Ballistic Protection Market by Material (Metals & Alloys, Ceramics, Composites, Bulletproof Glass, Fabric), Product, Technology, Threat Level (Level II & IIA, Level III & IIIA, Level IV & Above), Platform, Application, and Region - Global Forecast to 2025

防弾の世界市場予測:材料別(金属&合金、セラミック、複合材料、防弾ガラス、ファブリック)、製品別、技術別、脅威レベル別(レベルII&IIA、レベルIII&IIIA、レベルIV&以上)、プラットフォーム別、用途別、地域別

◆タイトル:Ballistic Protection Market by Material (Metals & Alloys, Ceramics, Composites, Bulletproof Glass, Fabric), Product, Technology, Threat Level (Level II & IIA, Level III & IIIA, Level IV & Above), Platform, Application, and Region - Global Forecast to 2025
◆商品コード:AS 2798
◆調査・発行会社:MarketsandMarkets
◆発行日:2020年5月20日
◆ページ数:219
◆レポート形式:PDF / 英語
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【レポートの概要】

MarketsandMarkets社は防弾の世界市場が2020年から2025年172億ドルまで、年平均6.4%成長すると予測しています。本調査レポートでは、防弾の世界市場を詳細に調査・分析し、イントロダクション、調査手法、エグゼクティブサマリー、プレミアムインサイト、市場概要、市場動向、プラットフォーム別(陸地、空中、海洋)、用途別(軍事、国土安全保障)、技術別(ハードアーマー、ソフトアーマー)、素材別(金属&合金、セラミック、コンポジット、防弾ガラス、ファブリック)、製品別(個人用保護具、弾道コンテナ&ポータブルシェルター、弾道ブロック、BA、ハル&ボディ、武器ステーション&オプトロニクス、燃料タンク&貯蔵弾薬、コックピット&弾道保護、パイロットシート保護、弾道床、弾道ウィンドウ、弾道ドア、エンジン保護)、脅威レベル別(レベルII&レベルIIA、レベルIII&レベルIIIA、レベルIV以上)、地域別、競争状況、企業概要などを含め、ご提供いたします。
・イントロダクション
・調査手法
・エグゼクティブサマリー
・プレミアムインサイト
・市場概要
・市場動向
・防弾の世界市場:プラットフォーム別(陸地、空中、海洋)
・防弾の世界市場:用途別(軍事、国土安全保障)
・防弾の世界市場:技術別(ハードアーマー、ソフトアーマー)
・防弾の世界市場:素材別(金属&合金、セラミック、コンポジット、防弾ガラス、ファブリック)
・防弾の世界市場:製品別(個人用保護具、弾道コンテナ&ポータブルシェルター、弾道ブロック、BA、ハル&ボディ、武器ステーション&オプトロニクス、燃料タンク&貯蔵弾薬、コックピット&弾道保護、パイロットシート保護、弾道床、弾道ウィンドウ、弾道ドア、エンジン保護)
・防弾の世界市場:脅威レベル別(レベルII&レベルIIA、レベルIII&レベルIIIA、レベルIV以上)
・防弾の世界市場:地域別
・競争状況
・企業概要

“Increasing geopolitical tensions in emerging economies.”
The global ballistic protection market size is projected to reach USD 17.2 billion by 2025, at a CAGR of 6.4% from 2020 to 2025. Rising political unrest and instability, as well as increasing incidences of terrorism, have prompted military and law enforcement forces and the material sciences community to develop effective solutions that can help ensure troop and vehicle safety. Currently, political conflicts in Syria, Libya, Iraq, and Afghanistan, between Russia & Ukraine, India & Pakistan, India & China, and Russia & Turkey, and criminal violence in Mexico are increasing the need for combat armor. Domestic conflicts in many countries are also boosting the need for ammunition, which, in turn, drives the demand for protective equipment.

