Claims
- 1. A viscous material dispense system comprising:
- a dispense valve having an outlet;
- a nozzle assembly including a tubular nozzle member having one end secured to the dispense valve outlet whereby to receive viscous material from the dispense valve for passage through the nozzle member, another, free end defining a nozzle tip portion having a conical nozzle surface, and an axially extending main body tubular portion interconnecting said one end and the nozzle tip portion, and dispense means proximate the nozzle tip portion of the nozzle member operative to discharge viscous material in bead form from the nozzle assembly; and
- a tubular air shroud including a main body portion positioned telescopically over the main body portion of the tubular nozzle member and coacting with the main body portion of the tubular nozzle member to define an axially extending air passage therebetween and an air inlet communicating with the passage, and a tip portion positioned proximate the tip portion of the nozzle member and defining a conical nozzle surface coacting with the conical nozzle surface of the nozzle member tip portion to define a conical air passage therebetween communicating with the axially extending air passage and opening in surrounding relation to the nozzle tip portion of the nozzle member, whereby air introduced at the air inlet may flow through the axially extending air passage and thereafter flow through the conical air passage to impinge on the bead of viscous material exiting the nozzle assembly.
- 2. A dispense system according to claim 1 wherein the axially extending flutes are defined by axially extending grooves in an outer surface of the main body portion of the nozzle member and the radially extending flutes are defined by radially extending grooves in the conical surface of the tip portion of the nozzle member.
- 3. A dispense system according to claim 2 wherein the air shroud is axially shorter than the nozzle member and fits as a cap over the conical tip portion of the nozzle member.
- 4. A dispense system according to claim 1 wherein the nozzle assembly further includes a dispense tip positioned in the conical tip portion of the nozzle member and defining a conical surface positioned centrally within the conical air passage and forming a radially inwardly extending conical extension of the conical air passage.
- 5. A nozzle assembly for use with a viscous material source having an outlet, the nozzle assembly comprising:
- a mix tube adapted to be secured at one end thereof to the source outlet, whereby to receive a material mix from the source, and defining a conical nozzle tip portion at another, free end thereof, whereby to discharge the material mix in bead form from the nozzle tip portion;
- a tubular mixer shroud positioned telescopically over the mix tube and including an end portion proximate said one end of the mix tube, a nozzle tip portion proximate the conical nozzle tip portion of the mix tube defining a conical nozzle surface, and an axially extending main body tubular portion interconnecting the end portion and the tip portion; and
- a tubular air shroud including a main body portion positioned telescopically over the main body portion of the mixer shroud and coacting with the main body portion of the mixer shroud to define an annular axially extending air passage therebetween and an air inlet communicating with the passage, and a tip portion positioned proximate the tip portion of the mixer shroud and defining a conical nozzle surface coacting with the conical nozzle surface of the tip portion of the mixer shroud to define a conical air passage therebetween communicating with the annular axially extending air passage and opening in surrounding relation to the nozzle tip portion of the mix tube, whereby air introduced at the air inlet may flow as an annular curtain through the axially extending air passage and thereafter flow as a conical curtain through the conical air passage to impinge on the bead of mixed material exiting the nozzle tip portion of the mix tube.
- 6. A nozzle assembly according to claim 5 wherein:
- the annular axially extending air passage comprises a plurality of circumferentially spaced axially extending flutes; and
- the conical air passage comprises a plurality of circumferentially spaced radially extending flutes each communicating at one end thereof with a respective axially extending flute.
- 7. A nozzle assembly according to claim 6 wherein the axially extending flutes are defined by axially extending grooves in an outer surface of the main body portion of the mixer shroud and the radially extending flutes are defined by radially extending grooves in the conical surface of the tip portion of the mixer shroud.
- 8. A nozzle assembly according to claim 5 wherein:
- said end portion of said mixer shroud is positioned over the source outlet in surrounding relation to said one end of said mix tube; and
- said air shroud is axially shorter than the mixer shroud and fits as a cap over the tip portion of the mixer shroud.
- 9. A nozzle assembly according to claim 5 wherein the nozzle assembly further includes a tubular conical insert positioned in the mix tube proximate the nozzle tip portion thereof and operative to define the size and configuration of the bead.
- 10. A nozzle assembly according to claim 5 wherein the nozzle assembly further includes a tubular dispense tip positioned in the conical tip portion of the mixer shroud, receiving the conical nozzle tip portion of the mix tube, and defining a conical surface positioned centrally within the conical air passage and forming a radially inwardly extending conical extension of the conical air passage.
