® Æú¸®¿¡Æ¿·»
  • ±âŸ

Á¦6Àå ¹æÅº¿ë º¹ÇÕÀç·á ½ÃÀå ±Ô¸ð¿Í ¿¹Ãø : Á¦Ç°º° 2018-2032³â

  • Æú¸®¸Ó ¸ÅÆ®¸¯½º º¹ÇÕÀç·á
  • ¼¼¶ó¹Í ¸ÅÆ®¸¯½º º¹ÇÕÀç
  • ±Ý¼Ó ¸ÅÆ®¸¯½º º¹ÇÕÀç·á(MMC)

Á¦7Àå ¹æÅº¿ë º¹ÇÕÀç·á ½ÃÀå ±Ô¸ð¿Í ¿¹Ãø : ¿ëµµº° 2018-2032³â

  • Â÷ü Àå°©
  • Â÷·® Àå°©
  • ¹æÅº¿ë Ç÷¹ÀÌÆ®¿Í Àμ­Æ®
  • ¹æÅº¿ë Çï¸ä°ú ½Çµå
  • ±âŸ

Á¦8Àå ¹æÅº¿ë º¹ÇÕÀç·á ½ÃÀå ±Ô¸ð¿Í ¿¹Ãø : Áö¿ªº° 2018-2032³â

  • ÁÖ¿ä µ¿Çâ : Áö¿ªº°
  • ºÏ¹Ì
    • ¹Ì±¹
    • ij³ª´Ù
  • À¯·´
    • µ¶ÀÏ
    • ¿µ±¹
    • ÇÁ¶û½º
    • ½ºÆäÀÎ
    • ÀÌÅ»¸®¾Æ
  • ¾Æ½Ã¾ÆÅÂÆò¾ç
    • ÀϺ»
    • Áß±¹
    • Àεµ
    • È£ÁÖ
    • Çѱ¹
    • Àεµ³×½Ã¾Æ
    • ¸»·¹À̽þÆ
  • ¶óƾ¾Æ¸Þ¸®Ä«
    • ºê¶óÁú
    • ¸ß½ÃÄÚ
    • ¾Æ¸£ÇîÆ¼³ª
  • MEA
    • ³²¾ÆÇÁ¸®Ä«°øÈ­±¹
    • »ç¿ìµð¾Æ¶óºñ¾Æ
    • ¾Æ¶ø¿¡¹Ì¸®Æ®
    • ÀÌÁýÆ®

Á¦9Àå ±â¾÷ °³¿ä

  • Honeywell International Inc.(USA)
  • Teijin Limited(Japan)
  • BAE Systems plc(United Kingdom)
  • DuPont de Nemours, Inc.(USA)
  • DSM Dyneema(Netherlands)
  • Morgan Advanced Materials plc(United Kingdom)
  • 3M Company(USA)
  • Saint-Gobain Performance Plastics Corporation(USA)
  • Koninklijke Ten Cate BV(Netherlands)
  • Gurit Holding AG(Switzerland)
  • MKU Limited(India)
  • Barrday Inc.(Canada)
  • TPI Composites, Inc.(USA)
  • ArmorSource LLC(USA)
  • Revision Military(USA)
ksm 23.10.18

Global Ballistic Composites Market will witness 7.5% CAGR between 2023 and 2032. Rising security concerns and the need for advanced armor solutions have spurred demand for lightweight, high-strength materials. Additionally, technological advancements in composite materials have led to improved ballistic performance, driving their adoption in defense and law enforcement applications. Moreover, increasing military budgets worldwide and a growing focus on soldier survivability contribute to market growth.

Quoting an example, in October 2023, Integris Composites USA brought it to public notice that the Cratus Wave ballistic armor, launched last year, received its first significant order from the 582nd Helicopter Group of the U.S. Air Force. The aerospace and automotive industries are also embracing ballistic composites for their lightweight and durable properties, supporting the ballistic composites industry expansion.

The overall Ballistic Composites Market is classified based on product, application, and region.

The ceramic matrix composite segment will undergo significant development from 2023 to 2032. CMCs offer exceptional strength and hardness, making them ideal for armor applications. Their lightweight nature provides enhanced mobility and protection, driving their adoption in defense and law enforcement. As security concerns persist, the demand for CMCs in ballistic protection continues to grow, cementing their pivotal role in the ballistic composites market growth.

The vehicle armor segment will register a commendable CAGR from 2023 to 2032. With the increasing threats to military and law enforcement vehicles, the need for advanced protective solutions is paramount. Ballistic composites offer a compelling solution due to their lightweight, high-strength properties. As the demand for enhanced vehicle protection persists, the ballistic composites market share in vehicle armor continues to expand, serving as a critical component in safeguarding personnel and assets.

