Polypropylene and Polypropylene Composites Market for Injection Molding, By Product and Polypropylene Composites), Fiber Type, and Application - Global Opportunity Analysis and Industry Forecast, 2017-2023

  • ID: 4580582
  • Report
  • Region: Global
  • 260 pages
  • Allied Analytics LLP
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Injection molding involves the manufacturing of plastic products by injecting molten materials into a mold, where it is melted, cooled, and solidified to form the final product. Thermoplastic and thermosetting injection molded plastics are used to manufacture several parts and components for various applications. The major thermoplastic polymers used in injection molding include polypropylene, high-impact polystyrene, low-density polyethylene, high-density polyethylene, polycarbonate, polypropylene composites, polyvinyl chloride, polyurethane, polysulphone, and others. In addition, epoxy resin, polyester, and melamine formaldehyde are some of the prominent thermosetting polymers used for injection molding. The demand for injection polypropylene & polypropylene composites has increased over the last decade, as they can attain complex & intricate shape, minimizing wastage of the material.

Surge in demand for polypropylene and polypropylene composites from various application industries acts as the major driver of the global PP and PP composites market. Moreover, low labor cost, advantage of mass production, and better waste management in the injection molding process have fueled the growth of the market. However, high initial tooling cost of the injection molding and availability of other substitutes providing stiff competition to polypropylene restrain the market growth. Conversely, technological advancements have led to the adoption of robotics in injection molding process, which is expected to provide lucrative opportunities for the market growth.

The report segments the global polypropylene and polypropylene composites market for injection molding on the basis of product, fiber type, application, and geography. Based on product, the market is segmented into polypropylene (PP) and polypropylene composites. On the basis of fiber type, the market is divided into glass fiber, carbon fiber, and others. By application, it is bifurcated into transportation, electrical & electronics, aerospace & defense, and others. Geographically, it is analyzed across North America, Europe, Asia-Pacific, and LAMEA.

The key players operating in the market include Borealis AG, Sumitomo Chemicals, Exxon Mobil Corporation, Sinopec Ltd, SABIC, Formosa Plastics Corporation, Lyondell Basell Industries N.V., DuPont, INEOS, and Braskem.

KEY BENEFITS

Porters Five Force's analysis helps to analyze the potential of buyers and suppliers and the competitive scenario of the industry for strategy building.
It outlines the current trends and future scenario of the polypropylene and polypropylene composites market for injection molding from 2017 to 2023 to understand the prevailing opportunities and potential investment pockets.
Major countries in each region have been mapped according to their individual revenue contribution to the global/regional market.
An in-depth analysis of the current research & developments within the market is provided along with the key dynamic factors.
The key drivers, restrains, and opportunities and their detailed impact analysis has been elucidated in the study.
The profiles of key players along with their key strategic developments have been enlisted in the report.

Key Market Segments

By Product

Polypropylene (PP)
Polypropylene Composites

By Fiber Type

Glass Fiber
Carbon Fiber
Others

By Application

Transportation
Electricals & Electronics
Aerospace & Defense
Others

By Geography

North America
U.S.
Canada
Mexico
Europe
Germany
France
Spain
Italy
UK
Rest of Europe
Asia-Pacific
China
Japan
India
Australia
Rest of Asia-Pacific
LAMEA
Brazil
South Africa
Saudi Arabia
Rest of LAMEA
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CHAPTER 1:INTRODUCTION
1.1.Report description
1.2.Key benefits for stakeholders
1.3.Key market segments
1.4.Research methodology
1.4.1.Primary research
1.4.2.Secondary research
1.4.3.Analyst tools and models

CHAPTER 2:EXECUTIVE SUMMERY
2.1.Key finding of the study
2.2.CXO perspective

CHAPTER 3:MARKET OVERVIEW
3.1.Market definition and scope
3.2.Key findings
3.2.1.Top investment pocket
3.2.2.Top winning strategies
3.3.Porter's five forces analysis
3.3.1.Bargaining power of suppliers
3.3.2.Bargaining power of buyer
3.3.3.Thereat of new entrants
3.3.4.Threat of substitute
3.3.5.Intensity of competitive rivalry
3.4.Market dynamics
3.4.1.Drivers
3.4.1.1.Upsurge in demand for polypropylene and polypropylene composites from various industries
3.4.1.2.Low labor cost and advantage of mass production
3.4.1.3.Better waste management
3.4.2.Restraints
3.4.2.1.High initial tooling cost
3.4.2.2.Availability of other substitutes providing tough competition to polypropylene
3.4.3.Opportunity
3.4.3.1.Use of robotics in injection molding
3.5.Top player positioning

