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Fifth Wheel Coupling Market: Will Western Europe be Able to Beat North America in Terms of Adoption Rate in the Near Future?: Global Industry Analysis (2013 - 2017) & Opportunity Assessment (2018 - 2028)

Published By :

Future Market Insights

Published Date : Apr 2018

Category :

Transport & Logistics

No. of Pages : 375 Pages

Automotive, mining, construction, waste management, and petrochemical industries across several regions such as North America, Europe, and China are showcasing potential growth opportunities for manufacturers of fifth wheel coupling. Construction and industrialisation is increasing across the globe owing to the growth in the economy of developing nations, which is expected to accelerate the growth of the global fifth wheel coupling market as it provides transportation solutions to these industries. The growth of mining and the petrochemical industries, mainly in the Middle East and Africa and Europe is expected to propel demand for transportation. This is likely to increase the need for fifth wheel coupling for cost-effective movement of materials, to provide safety and to increase productivity.

The surging waste management industry across developing regions is also anticipated to lead to a gradual rise in the global fifth wheel coupling market. Increasing awareness among people regarding environment safety is projected to fuel the growth of the waste management industry, which in turn is expected to trigger the growth of the logistics industry and indirectly impact revenue growth of the fifth wheel coupling market. Capabilities such as high load carrying capacity are further expected to drive the demand for fifth wheel coupling across several emerging economies.

China is expected to lead the global market owing to the presence of leading players in the region

The presence of leading players in the China market for fifth wheel coupling is surging the production as well as circulation of fifth wheel coupling. Moreover, the growing demand for heavy duty trailers is also expected to bode well for the growth of the market in the region. The noticeable contributor to climate change, emissions as well as fuel ingestion in the on road transportation sector is freight vehicles. Moreover, tractor-trailers account for a significant percentage of emissions, fuel consumption, and vehicle-kilometers travelled in heavy-duty vehicles. The surge in construction and mining activities across China is expected to propel the demand for heavy duty vehicles, which will directly impact the sales of fifth wheel coupling in the region. Governmental guidelines and promotion of fuel-saving technologies to decrease GHG emissions and fuel-consumption within their heavy-duty vehicle fleet is another noteworthy factor that has of late fuelled the demand for new advanced trailers, thus benefitting the global fifth wheel coupling market in return

North America fifth wheel coupling market to experience significant growth owing to increasing demand from the automotive industry

North America is a matured automotive market and has high penetration rate of technologically advanced and expensive products. A hefty share of commercial vehicles in the region is equipped with cutting-edge fifth wheel coupling systems such as fifth wheel backup camera system. Moreover, momentous sales of heavy commercial vehicles in North America is making the market more disposed towards the adoption of advanced technologies. For instance, in 2017, Fontaine Fifth Wheel Company developed the lightest steel fifth wheel assembly that has an extremely high load capacity. The disposable income of consumers in the region is also rising and their preferences are changing as well, thus making room for frequent shifting. As a result, the demand for heavy duty vehicles is increasing, thereby benefitting the market for fifth wheel coupling in the region.
1. Executive Summary

