Abstract:
A method for forming a pattern on a surface of an insulating substrate and a ceramic article comprises: forming a film that comprises any one of ZnO, SnO 2 , TiO 2 and a combination thereof on at least one surface of the insulating substrate; irradiating at least a part of the film by an energy beam to form the pattern in the film.
Abstract:
An electric heater, and an apparatus, a heating and air conditioning system and a vehicle, each comprising the electric heater, are provided. The electric heater comprises an outer frame; a heating core configured to connect to a power source and disposed within the outer frame; and a sealing-waterproof glue member disposed within the outer frame and configured to encase at least one end of the heating core. The heating core further comprises: a plurality of heat dissipating components and heating components arranged alternately, and each of the heat dissipating component is coupled with a heating component via a thermal conductor. Each of the heating components further comprises a core tube and a positive temperature coefficient thermistor disposed in the core tube.
Abstract:
A sound insulation composition and a sound insulation sheet for a vehicle are provided. The sound insulation composition includes 50 to 300 parts by weight of EPDM rubber, 10 to 300 parts by weight of mica powers, 10 to 300 parts by weight of dolomite, 2 to 15 parts by weight of a vulcanized agent, 3 to 60 parts by weight of a compatilizer, 30 to 300 parts by weight of a fire retardant, 0.2 to 3 parts by weight of a cross-linking agent, 10 to 80 parts by weight of a plasticizer, and 100 to 500 parts by weight of barium sulfate. The sound insulation sheet for the vehicle is made of the sound insulation composition mentioned above.
Abstract:
The present disclosure provides a metal-ceramic composite component and method for preparing the same. The metal-ceramic composite component includes a ceramic substrate having a groove on a surface thereof; a metal member filled in the groove, including a main body made of zirconium base alloy, and a reinforcing material dispersed in the main body and selected from at least one of W, Mo, Ni, Cr, stainless steel, WC, TiC, SiC, ZrC, ZrO 2 , BN, Si 3 N 4 , TiN and Al 2 O 3 ; a luminance value L of the metal member surface is in a range of 36.92-44.07 under the LAB Chroma system.
Abstract translation:本公开提供了一种金属陶瓷复合部件及其制备方法。 金属陶瓷复合部件包括在其表面上具有凹槽的陶瓷基板; 填充在槽中的金属构件,其包括由锆基合金制成的主体和分散在主体中并且选自W,Mo,Ni,Cr,不锈钢,WC,TiC,SiC中的至少一种的增强材料 ,ZrC,ZrO 2,BN,Si 3 N 4,TiN和Al 2 O 3; LAB色度系统下的金属构件表面的亮度值L在36.92-44.07的范围内。
Abstract:
A ceramic and a method for preparing a ceramic are provided. The ceramic includes an alumina and an oxygen-containing compound of strontium having a perovskite structure.
Abstract:
Embodiments of the present disclosure are directed to a circuit board. The circuit board comprises: an aluminum-based substrate; an alumina layer formed on at least one surface of the aluminum-based substrate; and a circuit layer formed on the alumina layer. The alumina layer comprises alumina and an element selected from a group consisting of chromium, nickel, a rare earth metal, and a combination thereof.
Abstract:
A defroster and vehicle are provided. The defroster includes: a housing (5) defining an air outlet (4), a heating device disposed in the housing (5), an air blower (1) defining a blowing outlet (11) and disposed in the housing (5), and an air duct (2) defining a duct inlet (22) and a duct outlet (23), the air duct (2) being disposed between the blowing outlet (11) and the heating device so that air blown out from the blower outlet (11) enters the air duct (2) via the duct inlet (22) and goes out of the air duct (2) via the duct outlet (23), then passes through the heating device to exchange heat with the heating device, and is discharged out of the housing (5) via the air outlet (4), wherein the area of the duct inlet (22) is different from that of the duct outlet (23).
Abstract:
The present disclosure relates to a heat dissipation element, a method for manufacturing the heat dissipation element, and an IGBT module. The heat dissipation element includes a heat conductor and a heat dissipation body, where the heat conductor is an aluminum-clad ceramic heat conductor; the heat dissipation body is an aluminum silicon carbon heat dissipation body; the aluminum silicon carbon heat dissipation body is provided with at least one groove; and the aluminum-clad ceramic heat conductor is embedded into the groove through aluminizing in an integral forming manner. The present disclosure further provides a method for manufacturing the foregoing heat dissipation element and an IGBT module including the foregoing heat dissipation element.