“The airborne segment to witness the highest growth in the ballistic protection market.”
By platform, the airborne segment is projected to grow at a higher CAGR during the forecast period. The airborne segment includes fixed-wing aircraft, helicopters, and unmanned aerial vehicles (UAV), and the marine segment includes destroyers, frigates, corvettes, offshore support vessels (OSVs), aircraft carriers, submarines, and underwater surface vehicles.
There is an increasing demand for aircraft across various aviation platforms for military purposes. This demand is also attributed to the rising military expenditure of various countries, such as China, Japan, South Korea, and the US. The UAV segmented is expected to witness the highest CAGR for the forecast period 2020-2025. The growth of the airborne segment is attributed mainly because of the introduction of UAVs on the battlefield due to changes in the dynamic of war.

“Homeland security segment of the ballistic protection market is expected to grow at the highest CAGR during the forecast period.”
The homeland security segment is projected to grow at higher than the military segment during the forecast period. Ballistic-resistant body armor is worn by homeland security officers while in the field to protect against specific ballistic threats. Homeland security officers use personal protective equipment (PPE), including body vests, ballistic helmets, and gloves, to ensure safety during any mission. Ballistic helmets are intended to protect the wearer against small arms fire and fragmentation threats. The combat systems used by homeland security officers are ballistic resistant as ceramics and thermoplastics reinforce them.

“Asia Pacific ballistic protection market is expected to witness the highest CAGR during the forecast period.”
The ballistic protection industry in Asia Pacific is anticipated to grow at the highest CAGR from 2020 to 2025. Asia Pacific is an emerging market for ballistic protection systems, owing to the economic growth of countries in this region and increased defense spending in countries such as India, China, Japan, South Korea, and Australia. The governments of these countries and local industries are also signing up with the contractors and supporting them through the procurement process by providing necessary financial and infrastructure aids. The increase in the number of insurgent groups entering the territories and using deadly explosives such as IEDs and bombs has further raised the need for ballistic protection systems.

In-depth interviews were conducted with chief executive officers (CEOs), marketing directors, end-users of ballistic protection products, innovation, and technology directors, and executives from various key organizations operating in the ballistic protection market.
By Company Type: Tier 1: 40%, Tier 2: 30%, and Tier 3: 30%
By Designation: C-level Executives: 30%, Directors: 20%, and Others*: 50%
By Region: North America: 27%, Europe: 18%, Asia Pacific: 37%, and RoW: 18%

*Other designations include air traffic control officer, airport operation managers, and product managers.

The global ballistic protection market comprises major players such as BAE Systems (UK), 3M (US), Rheinmetall AG (Germany), Koninklijke Ten Cate bv (Netherlands), Point Blank Enterprises, Inc (US), Craig International Ballistics Pty Ltd (Australia), MKU Limited (India), Elmon (Greece), FMS Enterprises Migun Ltd (Israel), Permali (UK), Revision Military (US), Saab AB (Sweden), and Survitec Group Limited (UK), among others. The study includes an in-depth competitive analysis of these key players in terms of company profiles, recent developments, and key market strategies.
Research Coverage:
This study covers the ballistic protection market. It aims at estimating the market size and growth potential across different segments, such as platform, application, material, threat level, technology, product, and region. The study also includes an in-depth competitive analysis of the key market players, along with their company profiles, key observations related to product and business offerings, recent developments, and key market strategies.

Key Benefits of Buying the Report

The report will provide market leaders/new entrants in this market with information on the closest approximations of the revenue numbers for the overall ballistic protection market and its subsegments. This report will help stakeholders understand the competitive landscape and gain more insights to position their businesses better and to plan suitable go-to-market strategies. The report also helps stakeholders understand the pulse of the market and provides them with information on key market drivers, restraints, opportunities, and challenges.

【レポートの目次】

TABLE OF CONTENTS

1 INTRODUCTION (Page No. – 26)
1.1 OBJECTIVES OF THE STUDY
1.2 MARKET DEFINITION
1.3 MARKET SCOPE
1.3.1 REGIONAL SCOPE
1.3.2 YEARS CONSIDERED
1.4 CURRENCY & PRICING
1.5 MARKET STAKEHOLDERS