1.1. Market Overview

1.2. Market Analysis

1.3. FMI Analysis and Recommendations

1.4. Wheel of Fortune

2. Market Introduction

2.1. Market Definition

2.2. Market Taxonomy

3. Fifth Wheel Coupling Market Background

3.1. Macro-Economic Factors

3.1.1. Automotive Production Outlook By Region

3.1.2. Global Trailer Production Analysis

3.1.3. Global HCV and Fifth Wheel Coupling Y-O-Y (%) growth projection analysis

3.2. Global Economic Outlook

3.2.1. Global GDP by Region and Country, 2015 -2028

3.3. Opportunity Analysis

3.4. Product life cycle

3.5. Porters five force analysis

3.6. Patents

3.7. Market Dynamics

3.7.1. Drivers

3.7.2. Restraints

3.8. Value Chain Analysis

3.9. Forecast Factors Relevance & Impact

4. Global Fifth Wheel Coupling Market Analysis 20132017 and Forecast 20182028

4.1. Market Volume Projections

4.2. Market Size Projections

4.2.1. Y-o-Y Projections

4.2.2. Absolute $ Opportunity Analysis

5. Global Fifth Wheel Coupling Market Analysis 20132017 and Forecast 20182028, by Product Type

5.1. Introduction

5.1.1. Market Value Share Analysis By Product Type

5.1.2. Y-o-Y Growth Analysis By Product Type

5.2. Historical Market Size (US$ Mn) and Volume By Product Type, 20132017

5.3. Market Size (US$ Mn) and Volume Forecast By Product Type, 2018-2028

5.3.1. Compensating

5.3.2. Semi oscillating

5.3.3. Fully oscillating

5.4. Attractiveness Analysis By Product Type

6. Global Fifth Wheel Coupling Market Analysis 20132017 and Forecast 20182028, By Operation

6.1. Introduction

6.1.1. Market Value Share Analysis By Operation

6.1.2. Y-o-Y Growth Analysis By Operation

6.2. Historical Market Size (US$ Mn) and Volume By Operation, 20132017

6.3. Market Size (US$ Mn) and Volume Forecast By Operation, 2018-2028

6.3.1. Hydraulic

6.3.2. Pneumatic

6.3.3. Mechanical

6.4. Market Attractiveness Analysis By Operation

7. Global Fifth Wheel Coupling Market Analysis 20132017 and Forecast 20182028, By Capacity

7.1. Introduction

7.1.1. Market Value Share Analysis By Capacity

7.1.2. Y-o-Y Growth Analysis By Capacity

7.2. Historical Market Size (US$ Mn) and Volume By Capacity, 20132017

7.3. Market Size (US$ Mn) and Volume Forecast By Capacity, 2018-2028

7.3.1. Below 20 tons

7.3.2. Between 20 and 30 tons

7.3.3. Between 30 and 45 tons

7.3.4. Above 45 tons

7.4. Market Attractiveness Analysis By Capacity

8. Global Fifth Wheel Coupling Market Analysis 20132017 and Forecast 20182028, By Material Type

8.1. Introduction

8.1.1. Market Value Share Analysis By Capacity

8.1.2. Y-o-Y Growth Analysis By Capacity

8.2. Historical Market Size (US$ Mn) and Volume By Material Type, 20132017

8.3. Market Size (US$ Mn) and Volume Forecast By Material Type, 2018-2028

8.3.1. Cast Steel

8.3.2. Cast iron

8.3.3. Fabricated steel

8.3.4. Aluminum

8.3.5. Others (pressed steel, stamped steel, etc.)

8.4. Market Attractiveness Analysis By Material Type

9. Global Fifth Wheel Coupling Market Analysis 20132017 and Forecast 20182028, By Sales Channel

9.1. Introduction

9.1.1. Market Value Share Analysis By Sales Channel

9.1.2. Y-o-Y Growth Analysis By Sales Channel

9.2. Historical Market Size (US$ Mn) and Volume By Sales Channel, 20132017

9.3. Market Size (US$ Mn) and Volume Forecast By Sales Channel, 2018-2028

9.3.1. OEM

9.3.2. Aftermarket

9.4. Market Attractiveness Analysis By Sales Channel

10. Global Fifth Wheel Coupling Market Analysis and Forecast, By Region

10.1. Introduction

10.1.1. Market Value Share Analysis By Region

10.1.2. Y-o-Y Growth Analysis By Region

10.2. Historical Market Size (US$ Mn) and Volume By Region, 20132017

10.3. Market Size (US$ Mn) and Volume Forecast By Region, 2018-2028

10.3.1. North America

10.3.2. Latin America

10.3.3. Western Europe

10.3.4. Eastern Europe

10.3.5. South East Asia & Pacific

10.3.6. China

10.3.7. Japan

10.3.8. Middle East and Africa

10.4. Market Attractiveness Analysis By Region

11. North America Fifth Wheel Coupling Market Analysis 20132017 and Forecast 20182028

11.1. Introduction

11.2. Pricing Analysis

11.2.1. By Product Type

11.2.2. By Capacity

11.2.3. By Material Type

11.2.4. By Sales Channel

11.3. Historical Market Size (US$ Mn) and Volume By Market Segments, 20132017

11.4. Market Size (US$ Mn) and Volume Forecast By Market Segments, 2018-2028

11.4.1. By Country

11.4.1.1. U.S.

11.4.1.1.1. By Product Type

11.4.1.1.2. By Operation

11.4.1.1.3. By Capacity

11.4.1.1.4. By Material Type

11.4.1.1.5. By Sales Channel

11.4.1.2. Canada

11.4.1.2.1. By Product Type

11.4.1.2.2. By Operation

11.4.1.2.3. By Capacity

11.4.1.2.4. By Material Type

11.4.1.2.5. By Sales Channel

11.4.1.3.

