

MSW Sandwich squeegee
- Commodity name: MSW Sandwich squeegee
Classification:
Keywords: Squeegee | Screen | Ink
Solvent-resistant sandwich squeegee SPS-MSW
With the development of electronic industry, precision screen printing has also been developed rapidly, and the requirements for screen printing squeegees are getting higher and higher. Changzhou Plet Company introduces Japanese SPS-MSW sandwich squeegee, which inherits the excellent quality of Japanese squeegee, excellent solvent resistance and abrasion resistance, stable screen printing quality and high printing life, suitable for electronic screen printing.
Advantage
The hardness of the intermediate layer of the sandwich squeegee is as high as 95A, which plays a role in supporting the squeegee from deformation during long-term printing, maintaining a stable printing angle, and ensuring uniform printing film thickness.
Size and Hardness
Size
Size(a*b*c) | ![]() |
a(±0.3mm) b(±1mm) c(+10mm) | Inspection method |
9*30*1950mm | Vernier caliper/film scale | ||
9*42*1950mm | |||
9*48*1950mm | |||
9*50*1950mm |
Hardness
Polyurethane squeegee MADE IN JAPAN | Cyan--62(±3)A | Durometer TYPE-GS-719N | ![]() |
Green--70(±3)A | |||
Blue--75(±3)A | |||
Yellow--83(±3)A |
Material
Polyurethane rubber
Printing side
One side is brushed and the other side is smooth and glossy. When viewed in the light, the brushed side is chosen as the printing side for longer life and more consistent print quality.
Physical property
Item | Unit | MSM type polyurethane rubber | |||
Colour | Cyan 62A | Green 70A | Blue 75A | Yellow83A | |
Hardness | JIS-A | 62±3 | 70±3 | 75±3 | 83±3 |
100% tensile | MPa | 2.52 | 2.77 | 3.70 | 5.89 |
200% tensile | MPa | 3.72 | 4.09 | 5.38 | 8.63 |
300% tensile | MPa | 6.50 | 5.85 | 7.38 | 11.1 |
Maximum Stretch | MPa | 35.1 | 24.6 | 17.2 | 11.7 |
Tensile limit | % | 632 | 563 | 521 | 523 |
Rupture strength | KN/m | 45.4 | 55.5 | 67.7 | 81.5 |
Chemical solvent resistance
Testing time: 7DAYS
Test solvent: xylene,methyl ethyl ketone
Test items: Hardness change, mass change
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