Patent classifications
B24C1/10
Article and method of manufacturing the same
An article and a method of manufacturing the article is disclosed. The method includes providing the article including a substrate and a coating at least partially disposed on the substrate. The coating includes an outer surface. The coating further includes platinum and chromium. The method further includes applying cold work to the outer surface of the coating to produce a cold-worked layer extending from the outer surface of the coating to a cold work depth. The cold-worked layer includes approximately 45% cold work. The cold work depth is between about 30 microns to about 150 microns from the outer surface of the coating.
Method of reducing greenhouse gas emissions from recycling aluminum alloy wheels
A method of recycling aluminum alloy wheels, the method may comprise (a) providing a feed of aluminum alloy wheels; (b) fragmenting the aluminum alloy wheels into a plurality of fragments; (c) shot blasting the plurality of fragments to at least partly remove at least one contaminant material; (d) storing at least one recognition criterion and at least one carbon factor; (e) for each fragment of a representative sample of fragments, determining, for each contaminant material, a contaminant material concentration estimate for that fragment; (f) operating a data processor to either approve or reject the plurality of fragments, based on an aggregate carbon emission calculation being based on the contaminant material concentration estimate and the carbon factor. When the plurality of fragments is approved, they may be provided to a downstream recycling process. When the plurality of fragments is rejected, they may be further shot blasted.
Method of reducing greenhouse gas emissions from recycling aluminum alloy wheels
A method of recycling aluminum alloy wheels, the method may comprise (a) providing a feed of aluminum alloy wheels; (b) fragmenting the aluminum alloy wheels into a plurality of fragments; (c) shot blasting the plurality of fragments to at least partly remove at least one contaminant material; (d) storing at least one recognition criterion and at least one carbon factor; (e) for each fragment of a representative sample of fragments, determining, for each contaminant material, a contaminant material concentration estimate for that fragment; (f) operating a data processor to either approve or reject the plurality of fragments, based on an aggregate carbon emission calculation being based on the contaminant material concentration estimate and the carbon factor. When the plurality of fragments is approved, they may be provided to a downstream recycling process. When the plurality of fragments is rejected, they may be further shot blasted.
METHOD FOR DETERMINING PROPELLING CONDITION FOR SHOT MEDIUM, AND METHOD FOR MANUFACTURING COIL SPRING
In a case where the coating film is confirmed to remain in a third step, at least one or more of conditions of the shot peening treatment including a propelling speed of the shot medium, a propelling time of the shot medium, a material of the shot medium, and an average particle diameter of the shot medium are changed and the second step and the third step are repeated until the coating film does not remain In a case where the coating film is not confirmed to remain in the third step, the condition of the shot peening treatment in the second step in which the coil spring is obtained with no remaining coating film is determined as the propelling condition for the shot medium.
METHOD FOR DETERMINING PROPELLING CONDITION FOR SHOT MEDIUM, AND METHOD FOR MANUFACTURING COIL SPRING
In a case where the coating film is confirmed to remain in a third step, at least one or more of conditions of the shot peening treatment including a propelling speed of the shot medium, a propelling time of the shot medium, a material of the shot medium, and an average particle diameter of the shot medium are changed and the second step and the third step are repeated until the coating film does not remain In a case where the coating film is not confirmed to remain in the third step, the condition of the shot peening treatment in the second step in which the coil spring is obtained with no remaining coating film is determined as the propelling condition for the shot medium.
COIL SPRING JIG, COIL SPRING MANUFACTURING METHOD, AND COIL SPRING TESTING METHOD
A coil spring jig includes a spring support portion where one end of a coil spring is capable of being placed, a plurality of displacement regulating portions extending along an axis of the coil spring from the spring support portion with the coil spring supported by the spring support portion as a reference, capable of abutting against an outer peripheral surface of the coil spring, and regulating displacement of the coil spring in a radial direction of the coil spring, and a lid portion supported by the displacement regulating portions and capable of keeping the coil spring in a compressed state by sandwiching the coil spring together with the spring support portion.
METHOD FOR COMPACTING AN ANTICORROSION COATING
A method for compacting an anticorrosion coating includes projecting water soluble particles.
METHOD FOR COMPACTING AN ANTICORROSION COATING
A method for compacting an anticorrosion coating includes projecting water soluble particles.
SHOT PROCESSING SYSTEM AND SHOT PROCESSING METHOD
A shot processing system according to an aspect includes a shot processing apparatus to project shot media, a measurement device output a signal waveform related to a wave generated due to collision of the shot media, a control device to control the shot processing apparatus. The control device includes a processing condition acquisition unit to acquire a required intensity, a control unit to control the shot processing apparatus to cause the shot processing apparatus to perform the shot processing to the measurement device under a first shot condition, an intensity analysis unit to acquire a measured intensity by analyzing the signal waveform output by the shot processing to the measurement device, and a correction unit to correct a shot condition of the shot processing apparatus from the first shot condition to a second shot condition to reduce a difference between the required intensity and the measured intensity.
SHOT PROCESSING SYSTEM AND SHOT PROCESSING METHOD
A shot processing system according to an aspect includes a shot processing apparatus to project shot media, a measurement device output a signal waveform related to a wave generated due to collision of the shot media, a control device to control the shot processing apparatus. The control device includes a processing condition acquisition unit to acquire a required intensity, a control unit to control the shot processing apparatus to cause the shot processing apparatus to perform the shot processing to the measurement device under a first shot condition, an intensity analysis unit to acquire a measured intensity by analyzing the signal waveform output by the shot processing to the measurement device, and a correction unit to correct a shot condition of the shot processing apparatus from the first shot condition to a second shot condition to reduce a difference between the required intensity and the measured intensity.