Automotive Connecting Rod Market 2018 Research Report – Global Industry Forecast to 2023 is latest depth analysis report Published by Market Research Future. Global Automotive Connecting Rod Market is driven by steady demand for internal combustion engine (ICE) in developing countries. The demand for connecting rods is further driven by factors such as excellent drivability and stability of engine. The internal combustion engines are installed with hybrid powertrain for improving the fuel efficiency.
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Key Companies in the Automotive Connecting Rod Market Analyzed are –
Wossner Pistons (U.S.), Wiseco Piston Company Inc.(U.S.), Nangong Jingqiang Connecting Rod Co., Ltd (China), Pauter Machine (U.S.), Albon Engineering & Manufacturing Plc (U.K.), and Tianrun Crankshaft Co., Ltd. (China). JD Norman Industries, Inc. (U.S.), CP-Carrillo (U.S.), Power Industries (India), Arrow Precision Engineering, Ltd. (U.K.), Mahle GmbH (Germany) , Magal Engineering Ltd. (U.K.), Robson Engineering (U.K.), Yasunaga Corporation (Japan), Cummins, Inc. (U.S.), and Linamar Corporation (Canada).
Automotive Connecting Rods are rods that are used for connecting the piston to the crank or crankshaft in a reciprocating piston engine. The automotive connecting rods have to pass quality checks before their supply to clients. The global automotive connecting rod market has seen remarkable growth in the global market and it is observed that its demand in the future is expected to grow with the CAGR of 4%.
The use of advanced materials such as fracture-split forged steel leads to an increase in the life of connecting rods. The developments for increasing the efficiency and strength of connecting rods is showing significant opportunities for new product development. The connecting rod is a key engine component that affects the weight of the crank train. Therefore measures must be taken for reducing their weight and improving the mechanical efficiency of the engine. As the connecting rods do not require regular replacements, they help in reducing the overall maintenance cost of the automotive. The other factors contributing in the growth of the market are the boom in the automotive industry, the increased use of advanced coating, the use of carbon fiber connecting rods in racing cars, and the increase in demand for internal combustion engines.
The global automotive connecting rods market is expected to experience significant growth opportunities with the assembly of carbon fiber connecting rods in racing cars. The rise in demand for sports cars is increasing the use of carbon fiber connecting rods for making the cars lighter and stronger. The market is witnessing challenges with the need for engine downsizing that is reducing the size of the engine and simultaneously delivering power equivalent to the larger engine by adding devices, such as a turbocharger, supercharger or by integrating direct fuel injection technology. Engine downsizing helps improve the fuel efficiency of vehicle and reducing the overall carbon emission.
Based on vehicle type, the market is segmented as passenger cars and commercial vehicles. Among these, passenger car segment dominates the global automotive connecting rod market. Passenger cars comprise four, six or eight cylinders. The cars equipped with four cylinders engine majorly deploy the automotive passenger car connecting rod. Manufacturers focus on improvement of connecting rods which are related to surface finishing, weight, and the ability to withstand high temperatures.
Geographically, the global automotive connecting rod market has been divided into four major regions such as North America, Europe, Asia Pacific and Rest of the World. Asia Pacific will dominate the automotive connecting rod market throughout the forecast period. The economic growth of the developing countries such as China and India are triggering the growth of the market. The increase in investment in industrialization and infrastructure is leading to an increased demand for vehicles, which is in turn driving the growth of the connecting rod material market.
Scope of the Report:
This study provides an overview of the global automotive connecting rod market, tracking three market segments across four geographic regions. The report studies key players, providing a six-year annual trend analysis that highlights market size, volume and share for North America, Europe, Asia-Pacific (APAC) and Rest of the World (ROW). The report also provides a forecast, focusing on the market opportunities for the next five years for each region. The scope of the study segments the global automotive connecting rod market by material, process type, vehicle type and regions.
The report for Global Automotive Connecting Rod Market of Market Research Future comprises of extensive primary research along with the detailed analysis of qualitative as well as quantitative aspects by various industry experts, key opinion leaders to gain the deeper insight of the market and industry performance. The report gives the clear picture of current market scenario which includes historical and projected market size in terms of value and volume, technological advancement, macro economical and governing factors in the market. The report provides details information and strategies of the top key players in the industry. The report also gives a broad study of the different market segments and regions.
Table of Content:
Table 1 Global Low Speed Vehicle Market: By Region, 2017-2023
Table 2 North America Low Speed Vehicle Market: By Country, 2017-2023
Table 3 Europe Low Speed Vehicle Market: By Country, 2017-2023
Table 4 Asia-Pacific Low Speed Vehicle Market: By Country, 2017-2023
Table 5 RoW Low Speed Vehicle Market: By Country, 2017-2023
Table 6 Global Low Speed Vehicle Market, By Material, By Regions, 2017-2023
Table 7 North America Low Speed Vehicle Market, By Material, By Country, 2017-2023
Table 8 Europe Low Speed Vehicle Market, By Resin Material, By Country, 2017-2023
Table 9 Asia-Pacific Automotive Connecting Rod Market, By Material, By Country, 2017-2023
Table 10 RoW Automotive Connecting Rod Market, By Material, By Country, 2017-2023
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