2 RESEARCH METHODOLOGY (Page No. – 30)
2.1 RESEARCH DATA
2.1.1 SECONDARY DATA
2.1.1.1 Secondary sources
2.1.2 PRIMARY DATA
2.1.2.1 Key data from primary sources
2.1.2.2 Breakdown of primaries
2.1.3 MARKET DEFINITION & SCOPE
2.2 SEGMENT DEFINITION
2.2.1 BALLISTIC PROTECTION MARKET, BY PLATFORM
2.2.2 MARKET, BY APPLICATION
2.2.3 MARKET, BY PRODUCT
2.2.4 MARKET, BY MATERIAL
2.2.5 MARKET, BY THREAT LEVEL
2.2.6 MARKET, BY TECHNOLOGY
2.3 RESEARCH APPROACH AND METHODOLOGY
2.3.1 BOTTOM-UP APPROACH
2.3.1.1 Ballistic protection market
2.3.1.2 market, by application
2.3.1.3 market, by technology
2.3.1.4 market, by product
2.3.2 TOP-DOWN APPROACH
2.3.2.1 Ballistic protection market, by system and by threat level
2.3.2.2 Ballistic protection market, by system and by material
2.4 DATA TRIANGULATION & VALIDATION
2.4.1 TRIANGULATION THROUGH SECONDARY
2.4.2 TRIANGULATION THROUGH PRIMARIES
2.5 RESEARCH LIMITATIONS
2.6 RESEARCH ASSUMPTIONS
2.7 RISKS

3 EXECUTIVE SUMMARY (Page No. – 41)

4 PREMIUM INSIGHTS (Page No. – 45)
4.1 BALLISTIC PROTECTION MARKET 2020–2025
4.2 MARKET, BY MATERIAL
4.3 MARKET, BY PLATFORM
4.4 MARKET, BY TECHNOLOGY
4.5 MARKET, BY APPLICATION
4.6 MARKET, BY THREAT LEVEL
4.7 MARKET, BY COUNTRY

5 MARKET OVERVIEW (Page No. – 49)
5.1 INTRODUCTION
5.2 MARKET DYNAMICS
5.2.1 DRIVERS
5.2.1.1 Increasing geopolitical tensions in emerging economies
5.2.1.2 Changing battlefield scenarios
5.2.1.3 Need for lightweight, comfortable, and high-strength materials
5.2.1.4 Rising demand for personal protection
5.2.2 RESTRAINTS
5.2.2.1 Failure to provide complete protection
5.2.2.2 Stringent standards for ballistic composite products
5.2.3 OPPORTUNITIES
5.2.3.1 Demand for multipurpose equipment
5.2.3.2 Rapidly increasing demand in the Asia Pacific region
5.2.3.3 Advancements in armor composite materials
5.2.4 CHALLENGES
5.2.4.1 High cost of lightweight armor and ballistic composite materials
5.2.4.2 Demand for increased comfort along with functionality

6 INDUSTRY TRENDS (Page No. – 54)
6.1 INTRODUCTION
6.2 INNOVATION IN ADVANCED MATERIALS FOR BALLISTIC PROTECTION
6.2.1 ELECTRONIC TEXTILE
6.2.2 ELECTRIC ARMOR
6.3 TECHNOLOGY TRENDS
6.3.1 DOUBLE-SIDED COMBAT UNIFORM FABRIC
6.3.2 DEFCON ARMOR TECHNOLOGY
6.3.3 MODULAR BALLISTIC PROTECTION SYSTEM
6.3.4 ADVANCED CERAMIC BALLISTIC ARMOR
6.3.5 DYNEEMA FORCE MULTIPLIER TECHNOLOGY
6.3.6 IMPROVED OUTER TACTICAL VEST (IOTV)
6.3.7 LIQUID ARMOR
6.3.8 SMART FLUID
6.3.9 REACTIVE ARMOR TECHNOLOGY
6.3.10 SENSOR TECHNOLOGY
6.3.11 NEXT-GEN SUIT

