Plastic Injection Molding Machine Market Analysis and Outlook Report: Industry Size, Share, Growth Trends, and Forecast (2025-2032)

Published On: Apr, 2025
|
Pages: 160

"The Global Plastic Injection Molding Machine Market is valued at USD 154.9 billion in 2025. Worldwide sales of Plastic Injection Molding Machine Market are expected to grow at a significant CAGR of 4.7%, reaching USD 213.6 billion by the end of the forecast period in 2032."

The plastic injection molding machine market is witnessing substantial growth, driven by increasing demand for plastic products in various industries, such as automotive, consumer goods, and packaging. Technological advancements in injection molding machines, including energy-efficient models and automation, are boosting market growth. Asia Pacific holds the largest share in the global market, primarily due to high production and consumption rates in countries like China, India, and Japan.

Market Key Trends, Drivers, and Challenges:

  • There is a growing trend for energy-efficient plastic injection molding machines, driven by the need to reduce operational costs and environmental impact.
  • Increasing adoption of automated systems and integration with Industry 4.0 technologies are enhancing productivity and precision in molding processes.
  • The growing focus on sustainability is driving the demand for plastic molding machines capable of processing biodegradable and recyclable materials.
  • Hybrid injection molding machines, which combine electric and hydraulic components, are becoming more popular due to their enhanced energy efficiency and reduced environmental footprint.
  • Customized and miniaturized plastic injection molding machines are gaining traction, catering to small businesses and specific industry needs.
  • The rise in the consumption of plastic products in industries like automotive, healthcare, electronics, and packaging is a key driver for market growth.
  • Continuous innovation in machine technologies, such as high-precision molding and multi-component injection systems, is fueling market growth.
  • Plastic injection molding offers high-speed production with lower operational costs compared to traditional manufacturing processes, driving its demand in various industries.
  • The integration of robots and automated systems for material handling and quality inspection is improving efficiency and reducing labor costs, pushing the market forward.
  • The high cost of purchasing and maintaining advanced plastic injection molding machines can be a significant barrier for small and medium-sized manufacturers.
  • The processing of certain advanced materials (like composites or biodegradable plastics) requires specialized equipment and expertise, adding complexity and cost to the molding process.
  • The increasing focus on sustainability and environmental regulations is putting pressure on manufacturers to develop machines that produce less waste and utilize more eco-friendly materials.

 

Report Scope Overview

Report Scope

Details

Base Year 2024
Compound Annual Growth Rate (CAGR) (%) 2025 to 2034
Market Forecast Period 2025 to 2034
Market Forecast Units USD Billion
Segments Covered By Machine Technology, By End-Use Industry and by Raw Material
Region Covered North America, Europe, Asia Pacific, South and Central America, and the Middle East and Africa
Countries Covered USA, Canada, Mexico
Germany, UK, France, Spain, Italy,
China, India, Japan, Australia, South Korea,
Saudi Arabia, UAE, Iran, South Africa,
Brazil, Argentina
Key Companies Profiled ArburGmbCKG, CheHsonHoldingLimited, ENGEAUSTRIGmbH, HAITIAINTERNATIONAL, HuskTechnologies, KraussMaffei, Milacron, NISSEPLASTIINDUSTRIACO.LTD., UBMachinerInc., WITTMANTechnologGmbH
Customization Scope 10% Free Customization
Post-Sale Analyst Support 4 Weeks
Delivery Format PDF and Excel via Email (PPT/Word available on special request)

Plastic Injection Molding Machine Market Segmentation

By Machine Technology

  • Hydraulic
  • Electric
  • Hybrid

by End-use Industry

  • Automotive & Transportation
  • Consumer Goods
  • Packaging
  • Electricals And Electronics
  • Building and Construction
  • Medical & Healthcare
  • Others

by Raw Material

  • Polypropylene
  • Acrylonitrile Butadiene Styrene (ABS)
  • Polystyrene
  • Polyethylene
  • Polyvinyl Chloride (PVC)
  • Polycarbonate
  • Polyamide
  • Other Raw Materials