11.4.2. By Product Type

11.4.2.1. Compensating

11.4.2.2. Semi oscillating

11.4.2.3. Fully oscillating

11.4.3. By Operation

11.4.3.1. Hydraulic

11.4.3.2. Pneumatic

11.4.3.3. Mechanical

11.4.4. By Capacity

11.4.4.1. Below 20 tons

11.4.4.2. Between 20 and 30 tons

11.4.4.3. Between 30 and 45 tons

11.4.4.4. Above 45 tons

11.4.5. By Material Type

11.4.5.1. Cast Steel

11.4.5.2. Cast Iron

11.4.5.3. Fabricated Steel

11.4.5.4. Aluminum

11.4.5.5. Others (pressed steel, stamped steel, etc.)

11.4.6. By Sales Channel

11.4.6.1. OEM

11.4.6.2. Aftermarket

11.5. Market Attractiveness Analysis

11.5.1. By Country

11.5.2. By Product Type

11.5.3. By Operation

11.5.4. By Capacity

11.5.5. By Material Type

11.5.6. By Sales Channel

11.6. Regional Trends

11.7. Driver restraint impact analysis

11.8. Intensity Mapping

12. Latin America Fifth Wheel Coupling Market Analysis 20132017 and Forecast 20182028

12.1. Introduction

12.2. Pricing Analysis

12.2.1. By Product Type

12.2.2. By Capacity

12.2.3. By Material Type

12.2.4. By Sales Channel

12.3. Historical Market Size (US$ Mn) and Volume By Market Segments, 20132017

12.4. Market Size (US$ Mn) and Volume Forecast By Market Segments, 2018-2028

12.4.1. By Country

12.4.1.1. Brazil

12.4.1.2. Mexico

12.4.1.3. Rest of Latin America

12.4.2. By Product Type

12.4.2.1. Compensating

12.4.2.2. Semi oscillating

12.4.2.3. Fully oscillating

12.4.3. By Operation

12.4.3.1. Hydraulic

12.4.3.2. Pneumatic

12.4.3.3. Mechanical

12.4.4. By Capacity

12.4.4.1. Below 20 tons

12.4.4.2. Between 20 and 30 tons

12.4.4.3. Between 30 and 45 tons

12.4.4.4. Above 45 tons

12.4.5. By Material Type

12.4.5.1. Cast Steel

12.4.5.2. Cast Iron

12.4.5.3. Fabricated Steel

12.4.5.4. Aluminum

12.4.5.5. Others (pressed steel, stamped steel, etc.)

12.4.6. By Sales Channel

12.4.6.1. OEM

12.4.6.2. Aftermarket

12.5. Market Attractiveness Analysis

12.5.1. By Country

12.5.2. By Product Type

12.5.3. By Operation

12.5.4. By Capacity

12.5.5. By Material Type

12.5.6. By Sales Channel

12.6. Regional Trends

12.7. Driver restraint impact analysis

12.8. Intensity Mapping

13. Western Europe Fifth Wheel Coupling Market Analysis 20132017 and Forecast 20182028

13.1. Introduction

13.2. Pricing Analysis

13.2.1. By Product Type

13.2.2. By Capacity

13.2.3. By Material Type

13.2.4. By Sales Channel

13.3. Historical Market Size (US$ Mn) and Volume By Market Segments, 20132017

13.4. Market Size (US$ Mn) and Volume Forecast By Market Segments, 2018-2028

13.4.1. By Country

13.4.1.1. Germany

13.4.1.2. United Kingdom

13.4.1.3. France

13.4.1.4. Italy

13.4.1.5. Spain

