Blending non-flammable R125 with low GWP R32 and R1234yf reduces flammability for HVAC safety without increasing global warming potential.
Mechanosynthesis confines phase change materials in porous inorganic matrices, resolving manufacturing complexity and leak risks.
A photocurable acrylic-based thermal conductive composition uses a synergistic antioxidant blend to maintain flexibility and conductivity.
Sulfur-containing aromatic additives stabilize base oils in chiller systems.
A composite material pairs attapulgite with salt hydrates to achieve high adsorption capacities and energy density.
Neopentyl polyol esters resist moisture-induced degradation and reduce corrosion byproducts compared to conventional PAG lubricants.
Silicate compounds react with flux residues to prevent aluminum hydroxide gel precipitation and maintain corrosion protection.
A polyol ester refrigeration oil composition uses specific branched fatty acids to achieve stable lubricity and cooling performance.
Alkali soluble polymers inhibit sodium acetate anhydrous crystal formation, preventing thermodynamic instability during repeated heating cycles.
Benzaldazine polymer combined with inorganic powder creates thermal interface materials.
A thermally conductive composition balances thermal conductivity and processability through optimized filler particle size ratios.
Low freezing point surfactant prevents water-oil separation, preserving electrical insulation in electrified vehicle cooling systems.
A polymer composition uses carbon fibers and a toughener to achieve improved thermal conductivity.
A thermally conductive silicone resin composition utilizes specific viscosity parameters to ensure uniform filler distribution.
Fumed aluminium oxide reduces filler sedimentation while maintaining thermal conductivity and processability.
Replacing fossil glycols with bio-based 1,3-propanediol and tailored aliphatic acids resolves toxicity while ensuring corrosion protection.
A thermally conductive silicone sheet uses a multi-size filler composition to achieve high tensile strength without reinforcement materials.
A composite treatment combines organosilicon waterproofing agents with acrylate ester polymer emulsions to stabilize soil surfaces.
A thermal interface material combines high conductivity fillers with a compliant polymer matrix to enable efficient heat transfer.
A refrigerant blend combines R-125, R-134a, R-32, and 1234ze to deliver cooling performance.
Composite aerogel layers boost infrared emission in the atmospheric window while maintaining transparency for display cover windows.
A heat transfer fluid concentrate combines carboxylates, phosphates, and azole compounds to protect cooling system components.
A cis-1,1,1,4,4,4-hexafluoro-2-butene and trans-1,2-dichloroethylene blend provides effective cooling in centrifugal chillers.
Quaternary ammonium surfactants form protective coatings on metal surfaces to inhibit corrosion in harsh industrial environments.
Acrylic resin encapsulates hydrocarbon compounds to prevent liquid leakage during phase change.
Aqueous heat transfer fluid uses phosphonate functional siliconate to stabilize silica colloidal particles.
Undercooled liquid metallic core-shell particles solidify within a polymer matrix to enable autonomous self-strengthening and shape reconfigurability.