By Geography

  • North America (USA, Canada, Mexico)
  • Europe (Germany, UK, France, Spain, Italy, Rest of Europe)
  • Asia-Pacific (China, India, Japan, Australia, Rest of APAC)
  • The Middle East and Africa (Middle East, Africa)
  • South and Central America (Brazil, Argentina, Rest of SCA)

Key Market Players Presented in the Report Include

 Arburg GmbH + Co KG
Chen Hsong Holdings Limited
ENGEL AUSTRIA GmbH
HAITIAN INTERNATIONAL
Husky Technologies
KraussMaffei
Milacron
NISSEI PLASTIC INDUSTRIAL CO., LTD.
UBE Machinery Inc.
WITTMANN Technology GmbH

    

1. Table of Contents 1.1 List of Tables 1.2 List of Figures 2. Plastic Injection Molding Machine Market Latest Trends, Drivers and Challenges, 2024 - 2032 2.1 Plastic Injection Molding Machine Market Overview 2.2 Market Strategies of Leading Plastic Injection Molding Machine Companies 2.3 Plastic Injection Molding Machine Market Insights, 2024 - 2032 2.3.1 Leading Plastic Injection Molding Machine Types, 2024 - 2032 2.3.2 Leading Plastic Injection Molding Machine End-User industries, 2024 - 2032 2.3.3 Fast-Growing countries for Plastic Injection Molding Machine sales, 2024 - 2032 2.4 Plastic Injection Molding Machine Market Drivers and Restraints 2.4.1 Plastic Injection Molding Machine Demand Drivers to 2032 2.4.2 Plastic Injection Molding Machine Challenges to 2032 2.5 Plastic Injection Molding Machine Market- Five Forces Analysis 2.5.1 Plastic Injection Molding Machine Industry Attractiveness Index, 2024 2.5.2 Threat of New Entrants 2.5.3 Bargaining Power of Suppliers 2.5.4 Bargaining Power of Buyers 2.5.5 Intensity of Competitive Rivalry 2.5.6 Threat of Substitutes 3. Global Plastic Injection Molding Machine Market Value, Market Share, and Forecast to 2032 3.1 Global Plastic Injection Molding Machine Market Overview, 2024 3.2 Global Plastic Injection Molding Machine Market Revenue and Forecast, 2024 - 2032 (US$ Million) 3.3 Global Plastic Injection Molding Machine Market Size and Share Outlook By Machine Technology, 2024 - 2032 3.3.1 Hydraulic 3.3.2 Electric 3.3.3 Hybrid 3.4 Global Plastic Injection Molding Machine Market Size and Share Outlook by End-use Industry, 2024 - 2032 3.4.1 Automotive & Transportation 3.4.2 Consumer Goods 3.4.3 Packaging 3.4.4 Electricals And Electronics 3.4.5 Building and Construction 3.4.6 Medical & Healthcare 3.4.7 Others 3.5 Global Plastic Injection Molding Machine Market Size and Share Outlook by Raw Material, 2024 - 2032 3.5.1 Polypropylene 3.5.2 Acrylonitrile Butadiene Styrene (ABS) 3.5.3 Polystyrene 3.5.4 Polyethylene 3.5.5 Polyvinyl Chloride (PVC) 3.5.6 Polycarbonate 3.5.7 Polyamide 3.5.8 Other Raw Materials 3.6 Global Plastic Injection Molding Machine Market Size and Share Outlook by Region, 2024 – 2032 4. Asia Pacific Plastic Injection Molding Machine Market Value, Market Share and Forecast to 2032 4.1 Asia Pacific Plastic Injection Molding Machine Market Overview, 2024 4.2 Asia Pacific Plastic Injection Molding Machine Market Revenue and Forecast, 2024 - 2032 (US$ Million) 4.3 Asia Pacific Plastic Injection Molding Machine Market Size and Share Outlook By Machine Technology, 2024 - 2032 4.4 Asia Pacific Plastic Injection Molding Machine Market Size and Share Outlook by End-use Industry, 2024 - 2032 4.5 Asia Pacific Plastic Injection Molding Machine Market Size and Share Outlook by Raw Material, 2024 - 2032 4.6 Asia Pacific Plastic Injection Molding Machine Market Size and Share Outlook by Country, 2024 - 2032 4.7 Key Companies in Asia Pacific Plastic Injection Molding Machine Market 5. Europe Plastic Injection Molding Machine Market Value, Market Share, and Forecast to 2032 5.1 Europe Plastic Injection Molding Machine Market Overview, 2024 5.2 Europe Plastic Injection Molding Machine Market Revenue and Forecast, 2024 - 2032 (US$ Million) 5.3 Europe Plastic Injection Molding Machine Market Size and Share Outlook By Machine Technology, 2024 - 2032 5.4 Europe Plastic Injection Molding Machine Market Size and Share Outlook by End-use Industry, 2024 - 2032 5.5 Europe Plastic Injection Molding Machine Market Size and Share Outlook by Raw Material, 2024 - 2032 5.6 Europe Plastic Injection Molding Machine Market Size and Share Outlook by Country, 2024 - 2032 5.7 Key Companies in Europe Plastic Injection Molding Machine Market 6. North America Plastic Injection Molding Machine Market Value, Market Share and Forecast to 2032 6.1 North America Plastic Injection Molding Machine Market Overview, 2024 6.2 North America Plastic Injection Molding Machine Market Revenue and Forecast, 2024 - 2032 (US$ Million) 6.3 North America Plastic Injection Molding Machine Market Size and Share Outlook By Machine Technology, 2024 - 2032 6.4 North America Plastic Injection Molding Machine Market Size and Share Outlook by End-use Industry, 2024 - 2032 6.5 North America Plastic Injection Molding Machine Market Size and Share Outlook by Raw Material, 2024 - 2032 6.6 North America Plastic Injection Molding Machine Market Size and Share Outlook by Country, 2024 - 2032 6.7 Key Companies in North America Plastic Injection Molding Machine Market 7. South and Central America Plastic Injection Molding Machine Market Value, Market Share and Forecast to 2032 7.1 South and Central America Plastic Injection Molding Machine Market Overview, 2024 7.2 South and Central America Plastic Injection Molding Machine Market Revenue and Forecast, 2024 - 2032 (US$ Million) 7.3 South and Central America Plastic Injection Molding Machine Market Size and Share Outlook By Machine Technology, 2024 - 2032 7.4 South and Central America Plastic Injection Molding Machine Market Size and Share Outlook by End-use Industry, 2024 - 2032 7.5 South and Central America Plastic Injection Molding Machine Market Size and Share Outlook by Raw Material, 2024 - 2032 7.6 South and Central America Plastic Injection Molding Machine Market Size and Share Outlook by Country, 2024 - 2032 7.7 Key Companies in South and Central America Plastic Injection Molding Machine Market 8. Middle East Africa Plastic Injection Molding Machine Market Value, Market Share and Forecast to 2032 8.1 Middle East Africa Plastic Injection Molding Machine Market Overview, 2024 8.2 Middle East and Africa Plastic Injection Molding Machine Market Revenue and Forecast, 2024 - 2032 (US$ Million) 8.3 Middle East Africa Plastic Injection Molding Machine Market Size and Share Outlook By Machine Technology, 2024 - 2032 8.4 Middle East Africa Plastic Injection Molding Machine Market Size and Share Outlook by End-use Industry, 2024 - 2032 8.5 Middle East Africa Plastic Injection Molding Machine Market Size and Share Outlook by Raw Material, 2024 - 2032 8.6 Middle East Africa Plastic Injection Molding Machine Market Size and Share Outlook by Country, 2024 - 2032 8.7 Key Companies in Middle East Africa Plastic Injection Molding Machine Market 9. Plastic Injection Molding Machine Market Structure 9.1 Key Players 9.2 Plastic Injection Molding Machine Companies - Key Strategies and Financial Analysis 9.2.1 Snapshot 9.2.3 Business Description 9.2.4 Products and Services 9.2.5 Financial Analysis 10. Plastic Injection Molding Machine Industry Recent Developments 11 Appendix 11.1 Publisher Expertise 11.2 Research Methodology 11.3 Annual Subscription Plans 11.4 Contact Information

    

Get Free Sample

At OG Analysis, we understand the importance of informed decision-making in today's dynamic business landscape. To help you experience the depth and quality of our market research reports, we offer complimentary samples tailored to your specific needs.

