Market Highlights
Global Fluorinated Plasma Surface Treatment Market is
estimated to be valued at USD 3,071.78 Million by 2025 and record
a CAGR of over 13.5% during the forecast period.
The global fluorinated plasma surface treatment market is expected to
witness a surging growth in the coming assessment period owing to its
widespread use in diverse end-use industries such as automotive, textile,
aerospace, consumer goods, electronic devices, and medical. With the ongoing
trends to develop cost-efficient and lightweight automotive components, the
demand for polymers such as polypropylene and thermoplastic polyolefins
(TPO) has increased.
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These polymers require high-quality coatings for decorative and
protective purposes. But these substrates lack in adhesion, which exhibits poor
solubility, poor surface wetting, and lack of bonding between an organic
coating and the substrate. Thus, plasma surface treatment of these polymer
substrates is essential as it helps improve the adhesion and the bond strength
of coatings on the substrate. Moreover, the automotive parts that are exposed
to high temperatures face challenges to bond with all types of silicones and adhesives.
Plasma surface treatment is used to increase the bond strength of adhesives
used in headlamp assemblies, mirrors, gaskets, and filters. Furthermore, with
the advent of advance processes such as the atmospheric plasma process that
caters to diverse end-use applications, fluorinated plasma surface treatment is
expected to witness significant growth in the medical and aerospace industries.
Segmental Analysis
According to MRFR analysis, the global fluorinated plasma
surface treatment market has been segmented based on process, type,
application, substrate type, and region.
Based on process, the global fluorinated plasma surface
treatment market has been segmented into low-pressure plasma and atmospheric
plasma. The low-pressure plasma treatment accounts for the largest share of
over 65% in the global market in 2018. The segment is expected to record a
healthy growth of 13.7% in the forecast period owing to its extensive
application as surface cleaning, surface activation, coating, and surface
etching in various end-use industries.
Based on type, the global market has been segmented into
synthetic fibers, natural fibers, plastic films, metal, and others. Among
these, the synthetic fiber segment held the maximum share of the global market.
The segment consists of acrylonitrile butadiene styrene/thermoplastic
polyurethane (ABS/TPU), high-density polyethylene (HDPE), polyamide (PA),
polypropylene (PP), and others. These polymers are widely used in automotive
components, medical devices, textiles, and electronic components. Therefore,
the demand for fluorinated plasma surface treatment is high in synthetic fibers
compared to other types. Furthermore, it is expected to witness a growth of
over 14% during the forecast period, 2019–2025, and reach over USD 1,300
million by 2025.
Based on application, the global market has segmented into
leather, textile, and others. The others segment, among other applications,
accounted for the largest market share. The widespread usage of fluorinated
plasma surface treatment in the exterior and interior parts of automobiles,
medical devices, electronics components, and consumer goods is expected to
boost the growth of this segment in the forecast period. It is expected to
witness a healthy CAGR of 13.6% between 2019–2025.
Based on substrate type, the global market has been segmented into
garments, household, protective, medical, automotive, shoes & bags, and
others. The others segment includes the packaging, electronics, inkjet &
print, glass products, aerospace, and marine industries. The others segment is
expected to witness the fastest growth of CAGR 14% during the forecast period
owing to the extensive use of plasma fluorinated surface treatment in the
packaging industry. The medical segment was the second-fastest segment with
CAGR of over 13% between 2019–2025 owing to the increasing healthcare
investments and booming aging population.
Regional Analysis
Geographically, the global fluorinated plasma surface
treatment market has been segmented into Asia-Pacific, Europe, North
America, and the rest of the world. As per MRFR analysis, Europe was the
dominant regional market, accounting for the largest share of about 40% in 2018
and is expected to register a CAGR of around 13% during the forecast period.
Europe is followed by North America, which accounted for the
second-largest share of the fluorinated plasma surface
treatment market in 2018. The North American market held a share of around
30% in 2018. Asia-Pacific is expected to witness the fastest growth registering
a 15% CAGR over the forecast period. The rest of the world is also likely to
record moderate growth during the forecast period, 2019–2025.
Key Findings of the Study
- The
global fluorinated plasma surface treatment market was valued at
USD 1,270.87 million in 2018 and is expected to register a CAGR of 13.5%
to reach around USD 3,071.78 million by the end of 2025.
- Based on
process, the low-pressure plasma segment held the largest share
of 66.7% by value in 2018 and is expected to register a CAGR of over 13.7%
during the forecast period.
- By type,
the synthetic fibers segment is estimated to be the largest
segment of the global market, which accounted for 41.6% value share in
2018.
- Based
on application, the others segment held the largest share
of 71.9% by value in 2018 and is expected to register a CAGR of over 13.6%
during the forecast period.
- Based on
substrate, the others segment witnessed the fastest growth of 14.2% and is
expected to reach a value of USD 1,018.8 million by 2025
- Europe
accounted for the largest share of 37% by value in 2018.
Key Players
Market Research Future (MRFR) identified the following companies
as the Key Players in the Global Fluorinated Plasma Surface
Treatment Market: Nordson Corporation (US), Plasmatreat (Germany), AcXys
Technologies (France), Enercon Industries Corporation (US), Plasma Etch, Inc
(US), Plasmalex sas (France), AST Products, Inc (US), Henniker Plasma (UK), 3DT
LLC (US), and Eltech Engineers Pvt Ltd (China).
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