Abstract:
An article of manufacture includes a substrate having an outer surface clad with a metal construct including one or more continuous metal layers, at least one of which is an amorphous layer or a microcrystalline layer having a grain size below 5000 nm. A bonding layer is provided between the substrate and the layered metallic construct so that the bonding layer is in direct contact with the substrate and with the layered metallic construct. The bonding layer is made of a substantially fully cured resin including at least 10% of a rubber. The layered metallic construct has peel strength greater than 10N/cm. Also provided is a process for making the article including coating an article outer surface with a bonding layer and a layered metallic construct. The bonding layer is substantially fully cured before the layered metal construct is bonded to the article. The coated article is annealed.
Abstract:
The invention is directed to metallized materials that have a metallic coating on one or more surfaces that show improved barrier layer coating adhesion and heat seal properties. These materials include a coating of vinylidene copolymer of at least 80 % vinylidene chloride, at least 4 % of an ethylenically unsaturated acrylic monomer, as well as coating additives for modifying film properties.
Abstract:
Methods for fabricating metallic microneedles are disclosed. One method comprises providing a mold pillar; forming an apertured electrically-conductive layer over the mold pillar; and depositing a metal layer over the electrically-conductive layer to provide an apertured microneedle. Another method comprises providing a mold pillar; depositing a first metal layer over the mold pillar to provide a first microneedle; removing the first microneedle from the mold pillar; and depositing a second metal layer over the mold pillar to provide a second microneedle.
Abstract:
An article of manufacture includes a substrate having an outer surface clad with a metal construct including one or more continuous metal layers, at least one of which is an amorphous layer or a microcrystalline layer having a grain size below 5000 nm. A bonding layer is provided between the substrate and the layered metallic construct so that the bonding layer is in direct contact with the substrate and with the layered metallic construct. The bonding layer is made of a substantially fully cured resin including at least 10% of a rubber. The layered metallic construct has peel strength greater than 10N/cm. Also provided is a process for making the article including coating an article outer surface with a bonding layer and a layered metallic construct. The bonding layer is substantially fully cured before the layered metal construct is bonded to the article. The coated article is annealed.
Abstract:
Matériaux métallisés dont une ou plusieurs surfaces sont dotées d'un enduit métallique et présentent des propriétés améliorées d'adhésion de la couche de barrière et de soudure à chaud. Ces matériaux comprennent un enduit en copolymère de vinylidène à au moins 80 % de chlorure de vinylidène, au moins 4 % d'un monomère acrylique insaturé par éthylène, ainsi que des additifs d'enduction servant à modifier les caractéristiques du film.
Abstract:
내후성, 방습성이 우수하고, 층간의 밀착성 및 그 장기 안정성도 우수한 적층체 및 그 제조 방법의 제공. 불소 수지를 함유하는 기재 시트와, 아크릴 수지를 함유하는 밀착층과, 무기 산화물, 무기 질화물 및 무기 산화질화물로 이루어지는 군에서 선택되는 적어도 1 종의 무기 화합물을 주성분으로 하는 방습층이 이 순서로 적층되어 있고, 상기 불소 수지 시트의 상기 밀착층과 접하는 면의 표면 조성 (X 선 광전자 분광 분석에 의해 측정) 이, 질소 원자 비율 0.2 원자% 이상 3.0 원자% 이하 또한 산소 원자 비율 1.0 원자% 이상 5.0 원자% 이하인 것을 특징으로 하는 적층체.
Abstract in simplified Chinese:本发明揭示用于制造金属微针之方法。一种方法包含:提供一模具支柱;在该模具支柱上形成一有孔导电层;及在该导电层上沉积一金属层以提供一有孔微针。另一方法包含:提供一模具支柱;在该模具支柱上沉积一第一金属层以提供一第一微针;自该模具支柱移除该第一微针;及在该模具支柱上沉积一第二金属层以提供一第二微针。