13.4.1.6. Rest of Western Europe

13.4.2. By Product Type

13.4.2.1. Compensating

13.4.2.2. Semi oscillating

13.4.2.3. Fully oscillating

13.4.3. By Operation

13.4.3.1. Hydraulic

13.4.3.2. Pneumatic

13.4.3.3. Mechanical

13.4.4. By Capacity

13.4.4.1. Below 20 tons

13.4.4.2. Between 20 and 30 tons

13.4.4.3. Between 30 and 45 tons

13.4.4.4. Above 45 tons

13.4.5. By Material Type

13.4.5.1. Cast Steel

13.4.5.2. Cast Iron

13.4.5.3. Fabricated Steel

13.4.5.4. Aluminum

13.4.5.5. Others (pressed steel, stamped steel, etc.)

13.4.6. By Sales Channel

13.4.6.1. OEM

13.4.6.2. Aftermarket

13.5. Market Attractiveness Analysis

13.5.1. By Country

13.5.2. By Product Type

13.5.3. By Operation

13.5.4. By Capacity

13.5.5. By Material Type

13.5.6. By Sales Channel

13.6. Regional Trends

13.7. Driver restraint impact analysis

13.8. Intensity Mapping

14. Eastern Europe Europe Fifth Wheel Coupling Market Analysis 20132017 and Forecast 20182028

14.1. Introduction

14.2. Pricing Analysis

14.2.1. By Product Type

14.2.2. By Capacity

14.2.3. By Material Type

14.2.4. By Sales Channel

14.3. Historical Market Size (US$ Mn) and Volume By Market Segments, 20132017

14.4. Market Size (US$ Mn) and Volume Forecast By Market Segments, 2018-2028

14.4.1. By Country

14.4.1.1. Russia

14.4.1.2. Poland

14.4.1.3. Rest of Eastern Europe

14.4.2. By Product Type

14.4.2.1. Compensating

14.4.2.2. Semi oscillating

14.4.2.3. Fully oscillating

14.4.3. By Operation

14.4.3.1. Hydraulic

14.4.3.2. Pneumatic

14.4.3.3. Mechanical

14.4.4. By Capacity

14.4.4.1. Below 20 tons

14.4.4.2. Between 20 and 30 tons

14.4.4.3. Between 30 and 45 tons

14.4.4.4. Above 45 tons

14.4.5. By Material Type

14.4.5.1. Cast Steel

14.4.5.2. Cast Iron

14.4.5.3. Fabricated Steel

14.4.5.4. Aluminum

14.4.5.5. Others (pressed steel, stamped steel, etc.)

14.4.6. By Sales Channel

14.4.6.1. OEM

14.4.6.2. Aftermarket

14.5. Market Attractiveness Analysis

14.5.1. By Country

14.5.2. By Product Type

14.5.3. By Operation

14.5.4. By Capacity

14.5.5. By Material Type

14.5.6. By Sales Channel

14.6. Regional Trends

14.7. Driver restraint impact analysis

14.8. Intensity Mapping

15. South East Asia & Other Pacific Fifth Wheel Coupling Market Analysis 20132017 and Forecast 20182028

15.1. Introduction

15.2. Pricing Analysis

15.2.1. By Product Type

15.2.2. By Capacity

15.2.3. By Material Type

15.2.4. By Sales Channel

15.3. Historical Market Size (US$ Mn) and Volume By Market Segments, 20132017

15.4. Market Size (US$ Mn) and Volume Forecast By Market Segments, 2018-2028

15.4.1. By Country

15.4.1.1. India

15.4.1.2. ASEAN

15.4.1.3. ANZ