CHAPTER 4:PP & PP COMPOSITES MARKET FOR INJECTION MOLDING, BY PRODUCT
4.1.Overview
4.1.1.Market size and forecast
4.2.Polypropylene (PP)
4.2.1.Key market trends, growth factors, and opportunities
4.2.2.Market size and forecast
4.3.Polypropylene composites
4.3.1.Key market trends, growth factors, and opportunities
4.3.2.Market size and forecast

CHAPTER 5:PP & PP COMPOSITES MARKET FOR INJECTION MOLDING, BY FIBER TYPE
5.1.Overview
5.1.1.Market size and forecast
5.2.Glass fiber
5.2.1.Key market trends, growth factors, and opportunities
5.2.2.Market size and forecast
5.3.Carbon fiber
5.3.1.Key market trends, growth factors, and opportunities
5.3.2.Market size and forecast
5.4.Others
5.4.1.Key market trends, growth factors, and opportunities
5.4.2.Market size and forecast

CHAPTER 6:PP & PP COMPOSITES MARKET FOR INJECTION MOLDING, BY APPLICATION
6.1.Overview
6.1.1.Market size and forecast
6.2.Transportation
6.2.1.Key market trends, growth factors, and opportunities
6.2.2.Market size and forecast
6.3.Electricals & electronics
6.3.1.Key market trends, growth factors, and opportunities
6.3.2.Market size and forecast
6.4.Aerospace & defense
6.4.1.Key market trends, growth factors, and opportunities
6.4.2.Market size and forecast
6.5.Others
6.5.1.Key market trends, growth factors, and opportunities
6.5.2.Market size and forecast

