IP Library Granted Patent US 12,162,264
Granted Patent B2
US 12,162,264 · App. 17/775,424 · Granted Dec 10, 2024

Screen loading system

Inventor: Christopher Sheppard (Weymouth, GB)
Assignee: ASMPT SMT SINGAPORE PTE. LTD.
B41F15/36H05K3/1225B41P2215/12H05K2203/0169
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Quick Facts
Patent No.
US 12,162,264
App. No.
17/775,424
Granted
Dec 10, 2024
Kind
B2
Abstract

A tensioning frame ( 22 ) for tensioning a printing screen ( 3 ) comprises a plurality of elongate beams ( 30 A- 30 D) which extend around the periphery of the printing screen ( 3 ) and define the tensioning frame ( 22 ), wherein at least one of the beams ( 30 A- 30 D) comprises an opening ( 32 ) which is dimensioned to permit a printing screen ( 3 ) to be received therethrough, in a lateral direction (A). Mechanisms are described for engagement of the tensioning screen ( 22 ) and printing screen ( 3 ), as well as an apparatus and a method permitting the lateral loading of the printing screen ( 3 ).

Claims (32)

1. A tensioning frame for tensioning a printing screen, the tensioning frame comprising: a plurality of elongate beams which extend around the periphery of the tensioning frame and define the tensioning frame, the tensioning frame being substantially planar, wherein at least one of the beams comprises an opening in a lateral side thereof which is dimensioned to permit a printing screen to be received therethrough in a direction parallel to the plane of the tensioning frame, and

wherein each beam comprises a blade which is movable along a range of travel in a direction normal to the plane of the tensioning frame, between a withdrawn position in which the blade is spaced from the printing screen in use and an operational position in which the blade contacts the printing screen in use.

2. The tensioning frame of claim 1 , wherein each beam comprises:

an engagement body at least partially located within the beam, the engagement body carrying an engagement surface for engaging with a printing screen in use, the engagement body being movable relative to the beam along a range of travel in a plane normal to the length of the beam; and

an actuator operatively connected to the engagement body for moving the engagement body, and hence engagement surface, relative to the beam.

3. The tensioning frame of claim 2 , wherein the plurality of beams define an interior region of the tensioning frame in which a central region of a printing screen is located in use, and the actuator is operative to move the engagement body in a direction towards the interior region.

4. The tensioning frame of claim 2 , wherein each engagement surface is formed on a respective engagement arm, which is movably mounted to a respective engagement body, the engagement arm being movable relative to the engagement body between a retracted position to permit a printing screen to be fully inserted into the tensioning frame in use and an extended position in which the engagement surface may contact a printing screen in use.

5. The tensioning frame of claim 4 , wherein the engagement arm is tensioned into the extended position.

6. The tensioning frame of claim 1 , wherein each beam includes a profiled section to impel an edge of the printing screen towards said beam in use.

7. The tensioning frame of claim 1 , wherein each beam comprises:

a respective actuating member which is movable along the length of the respective beam; and

a respective motion converting mechanism operative to convert the movement of the respective actuating member to movement normal to the plane of the tensioning frame, arranged such that the movement of each blade in use is driven by the respective actuating member via the respective motion converting mechanism.

8. The tensioning frame of claim 7 , wherein each respective motion converting mechanism comprises a slotted link mechanism or a Geneva mechanism.

9. The tensioning frame of claim 1 , comprising a lock for locking the blade at the operational position.

10. A tensioning frame for tensioning a printing screen, the tensioning frame comprising a plurality of elongate beams which extend around the periphery of the tensioning frame and define the tensioning frame, the tensioning frame being substantially planar, each beam comprising:

an engagement body at least partially located within the beam, the engagement body carrying an engagement arm for engaging with a printing screen in use, the engagement body being movable with respect to the beam along a range of travel in a plane normal to the length of the beam; and

an actuator operatively connected to the engagement body for moving the engagement body, and the hence engagement arm, relative to the beam,

wherein the engagement arm is movably mounted to a respective engagement body such that the engagement arm is movable relative to the engagement body.

11. The tensioning frame of claim 10 , wherein each engagement arm is pivotably or slidably mounted to a respective engagement body.

12. The tensioning frame of claim 10 , wherein the actuator comprises at least one actuator from the group consisting of pneumatic actuator, pneumatic piston, and electric actuator.

13. The tensioning frame of claim 10 , wherein the plurality of beams define an interior region of the tensioning frame in which a central region of a printing screen is located in use, and the actuator is operative to move the engagement body in a direction towards the interior region.

14. A method of loading a printing screen into a tensioning frame, comprising the steps of:

i) providing a tensioning frame, and

ii) inserting a printing screen into the tensioning frame through a side thereof;

wherein the tensioning frame is substantially planar and comprises an opening in a lateral side thereof, dimensioned to receive the printing screen in a direction parallel to the plane of the tensioning frame, and

wherein the tensioning frame comprises:

a plurality of elongate beams which extend around the periphery of the tensioning frame and define the tensioning frame, the tensioning frame being substantially planar,

an engagement body at least partially located within a beam, the engagement body carrying an engagement arm for engaging with a printing screen in use, the engagement body being movable relative to said beam along a range of travel in a plane normal to the length of said beam, and

wherein the engagement arm is movably mounted to a respective engagement body,

and wherein step i) comprises moving the engagement arm relative to the engagement body into a retracted position in which, in step ii), the printing screen may be fully inserted into the tensioning frame without contacting the engagement arm.

15. The method of claim 14 , wherein step ii) comprises using a robot.

16. The method of claim 14 , further comprising an initial step of locating the tensioning frame within a printing machine.

Assignments (3)
CHANGE OF NAME Recorded Jan 20, 2023
From: ASM ASSEMBLY SYSTEMS SINGAPORE PTE. LTD.
To: ASMPT SMT SINGAPORE PTE. LTD.
Reel/Frame 062449/0454 →
CORRECTIVE ASSIGNMENT TO CORRECT THE NAME OF THE ASSIGNEE PREVIOUSLY RECORDED ON REEL 059871 FRAME 0162. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Jan 10, 2023
From: SHEPPARD, CHRISTOPHER
To: ASM ASSEMBLY SYSTEMS SINGAPORE PTE. LTD.
Reel/Frame 062342/0265 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 9, 2022
From: SHEPPARD, CHRISTOPHER
To: ASM TECHNOLOGY SINGAPORE PTE. LTD.
Reel/Frame 059871/0162 →
Priority Claims (1)
GB 1916469 · Nov 13, 2019 · national
Continuity (1)
Related Publication 20220410558A1 · Dec 29, 2022