Friction Modifier Additives Market
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Report Id : REP-GB-1656<br />
Published On : June-2016<br />
Category : Chemicals & Materials<br />
<strong>Friction</strong> <strong>Modifier</strong> <strong>Additives</strong> <strong>Market</strong>: Global Industry<br />
Analysis and Opportunity Assessment 2016 - 2026
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Research Methodology (1/2)<br />
SYSTEMMATIC RESEARCH APPROACH<br />
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Primary Research #<br />
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<strong>Friction</strong> <strong>Modifier</strong> <strong>Additives</strong> <strong>Market</strong><br />
Global Demand for <strong>Friction</strong> <strong>Modifier</strong>s <strong>Additives</strong> to Reach 174 Thousand Tonnes in 2016,<br />
Representing <strong>Market</strong> Value Worth US$ 1.02 Bn: Study<br />
Global demand for friction modifiers additives will reach about 174 thousand tonnes in 2016, up from<br />
167 thousand tonnes in 2015. This will represent a market value of US$ 1,027 Mn, an increase of US$<br />
62 Mn from 2015. While wide-ranging applications, most prominently as lubricants in automotive<br />
sector, will continue to fuel demand, availability of affordable alternatives, such as dispersant<br />
additives, corrosion inhibitors and detergent additives will continue to pose challenges.<br />
By product type, inorganic friction modifier additives will continue to outsell organic, reaching about<br />
597 thousand tonnes in 2016. Among the inorganic friction modifier additives, MoDTC will continue to<br />
account for the highest demand, reaching 275 thousand tonnes in 2016. Among the three types of<br />
organic friction modifier additives-polymers, fatty acids, and esters & amides-polymers are witnessing<br />
high demand from the automotive sector in North America and Western Europe. This trend is<br />
expected to gain further momentum in 2016, propelling the growth of the overall market.<br />
Automotive lubricants will continue to be the largest application segment for friction modifier<br />
additives in 2016, witnessing a growth rate of about 6% over 2015, representing a market value worth<br />
US$272 Mn.
<strong>Friction</strong> <strong>Modifier</strong> <strong>Additives</strong> <strong>Market</strong><br />
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Asia Pacific excluding Japan (APEJ) will maintain its numero uno position in 2016, with total demand<br />
expected to reach around 48 thousand tonnes. Demand will be supported by the region’s expansive<br />
automotive sector, especially in the populous countries of China and India. These two countries will<br />
remain key to the growth of the global friction modifiers additives market in 2016 and beyond, as<br />
consumers in these countries put a lot of emphasis on the fuel efficiency of a vehicle while making<br />
buying decisions. In addition to the region’s behemoth automotive industry, strong demand from the<br />
plethora of end-use industries in the region will continue to support demand. North America will<br />
continue to remain the second largest market for friction modifiers additives, representing a 22.5%<br />
share of global revenues.<br />
Key players operating in the global friction modifiers additives market are Chemtura Corporation,<br />
Multisol, Archoil, International Lubricants, Inc., Afton Chemical Corporation, and Wynn’s.
<strong>Friction</strong> <strong>Modifier</strong> <strong>Additives</strong> <strong>Market</strong><br />
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Long-term Outlook: The long-term outlook on the friction modifiers additives market remains positive<br />
with global volume witnessing a CAGR of 5.1% through 2026, whereas global revenues expanding at<br />
6.9% through 2026.
