Claims
- 1. Apparatus for printing an article utilizing a design carrying working surface comprising:
- a frame having an aperture therein, a flexible elastic membrane carried by said frame, said flexible membrane having a working surface forming a portion of said membrane and disposed over said aperture;
- means for supporting the flexible working surface of the membrane for application of a separable design thereon including a housing, and a porous plate mounted within said housing having a free face for engaging an opposed rearward facing portion of said flexible working surface; and means coupled to said housing for supplying reduced air pressure relative to atmospheric pressure for establishing a reduced air pressure relative to ambient atmosphere at the free face of said porous plate, and for drawing said rearward facing portion of the flexible working surface against said free face of the porous plate to secure said membrane in close contact therewith;
- flexible actuator means having a deformable solid pre-shaped face engagable with said flexible membrane opposite the design carrying working surface thereof for deforming said membrane into conformance with said pre-shaped face of the flexible actuator means; means for positioning the article adjacent the deformed membrane;
- means for driving the actuator means and for moving said deformed membrane having the shape of said pre-shaped face into engagement with the article in a nonslip simulated rolling contact, from a center area thereof to an outer peripheral edge, at a selected contact angle of between 5.degree. and 50.degree., for separating the design portion from the membrane and transferring the same to the article; and said membrane having a selected affinity for the design portion less than that of the article so that upon contact with said article the design portion transfers to the article.
- 2. The apparatus according to claim 1 wherein the contact angle is about 15.degree..
- 3. The apparatus according to claim 1 further including at least one adjustable spacer member for engaging the actuator means and frame so as to establish a fixed spacial relationship therebetween.
- 4. Apparatus according to claim 1 wherein said porous plate is selected from a porous material having a pore size of about 50 microns.
- 5. Apparatus according to claim 1 wherein said porous plate comprises a rigid member, and a compressibly resilient skin is located intermediate said rigid porous plate and the flexible working surface.
- 6. Apparatus for printing an article with a separable design portion from a design carrying working surface comprising:
- a frame having an aperture therein and a flexible elastic membrane carried thereby, the flexible membrane having a working surface formed of a portion of said membrane and disposed over said aperture;
- means for supporting the flexible working surface of the membrane during application of the separable design thereon including a housing; a porous plate having a free face for engaging an opposed rearward facing portion of said flexible working surface being mounted within said housing; and a source of reduced air pressure relative to atmospheric pressure coupled to said housing for establishing at the free face of said porous plate a reduced air pressure relative to ambient atmosphere, said rearward facing portion of the flexible working surface being adapted to be located against said free face of the porous plate and drawn thereagainst to secure said membrane in close contact therewith;
- flexible actuator means having a shaped face adapted to engage the membrane opposite the design carrying working surface thereof causing deformation of the membrane into conformance with said actuator means; means for securing the article into opposition with the deformed membrane; and means for driving the actuator means and moving the membrane into engagement with the article in a nonslip simulated rolling contact, from a center area thereof to an outer peripheral edge, at a selected contact angle, for separating the design portion from the membrane; the membrane being formed of a RTV silastic having a selected affinity for the design portion less than that of the article so that upon contact with said article, the design portion transfers to the article; the design portion being selected from materials consisting essentially of thermoplastic inks;
- means for slidably securing the frame to the housing in alignment with the porous plate;
- an apertured piston having a recess therein for securely receiving the porous plate in communication with the aperture, the piston being reciprocally mounted within said housing, and said piston extendable to a first position for engaging the aperture in the frame to lock the frame in the support means and retractable to a second position withdrawing the piston from the frame aperture for unlocking the frame relative to the support means.
- 7. Apparatus according to claim 6 wherein the means for slidably securing the frame includes a notched support plate mounted to the housing for receiving a mating peripheral portion of the frame therein.
- 8. Apparatus according to claim 6 wherein the piston and housing each include stop means for engaging one with the other for establishing the first and second positions.
- 9. Apparatus according to claim 6 wherein the housing has a piston-receiving open ended chamber bounded by a back wall and depending sidewalls, and said piston being reciprocally located therein.
- 10. Apparatus according to claim 9 wherein said piston includes an outer peripheral groove and an O ring located therein engaging with the sidewalls of the chamber for forming an air seal.
- 11. Apparatus according to claim 9 wherein a rearward portion of the piston includes a counterbored recess therein for establishing at least a minimum space between said piston and back wall, and the housing includes pneumatic means communicating with at least said minimum space for causing the piston to move into the first position under pneumatic pressure and move to the second position under reduced pneumatic pressure.
- 12. A method for printing articles comprising the steps of:
- at a plurality of transfer stations, supporting a flexible working surface against a plate of selected relatively small porosity, pneumatically drawing the flexible working surface thereagainst without distortion thereof; and sequentially applying a portion of a separable design thereon, until a complete design is applied thereto;
- selecting the working surface from silastic materials having an affinity for the design less than the article; and selecting materials for the design from thermoplastic compounds;
- at a print station, moving a flexible actuator having a deformable solid pre-shaped face into engagement with said working surface in opposition to the design carrying side thereof to deform a portion of said working surface into conformance with a selected profile; and then driving the so deformed working surface into engagement with a design receiving surface of the article in a nonslip rolling-like contact having a selected contact angle of between 5.degree. and 50.degree. to thereby separate the complete design from the working surface and transfer it to the article;
- selecting the profile for conformance of the working surface as a function of a design receiving surface of the article to thereby have a shape adapted to engage the article first from the center to an outer peripheral edge thereof at said selected contact angle.
- 13. A method according to claim 12 wherein the contact angle is about 15.degree..
- 14. A method according to claim 12 further including the step of spacing the working surface in a fixed spacial relationship with the means for driving the working surface into engagement with the design receiving surface of the article.
- 15. A method according to claim 12 further including the step of resiliently supporting the flexible surface in engagement with a rigid porous plate.
- 16. A method according to claim 12 including the step of selecting the porosity of said plate to have a pore size of about 50 microns.
- 17. A method according to claim 12 including the step of peripherally supporting the working surface and aligning same with the porous plate.
- 18. A method according to claim 17 further including the step of reciprocally engaging and disengaging the porous plate and working surface and respectively locking and unlocking the working surface relative to said plate.
Parent Case Info
This is a continuation of application Ser. No. 332,723, filed Dec. 21, 1981, now abandoned.
US Referenced Citations (9)
Continuations (1)
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Number |
Date |
Country |
Parent |
332723 |
Dec 1981 |
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