7 BALLISTIC PROTECTION MARKET, BY PLATFORM (Page No. – 58)
7.1 INTRODUCTION
7.2 LAND
7.2.1 COMBAT ARMORED VEHICLES
7.2.1.1 Main battle tanks (MBTs)
7.2.1.1.1 Increasing demand for MBTs for offensive cross-country operations
7.2.1.2 Infantry fighting vehicles (IFVs)
7.2.1.2.1 Procurement by emerging countries leading to an increase in demand for IFVs
7.2.1.3 Armored personnel carriers (APCs)
7.2.1.3.1 Increasing demand for armored personnel carriers because of terrorist attacks and asymmetric warfare operations
7.2.1.4 Armored amphibious vehicles (AAVs)
7.2.1.4.1 Armored amphibious vehicles are used by military forces for amphibious operations
7.2.1.5 Mine-resistant ambush protected (MRAP)
7.2.1.5.1 Increasing use of MRAPs for troops protection from IEDs and mines
7.2.1.6 Light armored vehicles (LAVs)
7.2.1.6.1 Increasing use of LAVs for patrolling borders, carrying out ISR activities, and transporting defense personnel
7.2.1.7 Self-propelled howitzers (SPHs)
7.2.1.7.1 Deployment of 155mm guns in self-propelled howitzers
7.2.1.8 Air defense vehicles
7.2.1.8.1 Adoption of vehicle-mounted anti-aircraft guns for air defense roles
7.2.1.9 Armored mortar carriers
7.2.1.9.1 Demand for integrated armored vehicles with mortars and dedicated mortar storage compartment
7.2.2 COMBAT SUPPORT VEHICLES
7.2.2.1 Armored supply trucks
7.2.2.1.1 Increasing use of armored supply trucks for supplying fuel and ammunition to troops in battlefields
7.2.2.2 Armored fuel trucks
7.2.2.2.1 Increasing use of armored fuel trucks for supplying and transporting gas, diesel, or jet fuels to forward arming and refueling points
7.2.2.3 Armored ammunition replenishment vehicles
7.2.2.3.1 Demand for vehicles to replenish ammunition to vehicles and forward bases during warfare operations
7.2.2.4 Armored ambulances
7.2.2.4.1 Dependence of armed forces on armored ambulances for transporting injured defense personnel and casualties to medical facilities
7.2.2.5 Armored command and control vehicles
7.2.2.5.1 Increasing adoption of C2 vehicles for mobile armored operations
7.2.2.6 Repair and recovery vehicles
7.2.2.6.1 Increasing demand for towing or repairing of combat vehicles in the battlefield
7.2.3 UNMANNED ARMORED GROUND VEHICLES
7.2.3.1 Increasing research & development activities to develop unmanned armored ground vehicles for warfare role
7.2.4 SOLDIERS & SECURITY PERSONNEL
7.2.4.1 Use of personal protective equipment for safeguard against ballistic threats
7.2.5 BASE STATIONS
7.2.5.1 Stations used for shelter and storage by the military
7.3 AIRBORNE
7.3.1 FIXED WING AIRCRAFT
7.3.1.1 Increasing demand and upcoming programs expected to drive the market for fighter aircraft
7.3.1.2 Fighter
7.3.1.3 Transport
7.3.1.4 Reconnaissance & surveillance
7.3.2 HELICOPTERS
7.3.2.1 Accessibility of helicopters for special missions expected to drive the market
7.3.2.2 Attack & reconnaissance
7.3.2.3 Special mission
7.3.2.4 Maritime
7.3.2.5 Transport
7.3.3 UNMANNED AERIAL VEHICLES (UAV)
7.3.3.1 Intelligence, surveillance, and reconnaissance missions drive the demand for UAVs
7.4 MARINE
7.4.1 DESTROYERS
7.4.1.1 Fast, long-lasting, maneuverable ships
7.4.2 FRIGATES
7.4.2.1 Used to protect other warships and merchant-marine ships
7.4.3 CORVETTES
7.4.3.1 The smallest vessel class among warships
7.4.4 OFFSHORE SUPPORT VESSELS (OSVS)
7.4.4.1 Small patrol vessels used for coastal defense
7.4.5 AIRCRAFT CARRIERS
7.4.5.1 Possibility of using hybrid propulsion for aircraft carriers
7.4.6 SUBMARINES
7.4.6.1 US, France, and India are currently using or developing electric propulsion systems
7.4.7 UNMANNED SURFACE VEHICLES
7.4.7.1 USVs are used in military application for seaborne targets