CHAPTER 7:PP & PP COMPOSITES MARKET FOR INJECTION MOLDING, BY REGION
7.1.Overview
7.1.1.Market size and forecast
7.2.North America
7.2.1.Key market trends, growth factors, and opportunities
7.2.2.Market size and forecast, by product
7.2.3.Market size and forecast, by fiber type
7.2.4.Market size and forecast, by application
7.2.5.Market size and forecast, by country
7.2.6.U.S.
7.2.6.1.Market size and forecast, by product
7.2.6.2.Market size and forecast, by fiber type
7.2.6.3.Market size and forecast, by application
7.2.7.Canada
7.2.7.1.Market size and forecast, by product
7.2.7.2.Market size and forecast, by fiber type
7.2.7.3.Market size and forecast, by application
7.2.8.Mexico
7.2.8.1.Market size and forecast, by product
7.2.8.2.Market size and forecast, by fiber type
7.2.8.3.Market size and forecast, by application
7.3.EUROPE
7.3.1.Key market trends, growth factors, and opportunities
7.3.2.Market size and forecast, by product
7.3.3.Market size and forecast, by fiber type
7.3.4.Market size and forecast, by application
7.3.5.Market size and forecast, by country
7.3.6.Germany
7.3.6.1.Market size and forecast, by product
7.3.6.2.Market size and forecast, by fiber type
7.3.6.3.Market size and forecast, by application
7.3.7.France
7.3.7.1.Market size and forecast, by product
7.3.7.2.Market size and forecast, by fiber type
7.3.7.3.Market size and forecast, by application
7.3.8.Spain
7.3.8.1.Market size and forecast, by product
7.3.8.2.Market size and forecast, by fiber type
7.3.8.3.Market size and forecast, by application
7.3.9.Italy
7.3.9.1.Market size and forecast, by product
7.3.9.2.Market size and forecast, by fiber type
7.3.9.3.Market size and forecast, by application
7.3.10.UK
7.3.10.1.Market size and forecast, by product
7.3.10.2.Market size and forecast, by fiber type
7.3.10.3.Market size and forecast, by application
7.3.11.Rest of Europe
7.3.11.1.Market size and forecast, by product
7.3.11.2.Market size and forecast, by fiber type
7.3.11.3.Market size and forecast, by application
7.4.Asia-Pacific
7.4.1.Key market trends, growth factors, and opportunities
7.4.2.Market size and forecast, by product
7.4.3.Market size and forecast, by fiber type
7.4.4.Market size and forecast, by application
7.4.5.Market size and forecast, by country
7.4.6.China
7.4.6.1.Market size and forecast, by product
7.4.6.2.Market size and forecast, by fiber type
7.4.6.3.Market size and forecast, by application
7.4.7.Japan
7.4.7.1.Market size and forecast, by product
7.4.7.2.Market size and forecast, by fiber type
7.4.7.3.Market size and forecast, by application
7.4.8.India
7.4.8.1.Market size and forecast, by product
7.4.8.2.Market size and forecast, by fiber type
7.4.8.3.Market size and forecast, by application
7.4.9.Australia
7.4.9.1.Market size and forecast, by product
7.4.9.2.Market size and forecast, by fiber type
7.4.9.3.Market size and forecast, by application
7.4.10.Rest of Asia Pacific
7.4.10.1.Market size and forecast, by product
7.4.10.2.Market size and forecast, by fiber type
7.4.10.3.Market size and forecast, by application
7.5.LAMEA
7.5.1.Key market trends, growth factors, and opportunities
7.5.2.Market size and forecast, by product
7.5.3.Market size and forecast, by fiber type
7.5.4.Market size and forecast, by application
7.5.5.Market size and forecast, by country
7.5.6.Brazil
7.5.6.1.Market size and forecast, by product
7.5.6.2.Market size and forecast, by fiber type
7.5.6.3.Market size and forecast, by application
7.5.7.South Africa
7.5.7.1.Market size and forecast, by product
7.5.7.2.Market size and forecast, by fiber type
7.5.7.3.Market size and forecast, by application
7.5.8.Saudi Arabia
7.5.8.1.Market size and forecast, by product
7.5.8.2.Market size and forecast, by fiber type
7.5.8.3.Market size and forecast, by application
7.5.9.Rest of LAMEA
7.5.9.1.Market size and forecast, by product
7.5.9.2.Market size and forecast, by fiber type
7.5.9.3.Market size and forecast, by application

CHAPTER 8:COMPANY PROFILES
8.1.Borealis AG
8.1.1.Company overview
8.1.2.Company snapshot
8.1.3.Operating business segments
8.1.4.Product portfolio
8.1.5.Business performance
8.1.6.Key strategic moves and developments
8.2.Braskem S.A.
8.2.1.Company overview
8.2.2.Company snapshot
8.2.3.Operating business segments
8.2.4.Product portfolio
8.2.5.Business performance
8.2.6.Key strategic moves and developments
8.3.China Petroleum & Chemical Corporation (Sinopec Limited)
8.3.1.Company overview
8.3.2.Company snapshot
8.3.3.Operating business segments
8.3.4.Product portfolio
8.3.5.Business performance
8.4.DowDuPont Inc.
8.4.1.Company overview
8.4.2.Company snapshot
8.4.3.Operating business segments
8.4.4.Product portfolio
8.4.5.Business performance
8.5.Exxon Mobil Corporation
8.5.1.Company overview
8.5.2.Company snapshot
8.5.3.Operating business segments
8.5.4.Product portfolio
8.5.5.Business performance
8.6.Formosa Plastics Corporation
8.6.1.Company overview
8.6.2.Company snapshot
8.6.3.Operating business segments
8.6.4.Product portfolio
8.6.5.Business performance
8.7.INEOS Group Holdings S.A.
8.7.1.Company overview
8.7.2.Company snapshot
8.7.3.Operating business segments
8.7.4.Product portfolio
8.7.5.Business performance
8.8.LyondellBasell Industries Holdings B.V.
8.8.1.Company overview
8.8.2.Company snapshot
8.8.3.Operating business segments
8.8.4.Product portfolio
8.8.5.Business performance
8.8.6.Key strategic moves and developments
8.9.Saudi Basic Industries Corporation
8.9.1.Company overview
8.9.2.Company snapshot
8.9.3.Operating business segments
8.9.4.Product portfolio
8.9.5.Business performance
8.9.6.Key strategic moves and developments
8.10.Sumitomo Chemical Company, Limited
8.10.1.Company overview
8.10.2.Company snapshot
8.10.3.Operating business segments
8.10.4.Product portfolio
8.10.5.Business performance
8.10.6.Key strategic moves and developments
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According to a new report titled, Global Polypropylene and Polypropylene Composites Market for Injection Molding by Product, Fiber Type, and Application: Global Opportunity Analysis and Industry Forecast, 2017-2023, the global polypropylene and polypropylene composites market for injection molding was valued at $54,703 million in 2016, and is projected to reach $78,381 million by 2023, growing at a CAGR of 5.1% from 2017 to 2023. The polypropylene (PP) segment accounted for more than 89% share of the global polypropylene and polypropylene composites market for injection molding in 2016.

