Automotive Noise, Vibration And Harshness Materials Market Strategies, Trends And Forecast To 2033

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The automotive noise, vibration and harshness materials global market report 2024 from The Business Research Company provides comprehensive market statistics, including global market size, regional shares, competitor market share, detailed segments, trends, and opportunities. This report offers an in-depth analysis of current and future industry scenarios, delivering a complete perspective for thriving in the industrial automation software market.

Automotive Noise, Vibration And Harshness Materials Market, 2024 report by The Business Research Company offers comprehensive insights into the current state of the market and highlights future growth opportunities.

Market Size –
The automotive noise, vibration and harshness materials market size has grown strongly in recent years. It will grow from $12.67 billion in 2023 to $13.74 billion in 2024 at a compound annual growth rate (CAGR) of 8.5%.  The  growth in the historic period can be attributed to regulatory compliance, consumer demand for quieter vehicles, global automotive production growth, government support, market growth in emerging economies.

The automotive noise, vibration and harshness materials market size is expected to see strong growth in the next few years. It will grow to $18.85 billion in 2028 at a compound annual growth rate (CAGR) of 8.2%.  The growth in the forecast period can be attributed to electric vehicle (ev) growth, rise in autonomous vehicles, urbanization trends, rise in disposable income. Major trends in the forecast period include enhanced testing and measurement, integration of nvh simulation, multi-material solutions, customization for vehicle segments, integration of smart materials.

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Scope Of Automotive Noise, Vibration And Harshness Materials Market
The Business Research Company’s reports encompass a wide range of information, including:

1. Market Size (Historic and Forecast): Analysis of the market’s historical performance and projections for future growth.

2. Drivers: Examination of the key factors propelling market growth.

3. Trends: Identification of emerging trends and patterns shaping the market landscape.

4. Key Segments: Breakdown of the market into its primary segments and their respective performance.

5. Focus Regions and Geographies: Insight into the most critical regions and geographical areas influencing the market.

6. Macro Economic Factors: Assessment of broader economic elements impacting the market.

Automotive Noise, Vibration And Harshness Materials Market Overview

Market Drivers –
Rising demand from the electric vehicle industry is driving the growth of the automotive noise, vibration, and harshness materials market going forward. Electric vehicles refer to vehicles that use electricity to improve vehicle efficiency. Automotive noise, vibration, and harshness materials help electric vehicles with better performance have low noise and vibration and are comfortable and quiet to drive by optimizing the performance and design of the power system, magnetic brake, gearbox, and engine of electric vehicles. For instance, in April 2021, according to the International Energy Agency report, a France-based global energy system intergovernmental organization, the number of electric vehicles sold worldwide reached 10 million in 2020, an increase of 43% from the previous year. In 2020, there were about 3 million new electric vehicle registrations. Europe took the lead for the first time, with nearly 1.4 million new registrations. China registered 1.2 million new electric automobiles after the United States registered 2.9 million. Therefore rising demand from the electric vehicle industry is driving the growth of the automotive noise, vibration and harshness materials market.

The automotive noise, vibration and harshness materials market covered in this report is segmented –
1) By Type: Rubber, Plastic And Foam, Fibers, Other Types
2) By Vehicle: Passenger Cars, Light Commercial Vehicles (LCV), Heavy Commercial Vehicles (HCV)
3) By Application: Absorber, Isolator, Damper
4) By End User: Hood, Trunk, Chassis, Other End-Users

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Regional Insights –
Asia-Pacific was the largest region in the automotive noise, vibration and harshness materials market in 2023. The regions covered in the automotive noise, vibration and harshness materials market report include Asia-Pacific, Western Europe, Eastern Europe, North America, South America, Middle East and Africa.

Key Companies –
Major companies operating in the automotive noise, vibration and harshness materials market include  Dow Chemical Company, 3M Company, Sumitomo Riko Co. Ltd., Covestro AG, Huntsman International LLC, Celanese Corporation, Eastman Chemical Company, Nihon Tokushu Toryo Co. Ltd., Second Skin Audio Inc., FatMat Sound Control, HushMat Inc., Soundproof Cow LLC, GT Sound Control Inc., Wolverine Advanced Materials LLC, Silent Coat UK Ltd., DuPont de Nemours Inc., Exxon Mobil Corporation, Lanxess AG, Saudi Basic Industries Corporation, Goodyear Tire & Rubber Company, Yokohama Rubber Company Limited, H.B. Fuller Company, Sika AG, Autoneum Holding AG, Nitto Denko Corporation, Henkel AG & Co. KGaA, W. L. Gore & Associates Inc., Borgers SE & Co. KGaA, Megasorber Pty Ltd., Silentium Ltd., Vibracoustic GmbH, ElringKlinger AG, Rogers Corporation, Saint-Gobain S.A.

Table of Contents

1. Executive Summary
2. Automotive Noise, Vibration And Harshness Materials Market Characteristics
3. Automotive Noise, Vibration And Harshness Materials Market Trends And Strategies
4. Automotive Noise, Vibration And Harshness Materials Market – Macro Economic Scenario
5. Global Automotive Noise, Vibration And Harshness Materials Market Size and Growth

31. Global Automotive Noise, Vibration And Harshness Materials Market Competitive Benchmarking
32. Global Automotive Noise, Vibration And Harshness Materials Market Competitive Dashboard
33. Key Mergers And Acquisitions In The Automotive Noise, Vibration And Harshness Materials Market
34. Automotive Noise, Vibration And Harshness Materials Market Future Outlook and Potential Analysis
35. Appendix

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