Claims
- 1. A unitary heated nozzle assembly for delivering under pressure a melt stream of moldable material to a mold having cavity means for forming parts therein, said assembly comprising a heat conductive metal body suitable for withstanding molding pressures having a passage therein for conveying said melt stream of moldable material into said mold, unsheathed electrical heater assembly means within said body arranged in heat transfer relation to said melt stream in said passage, a sandwich of layers of electrically insulating heat conductive particles compressed together and encapsulating said heater assembly means, said sandwich, heater assembly means and body forming an integral void-free compacted mass embedding said heater assembly means in said sandwich and said sandwich and heater assembly means in said body, and electrical lead wires attached to said heater assembly connecting it with a source of current.
- 2. The nozzle assembly recited in claim 1, wherein said sandwich comprises a layer of insulating material and said heater assembly means comprises wire wound around said layer, and another layer of insulation material overlies said wire wound layer.
- 3. The nozzle assembly recited in claim 1, wherein said heater assembly means surrounds said passage.
- 4. The nozzle assembly recited in claim 1, wherein said sandwich comprises a layer of insulating material and said heater assembly means comprises a wire wound around said layer, and a body of compressed insulating powder overlies said wire wound layer.
- 5. The nozzle assembly recited in claim 1, wherein said metal body has a bore arranged parallel and adjacent to said heat transfer passage, said bore terminating short of one end of said body and said body being closed at said one end in alignment with said bore, said heater assembly means being secured in said bore.
- 6. The nozzle assembly recited in claim 5, wherein the exterior surface of said one end has projecting therefrom into said melt stream fin means for maintaining melt stream temperature at said closed end.
- 7. The nozzle assembly recited in claim 6, wherein said melt stream passage comprises an orifice in flow communication with said mold surrounded by said heater assembly means.
- 8. The nozzle assembly recited in claim 7, wherein said fin means comprises metal members integral with said body on opposed sides of said orifice.
- 9. The nozzle assembly recited in claim 7, wherein said fin means comprises an outwardly extending dome shaped ring on said body surrounding said orifice.
- 10. The nozzle assembly recited in claim 1, wherein one end of said nozzle has a plurality of slots spaced around its periphery each in flow communication with said melt stream passage.
- 11. The nozzle assembly recited in claim 10, wherein said nozzle has a centering stud projecting therefrom axially centrally of said body and said slots at said one end.
- 12. The nozzle assembly recited in claim 3, wherein said body contains a member for controlling the temperature of said heater assembly means, said member being compacted therein and arranged parallel to said heater assembly means in the direction of flow of said melt stream.
- 13. The nozzle assembly recited in claim 1, wherein one end of said body is arranged in the flow of said melt stream and has a tapered section for engaging a flow connection leading to said mold cavity means.
- 14. The nozzle assembly recited in claim 13, wherein said metal body has a non-tapered cylindrical section adjoining said tapered section, and said mold cavity means are in flow communication with said melt stream at the juncture of said tapered and said cylindrical sections.
- 15. The nozzle assembly recited in claim 1, wherein said body comprises two tubes concentrically arranged one within the other and said sandwich layers and heater assembly means are located and compacted between said tubes.
- 16. The nozzle assembly recited in claim 15, wherein the interior of said inside tube comprises said melt stream passage.
- 17. The nozzle assembly recited in claim 16, wherein said inside tube on its surface opposed to said melt stream passage is grooved and thermocouple means for controlling the temperature of said heater assembly means is situated in said groove.
- 18. The nozzle assembly recited in claim 16, wherein one end of said inside tube is tapered to form an injection orifice for directing said melt stream into said mold cavity means.
Parent Case Info
This application is a division of my application Ser. No. 951,609, filed Oct. 16, 1978, now U.S. Pat. No. 4,304,544, which was a continuation-in-part of my co-pending application Ser. No. 705,996, filed July 16, 1976 now U.S. Pat. No. 4,120,086, which was a continuation-in-part of my application Ser. No. 516,618, filed Oct. 21, 1974, now U.S. Pat. No. 3,970,821.
US Referenced Citations (12)
Foreign Referenced Citations (3)
Number |
Date |
Country |
2207001 |
Aug 1972 |
DEX |
2403510 |
Aug 1975 |
DEX |
2539785 |
Mar 1977 |
DEX |
Divisions (1)
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Number |
Date |
Country |
Parent |
951609 |
Oct 1978 |
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Continuation in Parts (2)
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Number |
Date |
Country |
Parent |
705996 |
Jul 1976 |
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Parent |
516618 |
Oct 1974 |
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