FORMING METHOD OF METAL LAYER
    1.
    发明申请

    公开(公告)号:US20200147683A1

    公开(公告)日:2020-05-14

    申请号:US16676444

    申请日:2019-11-07

    Abstract: Provided is a forming method of a metal layer suitable for a 3D printing process. The method includes the steps of providing a plurality of metal particles on a substrate; applying an oxide-removing agent to the metal particles to remove metal oxides on the metal particles; at a first temperature, performing a first heat treatment on the metal particles for which the metal oxides are removed to form a near shape; and at a second temperature, performing a second heat treatment on the near shape to form a sintered body. The first temperature is lower than the second temperature.

    Fabrication method of magnetic device

    公开(公告)号:US10259172B2

    公开(公告)日:2019-04-16

    申请号:US14981914

    申请日:2015-12-29

    Abstract: A fabrication method of magnetic device is provided. A magnetic material is provided. A portion of the magnetic material is selectively irradiated by an energy beam, and reactive gas is introduced simultaneously. The magnetic material being irradiated is melted and solidified to form a solidified layer. An outer layer of the solidified layer reacts with the reactive gas to form a barrier layer, so as to form a magnetic unit including the solidified layer and the barrier layer. It is determined whether the manufacturing process of the same layer is finished, if not, the energy beam is moved to the other portion of the magnetic material. The above step is repeated to overlap multiple magnetic units to form a magnetic layer. If yes, the flow returns to the 1st step to provide another magnetic material to the magnetic layer. The above steps are repeated to form a 3D magnetic device.

    Smart mechanical component
    4.
    发明授权

    公开(公告)号:US10704987B2

    公开(公告)日:2020-07-07

    申请号:US15455559

    申请日:2017-03-10

    Abstract: A smart mechanical component has a mechanical part main body; a mechanical part secondary body located inside of the mechanical part main body; a three dimensional three-dimensional (3-D) reserved space located between the mechanical part main body and the mechanical part secondary body; at least one connecting unit connecting the mechanical part main body and the mechanical part secondary body; wherein the mechanical part main body, the mechanical part secondary body and the three dimensional three-dimensional (3-D) reserved space form a capacitor; the connecting unit forms an inductor; the inductor and the capacitor forms an inductor-capacitor circuit.

    CHEMICAL VAPOR DEPOSITION APPARATUS
    5.
    发明申请
    CHEMICAL VAPOR DEPOSITION APPARATUS 审中-公开
    化学蒸气沉积装置

    公开(公告)号:US20150034011A1

    公开(公告)日:2015-02-05

    申请号:US14515535

    申请日:2014-10-16

    Abstract: A chemical vapor deposition apparatus and a method for forming a parylene film are provided. The chemical vapor deposition apparatus includes a buffer chamber, a deposition chamber, a pyrolysis chamber, an evaporator, and a sorter. The buffer chamber has a first valve, a second valve, and a carrying apparatus. The evaporator is connected with the second valve. The pyrolysis chamber is connected with the evaporator through a first pipe, wherein the first pipe has a third valve. The deposition chamber is connected with the pyrolysis chamber. The sorter is connected with the buffer chamber through the first valve.

    Abstract translation: 提供化学气相沉积设备和形成聚对二甲苯膜的方法。 化学气相沉积装置包括缓冲室,沉积室,热解室,蒸发器和分选机。 缓冲室具有第一阀,第二阀和输送装置。 蒸发器与第二阀连接。 热解室通过第一管与蒸发器连接,其中第一管具有第三阀。 沉积室与热解室连接。 分拣机通过第一阀与缓冲室连接。

    FORMING METHOD OF METAL LAYER
    7.
    发明申请

    公开(公告)号:US20210008618A1

    公开(公告)日:2021-01-14

    申请号:US17033934

    申请日:2020-09-28

    Abstract: Provided is a forming method of a metal layer suitable for a 3D printing process. The method includes the steps of (1) providing first metal particles on a substrate to form a first layer; (2) performing a first pre-heat treatment on the first layer; (3) applying an oxide-removing agent on selected first metal particles in the first layer to remove metal oxides; (4) providing second metal particles on the first layer to form a second layer; (5) performing a second pre-heat treatment on the second layer; (6) applying the oxide-removing agent on selected second metal particles in the second layer to remove metal oxides; repeating (1) to (6) until a latent part is formed; performing a first heat treatment on the first and second metal particles of the latent part to form a near shape; and performing a second heat treatment on the near shape to form a sintered body.

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