- 11. A viscous material dispense valve assembly comprising;
- a dispense valve having an outlet;
- a mix tube secured at an upper end thereof to the dispense valve outlet, whereby to receive viscous material from the dispense valve, and defining a conical nozzle tip portion at a lower, free end thereof, whereby to discharge mixed material in bead form from the nozzle tip;
- a tubular mixer shroud positioned telescopically over the mix tube and including an upper end portion proximate said upper end of the mix tube, a lower conical tip portion proximate the conical nozzle tip portion of the mix tube, and an axially extending main body tubular portion interconnecting the upper end portion and the lower conical tip portion; and
- a tubular air shroud having a cap configuration and including a main body portion positioned telescopically over a lower section of the main body portion of the mix tube and coacting with the main body portion of the mixer shroud to define an annular axially extending air passage therebetween and an air inlet communicating with the passage, and a lower conical tip portion positioned proximate the conical tip portion of the mixer shroud and coacting with the conical tip portion of the mixer shroud to define a conical air passage therebetween communicating with the annular axially extending air passage and opening in surrounding relation to the nozzle tip portion of the mix tube, whereby air introduced at the air inlet may flow as an annular curtain through the axially extending air passage and thereafter flow as a conical curtain through the conical air passage to impinge on the bead of mixed material exiting the nozzle tip.
- 12. A dispense valve assembly according to claim 11 wherein:
- the annular axially extending air passage comprises a plurality of circumferentially spaced axially extending flutes; and
- the conical air passage comprises a plurality of circumferentially spaced radially extending flutes each communicating at one end thereof with a lower end of a respective axially extending flute.
- 13. A dispense valve assembly according to claim 12 wherein the axially extending flutes are defined by axially extending grooves in an outer surface of the main body portion of the mixer shroud and the radially extending flutes are defined by radially extending grooves in a lower outer surface of the conical tip portion of the mixer shroud.
- 14. A dispense valve assembly according to claim 11 wherein said end portion of said mixer shroud is positioned over the valve outlet in surrounding relation to said one end of said mix tube.
- 15. A dispense valve assembly according to claim 11 wherein the nozzle assembly further includes a tubular conical insert positioned in the mix tube proximate the conical nozzle tip portion thereof and operative to define the size and configuration of the bead.
- 16. A dispense valve assembly according to claim 11 wherein the nozzle assembly further includes a tubular dispense tip positioned in the conical tip portion of the mixer shroud, receiving the conical nozzle tip portion of the mix tube, and positioned centrally within the conical air passage and forming a radially inwardly extending conical extension of the conical air passage.
- 17. A viscous material dispense system comprising:
- a material source having an outlet;
- a nozzle assembly including a tubular nozzle member having one end secured to the source outlet, another, free end defining a nozzle tip portion having a conical nozzle surface, and an axially extending main body tubular portion interconnecting said one end and the nozzle tip portion; and
- a tubular air shroud including a main body portion positioned telescopically over the main body portion of the tubular nozzle member and coacting with the main body portion of the tubular nozzle member to define an axially extending air passage therebetween and an air inlet communicating with the passage, and a tip portion positioned proximate the tip portion of the nozzle member and defining a conical nozzle surface coacting with the conical nozzle surface of the nozzle member tip portion to define a conical air passage therebetween communicating with the axially extending air passage and opening in surrounding relation to the nozzle tip portion of the nozzle member, whereby air introduced at the air inlet may flow through the axially extending air passage and thereafter flow through the conical air passage to impinge on a bead of viscous material exiting the nozzle assembly;
- the axially extending air passage comprising a plurality of circumferentially spaced axially extending flutes; and
- the conical air passage comprising a plurality of circumferentially spaced radially extending flutes each communicating at one end thereof with a respective axially extending flute.
- 18. A viscous material dispense system comprising:
- a material source having an outlet;
- a nozzle assembly including a tubular nozzle member having one end secured to the source outlet, another, free end defining a nozzle tip portion having a conical nozzle surface, and an axially extending main body tubular portion interconnecting said one end and the nozzle tip portion; and
- a tubular air shroud including a main body portion positioned telescopically over the main body portion of the tubular nozzle member and coacting with the main body portion of the tubular nozzle member to define an axially extending air passage therebetween and an air inlet communicating with the passage, and a tip portion positioned proximate the tip portion of the nozzle member and defining a conical nozzle surface coacting with the conical nozzle surface of the nozzle member tip portion to define a conical air passage therebetween communicating with the axially extending air passage and opening in surrounding relation to the nozzle tip portion of the nozzle member, whereby air introduced at the air inlet may flow through the axially extending air passage and thereafter flow through the conical air passage to impinge on a bead of viscous material exiting the nozzle assembly;
- the nozzle assembly further including a mix tube having one end secured to the source outlet and another, free end defining a conical nozzle tip portion; and
- the tubular nozzle member being positioned telescopically over the mix tube in shrouding relation with its conical nozzle tip portion proximate the conical nozzle tip portion of the mix tube.
Parent Case Info
This application claims benefit of Provisional Application 60/085,642 filed May 15, 1998.
US Referenced Citations (14)
Non-Patent Literature Citations (1)
Entry |
ConPro Tec, Inc. Salem, NH pamphlet Statomix - Motionless Mixers, Sep. 1993, 8 pgs. |