See how tube expansion portions with bulge structures improve heat transfer tube fitting precis
See how an elastic traverse member and adaptive arms enable one connecting element to secure tu
See how a modular evaporator with replaceable fan module reduces vertical space, minimizes inju
See how parallel seam channels between hygroscopic layers and plates reduce surface tension, en
See how a contoured aluminum sheet covers tube and magnet to improve heat transfer while reduci
See how a shared air supply box and single filter serve both double-pipe and twin-pipe systems,
See how dual concentric rings of fin tubes with wiped lateral portions pack heat transfer area
See how plastic deformation creates a force-closed coil-housing connection to prevent refrigera
See how a segmented dual-vessel defrost water receptacle increases collection capacity and evap
See how float-operated valves and bimetallic temperature control eliminate electrical wiring in
See how a thermoelectric cooling system activates forced convection only during transient heat
See how a segmented plastic-and-metal bracket assembly secures heat exchanger coils with varyin
See how alternating microchannel coils from separate circuits maximize heat exchange surface ar
See how a manifold-based loop heat pipe system recovers exhaust heat in air ducts, enabling reu
See how vertically immersed cooling elements with a brushing-off plate reduce food cooling time
See how micro-channel geometry and distributed axial fans with plenum chambers resolve uneven a
See how a built-in convector uses ventilation supply air for forced convection, eliminating fan
See how a resin intermediary layer prevents galvanic corrosion between aluminum heat exchanger
See how multi-stage evaporative cooling with wetted heat exchanger surfaces reduces air volume
See how modular segmentation and corrugated tubes enable portable fluid heating at remote locat
See how localized soldering paste application and segmented heating enable aluminum-copper heat
See how vertically immersed cooling elements with an automatic scraper plate reduce cleaning ef
See how extended cut-out recesses and downstream slits even fin temperature distribution to sup
See how a heat exchanger tube with decreasing cross-sectional area increases flow velocity and
See how a direct forced draft cooling tower uses external liquid collection and V-shaped trough
See how direct heater-fin contact and segmented heating zones enable rapid evaporator defrostin
A replaceable fan module and venturi ring cut walk-in cooler repair time while reducing storage-space loss and injury risk.
Warmed water from the cooling coil is reused to reheat dehumidified air, cutting re-heat energy and improving chiller efficiency.
A bimetal regulator, heat exchanger plate, and float valve cool cast parts without electricity, cutting installation cost in explosive areas.
A recessed thin-wall tube fit improves thermal contact while preserving acoustic damping area, reducing bulk and cost in room heat exchangers.
A replaceable fan module lets walk-in cooler evaporators save space, reduce injury risk, and speed repairs without full shutdown.
A hydrophilic porous structure uses capillary action and controlled pore sizes to boost evaporative cooling while preventing gravity-driven leakage.
An inclined heat exchanger overlapping a cross-flow fan cuts unit depth for underfloor ventilation while maintaining airflow and heating or cooling capacity.
Alternating counter-flow air paths precool humid inlet air and reheat dry outlet air, improving dehumidification with heat reuse.
Temperature-based fan speed control cuts refrigerator condenser noise and power use while maintaining cooling under changing heat loads.
An idle refrigerant circuit fan cuts airflow over the active condenser to hold discharge pressure at low ambient temperatures without variable-speed motors.
A pressurized mist and vacuum-driven heat exchanger cool air indirectly while keeping water out of the conditioned space and limiting mold risk.
A tapered cross-flow heat exchanger cuts airflow restriction and pressure drop in dehumidifiers while improving heat exchange and drainage.
Grooves linking tube-plate apertures spread flux into hard-to-reach joints, improving solder wetting and fluid-tight heat exchanger assembly.
Folded fins spanning multiple tube banks improve water drainage on dense horizontal flattened tubes, reducing corrosion and airside loss.
Sc and Zr alloying helps brazing-sheet aluminium retain post-braze strength at 260-300°C while preserving corrosion resistance.
Flattened fins and snap-fit clamping let tube stays support finned heat exchanger tubes without contact between adjacent tubes or the framework.
A flat-surface friction stir tool cuts recessed grooves and burrs in liquid-cooling jacket joining while improving weld strength.
Controlled Mn, Si, Fe, Cr, and Zr levels raise post-braze strength while preserving formability and corrosion resistance in brazed heat exchangers.
A retaining feature locks the header tab to the reservoir foot, resisting pressure, spring-back, and thermal cycling in heat exchangers.
A single anticorrosive film on copper refrigerant pipes suppresses acidic and ant-nest-like corrosion to reduce leaks and improve durability.
A variable-radius bending die spreads forming load across heat transfer fins, preventing buckling and lowering air flow resistance.
Folded molded frames and brazing replace fin insertion, preventing inner-fin deformation and improving intercooler tube heat dissipation.
Pipe shrinking and expanding secures a brazing ring on a heat exchanger return tube, preventing ring escape during brazing and improving assembly reliability.
Adhesive-bonded plate elements are hydroformed into fluid channels, cutting heat exchanger manufacturing energy, cost, and flux use.
Dimples along the tube joint increase stiffness to prevent over-bending, keep vertical legs aligned, and improve brazing reliability.
Flow blocks and a corrugated insert stop end bypass flow in flattened heat exchanger tubes, boosting turbulence and heat transfer.
Cesium flux and Mg-alloy clad plates enable durable internal and external brazed joints while limiting oxidation and thermal deformation.
Flattened fin sections and snap-fit clamping let tube stays stabilize finned tubes and prevent fin engagement with adjacent tubes or framework.
A dual-layer Al-Si and Al-Si-Mg brazing sheet controls melting and MgO growth to keep filler metal effective in complex open-part joints.
A tailored aluminum core alloy lowers galvanic corrosion at brazed joints, extending automotive heat exchanger life without losing strength.
An internal aluminum solder layer between thicker cover layers enables butt-joint soldering while reducing burn-through and surface defects.
Flexible polymer membranes expand under fluid pressure to fit tight spaces, increase heat-transfer area, and cut weight and energy use.
A Mn-rich aluminium alloy sheet helps brazed heat exchanger headers keep post-braze strength, formability, and corrosion resistance.
Smaller punch-die gaps at flat-hole ends lower local burring height, reducing stress concentration, cracking, and brazing instability.
Wire bumps disturb the spent-liquor film to boost evaporation heat transfer while allowing easier cleaning of fouling-prone tubes.
Helical weld ridges on a falling-film tube create turbulence to limit scaling, improve heat transfer, and allow cleaning without surface damage.
Electroforming over a sacrificial mold creates a monolithic heat exchanger with localized strength and heat-transfer zones, cutting assembly complexity.
Machining a box header from a solid metal slab cuts seam welding, weld inspection time, cost, and joint stress in air-cooled heat exchangers.
A roller conveyor and pushing cylinder split tube insertion into two stages, handling long hairpin tubes in a more compact heat exchanger line.
Corrugated reinforcement folds help position and braze internal inserts in folded tubes, improving pressure strength and sealing reliability.
Upward bent tabs fitted into plate cutouts temporarily align stacked heat exchanger plates during brazing without costly pins or welding marks.
Wire bumps disturb the spent-liquor film to improve evaporation heat transfer while limiting scaling and enabling gentler tube cleaning.
Mg migrates from the aluminum alloy to break oxide films, enabling fluxless Al-Si brazing while preserving corrosion resistance.
Helical or segmented weld ridges create falling-film turbulence to boost evaporation heat transfer while keeping spent-liquor tubes cleanable.