8 BALLISTIC PROTECTION MARKET, BY APPLICATION (Page No. – 78)
8.1 INTRODUCTION
8.2 MILITARY
8.2.1 MILITARY SOLDIERS NEED HIGHER LEVEL OF BALLISTIC PROTECTION AS THEY ARE EXPOSED TO HIGHER LEVEL OF THREATS
8.3 HOMELAND SECURITY
8.3.1 PARAMILITARY FORCES
8.3.1.1 Semi-militarized forces performing domestic-based tactical missions
8.3.2 POLICE FORCES
8.3.2.1 High use of body vests and helmets
8.3.3 SPECIAL FORCES
8.3.3.1 Security units for conducting special operations

9 BALLISTIC PROTECTION MARKET, BY TECHNOLOGY (Page No. – 82)
9.1 INTRODUCTION
9.2 HARD ARMOR
9.2.1 USED WHERE THERE IS A HIGH RISK OF ATTACK
9.2.2 LAND
9.2.3 AIRBORNE
9.2.4 MARINE
9.3 SOFT ARMOR
9.3.1 NEED FOR LIGHTWEIGHT BODY ARMOR AND CHANGE IN MILITARY DYNAMICS ARE DRIVING THE DEMAND FOR SOFT ARMOR TECHNOLOGY
9.3.2 LAND
9.3.3 AIRBORNE
9.3.4 MARINE

10 BALLISTIC PROTECTION MARKET, BY MATERIAL (Page No. – 87)
10.1 INTRODUCTION
10.2 METALS & ALLOYS
10.2.1 HIGH-DENSITY STEEL
10.2.1.1 High-density steel protects armored vehicles from different ballistic threats
10.2.2 ALUMINUM
10.2.2.1 Lightweight property makes aluminum ideal for military applications
10.2.3 TITANIUM
10.2.3.1 Titanium is a superior material for combat systems
10.3 CERAMICS
10.3.1 ALUMINUM OXIDE
10.3.1.1 Aluminum oxide contributes to enhancing body armors
10.3.2 SILICON CARBIDE
10.3.2.1 Silicon carbide is an effective material for stopping bullets
10.4 COMPOSITES
10.4.1 ARAMID COMPOSITES
10.4.1.1 Aramid composites are used in aerospace and military applications
10.4.1.2 PARA-ARAMID
10.4.1.3 META-ARAMID
10.4.2 CARBON COMPOSITES
10.4.2.1 Carbon composites are suitable for applications in aerospace structures
10.4.3 HYBRID COMPOSITES
10.4.3.1 Hybridization is a process of incorporating synthetic fibers
10.4.4 3D COMPOSITES
10.4.4.1 3D composites are used to make aircraft wing-to-spar joints
10.5 BULLETPROOF GLASS
10.5.1 ACRYLIC
10.5.1.1 Bullet resistant systems rely on acrylic for ballistic panels
10.5.2 POLYCARBONATE
10.5.2.1 Polycarbonate provides protection against multiple-shot penetration
10.6 FABRIC
10.6.1 BALLISTIC FABRIC OFFERS PROTECTION AGAINST PROJECTILE IMPACT
10.6.2 ORGANIC COTTON
10.6.2.1 Organic cotton can be used to make apparel
10.6.3 SYNTHETIC NYLON & POLYESTER
10.6.3.1 Synthetic fabric is used in multilayered armor system