15.4.1.4. Rest of SEA & PAcific

15.4.2. By Product Type

15.4.2.1. Compensating

15.4.2.2. Semi oscillating

15.4.2.3. Fully oscillating

15.4.3. By Operation

15.4.3.1. Hydraulic

15.4.3.2. Pneumatic

15.4.3.3. Mechanical

15.4.4. By Capacity

15.4.4.1. Below 20 tons

15.4.4.2. Between 20 and 30 tons

15.4.4.3. Between 30 and 45 tons

15.4.4.4. Above 45 tons

15.4.5. By Material Type

15.4.5.1. Cast Steel

15.4.5.2. Cast Iron

15.4.5.3. Fabricated Steel

15.4.5.4. Aluminum

15.4.5.5. Others (pressed steel, stamped steel, etc.)

15.4.6. By Sales Channel

15.4.6.1. OEM

15.4.6.2. Aftermarket

15.5. Market Attractiveness Analysis

15.5.1. By Country

15.5.2. By Product Type

15.5.3. By Operation

15.5.4. By Capacity

15.5.5. By Material Type

15.5.6. By Sales Channel

15.6. Regional Trends

15.7. Driver restraint impact analysis

15.8. Intensity Mapping

16. China Fifth Wheel Coupling Market Analysis 20132017 and Forecast 20182028

16.1. Introduction

16.2. Pricing Analysis

16.2.1. By Product Type

16.2.2. By Capacity

16.2.3. By Material Type

16.2.4. By Sales Channel

16.3. Historical Market Size (US$ Mn) and Volume By Market Segments, 20132017

16.4. Market Size (US$ Mn) and Volume Forecast By Market Segments, 2018-2028

16.4.1. By Product Type

16.4.1.1. Compensating

16.4.1.2. Semi oscillating

16.4.1.3. Fully oscillating

16.4.2. By Operation

16.4.2.1. Hydraulic

16.4.2.2. Pneumatic

16.4.2.3. Mechanical

16.4.3. By Capacity

16.4.3.1. Below 20 tons

16.4.3.2. Between 20 and 30 tons

16.4.3.3. Between 30 and 45 tons

16.4.3.4. Above 45 tons

16.4.4. By Material Type

16.4.4.1. Cast Steel

16.4.4.2. Cast Iron

16.4.4.3. Fabricated Steel

16.4.4.4. Aluminum

16.4.4.5. Others (pressed steel, stamped steel, etc.)

16.4.5. By Sales Channel

16.4.5.1. OEM

16.4.5.2. Aftermarket

16.5. Market Attractiveness Analysis

16.5.1. By Product Type

16.5.2. By Operation

16.5.3. By Capacity

16.5.4. By Material Type

16.5.5. By Sales Channel

16.6. Regional Trends

16.7. Intensity Mapping

17. Japan Fifth Wheel Coupling Market Analysis 20132017 and Forecast 20182028

17.1. Introduction

17.2. Pricing Analysis

17.2.1. By Product Type

17.2.2. By Capacity

17.2.3. By Material Type

17.2.4. By Sales Channel

17.3. Historical Market Size (US$ Mn) and Volume By Market Segments, 20132017

17.4. Market Size (US$ Mn) and Volume Forecast By Market Segments, 2018-2028

17.4.1. By Product Type

17.4.1.1. Compensating

17.4.1.2. Semi oscillating

17.4.1.3. Fully oscillating

17.4.2. By Operation

17.4.2.1. Hydraulic

17.4.2.2. Pneumatic

17.4.2.3. Mechanical

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