Abstract:
There is provided a material treatment method using laser ablation capable of easily controlling the laser pulse width and effectively performing treatment with a high accuracy. When a two-logarithm graph is expressed by a horizontal axis indicating the laser pulse width in pico seconds and a vertical axis indicating the ablation threshold value in J/cm^2, a material having a region where the two-logarithm graph has a rectilinear shape with gradient of 0.5 or below is subjected to treatment by a pulse laser beam having a laser pulse width within the region.
Abstract translation:提供了一种使用激光烧蚀的材料处理方法,其能够容易地控制激光脉冲宽度并且以高精度有效地进行处理。 当以对数曲线表示以水平轴表示激光脉冲宽度(以微微秒为单位)和垂直轴表示消融阈值(J / cm ^ 2)时,具有两个对数图线具有直线的区域的材料 通过具有该区域内的激光脉冲宽度的脉冲激光束对具有0.5或更小的梯度的形状进行处理。
Abstract:
본 발명은, 전극(4) 혹은 회로 또는 전극(4) 및 회로가 형성된 기능부(3)를 가지는 다공질수지막(2)의 상기 기능부(3)를 둘러싸는 주변부에, 상기 기능부(3)의 높이와 다른 높이의 단차부(5)가 형성되고, 또한, 상기 단차부(5)의 면 위에 프레임판(6)이 배치되어 있는 복합 다공질 수지기재(1)이다. 본 발명에 의해, 전극 및/또는 회로가 형성된 다공질 수지기재에, 상기 다공질 수지기재의 탄성이나 도통 등의 성능을 손상시키지 않고, 강성(剛性)이 있는 프레임판을 장착한 구조의 복합 다공질 수지기재가 제공되는 것을 특징으로 한다.
Abstract:
A heat resistant and cold resistant anisotropic conductive sheet (8) suitable for connection of an electrode. The anisotropic conductive sheet comprises an electrically insulating film of synthetic resin exhibiting conductivity in the thickness direction as a basic film (1). The basic film has a plurality of cavities (3) formed in the thickness direction wherein the cavity is opened in the direction of one major surface of the basic film and closed in the direction of the other major surface. A metal is adhering to the closed portion (2a) and the inner wall (2b) of the cavity and when an electrode (7) is touched externally to the closed portion (2a) of the cavity, the cavity opening major surface and the touching electrode (7) are conducted electrically through the adhering metal.
Abstract:
본 발명은, 불소계 폴리머를 함유하는 수지재료로 형성된 다공질 수지기재에, 두께방향으로 관통하는 적어도 1개의 천공(穿孔)을 형성하는 공정 1; 천공의 내부벽면에, 알칼리금속을 함유하는 에칭액을 접촉시켜서 에칭처리하는 공정 2; 에칭처리에 의해 생긴 변질화층에, 산화력을 가지는 화합물 또는 그 용액을 접촉시켜서, 상기 변질화층을 제거하는 공정 3을 포함한 천공된 다공질 수지기재의 제조방법이다. 상기 천공의 내부벽면을 도전화하는 다공질 수지기재의 제조방법을 특징으로 한 것이다.
Abstract:
A production method for a porous molding in which complicated and fine penetrated portions and recesses are pattern-worked. A pattern-worked porous molding or non-woven fabric in which a plated layer is selectively formed on the surfaces of penetrated portions and recesses. A mask having pattern-form penetrated portions is disposed on at least one surface of a porous molding or non-woven fabric, and fluid or fluid containing abrasive grains is sprayed over the mask to form penetrated portions or recesses or the both of them, to which the opening shape of the mask's penetrated portion is transferred, on the porous molding or non-woven fabric. A porous molding or non-woven fabric and an electric circuit components or the like in which a plated layer is selectively formed on the surfaces of penetrated portions or recesses or the both of them.
Abstract:
A stretched polytetrafluoroethylene porous article having fine pores formed therein, wherein fine pores having a pore diameter greater than the average pore diameter of said stretched polytetrafluoroethylene porous article are formed by the irradiation with a pulse laser beam having a pulse width of 10 picoseconds or less, and a fine porous structure of the wall surface of said fine pore is not broken and is substantially retained; a method for producing the stretched polytetrafluoroethylene porous article; and a method of ablation machining.
Abstract:
A method of manufacturing a drilled porous resin base material with conductive drilled inner wall surfaces, comprising a step 1 for penetrating liquid or solution into the porous structure of the porous resin base material, a step 2 for forming solid matter from the penetrated liquid or solution, a step 3 for forming a plurality of drilled holes passed from the first surface to the second surface of the porous resin base material having the solid matter in the porous structure, and a step 4 for melting or dissolving the solid matter and removing it from the porous structure. The method also comprises the step for selectively adhering catalysts to only the inner wall surfaces of the drilled holes and adhering a conductive metal to the inner wall surfaces.
Abstract:
An anisotropic electrically conductive film comprising a base film in the form of a porous film made of synthetic resin and having an electric insulation property, and an electrically conductive metal adhered to a resin section of porous construction in such a manner as to penetrate from a first surface to a second surface at a plurality of places on the base film, wherein electrically conductive sections which can be made electrically conductivity in the direction of the film thickness are independently provided; and a method of producing the same.