Injection molded plastics have gained significant attention in the recent years, owing to their low waste production, material flexibility, wide range of applications, and low labor cost. Recent technological developments, such as computer-aided engineering and automation, in injection molding process have widened the scope of injection molded plastics in several applications. Injection molded polypropylene is used in food & beverage containers, owing to its high chemical resistance and translucent nature. Moreover, it is widely utilized in several end-use applications such as flexible packaging, rigid packaging, automotive, and consumer products. Furthermore, polypropylene composites are witnessing increased demand in the aerospace & defense sector, owing to their high tensile strength and superior resistance to heat, which allow them to be used in harsh environments.

Based on product, the market is segmented into polypropylene (PP) and polypropylene composites. The polypropylene composites segment is projected to be the most lucrative segment from 2017 to 2023, owing to their versatility, low cost, and high impact resistance. Furthermore, lightweight, high tensile strength, and recyclable nature polypropylene composites have encouraged automobile manufactures to use polypropylene composites in the exterior and interior parts of the automobile, thereby improving fuel efficiency and minimizing emissions.

On the basis of fiber type, the market is divided into glass fiber, carbon fiber, and others. The carbon fiber polypropylene composites segment is estimated to grow at the highest CAGR during the forecast period, due to high strength to weight ratio, corrosion resistance, fatigue resistance, and fire resistance properties of the carbon fiber polypropylene composites.

By application, the market is categorized into transportation, electrical & electronics, aerospace & defense, and others. The aerospace & defense segment is projected to be the most lucrative segment from 2017 to 2023, owing to rise in demand for high-performance material from the aerospace & defense industry.

Key Findings of the Polypropylene and Polypropylene Composites Market

The carbon fiber segment is expected to grow at a significant CAGR of 12.1%, in terms of value, from 2017 to 2023.
The transportation segment is projected to grow at a CAGR of 5.6%, in terms of value.
The glass fiber composites segment accounted for more than 64% share of the global market for injection molding, and is projected to grow at a CAGR of 7.9%, in terms of value.
The polypropylene and polypropylene composites market for injection molding in Asia-Pacific is expected to grow at the highest CAGR of 6.1%, in terms of value.
The North American market accounted for more than 38% share in 2016.

In 2016, North America and Europe collectively accounted for more than 65% of the global polypropylene and polypropylene composites market for injection molding, in terms of value. This is attributed to wide use of polypropylene and polypropylene composites in automobile industries to manufacture lightweight automobiles, as they enhance the fuel efficiency. Furthermore, in North America, injection molded polypropylene & polypropylene composites are widely used in electricals & electronics and packaging industries. In Europe, the European legal framework and strategies foster the widespread use of injection molded polypropylene & polypropylene composites products in various industries, which provide growth opportunities for the market.

The major companies profiled in this report are Borealis AG, Sumitomo Chemicals, Exxon Mobil Corporation, Sinopec Ltd, SABIC, Formosa Plastics Corporation, Lyondell Basell Industries N.V., DuPont, INEOS, and Braskem.
Note: Product cover images may vary from those shown
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Note: Product cover images may vary from those shown
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