Start Now! Please fill the form below for your free sample.

Why Request a Free Sample?

Evaluate Our Expertise: Our reports are crafted by industry experts and seasoned analysts. Requesting a sample allows you to assess the depth of research and the caliber of insights we provide.

Tailored to Your Needs: Let us know your industry, market segment, or specific topic of interest. Our free samples are customized to ensure relevance to your business objectives.

Witness Actionable Insights: See firsthand how our reports go beyond data, offering actionable insights and strategic recommendations that can drive your business forward.

Embark on your journey towards strategic decision-making by requesting a free sample from OG Analysis. Experience the caliber of insights that can transform the way you approach your business challenges.

You can purchase individual sections of this report. Explore pricing options for specific sections.
License

$3950- 5%

$6450- 10%

$8450- 15%

Didn’t find what you’re looking for? TALK TO OUR ANALYST TEAM

Need something within your budget? NO WORRIES! WE GOT YOU COVERED!

Related Products

Ground Calcium Carbonate Market Outlook Report

Ground Calcium Carbonate Market Overview Ground calcium carbonate commonly referred to as GCC is finely ground limestone or marble, a calcium carbonate material having the chemical formula, CaCO3. GCC accounts for more than 80% of the Calcium carbonate market that is available in Ground Calcium Carbonate (GCC) and Precipitated Calcium Carbonate (PCC) forms. GCC is produced by mechanical grinding of the raw material, limestone, and then classified to the desired size without involving any chemical change in the process. In a magnified view, the distribution of particle sizes in a GCC is much broader than for a PCC of the same size, implying that there are many more large particles and many more small particles than in a PCC. The size of the largest of the particles (the ""top size"") is much greater for a GCC than for a PCC, thus making GCC a less refined version of Calcium carbonate. GCC is widely used as an industrial mineral is differentiated by three primary attributes - particle size, color and chemical purity. The mineral finds application in various industries based on its quality and suitability of use. Latest Trends in Ground Calcium Carbonate Market Growing Usage of Calcium Carbonate as Industrial Filler: Industrial filler has been the top and continuously growing application for calcium carbonate. Finely ground calcium carbonate is used as a filler in plastics, paints, and paper to improve aesthetics, and functionality and to save on filling costs. Calcium carbonate consumption as the filler has the potential to exceed calcium carbonate used as a dimension stone, in a few key markets. The most abundant sources of carbonate mineral fillers are the reserves of white marble. The most important attributes of carbonate fillers that decide their usefulness in industrial applications are particle size, brightness (whiteness), and chemical purity. Fillers were earlier used to substitute costlier materials in paint or polymers in rubbers or plastics. Currently, they are being used to add stiffness, color, opacity, or other required qualities to a product. Innovative technologies allowing the usage of GCC in new applications without altering the originality and functionality are aiding further penetration of GCC. Driving Factors Increase in Demand from the Construction and Infrastructure Sector: Robust development in construction and infrastructure activities across the world is generating demand for paints, coatings, adhesives, ceramics and various other polymers and concretes. These end-users are further deriving demand for ground calcium carbonate materials. Increasing Population, growing urbanization and fast-developing economies, especially in Asia and the Middle East, have led to growth in the need for infrastructure. Huge developments in infra projects and high-rise apartments necessitate lightweight and cost-effective options. Ground Calcium Carbonate is evolving robustly to match those requirements precisely. Market Challenges Environmental hazards of limestone mining: Limestone mining can disturb groundwater conditions. Limestone deposits frequently arise in association with karst, a landscape where limestone gradually dissolves underground. The deposits result in caves, sinkholes, and areas of rock ruptures that create underground drainage areas. Mining in karst can disturb natural aquifers and alter the flow of the underground water. Excavating operations often remove ground water to expose the mining site; this can decrease the level of the water table and alter water flows through rock formations. Streams and rivers can be changed when mines pump excess water from a limestone quarry into natural downstream channels. This increases the danger of flooding and any pollutants or alterations in water quality disturb the surface water. Companies Mentioned J.M. Huber Corporation Mississippi Lime Company Imerys Omya AG Minerals Technologies Inc. Mississippi Lime Company Carmeuse Shiraishi Kogyo Kaisha, Ltd. Maruo Calcium Co. Ltd. Okutama Kogyo Co., Ltd. Newpark Resources, Inc. *The companies above are listed in no particular order. Report Scope Details Market Value- $ Million,2024 22,357 Market Growth (Value), (2024-2031)- % 5.83 Leading Region Xx Base Year 2023 Forecast Period 2024 to 2031 Segments Covered By Form, By End Use Geography Covered North America, Europe, Asia-Pacific, South and Central America, and Middle East & Africa

