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 method for metalizing a polymer substrate and a polymer article prepared thereof. First a polymer substrate having a base polymer and at least one metal compound dispersed in the base polymer is provided. A surface of the polymer substrate is then irradiated with an energy beam such that a water contact angle of the surface of the polymer substrate is at least 120°. And then the surface of the polymer substrate is subjected to chemical plating.
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:
A permanent magnetic material comprising a Nd-Fe-B alloy and an additive including at least a cobalt ferrite, and a method for preparing the permanent magnetic material are provided. The method comprises the following steps: mixing the Nd-Fe-B alloy and the additive including at least a cobalt ferrite to obtain a mixture; magnetically orienting and pressing the mixture in a magnetic field; and sintering and tempering the mixture in vacuum or under the protection of inert gas.
Abstract:
An amorphous alloy composite material comprises an amorphous and continuous matrix phase, and a plurality of equiaxed crystalline phases as reinforcing phases dispersed in the matrix phase. Oxygen content in the amorphous alloy composite material may be less than 2100 ppm. A method of preparing said material is disclosed.
Abstract:
Metalized plastic substrates and a manufacturing method thereof are provided herein. The method includes providing a plastic substrate made of a plastic material, in which a plurality of accelerator particles is dispersed. The accelerator particles are made of a compound selected from the group consisting of: CuFe 2 O 4-6 , Ca 0 . 25 Cu 0.75 TiO 3-β , and TiO 2-σ , and δ, β, σ is deemed to be 0.05≤δ≤0.8, 0.05≤β≤0.5, and 0.05≤σ≤1.0. The method includes the step of removing plastic material in a determined area of a surface of the plastic substrate. The method further includes plating the exposed surface of the plastic substrate to form a first metal layer, and then plating the first metal layer to form a second metal layer.
Abstract translation:金属化塑料基板及其制造方法在此提供。 该方法包括提供由塑料材料制成的塑料基材,其中分散有多种促进剂颗粒。 加速剂颗粒由选自CuFe 2 O 4-6,Ca 0的化合物制成。 25 Cu 0.75 TiO 3-²和TiO 2Ã和²²被认为是0.05‰¤‰¤0.8,0.05‰¤‰‰0.5和0.05‰¤‰¤1.0。 该方法包括在塑料基板的表面的确定区域中去除塑料材料的步骤。 该方法还包括电镀塑料基板的暴露表面以形成第一金属层,然后电镀第一金属层以形成第二金属层。
Abstract:
A composite magnetic material and a method for preparing the same are provided. The composite magnetic material comprises Nd-Fe-B alloy and Fe-base soft magnetic alloy having the general formula of Fe 100-x-y-z A x R a Si y B z , wherein A is at least one element selected from Cu and Au, R is at least one element selected from the group consisting of Ti, Zr, Hf, Mo, Nb, Ta, W and V, x ranges from 0 to 3, y ranges from 0 to 20, a ranges from 0 to 10, and z ranges from 2 to 25. The magnetic energy product and the residual magnetism of the composite magnetic material are both improved.