Table of Content<br />
1.Global <strong>Friction</strong> <strong>Modifier</strong> <strong>Additives</strong> <strong>Market</strong> - Executive Summary<br />
2.Assumptions & Acronyms Used<br />
3.Research Methodology<br />
4.<strong>Market</strong> Overview<br />
4.1.Introduction<br />
4.1.1.<strong>Friction</strong> <strong>Modifier</strong> <strong>Additives</strong> <strong>Market</strong> Definition<br />
4.1.2.<strong>Friction</strong> <strong>Modifier</strong> <strong>Additives</strong> <strong>Market</strong> Taxonomy<br />
4.2.Macroeconomic Indicators<br />
4.3.<strong>Market</strong> Dynamics<br />
4.3.1.Drivers<br />
4.3.2.Restraints
Table of Content<br />
4.4.<strong>Friction</strong> <strong>Modifier</strong> <strong>Additives</strong> Supply Demand Scenario Analysis<br />
4.5.<strong>Friction</strong> <strong>Modifier</strong> <strong>Additives</strong> <strong>Market</strong> Forecast (2015-2026)<br />
4.6.Regional Average Pricing Analysis<br />
4.7.Global <strong>Friction</strong> <strong>Modifier</strong> <strong>Additives</strong><strong>Market</strong> Snapshot<br />
4.7.1.<strong>Friction</strong> <strong>Modifier</strong> <strong>Additives</strong> <strong>Market</strong> Share By Type<br />
4.7.2.<strong>Friction</strong> <strong>Modifier</strong> <strong>Additives</strong> <strong>Market</strong> Share By Application<br />
4.7.3.<strong>Friction</strong> <strong>Modifier</strong> <strong>Additives</strong> <strong>Market</strong> Share By Region<br />
4.8.<strong>Friction</strong> <strong>Modifier</strong> <strong>Additives</strong> <strong>Market</strong> Trends<br />
5.Global <strong>Friction</strong> <strong>Modifier</strong> <strong>Additives</strong><strong>Market</strong> Analysis, By Type<br />
5.1.Introduction<br />
5.1.1.Y-o-Y Growth Comparison, By Type<br />
5.1.2.Basis Points (BPS) Analysis, By Type
Table of Content<br />
5.2.<strong>Market</strong> Forecast By Type<br />
5.2.1.Organic <strong>Friction</strong> <strong>Modifier</strong> <strong>Additives</strong><br />
5.2.1.1.Polymers<br />
5.2.1.1.1. Absolute $ Opportunity<br />
5.2.1.1.2. <strong>Market</strong> Value & Volume Forecast, By Region<br />
5.2.1.2.Fatty Acids<br />
5.2.1.2.1. Absolute $ Opportunity<br />
5.2.1.2.2. <strong>Market</strong> Value & Volume Forecast, By Region<br />
5.2.1.3.Esters & Amides<br />
5.2.1.3.1. Absolute $ Opportunity<br />
5.2.1.3.2. <strong>Market</strong> Value & Volume Forecast, By Region<br />
5.2.2.Inorganic <strong>Friction</strong> <strong>Modifier</strong> <strong>Additives</strong><br />
5.2.2.1.Molybdenum Dithiocarbamte<br />
5.2.2.1.1. Absolute $ Opportunity<br />
5.2.2.1.2. <strong>Market</strong> Value & Volume Forecast, By Region
Table of Content<br />
5.2.2.2.Molybdenum Disulphide<br />
5.2.2.2.1. Absolute $ Opportunity<br />
5.2.2.2.2. <strong>Market</strong> Value & Volume Forecast, By Region<br />
5.2.2.3.Graphite<br />
5.2.2.3.1. Absolute $ Opportunity<br />
5.2.2.3.2. <strong>Market</strong> Value & Volume Forecast, By Region<br />
5.3.<strong>Market</strong> Attractiveness Analysis, By Type<br />
5.4.Prominent Trends<br />
6.Global <strong>Friction</strong> <strong>Modifier</strong> <strong>Additives</strong><strong>Market</strong> Analysis, Application<br />
6.1.Introduction<br />
6.1.1.Y-o-Y Growth Comparison, By Application<br />
6.1.2.Basis Points (BPS) Analysis, By Application
Table of Content<br />
6.2.<strong>Market</strong> Forecast By Application<br />
6.2.1. Automobile Lubricants<br />
6.2.1.1.Absolute $ Opportunity<br />
6.2.1.2.<strong>Market</strong> Value & Volume Forecast, By Region<br />
6.2.2. Industrial Lubricants<br />
6.2.2.1.Absolute $ Opportunity<br />
6.2.2.2.<strong>Market</strong> Value & Volume Forecast, By Region<br />
6.2.3. Aviation Lubricants<br />
6.2.3.1.Absolute $ Opportunity<br />
6.2.3.2.<strong>Market</strong> Value & Volume Forecast, By Region<br />
6.2.4. Energy/ Power Generation Lubricants<br />
6.2.4.1.Absolute $ Opportunity<br />
6.2.4.2.<strong>Market</strong> Value & Volume Forecast, By Region<br />
6.2.5. Rail Lubricants<br />
6.2.5.1.Absolute $ Opportunity<br />
6.2.5.2.<strong>Market</strong> Value & Volume Forecast, By Region
Table of Content<br />
7.Global <strong>Friction</strong> <strong>Modifier</strong> <strong>Additives</strong> <strong>Market</strong> Analysis, By Region<br />
7.1.Introduction<br />
7.1.1.Y-o-Y Growth Projections, By Region<br />
7.1.2.Basis Points (BPS) Analysis, By Region<br />
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