Apparatus for screen printing

4361088
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Inventors

Mierzejewski, Garret S.

Application #

250279

Filed

Apr-2-1981

Published

Nov-30-1982

Current US Class

101/124
101/126
101/38.1

International Classes

B41L 013/18; B05C 017/04

Field of Search

101/38

Examiners

Apley; Richard J.

Attorney, Agent or Firm

Barrett; E. Thorpe

Referenced by:

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Citation

Cite This Patent

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Abstract
Apparatus for screen printing on cylindrical surfaces in which the driving force is created by rotation of the object to be imprinted. The force is transmitted by a belt mechanism and by direct friction between the object being printed and the stencil frame. The stencil frame is mounted for linear movement with minimum yawing and with freedom for vertical movement as required. The printer has particular advantage when the object being printed has a large moment of inertia or is circumferentially unbalanced.
 
Claims
I claim:

1. In a screen printing apparatus for printing on an object having a substantially circular cross section defining a curved surface, the improvement comprising

a stencil assembly having a defined image printing area including;

a printing screen and

a frame supporting said screen,

means supporting said stencil assembly for rectilinear movement,

rotatable means for supporting the object to be imprinted, and

means responsive to an external rotational force applied to said object arranged to move said screen linearly at a velocity equal to the circumferential velocity of the surface to be imprinted comprising

at least one elongating belt connected to said stencil assembly and in engagement with the surface of the object to be imprinted.



Description
BACKGROUND OF THE INVENTION

1. Field of the Invention

This invention relates to screen printing and in particular to apparatus for screen printing on round objects and in which the surface of the object to be printed rotates in synchronism with the linear movement of the screen.

2. Description of the Prior Art

In most apparatus for screen printing on cylindrical surfaces, the object to be imprinted is supported so that it is free to rotate. A screen stencil is positioned tangentially to the cylindrical surface and is then moved laterally while the friction between the stencil and the surface of the object causes the object to rotate as the printing ink is forced through the design openings in the screen.

In another arrangement, such as that shown by Smith in U.S. Pat. No. 1,930,153, the object to be imprinted is supported on a pair of rollers which are driven by frictional contact with a belt held under spring tension. The belt is secured at its ends to the frame that supports the stencil so that lateral movement of the stencil frame causes the stencil screen to move laterally in synchronism with the rotation of the object. The driving force of the printing assembly is produced by movement of the stencil.
 
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