Europe ballistic composites market will showcase an appreciable CAGR from 2023 to 2032. The region's focus on military modernization, in line with rising security concerns, has boosted the need for advanced armor solutions. Ballistic composites, with their lightweight and high-strength characteristics, are increasingly sought-after for both military and civilian applications. As European nations prioritize safety and security, the Ballistic Composites Market in Europe is witnessing a surge in demand, reflecting a growing reliance on these materials.

Table of Contents

Chapter 1 Methodology & Scope

  • 1.1 Industry coverage
  • 1.2 Market scope & definition
  • 1.3 Base estimates & calculations
    • 1.3.1 Data collection
  • 1.4 Forecast parameters
  • 1.5 COVID-19 impact analysis at global level
  • 1.6 Data validation
  • 1.7 Data Sources
    • 1.7.1 Primary
    • 1.7.2 Secondary
      • 1.7.2.1 Paid sources
      • 1.7.2.2 Unpaid sources

Chapter 2 Executive Summary

  • 2.1 Ballistic composites industry 360 degree synopsis, 2018 - 2032
  • 2.2 Business trends
  • 2.3 Fiber type trends
  • 2.4 Product trends
  • 2.5 Application trends
  • 2.6 Regional trends

Chapter 3 Ballistic composites Industry Insights

  • 3.1 Industry ecosystem analysis
  • 3.2 Industry impact forces
    • 3.2.1 Growth drivers
    • 3.2.2 Industry pitfalls & challenges
  • 3.3 Growth potential analysis
    • 3.3.1 By fiber type
    • 3.3.2 By product
    • 3.3.3 By application
  • 3.4 COVID- 19 impact analysis
  • 3.5 Regulatory landscape
    • 3.5.1 U.S.
    • 3.5.2 Europe
  • 3.6 Pricing analysis, 2022
  • 3.7 Technology landscape
    • 3.7.1 Future market trends
  • 3.8 Porter's analysis
  • 3.9 PESTEL analysis
  • 3.10 Impact of Russia Ukraine war

Chapter 4 Competitive Landscape, 2022

  • 4.1 Introduction
  • 4.2 Company matrix analysis, 2022
  • 4.3 Global company market share analysis, 2022
  • 4.4 Competitive positioning matrix
  • 4.5 Strategy dashboard

Chapter 5 Ballistic composites Market Size and Forecast, By Fiber Type 2018 - 2032

  • 5.1 Aramid Fiber-Based
  • 5.2 Ultra-High Molecular Weight Polyethylene
  • 5.3 Others

Chapter 6 Ballistic composites Market Size and Forecast, By Product 2018 - 2032

  • 6.1 Polymer Matrix Composite
  • 6.2 Ceramic Matrix Composite
  • 6.3 Metal Matrix Composite (MMC)

Chapter 7 Ballistic composites Market Size and Forecast, By Application 2018 - 2032

  • 7.1 Body Armor
  • 7.2 Vehicle Armor
  • 7.3 Ballistic Plates and Inserts
  • 7.4 Ballistic Helmets and Shields
  • 7.5 Others

Chapter 8 Ballistic composites Market Size and Forecast, By Region 2018 - 2032

  • 8.1 Key trends, by region
  • 8.2 North America
    • 8.2.1 U.S.
    • 8.2.2 Canada
  • 8.3 Europe
    • 8.3.1 Germany
    • 8.3.2 UK
    • 8.3.3 France
    • 8.3.4 Spain
    • 8.3.5 Italy
  • 8.4 Asia Pacific
    • 8.4.1 Japan
    • 8.4.2 China
    • 8.4.3 India
    • 8.4.4 Australia
    • 8.4.5 South Korea
    • 8.4.6 Indonesia
    • 8.4.7 Malaysia
  • 8.5 Latin America
    • 8.5.1 Brazil
    • 8.5.2 Mexico
    • 8.5.3 Argentina
  • 8.6 MEA
    • 8.6.1 South Africa
    • 8.6.2 Saudi Arabia
    • 8.6.3 UAE
    • 8.6.4 Egypt

Chapter 9 Company Profiles

  • 9.1 Honeywell International Inc. (USA)
  • 9.2 Teijin Limited (Japan)
  • 9.3 BAE Systems plc (United Kingdom)
  • 9.4 DuPont de Nemours, Inc. (USA)
  • 9.5 DSM Dyneema (Netherlands)
  • 9.6 Morgan Advanced Materials plc (United Kingdom)
  • 9.7 3M Company (USA)
  • 9.8 Saint-Gobain Performance Plastics Corporation (USA)
  • 9.9 Koninklijke Ten Cate BV (Netherlands)
  • 9.10 Gurit Holding AG (Switzerland)
  • 9.11 MKU Limited (India)
  • 9.12 Barrday Inc. (Canada)
  • 9.13 TPI Composites, Inc. (USA)
  • 9.14 ArmorSource LLC (USA)
  • 9.15 Revision Military (USA)
ºñ±³¸®½ºÆ®
0 °ÇÀÇ »óǰÀ» ¼±Åà Áß
»óǰ ºñ±³Çϱâ
Àüü»èÁ¦