Global Liquid Thermal Interface Materials Market Expected to Deliver Dynamic Progression till the end of 2028

The report studies the liquid thermal interface materials market worldwide, especially in North America, Europe, Southeast Asia, India and Other Regions with production, size, growth, revenue, consumption, import and export in these regions. In order to study the various trends and patterns prevailing in the concerned market, Fact.MR has included a new report on liquid thermal interface materials market to its wide online database including upcoming trends and market growth factors through 2028. This research assessment offers a clear insight about the influential factors that are expected to transform the global market in the near future. The insights structured for presenting the target market are procured from both primary research and secondary research, and are utilized for validation that is valuable to investors, manufacturers and new entrants.

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The liquid thermal interface materials market is highly fragmented, with a significant presence of unorganized players. In addition to unorganized players, the regional players also account for a significant market share. Players in the liquid thermal interface materials market are focusing on investments in collaborative research & development and new product launches to consolidate their position in the market. Some of the recent notable developments in the liquid thermal interface materials market include:

  • To capitalize on the growing demand for lithium-ion battery thermal management, Lord Corporation launched new liquid gap fillers to be used in combination with gap pads specifically for electric vehicle batteries which offer improved thermal pathways for heat dissipation in lithium-ion batteries.
  • With innovative liquid thermal interface materials finding extensive consumer base, Henkel, a leading player in the liquid thermal interface materials market launched a cure-in-place liquid gap filler which offers an array of benefits in high-volume and high-value assemblies. Additionally, the cure-in-place liquid thermal interface forms a peelable layer that could be taken off without the need of force protecting the sensitive components of electric circuits.
  • In line with the growing innovation in the thermal interface product manufacturing, WACKER and Fuji Polymer Industries announced collaboration for production of innovative silicon-based thermal interface materials for electronic devices and batteries of electronic vehicles.
  • To overcome the problem of lack of optimal contact in thermal interface materials, researchers have developed a liquid thermal interface material which uses copper and nano particles for efficient thermal conduction.
  • Another research discovered that the combination of thin aluminum foil coated with a non-silicone compound could replace thermal grease as an efficient thermal interface.

Other players profiled in the report include 3M, Indium Corporation, DowDuPont, Laird Technology, Boyd Corporation, Shin-Etsu Chemical Ltd., Parker Hannifin Corp, and Marian Inc.

Additional Questions Answered:

Apart from the aforementioned insights about the liquid thermal interface materials market, the report answers the following vital questions about the liquid thermal interface materials market:

  • Which region accounted for the bulk of the liquid thermal interface materials market share in 2018?
  • What product type will be the most in demand in the liquid thermal interface materials market in 2019?
  • Based on the application, what segment will hold a significant share of the liquid thermal interface materials market?
  • What are the lucrative opportunities on offer in the liquid thermal interface materials market?
  • What are the challenges that the liquid thermal interface materials market is facing?

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The report on liquid thermal interface materials market is a consequence of an elaborate and robust research methodology. A two-step research process involving primary and secondary researches was employed to obtain valuable insights into the liquid thermal interface materials market. While primary research involved interviewing experts from the liquid thermal interface materials market, secondary research was conducted by thoroughly studying liquid thermal interface market trade journals, paid sources, and other publications related to the liquid thermal interface materials market. Results from both the steps were cross-referenced to produce an accurate forecast of the liquid thermal interface materials market.

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