Bis-trialkoxysilyl imides crosslink silica networks to form hybrid aerogels with high compressive modulus.
A multi-layer insulating lining uses thermally activated material to expand under heat, reducing thermal conductivity and protecting battery housings.
Porous ZrO2 framework with dissimilar material coatings scatters phonons to reduce thermal conductivity.
Vacuum insulated molten silicon tanks minimize radiative and conductive losses for long-term renewable energy storage.
A heat sink element limits thermal transmission through phase transitions or gas layer separation.
A thermally insulating pipe clamp uses a sleeve-shaped sound damping element between the retainer and clamp body to isolate vibrations.
Electrically conductive welding fuses thermoplastic inner coating and casing materials, preventing seawater diffusion at high temperatures.
Thermal insulators or slotted lamellae separate adjacent channels carrying fluids at different temperatures, reducing heat losses in gas coolers.
Short fibers reinforce cork granules in a binding agent, creating a uniform crust that resists cracking under high heat flows.
Hydrophobic fibers in a heat transfer suppression sheet resist electrolyte infiltration, maintaining insulation and preventing short-circuits.
A multi-layer pipe shell structure combines a wound outer layer with a cut inner layer to create stable thermal insulation.
A single wall textile sleeve coated with silicone rubber and zinc borate absorbs heat and forms an insulating char layer to meet AS 1055 Class A requirements.
Lattice structures use flexure-mounted tabs to manage thermal expansion, avoiding topology optimization local minima.
Radial slicing of wound aerogel mats eliminates manual wrapping, resolving installation complexity for small diameter pipes.
Adjustable vacuum levels in a double pipe unit enable localized heat exchange while maintaining thermal insulation.
Bulged woven fabric dampens natural oscillations in metal hose assemblies, extending service life by eliminating material fatigue from conventional springs.
A conical forcing device compacts insulating material onto a moving sheet around circular elements.
Internal flow passages circulate fluid to manage temperature gradients, reducing transient thermal stresses and enabling faster ramp rates.
A plate heat exchanger uses a dedicated leak detection layer and chemical analysis unit to identify process medium penetration through partition plates.
Consolidating multiple drains into one nozzle detects leakage immediately while reducing device complexity and preventing hazardous fluid accumulation.
A coaxial duct maintains a vacuum between stainless steel pipes to insulate steam flow without solid insulation materials.
A nested tank cold storage device accumulates thermal energy using phase change materials to support building supply systems.
Co-extruding insulation with the outer sheath eliminates winding complexity while preventing condensation that causes armour corrosion in deepwater pipes.
Segmented insulation on short exhaust branches maintains catalytic temperatures while eliminating unnecessary cover size and attachment stress.
A binder-free thermal insulator uses metal oxide fine particles and reinforcing fibers to create a bridge structure between the particles.
Heat-expanded foaming fills gaps in aramid sleeves, reducing heat loss from electric vehicle lines and extending battery range.
Open-cell rigid polyurethane foam covers pipe joints to provide impact resistance while minimizing buoyancy for underwater pipelines.
A suspended external tube with an inner tube circulates heat transfer fluid to manage thermal energy in electric devices.
Binder volatilization creates porosity to block heat propagation and prevent thermal runaway.
Segmented union nut channels high-pressure fuel leaks outside the cylinder head to prevent motor oil contamination and engine damage.
A flexible bag surrounds the inner pipe during insulation injection to ensure uniform quality.
A composite pipe insulation structure with a pre-applied protective jacketing layer bonded via sodium silicate prevents corrosion under insulation.
Segmented cylindrical sheaths slide within a corrugated tube to reduce pressure drop in long flexible pipes transporting cryogenic fluids.
A lightweight cork and phenolic resin composite reduces density while maintaining ablative insulation.