11 BALLISTIC PROTECTION MARKET, BY PRODUCT (Page No. – 97)
11.1 INTRODUCTION
11.2 PERSONAL PROTECTIVE EQUIPMENT
11.2.1 BODY ARMOR CLOTHING
11.2.1.1 NBC SUITS & THERMAL CAMOUFLAGE SUITS
11.2.1.1.1 NBC suits are designed to protect against direct contact with and contamination by chemical, biological, or radioactive substances
11.2.1.2 IMMERSION SUITS
11.2.1.2.1 Immersion suits are used by naval as well as special forces to remain afloat and provide protection against hazards from water
11.2.1.3 ADVANCED BALLISTIC SUITS
11.2.1.3.1 Increasing demand for cooling system ballistic suits
11.2.2 BALLISTIC HELMETS
11.2.2.1 Advanced ballistic helmets
11.2.2.2 HUD/HMD helmets
11.2.3 VESTS
11.2.3.1 Interceptor Body Armor (IBA)
11.2.3.2 Interim Small Arms Protective Overvest (ISAPO)
11.2.3.3 Personnel Armor Systems for Ground Troops (PASGT)
11.2.3.4 Ranger Body Armor (RBA)
11.2.3.5 Survival vests
11.2.4 BALLISTIC BOOTS
11.2.4.1 Ballistic boots provide stability and protection to the feet in rugged terrains
11.2.5 BALLISTIC GLOVES
11.2.5.1 Ballistic gloves are available in a range of patterns and materials to effectively disguise the wearer across varying conditions
11.3 BALLISTIC CONTAINERS & PORTABLE SHELTERS
11.3.1 DEMAND FOR BALLISTIC CONTAINERS AND PORTABLE SHELTERS IS INCREASING DUE TO THEIR LIGHTWEIGHT, FLEXIBILITY, AND STATIC STRENGTH
11.4 BALLISTIC BLOCKS
11.4.1 BALLISTIC BLOCKS CAN BE INSTALLED INDOORS, OUTDOORS, IN SHOOTING RANGES, AND OTHER LIVE FIRING TRAINING FACILITIES
11.5 BALLISTIC BARRIER SYSTEMS
11.5.1 BALLISTIC BARRIER SYSTEMS CAN WITHSTAND THE IMPACT OF .50 CALIBER BMG ARMOR PIERCING TRACER (APIT) AMMUNITION
11.6 HULL & BODY
11.6.1 COMPANIES PROVIDE WIDE RANGE OF BALLISTIC SOLUTIONS FOR HULL AND BODY TO VARIOUS PLATFORMS
11.7 WEAPON STATIONS & OPTRONICS
11.7.1 ADD-ON ARMOR KITS ARE USED TO PROTECT OPTRONIC DEVICES AND REMOTE-CONTROL WEAPON STATIONS AGAINST LEVEL III AND IV BALLISTIC THREATS
11.8 FUEL DROP TANKS & AMMUNITION STORAGE
11.8.1 DROP TANKS & AMMUNITION STORAGE AREAS NEED BALLISTIC PROTECTION OF THE HIGHEST THREAT LEVEL
11.9 COCKPIT BALLISTIC PROTECTION
11.9.1 BALLISTIC PROTECTION SYSTEM PROVIDES PROTECTION FROM BALLISTIC THREATS TO COCKPIT AND FLOOR OF HELICOPTERS
11.10 PILOT SEAT PROTECTION
11.10.1 CONSISTS OF COMPOSITE MATERIALS, TO PROTECT FROM BALLISTIC FRAGMENTS AND EXPLOSIVE ELEMENTS
11.11 BALLISTIC FLOORS
11.11.1 BALLISTIC TILES PROVIDE ACOUSTIC INSULATION AND SUPERIOR DURABILITY WHILE SLOWING HANDGUN AND RIFLE ROUNDS
11.12 BALLISTIC WINDOWS
11.12.1 ALUMINUM BULLET WINDOWS ACCOMMODATE A RANGE OF PROTECTION LEVELS
11.13 BALLISTIC DOORS
11.13.1 BALLISTIC RESISTANT DOORS ARE MADE UP OF BULLET-RESISTANT STEEL AND HEAVY-DUTY HARDWARE.
11.14 ENGINE PROTECTION
11.14.1 ENGINE PROTECTION SYSTEM CONSISTS OF BALLISTIC PANELS, ARMOR AND BALLISTIC SHEETS, BULLET RESISTANT FIBERGLASS PANELS, AND OTHER BALLISTIC RESISTANT LIGHTWEIGHT MATERIALS

12 BALLISTIC PROTECTION MARKET, BY THREAT LEVEL (Page No. – 110)
12.1 INTRODUCTION
12.2 LEVEL II & LEVEL IIA
12.2.1 LEVEL II IS WORN IN A COVERT STYLE
12.3 LEVEL III & LEVEL IIIA
12.3.1 LEVEL IIIA IS USUALLY THE HIGHEST THREAT LEVEL IN SOFT ARMOR.
12.4 LEVEL IV & ABOVE
12.4.1 LEVEL IV HAS THE CAPACITY TO STOP BULLETS FROM RIFLES AND SUBMACHINE GUNS