Published:Feb-2025

Propyl Gallate Market Outlook Report

Propyl Gallate Market Overview Propyl gallate (n-propyl 3,4,5-trihydroxybenzoate, PG) is an ester formed by propanol and gallic acid condensation. It is an important synthetic substance widely used in cosmetics, foods, pharmaceuticals, and other fields. Also, it is used as an effective antioxidant in cosmetics to stabilize vitamins, essential oils, perfumes, fats and oils. China is still the world's largest propyl gallate production region; because of the limit of the raw material, only a few companies in the world are mainly distributed in China.The global propyl gallate market is mainly attributed to factors such as the rising use of cosmetics, rapid growth of the pharmaceutical industry & food & beverage industry, growing population, and changing lifestyles. According to the FDA, propyl gallate is safe for human consumption. The rising market of processed and convenience food in the food industry in several less developed countries globally is driving the market's growth. Latest Trends in Propyl Gallate Market Increasing Propyl Gallate Demand for Processed Food: The rising consumption of packaged food is estimated to boost the global propylgallate market during the forecast period. At present, antioxidants continue to gain momentum in the food & beverage industry and are considered an important additive. The growing demand and consumption of processed foods, which widely contain antioxidant compounds, has driven the market growth. Propyl gallate prevents oxidation and extends the shelf-life of the food. The rising working population and the fast-paced lifestyle of people have led to their surging reliance on processed foods. Further, functional foods are becoming more in demand, and consumers demand high-protein, nutritionally rich superfoods. These factors influenced manufacturers to develop innovative products and adopt new technologies. As developing economies like China and India grow and attain high disposable income, their demand for food antioxidants & additives is rising. The demand for propyl gallate food antioxidants is expected to grow modestly in early adopting countries such as Japan and Germany and exponentially in new & emerging markets such as Thailand, Malaysia, and other Asian countries. Driving Factors Increasing Propyl Gallate Demand for Processed Food: The rising consumption of packaged food is estimated to boost the global propyl gallate market during the forecast period. At present, antioxidants continue to gain momentum in the food & beverage industry and are considered an important additive. The growing demand and consumption of processed foods, which widely contain antioxidant compounds, has driven the market growth. Propyl gallate prevents oxidation and extends the shelf-life of the food. The rising working population and the fast-paced lifestyle of people have led to their surging reliance on processed foods. Further, functional foods are becoming more in demand, and consumers demand high-protein, nutritionally rich superfoods. These factors influenced manufacturers to develop innovative products and adopt new technologies. Market Challenges Availability of Bio-Based Antioxidants & Other Substitutes: The other alternatives of propyl gallate include octyl gallate, methyl gallate, dodecyl gallate, ethyl gallate, and others. Propyl gallate is an irritant to the skin and eyes and a dermal sensitizer. Exposure via inhalation is possible, and it is considered a hazard. The use of the additive in animal nutrition does not pose a risk to the environment. Propyl gallate has, until recently, been used as a major antioxidant in fatty food and, in the cosmetic industry, in the manufacture of cosmetic products. Propyl gallate has a high sensitizing potential; however, the frequency of allergic contact dermatitis from antioxidants of the gallate type was surprisingly low. Nevertheless, a concomitant reduction of propyl gallate as an antioxidant in food, with oral tolerance being less likely to develop, may also contribute to the increasing trend of allergic contact dermatitis caused by propyl gallate. Companies Mentioned Wufeng Chicheng Biotech Co., Ltd. Hunan Linong Technology Co., Ltd. Leshan Sanjiang Bio-Tech Co., Ltd. Tianxin Medical & Chemical Industry, Co., Ltd. Wenzhou Ouhai Fine Chemicals, Ltd. REXLER. Thermo Fisher Scientific Inc. Tokyo Chemical Industry Co., Ltd. (TCI) Alfa Aesar BASF SE Gallochem Co., Ltd. Haihang Industry Impextraco Kemin Industries *The companies above are listed in no particular order. Report Scope Details Market Value- $ Million,2024 53.6 Market Growth (Value), (2024-2031)- % 5.6 Leading Region Xx Base Year 2023 Forecast Period 2024 to 2031 Segments Covered By Raw Material, By Grade, By End Use Geography Covered North America, Europe, Asia-Pacific, South and Central America, and Middle East & Africa

