Measuring laser light transmissivity in a to-be-welded region of a work piece
Abstract
Methods for measuring laser light transmissivity of a specific position in a work piece prior to the work piece undergoing laser welding at the specific position with a laser beam having a specific welding wavelength. To obtain a baseline measurement reading, a laser light source projects a laser beam at the welding wavelength directly into a detector. Thereafter, the work piece becomes suspended between the laser light source and detector whereby an output of the detector now corresponds to a work piece measurement reading. Differences between the two readings reveal whether the work piece will yield a satisfactory weld at the specific position when later welded by a laser beam at the welding wavelength. Preferred work pieces include inkjet printhead lids and bodies.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . A method for measuring laser light transmissivity, comprising:
introducing a work piece that is to undergo laser welding at a specific laser wavelength at a work piece position between a laser light source and a detector; passing a laser beam at said wavelength from said laser light source through said work piece in a vicinity of said work piece position and into said detector to obtain a work piece measurement reading; based upon said reading, assessing whether said work piece will satisfactorily undergo laser welding at said work piece position at said wavelength.
2 . The method of claim 1 , further including stepwise controlling movement of said work piece between said laser light source and said detector through a plurality of positions.
3 . The method of claim 1 , further including projecting said laser beam at said wavelength from said laser light source into said detector without passing through said work piece to obtain a baseline measurement reading.
4 . The method of claim 3 , further including determining a difference between said baseline measurement reading and said work piece measurement reading.
5 . The method of claim 1 , wherein said introducing further includes suspending said work piece in a substantially bottomless tray.
6 . The method of claim 1 , further including laser welding said work piece to an ink-jet printhead body at said work piece position.
7 . A method for measuring laser light transmissivity in a work piece, comprising:
providing a work piece that undergoes laser welding at a specific laser wavelength at a work piece position; providing a laser light source and a detector; projecting a laser beam at said wavelength from said laser light source into said detector to obtain a baseline measurement reading; thereafter, suspending said work piece between said laser light source and said detector; projecting said laser beam at said wavelength from said laser light source through said work piece in a vicinity of said work piece position and into said detector to obtain a work piece measurement reading; determining a difference between said work piece measurement reading and said baseline measurement reading; and based upon said determining a difference, identifying whether said work piece will satisfactorily undergo laser welding at said work piece position at said wavelength.
8 . The method of claim 7 , wherein said suspending further includes framing said work piece in a substantially bottomless tray such that, in a direct line between said laser light source and said detector, no portion of said tray crosses said line.
9 . The method of claim 7 , further including stopping said projecting said laser beam and indexing said work piece.
10 . The method of claim 7 , further including projecting said laser beam at said wavelength from said laser light source through said work piece in a vicinity of a second work piece position and into said detector to obtain a second work piece measurement reading.
11 . The method of claim 10 , further including determining a difference between said second work piece measurement reading and said baseline measurement reading.
12 . The method of claim 11 , based upon said determining a difference between said second work piece measurement reading and said baseline measurement reading, identifying whether said work piece will satisfactorily undergo laser welding at said second work piece position at said wavelength.
13 . The method of claim 7 , further including laser welding said work piece to an ink-jet printhead body at said work piece position.
14 . A method for measuring laser light transmissivity of a work piece, comprising:
providing a work piece that undergoes laser welding at a specific laser wavelength at a plurality of work piece positions; fixing a position of a laser light source and a detector relative to one another; suspending said work piece at a home position, said suspending including framing said work piece in a substantially bottomless tray such that, in a direct line between said laser light source and said detector, no portion of said tray crosses said line; with said work piece at said home position, projecting a laser beam at said wavelength from said laser light source into said detector to obtain a baseline measurement reading; moving said work piece from said home position to a first of said plurality of work piece positions, said work piece at said first of said plurality of work piece positions crossing said direct line; thereafter, projecting said laser beam at said wavelength from said laser light source through said work piece at said first of said plurality of work piece positions and into said detector to obtain a first work piece measurement reading; indexing said tray; projecting said laser beam at said wavelength from said laser light source through said work piece at a second of said plurality of work piece positions and into said detector to obtain a second work piece measurement reading; determining a difference between each of said first and second work piece measurement readings and said baseline measurement reading; and based upon said determining a difference, identifying whether said work piece will satisfactorily undergo laser welding at said first and second work piece positions at said wavelength.
15 . The method of claim 14 , further including laser welding said work piece to an ink-jet printhead body at said first and second work piece positions.
16 . The method of claim 14 , wherein said indexing further includes stepping said tray in a pattern substantially paralleling a periphery of said work piece.
17 . The method of claim 14 , wherein said suspending further includes laying a surface of said work piece onto a ledge of said substantially bottomless tray.
18 . An inkjet printhead, comprising:
an inkjet printhead body; and an inkjet printhead lid having at least one work piece position thereof measured for laser light transmissivity at a specific laser wavelength laser welded to said ink-jet printhead body at said at least one work piece position.
19 . The inkjet printhead of claim 18 , wherein said inkjet printhead lid further includes a plurality of work piece positions measured for laser light transmissivity at said wavelength arranged in a pattern substantially paralleling a periphery of said work piece.
20 . The inkjet printhead of claim 19 , wherein said pattern is substantially rectangular.Join the waitlist — get patent alerts
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