VESSEL FOR MELTING METAL IN A METAL DROP EJECTING THREE-DIMENSIONAL (3D) OBJECT PRINTER
A three-dimensional (3D) metal object manufacturing apparatus is equipped with a vessel having a receptacle that holds melted metal. The vessel has a divider that prevents metal dross formed at a solid metal inlet of the receptacle to migrate to a portion of the receptacle where a melted metal level sensor directs light.
1 . A metal drop ejecting apparatus comprising:
an ejector head that defines a receptacle configured to hold molten metal, the receptacle having a first end and a second end; and
a divider within the receptacle to separate a first portion of the receptacle from a second portion, the divider extending a distance from the first end of the receptacle that is less than a distance from the first end to the second end.
2 . The metal drop ejecting apparatus of claim 1 wherein the receptacle is within a vessel configured for installation in and removal from the ejector head.
3 . The metal drop ejecting apparatus of claim 2 further comprising:
a solid metal guide configured to move solid metal into the first portion of the receptacle;
a level sensor having a light generator and a reflective sensor, the light generator being configured to direct light into the second portion of the receptacle; and
the divider being positioned between where the first portion of the receptacle receives the solid metal and where the second portion of the receptacle receives the light from the light generator.
4 . The metal drop ejecting apparatus of claim 3 wherein the distance that the divider extends from the first end of the receptacle is less than half of the distance between the first end and the second end of the receptacle.
5 . The metal drop ejecting apparatus of claim 4 wherein the distance that the divider extends from the first end of the receptacle is about twenty percent of the distance between the first end and the second end of the receptacle.
6 . The metal drop ejecting apparatus of claim 5 wherein the divider extends from a first position between the first portion of the receptacle and the second portion of the receptacle to a second position diametrically opposite the first position.
7 . The metal drop ejecting apparatus of claim 6 wherein the divider is essentially comprised of boron nitride.
8 . The metal drop ejecting apparatus of claim 7 wherein the divider is integrally formed with the vessel.
9 . The metal drop ejecting apparatus of claim 8 wherein the light generator is a laser.
10 . A vessel for holding melted metal within an ejector head of a metal drop ejecting apparatus comprising:
a wall defining a receptacle within the vessel, the receptacle having a first end and a second end; and
a divider within the receptacle to separate a first portion of the receptacle from a second portion, the divider extending a distance from the first end of the receptacle that is less than a distance from the first end to the second end.
11 . The vessel of claim 10 wherein the divider extends from the first end by a distance that is less than half of the distance between the first end and the second end of the receptacle.
12 . The vessel of claim 11 wherein the distance that the divider extends from the first end is about twenty percent of the distance between the first end and the second end of the receptable.
13 . The vessel of claim 12 wherein the divider extends from a first position between the first portion of the receptacle and the second portion of the receptacle to a second position diametrically opposite the first position.
14 . The vessel of claim 13 wherein the divider is integrally formed with the vessel.
15 . The vessel of claim 14 wherein the divider is essentially comprised of boron nitride.
16 . A metal insert for preloading a removable vessel for installation in an ejector head of a metal drop ejecting apparatus comprising:
an elongated portion configured to be received in a first housing of the removable vessel;
a slot formed in the elongated portion of the metal insert that is configured to receive a divider within the first housing of the removable vessel; and
a bulbous portion configured to be received in a second housing of the removable vessel.
17 . The metal insert of claim 16 wherein the slot has a length that is less than a length of the metal insert.
18 . The metal insert of claim 17 wherein the length of the slot is about twenty percent of the length of the metal insert.
19 . The metal insert of claim 18 wherein the metal insert is comprised essentially of aluminum.
20 . The metal insert of claim 18 wherein the metal insert is comprised essentially of copper.