Non-faceted nanoparticle reinforced metal matrix composite and method of manufacturing the same
US-9211586-B1 · Dec 15, 2015 · US
US10632536B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10632536-B2 |
| Application number | US-201715493681-A |
| Country | US |
| Kind code | B2 |
| Filing date | Apr 21, 2017 |
| Priority date | Feb 20, 2013 |
| Publication date | Apr 28, 2020 |
| Grant date | Apr 28, 2020 |
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An apparatus for manufacturing an article from powder material includes a canister, a sorter, a plurality of hoppers and at least one valve. The canister has a predetermined internal shape to define the shape of the powder metal article. The sorter sorts the powder material by the size of the powder particles, the shape of the powder particles and/or the flow characteristics of the powder particles. The hoppers contain powder material with different sizes of powder particles, different shapes of powder particles and/or powder particles with different flow characteristics. The hoppers are arranged to supply the sorted powder material to the canister. The at least one valve controls the proportions of the different powder materials supplied from the one or more of the different hoppers into the canister to control the packing density of the powder material in the canister at all positions in the canister.
Opening claim text (preview).
The invention claimed is: 1. An apparatus configured to manufacture an article from a plurality of powder materials, the apparatus comprising: a canister having a predetermined internal shape to define the shape of the powder metal article, the canister having at least one region which is more difficult to fill than other regions, a sorter configured to sort the powder material by the size of the powder particles, the shape of the powder particles and/or the flow characteristics of the powder particles, a plurality of different hoppers, the hoppers containing powder material with different sizes of powder particles, different shapes of powder particles and/or powder particles with different flow characteristics, the hoppers being arranged to supply powder material to the canister, at least one metering device configured to control the proportions of the powder material supplied from the one or more of the different hoppers into the canister to control the voidage in the powder material in the canister at all positions in the canister, the at least one metering device being arranged to control the supply of the powder material from one or more of the different hoppers into the canister to fill the canister, the at least one metering device being arranged to supply powder material from at least one hopper containing powder particles having a small size compared to sizes of particles in at least one other hopper a regular shape, and/or good flow characteristics compared to flow characteristics of particles in at least one other hopper, to the canister to fill the at least one region of the canister which is more difficult to fill and/or has a fine tolerance and the at least one metering device being arranged to supply powder material from at least one hopper containing powder particles having a large size compared to sizes of particles in at least one other hopper, an irregular shape, and/or poor flow characteristics compared to flow characteristics of particles in at least one other hopper, to the canister to fill the other regions of the canister, a digital computer model of the powder material article and the canister stored in a memory of the apparatus, a sensor to measure the level of the powder material in the canister, a processor programmed to determine from the model of the powder material article and the canister if the level of powder material in the canister is at the at least one region of the canister which is more difficult to fill, and programmed to send commands to the at least one metering device to control which of the plurality of hoppers is used to supply powder material, and the at least one metering device being arranged to supply, based on the commands from the processor, a greater proportion of the powder material from the at least one hopper containing powder particles having a small size, a regular shape and/or good flow characteristics to the canister to fill the at least one region of the canister which is more difficult to fill and/or has a fine tolerance if the level of the powder material in the canister is at the at least one region of the canister which is more difficult to fill and/or has a fine tolerance. 2. An apparatus as claimed in claim 1 wherein the at least one region of the canister which is more difficult to fill and/or has a fine tolerance is a region where the internal shape of the canister has a projection, a recess, a re-entrant feature and/or a bend. 3. An apparatus as claimed in claim 1 wherein the canister has a substantially annular internal shape to define the shape of the powder material article. 4. An apparatus as claimed in claim 3 wherein the canister has a radially inner annular wall and a radially outer annular wall, and the at least one region which is more difficult to fill than other regions is one or more of: (i) an annular radially outwardly extending recess in the outer annular wall, (ii) is an annular radially inwardly extending recess in the inner annular wall and/or (iii) a plurality of circumferentially spaced radially outwardly extending recesses in the outer annular wall. 5. An apparatus as claimed in claim 1 wherein the metering device comprises a valve or a screw conveyor.
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