C25D7/00

PINION SHAFT, WATCH MECHANISM, WATCH OR MEASUREMENT DEVICE WITHOUT A MAGNETIC SIGNATURE
20230054725 · 2023-02-23 · ·

A mechanical watch or measurement instrument having metallic parts, wherein each part of the mechanical watch mechanism has a relative magnetic permeability of less than 1.01.

PINION SHAFT, WATCH MECHANISM, WATCH OR MEASUREMENT DEVICE WITHOUT A MAGNETIC SIGNATURE
20230054725 · 2023-02-23 · ·

A mechanical watch or measurement instrument having metallic parts, wherein each part of the mechanical watch mechanism has a relative magnetic permeability of less than 1.01.

BASIC STRUCTURAL BODY FOR CONSTRUCTING HEAT DISSIPATION DEVICE AND HEAT DISSIPATION DEVICE
20230055030 · 2023-02-23 ·

A basic structural body for constructing heat dissipation device and a heat dissipation device are disclosed. The heat dissipation device includes a first basic structural body having a wick structure formed on one side surface thereof; and the first basic structural body and the wick structure are structural bodies formed layer by layer. Two pieces of first basic structural bodies can be correspondingly closed together to construct a heat dissipation device internally defining an airtight chamber. In this manner, the heat dissipation device can be designed in a more flexible manner.

Composite Materials
20230055570 · 2023-02-23 ·

The present invention relates to 2D-material based composite materials such as aerogels and particularly, although not exclusively, to deposition of nanoparticles on 2D-material based aerogels. Also described are methods for manufacturing such materials.

LASER INDUCED GRAPHENE AS PRETREATMENT TO PLATE NON-CONDUCTIVE COMPOSITES

A method of manufacture can comprise: treating a surface of a polymeric substrate with a laser induced graphene; and bonding a metallic layer to the laser induced graphene.

LASER INDUCED GRAPHENE AS PRETREATMENT TO PLATE NON-CONDUCTIVE COMPOSITES

A method of manufacture can comprise: treating a surface of a polymeric substrate with a laser induced graphene; and bonding a metallic layer to the laser induced graphene.

METHODS FOR MANUFACTURING METALLIC CUTTING EDGE THROUGH ELECTRODEPOSITION

A method of manufacturing a metallic cutting member, through electrodeposition, comprises moving a dispenser filled with a metal salt solution to a first printing position, depositing a metal onto a conductive or semi-conductive substrate via the dispenser until the deposited metal contacts the dispenser, and upon detecting that the deposited metal contacts the dispenser, moving the dispenser to a second printing position.

Method for producing a metal decoration on a dial and dial obtained according to this method

A method for producing metal decorations on a curved dial made of insulating material includes forming, by a method of the LIGA-UV type, a mould made of photosensitive resin and of galvanically depositing a layer of at least one metal from the conductive layer in order to form a block substantially reaching the upper surface of the photosensitive resin.

Inductor manufacturing method
11501906 · 2022-11-15 · ·

An inductor manufacturing method includes making a coil with a wire member, the coil has two end portions, bending a dependent segment from one end portion of the coil, and bending a lateral extension from the dependent segment, bending a bent segment from the second end portion of the coil, and bending a lateral segment from the bent segment, a base member is then engaged into a space between the coil and the lateral extension and the lateral segment of the coil for forming a coil assembly, the coil assembly is then engaged into a mold cavity of a mold device and punched together with an iron powder, the lateral extension and the lateral segment of the coil are electroplated with an electroplating layer.

Inductor manufacturing method
11501906 · 2022-11-15 · ·

An inductor manufacturing method includes making a coil with a wire member, the coil has two end portions, bending a dependent segment from one end portion of the coil, and bending a lateral extension from the dependent segment, bending a bent segment from the second end portion of the coil, and bending a lateral segment from the bent segment, a base member is then engaged into a space between the coil and the lateral extension and the lateral segment of the coil for forming a coil assembly, the coil assembly is then engaged into a mold cavity of a mold device and punched together with an iron powder, the lateral extension and the lateral segment of the coil are electroplated with an electroplating layer.