Patent classifications
B21C23/02
Decorative elongated object, method for manufacturing decorative elongated object, Olympic torch, and lighting device
To provide an air passage for torch combustion in the torch main body to ensure the freedom of design. A decorative elongated object according to the present invention includes an elongated material (100) with a cross section having a plurality of radial lines (L2) and being uniform from one end (1a) to another end (1b), a cavity being formed at the center of the elongated material, in which the elongated material has a side surface at least partially tapered to be thinner toward the other end (1b) from the one end (1a), with the radial lines (L2) partially cut and removed along a side surface cutting plane intersecting with the side surface.
SYSTEM AND METHOD FOR ENABLING FUSED DEPOSITION METAL 3D PRINTING
A metal fused, deposition printer, that uses the thixotropic (or other) properties of a metal (or alloy) to control the viscosity of the material being deposited. In the invention presented in this patent, the viscosity of the metal is controlled by shearing it before, during, or after the deposition process. Since thixotropic (or other) properties allow for the control of the viscosity separately from the temperature, the taught invention allows for precise control of the temperature differential between the layer being deposited, and the substrate layer.
SYSTEM AND METHOD FOR ENABLING FUSED DEPOSITION METAL 3D PRINTING
A metal fused, deposition printer, that uses the thixotropic (or other) properties of a metal (or alloy) to control the viscosity of the material being deposited. In the invention presented in this patent, the viscosity of the metal is controlled by shearing it before, during, or after the deposition process. Since thixotropic (or other) properties allow for the control of the viscosity separately from the temperature, the taught invention allows for precise control of the temperature differential between the layer being deposited, and the substrate layer.
AIRBAG MOUNTING BRACKET
Methods for making an airbag mounting bracket for use with an attachment component of an associated airbag cushion are provided. An opening in a mounting bracket precursor formed of a bracket precursor material is extruded. A rounded surface of the bracket precursor material adjacent the extruded opening is formed. The mounting bracket precursor with the rounded surface is subsequently finalized to form the airbag cushion mounting bracket, wherein the extruded opening provides an airbag attachment engagement opening for passage of the attachment component and the rounded surface provides a load bearing surface of increased area for the attachment component. Also provided are corresponding or associated airbag mounting brackets.
SYSTEM AND METHOD FOR ENABLING FUSED DEPOSITION METAL 3D PRINTING
A metal fused deposition printer can use the thixotropic properties of a metal (e.g., alloy) to control the viscosity of the material being deposited. The viscosity of the metal can be controlled by shearing the metal before, during, or after the deposition process. Use of the thixotropic properties can allow the viscosity of the metal to be controlled independent of the temperature of the metal. This can allow for more precise control of the temperature differential between the layer being deposited and the substrate layer, for example, such that the temperatures are substantially the same.
SYSTEM AND METHOD FOR ENABLING FUSED DEPOSITION METAL 3D PRINTING
A metal fused deposition printer can use the thixotropic properties of a metal (e.g., alloy) to control the viscosity of the material being deposited. The viscosity of the metal can be controlled by shearing the metal before, during, or after the deposition process. Use of the thixotropic properties can allow the viscosity of the metal to be controlled independent of the temperature of the metal. This can allow for more precise control of the temperature differential between the layer being deposited and the substrate layer, for example, such that the temperatures are substantially the same.
System and method for enabling fused deposition metal 3D printing
A metal fused, deposition printer, that uses the thixotropic (or other) properties of a metal (or alloy) to control the viscosity of the material being deposited. In the invention presented in this patent, the viscosity of the metal is controlled by shearing it before, during, or after the deposition process. Since thixotropic (or other) properties allow for the control of the viscosity separately from the temperature, the taught invention allows for precise control of the temperature differential between the layer being deposited, and the substrate layer.
System and method for enabling fused deposition metal 3D printing
A metal fused, deposition printer, that uses the thixotropic (or other) properties of a metal (or alloy) to control the viscosity of the material being deposited. In the invention presented in this patent, the viscosity of the metal is controlled by shearing it before, during, or after the deposition process. Since thixotropic (or other) properties allow for the control of the viscosity separately from the temperature, the taught invention allows for precise control of the temperature differential between the layer being deposited, and the substrate layer.
DECORATIVE ELONGATED OBJECT, METHOD FOR MANUFACTURING DECORATIVE ELONGATED OBJECT, OLYMPIC TORCH, AND LIGHTING DEVICE
To provide an air passage for torch combustion in the torch main body to ensure the freedom of design. A decorative elongated object according to the present invention includes an elongated material (100) with a cross section having a plurality of radial lines (L2) and being uniform from one end (1a) to another end (1b), a cavity being formed at the center of the elongated material, in which the elongated material has a side surface at least partially tapered to be thinner toward the other end (1b) from the one end (1a), with the radial lines (L2) partially cut and removed along a side surface cutting plane intersecting with the side surface.
Production method for a modular steering column having extruded profiled elements
A method may be used to produce a steering column for a motor vehicle that includes an inner steering column tube that receives a steering shaft such that the steering shaft is rotatable about its longitudinal axis, an outer steering column tube that receives the inner steering column tube and has a longitudinal slot that extends in a direction of the longitudinal axis, and a clamping apparatus that can be switched over between a release position in which the inner steering column tube is adjustable relative to the outer steering column tube and a fixing position in which the inner steering column tube is fixed relative to the outer steering column tube. The longitudinal slot may have a greater width in the release position than in the fixing position. The method may involve, amongst other steps, manufacturing at least one single blank of the outer steering column tube and/or of the inner steering column tube using an extrusion process.