Market Analysis
the worldwide blow molding resins market has been expected to increase at a CAGR of 6.73 %, with a value of USD 17.88 billion from 2021-203. Blow molding is utilized in the blow molding process. It is a process to form hollow products via expanding the parts made of plastic against the mold’s internal surface with the use of resins. Thus, the products that are developed have abrasion, scratch and chemical resistance, and high gloss. Besides the products that are blow molded exhibit rigidity, high load melt strength, resistance to environmental stress cracking and stiffness. These alluring properties will improve the utilization of resin for blow molding applications. This process is largely employed in the construction, automotive and packaging industries. It is used in the production of containers, cans and bottles which are utilized in chemical industries, personal care, food and beverages and pharmaceutical industries.
There are many factors that is driving the growth of the Blow Molding Resins Market Share. Some of these factors as per the Market Research Future (MRFR) report include growth in packaging industry, demand for vehicles that are lightweight, rapid industrialization and increasing use in personal care products and cosmetics and bottling and food packaging industry. On the other hand, factors such as volatility in raw material and crude oil prices coupled with rising concerns for pollution concerning disposal of such products may restrict the growth of the blow molding resins market over the predicted years.
Market Segmentation
Market Research Future report offers an all-inclusive segmental analysis of the blow molding resins market on the basis of molding process, type and end-use industry.
Based on molding process, it is segmented into injection stretch blow molding, injection blow molding and extrusion. Of these, extrusion will have the maximum market share over the predicted years.
Based on type, the blow molding resins market is segmented into polycarbonate, nylon/polyamides, polyvinyl chloride, acrylonitrile butadiene styrene, polyethylene terephthalate, polypropylene and polyethylene. Of these, polyethylene will dominate the market owing to its use in an array of products resting on its density.
Based on the end-use industry, it is segmented into electronics, building and construction, consumer goods, automotive, and packaging. Of these, packaging will have the maximum share in the blow molding resins market.
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Regional Analysis
Based on region, the blow molding resins market covers growth opportunities and latest trends across Asia Pacific, North America, Europe and Middle East and Africa. Of these, APAC is likely to have lucrative share owing to increasing need for blow molding resins from the leading end-use industries namely electronics, construction, automotive, packaging and others. The blow molding resins market in Europe holds the second largest share due to the production of lightweight automotive parts and its export in this region. The blow molding resins market in North America is anticipated to see considerable growth owing to soaring demand from food and beverage packaging industry.
Competitive Analysis
The global blow molding resins market is competitive and highly fragmented with the key players adopting various strategies namely acquisitions, partnerships, joint ventures, agreements, expansions, new product launches and others to boost up their footprint in the blow molding resins market.
Key Players
Leading players profiled in the blow molding resins market include LG Chem (South Korea), Reliance Industries Limited (India), Lanxess (Germany), Versalis S.p.A. (Italy), Chevron Corporation (U.S.), Formosa Plastics Group (Taiwan), China Petrochemical Corporation (China), INEOS (Switzerland), Solvay (Belgium), Exxon Mobil Corporation (U.S.), SABIC (Saudi Arabia), DowDuPont (U.S.), LyondellBasell Industries Holdings B.V. (Netherlands), Eastman Chemical Company (U.S.), and BASF SE (Germany).
Aug 2018 - ContiTech A.G. lately has broadened its footprint by opening a 3D blow molding plant worth 11.7 million dollars. This plant is chiefly dedicated for producing 3D blow molded hoses that are used in turbochargers of high performance for automobile makers. By adopting this technology, the company is expecting to reduce pollution emissions during production, catering the requirements for both sustainable liquidity as well as augmenting the production materials’ utilization rate. With this 3D technology, automobile parts manufacturers can shorten the supply chain, augment the production efficiency as well as finally cater the requirements of automobile makers for speedy production and iteration.
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