13 REGIONAL ANALYSIS (Page No. – 114)
13.1 INTRODUCTION
13.2 NORTH AMERICA
13.2.1 US
13.2.1.1 Increased procurement of armored vehicles
13.2.2 CANADA
13.2.2.1 Commercialization of advanced materials technology
13.3 EUROPE
13.3.1 UK
13.3.1.1 Rising investments in ballistic protection systems
13.3.2 FRANCE
13.3.2.1 Military modernization program in France
13.3.3 GERMANY
13.3.3.1 Increase in supply of protective vest to German polices
13.3.4 RUSSIA
13.3.4.1 Russia has displayed mockups of new helmets and a more complete body armor
13.3.5 ITALY
13.3.5.1 Second-largest consumer of ballistic protection systems in Europe
13.3.6 REST OF EUROPE
13.4 ASIA PACIFIC
13.4.1 INDIA
13.4.1.1 Inter border conflicts with Pakistan and China drive the demand for ballistic protection systems in India
13.4.2 CHINA
13.4.2.1 Increased defense spending is a major reason driving the ballistic protection market in China
13.4.3 JAPAN
13.4.3.1 Increase in the procurement of armored vehicles is driving the market in Japan
13.4.4 SOUTH KOREA
13.4.4.1 Vehicle modernization programs undertaken by the country’s defense forces are fueling the growth of the market in South Korea
13.4.5 REST OF ASIA PACIFIC
13.5 MIDDLE EAST
13.5.1 ISRAEL
13.5.1.1 Increased investment in ballistic technology is a driving factor for the growth of the market in Israel
13.5.2 SAUDI ARABIA
13.5.2.1 Rising procurement of armored vehicles is fueling the market in Saudi Arabia
13.5.3 UAE
13.5.3.1 Increased investment to procure armored vehicles
13.6 AFRICA
13.7 LATIN AMERICA

14 COMPETITIVE LANDSCAPE (Page No. – 159)
14.1 INTRODUCTION
14.2 COMPETITIVE LEADERSHIP MAPPING (OVERALL MARKET)
14.2.1 VISIONARY LEADERS
14.2.2 INNOVATORS
14.2.3 DYNAMIC DIFFERENTIATORS
14.2.4 EMERGING COMPANIES
14.3 STRENGTH OF PRODUCT PORTFOLIO
14.4 BUSINESS STRATEGY EXCELLENCE
14.5 COMPETITIVE SCENARIO
14.5.1 CONTRACTS AND AGREEMENTS
14.5.2 NEW PRODUCT LAUNCHES
14.5.3 ACQUISITION AND PARTNERSHIPS

15 COMPANY PROFILES (Page No. – 167)
(Business Overview, Products/Solutions/Services Offered, Customers and Served Application Areas, Unique Value Proposition and Right to Win, Recent Developments, and SWOT Analysis)*
15.1 BAE SYSTEMS
15.2 3M
15.3 RHEINMENTALL AG
15.4 KONINKLIJKE TEN CATE BV
15.5 FMS ENTERPRISES MIGUN LTD.
15.6 POINT BLANK ENTERPRISES, INC.
15.7 SEYNTEX
15.8 ADA (AUSTRALIAN DEFENCE APPAREL)
15.9 SURVITEC GROUP LIMITED
15.10 ARMORWORKS
15.11 REVISION MILITARY
15.12 ARMORSOURCE, LLC
15.13 SOUTHERN STATES, LLC
15.14 CRAIG INTERNATIONAL BALLISTICS PTY LTD
15.15 PAUL BOYE TECHNOLOGIES
15.16 ROKETSAN
15.17 SAAB AB
15.18 MKU LIMITED
15.19 PACIFIC SAFETY PRODUCTS
15.20 ELMON
15.21 LIFEPORT
15.22 PERMALI
15.23 AVON RUBBER PLC
15.24 NP AEROSPACE
15.25 COONEEN GROUP
15.26 PLASAN
15.27 ARMOR EXPRESS

* Business Overview, Products/Solutions/Services Offered, Customers and Served Application Areas, Unique Value Proposition and Right to Win, Recent Developments, and SWOT Analysis might not be captured in case of unlisted companies.



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