Global Covid-19 Analysis on Commercial Aircraft Carbon Brakes Market is estimated to witness a CAGR of more than 11% during the forecast period 2020 to 2023. With the improved operations along with the performance enhancements provided by carbon, brakes have led to increase in the application of carbon brakes in commercial aircraft. The operational advantage of carbon brakes as compared to steel brakes are longer life, cost-effectiveness, high-performance, and lightweight braking system. Furthermore, carbon brakes can withstand the high-performance braking demands of commercial aircraft. Carbon brake material is characterized by high specific heat, high-temperature stability, and high thermal conductivity.
The key players in Covid-19 Analysis on Commercial Aircraft Carbon Brakes Market are Crane Aerospace & Electronics (U.S.), Honeywell International Inc. (U.S.), Maritime Goodrich (U.S.), Meggitt (U.K), Parker Hannifin (U.S.), Safran (France), Speedwerks (U.S.), SGL Group (Germany), TAE Aerospace, and UTC Aerospace Systems (U.S.).
Global Covid-19 Analysis on Commercial Aircraft Carbon Brakes Market has been segmented on the basis of aircraft type, end-user, material, manufacturing process, and region. Furthermore, the material segment has been sub-segmented by rayon/petroleum pitch and polyacrylonitrile. In these material segments, the polyacrylonitrile segment will have the major market contribution followed by rayon/petroleum pitch during the forecast period. The rise in demand for fuel-efficient aircraft is estimated to be one of the key factors driving the commercial aerospace carbon brakes market during the forecast period.
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Aerospace companies and airlines have been looking forward to promoting carbon-reducing measures and energy savings to control and manage greenhouse gas emission that have adverse ecological impacts. Moreover, some airlines companies are investing in the technologies such as energy efficient as an effective measure to minimize fuel consumption. For example, in Feb. 2020, the UTC Aerospace Systems’ designed, “Duracarb” carbon heat sink material brakes, permit for 2,000 landings per overhaul related to 250 landings per overhaul for the present brake system. Its lifecycle is eight times longer, considerably reducing maintenance time and cost. Furthermore, the brakes are capable of handling higher stress and can absorb more heat energy than the existing carbon brakes, which raises the safety margin when stopping heavily loaded aircraft. Currently, carbon composite brake disks are being broadly used in the landing gear system due to their reduced weight, comparatively low maintenance cost, and enhanced life capabilities. Due to rising number aircraft order from Asia Pacific region, will result into the highest growth rate of this market during the forecast period.
Table of Contents
- Executive Summary
1.1. Market Attractiveness Analysis
1.1.1. Global Commercial Aircraft Carbon Brakes Market, By Aircraft Type
1.1.2. Global Commercial Aircraft Carbon Brakes Market, By Material
1.1.3. Global Commercial Aircraft Carbon Brakes Market, By Manufacturing Process
1.1.4. Global Commercial Aircraft Carbon Brakes Market, By End User
1.1.5. Global Commercial Aircraft Carbon Brakes Market, By Region
- Market Introduction
2.1. Market Definition
2.2. Scope of The Study
2.3. Market Structure
2.4. Key Buying Criteria
2.5. Market Factor Indicator Analysis
- Research Methodology
3.1. Research Process
3.2. Primary Research
3.3. Secondary Research
3.4. Market Size Estimation
3.5. Forecast Model
3.6. List of Assumptions
- Market Insights
- Market Dynamics
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