IP Library › Granted Patent US 9,835,150
Granted Patent B2
US 9,835,150 · App. 14/394,690 · Granted Dec 5, 2017

Piston for cold chamber die-casting machines

Inventor: Chiara Schivalocchi (Lugano, CH)
Assignee: CPR SUISSE S.A.
F04B53/14B22D17/203B22D17/2038
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Quick Facts
Patent No.
US 9,835,150
App. No.
14/394,690
Granted
Dec 5, 2017
Kind
B2
Abstract

A piston for cold chamber die-casting machines includes a piston body terminating at the front with a frontal surface pushing molten metal and at least one ring seat made around the body suitable to house a respective sealing ring. An annular distribution channel is made in an intermediate annular portion of the bottom surface of the ring seat, which communicates with the frontal surface of the piston through at least two communication holes made in the piston body for flow of molten metal into the distribution channel, under the ring. The communication holes are inclined in relation to the piston axis and have a through section which increases towards the distribution channel.

Claims (29)

1. A piston for cold chamber die-casting machines, comprising:

a piston body terminating at the front with a frontal surface pushing molten metal and at least one ring seat made around said body suitable to house a respective sealing ring, wherein said ring seat comprises a bottom surface;

an annular distribution channel formed in an intermediate annular portion of said bottom surface;

wherein said annular distribution channel communicates with said frontal surface of the piston through at least two communication holes made in the piston body for flow of molten metal into the distribution channel under the ring, said communication holes being inclined in relation to a piston axis and having a through section which increases towards the distribution channel;

wherein said bottom surface comprises a rear annular support portion for supporting a corresponding rear portion of the sealing ring, the intermediate annular portion and a front annular support portion for supporting a corresponding front portion of the sealing ring.

2. The piston according to claim 1 , wherein said front annular portion of the bottom surface is interrupted by outlet apertures of the communication holes, said outlet apertures being open towards the annular distribution channel.

3. The piston according to claim 2 , wherein each of the outlet apertures is connected to the distribution channel by arched connection walls diverging towards said channel.

4. The piston according to claim 1 , wherein the distribution channel is equal or inferior in depth to a depth of the annular seat of the ring.

5. The piston according to claim 1 , wherein the communication holes emerge on the frontal surface of the piston with inlet apertures distributed along a circumference coaxial to the piston axis, said circumference having a smaller diameter than a circumference around which the outlet apertures of said communication holes are made.

6. The piston according to claim 1 , wherein the annular ring seat is delimited rearwards by an annular abutment shoulder made on the body of the piston.

7. The piston according to claim 1 , further comprising anti-rotation means for cooperating with corresponding anti-rotation means made on the ring to prevent rotation of the sealing ring on the piston.

8. The piston according to claim 7 , wherein said anti-rotation means comprise radial projections extending from the bottom wall of the ring seat to engage corresponding apertures made in the ring.

9. A piston for cold chamber die-casting machines, comprising:

a piston body terminating at the front with a frontal surface pushing molten metal and at least one ring seat made around said body suitable to house a respective sealing ring, wherein said ring seat comprises a bottom surface;

an annular distribution channel formed in an intermediate annular portion of said bottom surface;

wherein said annular distribution channel communicates with said frontal surface of the piston through at least two communication holes made in the piston body for flow of molten metal into the distribution channel under the ring, said communication holes being inclined in relation to a piston axis and having a through section which increases towards the distribution channel;

wherein the distribution channel is connected to the rear annular portion of the bottom surface of the annular seat by a conical connection surface.

10. A piston for cold chamber die-casting machines, comprising:

a piston body terminating at the front with a frontal surface pushing molten metal and at least one ring seat made around said body suitable to house a respective sealing ring, wherein said ring seat comprises a bottom surface;

an annular distribution channel formed in an intermediate annular portion of said bottom surface;

wherein said annular distribution channel communicates with said frontal surface of the piston through at least two communication holes made in the piston body for flow of molten metal into the distribution channel under the ring, said communication holes being inclined in relation to a piston axis and having a through section which increases towards the distribution channel;

wherein the ring seat is at a position rearward of the frontal surface of the body of the piston and is defined by a rear shoulder and by a front shoulder made in said body.

11. A piston for cold chamber die-casting machines, comprising:

a piston body terminating at the front with a frontal surface pushing molten metal and at least one ring seat made around said body suitable to house a respective sealing ring, wherein said ring seat comprises a bottom surface;

an annular distribution channel formed in an intermediate annular portion of said bottom surface;

wherein said annular distribution channel communicates with said frontal surface of the piston through at least two communication holes made in the piston body for flow of molten metal into the distribution channel under the ring, said communication holes being inclined in relation to a piston axis and having a through section which increases towards the distribution channel;

wherein the ring seat terminates at the front next to the frontal surface of the piston; the piston and ring being provided with an axial block suitable to prevent an axial translation of the ring in relation to the piston.

12. The piston according to claim 11 , wherein an annular groove is made in the ring seat suitable to receive a corresponding internal annular projection made in the ring by a shaped coupling.

13. Piston according to claim 12 , wherein said annular groove is internally tangent to a front end of the outlet aperture of the communication holes.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 15, 2014
From: SCHIVALOCCHI, CHIARA
To: CPR SUISSE S.A.
Reel/Frame 033956/0929 →
Continuity (1)
Related Publication 20150096439A1 · Apr 9, 2015