A method for producing a substantially spherical metal powder is described. A particulate source metal includes a primary particulate and has an average starting particle size. The particulate source metal is optionally ball milled and mixed with a binder in a solvent to form a slurry.
A rubber composition comprises: a diene-based rubber component; a foaming agent generating carbon dioxide; a fatty acid metal salt; and urea, wherein a content of the foaming agent is 0.1 parts to 20 parts by mass with respect to 100 parts by mass the diene-based rubber component, a total content of the fatty acid metal salt and the urea is 0.1
remove blood, and then with 150 mL of fixative (4% PFA) for 4-5 min. Kidneys and the largest liver lobe were removed, cut in ~1 mm thick slices, postfixed in the same fixative at 4 0 C for 24 hours, and then washed with four abundant volumes of PBS to remove PFA. The tissues were then rinsed with, and stored refrigerated in PBS containing 0.02%
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The 17-4 PH Stainless Steel feedstock injected to the mould using injection moulding machine. After injection, the solvent debinding process was carried out at 50 o C with hexane solution for 1.5 h. Thermal debinding was performed at 510 o C using a vacuum furnace with heating rate and holding time were 1 °C min −1 and 60 min
Need to remove some insulation to compensate. Cover the rectangle with a piece of newspaper cut to be the same size. Roll some tape to make it sticky on each side and put on the paper. Then when you dry fit the panel push it against the paper and it will stick to where you need to remove the insulation. Remove insulation. Panel will fit flush now.
El sintering furnace and vacuum debinding is mainly suitable for the sintering process and deagglomerated alloyed tungsten heavy alloy, molybdenum alloy, titanium alloy and cemented carbide materials. The debinding and sintering furnace vacuum is used to PEG, rubber binder removal and paraffin.
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The major binders' paraffin wax (PW) and PEG were extracted in haptane and water at temperatures of 50˚C and 60˚C for 5 hrs immersion respectively. The thermal de-binding was performed successfully at 500˚C by varying the heating rate from 3˚C/min -5˚C/min with holding time 1hr in argon atmosphere followed by the sintering in vacuum.
Developed more than 20 years ago, vacuum dewax was the first process to allow debinding and sintering of hard metals in one furnace, saving production time and capital expense. By using a vacuum and leveraging the low vapor pressure of the paraffin wax binder, a fast, efficient debinding process was developed compared with positive-pressure
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