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d1 (mm)
L (mm)
d1 (mm) L (mm) d2 (mm) K (mm) R Product Code Price Stock 3D Add to Cart
10 100 16 5 0.5 SPPAV0710100

10 160 16 5 0.5 SPPAV0710160

10 250 16 5 0.5 SPPAV0710250

10 315 16 5 0.5 SPPAV0710315

10 400 16 5 0.5 SPPAV0710400

12 100 18 7 0.8 SPPAV0712100

12 160 18 7 0.8 SPPAV0712160

12 250 18 7 0.8 SPPAV0712250

12 315 18 7 0.8 SPPAV0712315

12 400 18 7 0.8 SPPAV0712400

14 160 22 7 0.8 SPPAV0714160

14 250 22 7 0.8 SPPAV0714250

14 400 22 7 0.8 SPPAV0714400

16 160 22 7 0.8 SPPAV0716160

16 250 22 7 0.8 SPPAV0716250

16 400 22 7 0.8 SPPAV0716400

16 500 22 7 0.8 SPPAV0716500

2.0 100 4 2 0.2 SPPAV0720100

2.0 160 4 2 0.2 SPPAV0720160

2.5 100 5 2 0.3 SPPAV0725100

2.5 160 5 2 0.3 SPPAV0725160

3.0 100 6 3 0.3 SPPAV0730100

3.0 160 6 3 0.3 SPPAV0730160

3.0 250 6 3 0.3 SPPAV0730250

3.5 100 7 3 0.3 SPPAV0735100

3.5 160 7 3 0.3 SPPAV0735160

4.0 100 8 3 0.3 SPPAV0740100

4.0 160 8 3 0.3 SPPAV0740160

4.0 250 8 3 0.3 SPPAV0740250

4.5 100 8 3 0.3 SPPAV0745100

4.5 160 8 3 0.3 SPPAV0745160

5.0 100 10 3 0.3 SPPAV0750100

5.0 160 10 3 0.3 SPPAV0750160

5.0 250 10 3 0.3 SPPAV0750250

6.0 100 12 5 0.5 SPPAV0760100

6.0 160 12 5 0.5 SPPAV0760160

6.0 250 12 5 0.5 SPPAV0760250

6.0 315 12 5 0.5 SPPAV0760315

7.0 100 12 5 0.5 SPPAV0770100

7.0 160 12 5 0.5 SPPAV0770160

7.0 250 12 5 0.5 SPPAV0770250

8.0 100 14 5 0.5 SPPAV0780100

8.0 160 14 5 0.5 SPPAV0780160

8.0 250 14 5 0.5 SPPAV0780250

8.0 315 14 5 0.5 SPPAV0780315

ISO 6751, DIN 1530 Form: AH

"SPPAV07" Ejector Pins are produced with added copper / Cbn (nickel bornite) into material during production. Considerably higher heat conductivity. The cooling for the desired area of mould is provided very quickly without deviating the targeted area. Due to thermal optimisation, very high quality product is obtained from moulds under optimum temperature. Also, due to thermal optimisation again, production time per part is shortened as 30%. By changing according to the material, the heat conductivity is x6 times higher than standard ejector pins. There is no need to use pin lubricating oil for Copper Ejector Pins. Even after cooling, it does not lose its conductivity, does not deform, it can be welded, soldered, ground and polished. However, coated products cannot be machining on the lathe or milling machine.

Material: Copper Alloy
Body Hardness: HRC min. 180 HB
Head Hardness: HRC min. 180 HB
Tensile Resistance: ~650 N/mm² 
Heat Conductivity: ~200 W/mK
Surface Roughnes: Ra <0.8 Micron

Order: SPPAV07. d1 x L