Published:Feb-2025

Epoxy Curing Agents Market Analysis and Outlook Report: Industry Size, Share, Growth Trends, and Forecast (2025-2032)

The Epoxy Curing Agents Market has witnessed significant growth in recent years, driven by the rising demand for high-performance coatings, adhesives, and composites across industries such as construction, automotive, aerospace, and electronics. Epoxy curing agents play a crucial role in enhancing the mechanical, thermal, and chemical resistance properties of epoxy resins, making them indispensable in industrial applications. The growing emphasis on sustainability has also led to the development of eco- friendly and low-volatile organic compound (VOC) curing agents, which are increasingly being adopted in various sectors. With expanding infrastructure projects, rapid industrialization, and technological advancements, the market is poised for steady growth in the coming years. Additionally, the rise of electric vehicles (EVs) and renewable energy installations is expected to further boost the demand for advanced epoxy-based materials. Market Developments in 2024 In 2024, the epoxy curing agents market experienced robust growth, supported by increasing construction activities and infrastructure development worldwide. Governments and private investors ramped up spending on smart cities, green buildings, and energy-efficient structures, all of which require durable and high-strength epoxy-based materials. The electronics industry also played a crucial role, with the surge in demand for consumer electronics, circuit boards, and semiconductor packaging. Additionally, stringent environmental regulations led to increased investments in bio-based and waterborne epoxy curing agents, driving innovation among manufacturers. Key players in the industry focused on strategic collaborations and product launches to expand their market footprint, catering to the growing demand for sustainable and high-performance epoxy formulations. Expected Development in 2025 Looking ahead to 2025 and beyond, the epoxy curing agents market is expected to witness further advancements in technology, with a strong focus on sustainability and energy efficiency. The developmentof bio-based curing agents derived from renewable sources will gain momentum, catering to the increasing demand for environmentally friendly solutions. Additionally, the rise of Industry 4.0 and the adoption of smart manufacturing processes will enhance production efficiency and customization in epoxy formulations. The expanding EV sector, particularly in Asia-Pacific and Europe, will continue to drive the need for lightweight and high-strength epoxy composites. Furthermore, as offshore wind farms and solar power projects expand, demand for corrosion-resistant and weatherproof epoxy coatings will surge. While economic uncertainties and fluctuating raw material costs may pose challenges, continuous R&D efforts and strategic investments will support the long-term growth of the market. Notable Trends and Drivers: • Sustainability and Bio-based Solutions – With increasing environmental concerns, manufacturers are investing in bio-based and low-VOC epoxy curing agents, aligning with global regulatory requirements and sustainability goals. • Advanced Composites in EVs and Aerospace – The growing adoption of epoxy-based lightweight composites in electric vehicles and aerospace applications is driving innovation in high- performance curing agents. • Rising Construction and Infrastructure Development – The expansion of smart cities, energy- efficient buildings, and large-scale infrastructure projects worldwide is fueling demand for durable and high-strength epoxy formulations. • Growth in Electronics and Semiconductor Industry – The increasing use of epoxy curing agents in circuit boards, semiconductor packaging, and electronic components is accelerating market growth.

Published:Apr-2025