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Młyn planetarno-kulowy PM 200

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Młyn planetarno kulowy PM 200

(prosimy osobno zamówić naczynia oraz kule mielące)
20.640.0001
PM 200z 2 stanowiskami do mielenia, stosunek prędkości 1 : -2 
inne wersje elektryczne dostępne w tej samej cenie
 

Accessories Planetary Ball Mills

22.661.0003Clamping unit for PM 200
03.025.0178Adapter do piętrowania naczyń mielących 50 ml - 80 ml
02.728.0048Counter aid for sun wheel PM 100, PM 200 and PM 400
03.486.0062Opening aid for clamping unit of planetary ball mills
99.200.0008IQ/OQ Documentation for PM 200
 

Naczynia mielące EasyFit

(grinding jars EasyFit are suitable for all planetary ball mills)
 

Utwardzana stal nierdzewna

01.462.023912 ml
01.462.024025 ml
01.462.051650 ml
01.462.051780 ml
01.462.0518125 ml
 

Węglik wolframu

01.462.049450 ml
01.462.049580 ml
01.462.0527125 ml
 

Agat

01.462.050950 ml
01.462.051180 ml
01.462.0515125 ml
 

Korund

01.462.050750 ml
01.462.0512125 ml
 

Tlenek cyrkonu

01.462.050850 ml
01.462.051080 ml
01.462.0513125 ml
 

Akcesoria do naczyń mielących EasyFit do mielenia na mokro, w atmosferze obojętnej oraz stopowania mechanicznego (MA)

Pokrywy z zaworami (zawierają wkładkę)

22.107.0613for grinding jars EasyFit 50 ml - 125 ml, hardened stainless steel
22.107.0616for grinding jars EasyFit 50 ml - 125 ml, tungsten carbide
22.107.0617for grinding jars EasyFit 50 ml - 125 ml, agate
22.107.0615for grinding jars EasyFit 50 ml - 125 ml, zirconium oxide
22.864.0001Zapasowy zestaw zaworów M8x1 do pokrywy z zaworami
 

Inlay for aeration lid

03.474.0225for grinding jars EasyFit 50 ml - 125 ml, hardened stainless steel
03.474.0207for grinding jars EasyFit 50 ml - 125 ml, tungsten carbide
03.474.0208for grinding jars EasyFit 50 ml - 125 ml, agate
03.474.0206for grinding jars EasyFit 50 ml - 125 ml, zirconium oxide
 

Systemy bezpiecznego zamykania

22.867.0011do naczyń mielących EasyFit 50 ml - 125 ml
02.486.0055Pomoc do otwierania systemu bezpiecznego zamykania naczyń
 

Uszczelki do naczyń mielących EasyFit

O-ringi

05.114.0086O-ring for 12 ml grinding jar EasyFit
05.114.0085O-ring for 25 ml grinding jar EasyFit
05.114.0056O-ringi do naczyń mielących EasyFit 50 ml - 125 ml
 

Kule mielące

Pomoc w wyborze
Pomoc w wyborze
Grinding balls are available in different diameters. The rule of thumb is: for efficient milling the ball should be at least 3 times larger than the largest particle in the sample. To avoid abrasion and wear it is essential to only use balls with identical diameter.

The number of grinding balls depends on the jar volume used. The document “Grinding Jar Ball Charge” in the Downloads section provides details about usable volumes, maximum feed sizes and correct filling of the jars with grinding balls for dry and wet milling as well as cell disruption.

Grinding jars and grinding balls should always be made of the same material.

Available materials:
  • Hardened steel (density 7.8 g/cm3; hardness ≤ 235 HB, medium abrasion resistance)
    typically used for pulverizing medium-hard to hard and brittle samples.

  • Stainless steel (density 7.7 g/cm3; hardness ≤ 245 HB, medium abrasion resistance)
    typically used for pulverizing medium-hard to hard and brittle samples.

  • Tungsten carbide (density 14.8 g/cm3; hardness 93.6 HRA; high abrasion resistance)
    used for grinding very hard, brittle sample materials. By using tungsten carbide, contamination of the sample with iron is prevented.

  • Agate (density 2.6 g/cm3; hardness 6.5 – 7 Mohs, low abrasion resistance)
    a highly pure natural material suitable for pulverizing soft to medium-hard or fibrous samples. Due to its low-density agate is suitable for gentle grinding processes with low energy input.

  • Sintered aluminum oxide (density 3.8 g/cm3; hardness 1600 HV 0.5, medium abrasion resistance) is a ceramic material suitable for grinding soft to medium-hard or fibrous samples. It is mainly used for heavy-metal-free grinding processes.

  • Silicon nitride (density 3.6 g/cm3; hardness 1600 HV, high abrasion resistance) is a ceramic material suitable for grinding medium-hard to hard samples. Due to its low density silicon nitride is used for gentle grinding processes with low energy input. Thanks to the high abrasion resistance of the material it is also highly suitable for ultrafine grinding.

  • Zirconium oxide (density 6.05 g/cm3; hardness 1250 HV, high abrasion resistance)
    ceramic material suitable for pulverizing medium-hard to hard and fibrous samples. It is typically used for heavy-metal-free grinding processes or applications which aim at ultrafine particle sizes.

Please note:

The grinding tool material should be harder than the sample. For further information check the “Material Analyses of Equipment & Accessories” document in the Downloads section.
 

Utwardzana stal

05.368.00295 mm Ø
05.368.00307 mm Ø
05.368.005910 mm Ø
05.368.003212 mm Ø
05.368.010815 mm Ø
05.368.003320 mm Ø
 

Stainless steel

22.455.00102 mm Ø, 500 g (approx. 110 ml)
22.455.00113 mm Ø, 500 g (approx. 120 ml)
22.455.00023 mm Ø, 200 pieces (approx. 6 ml)
22.455.00014 mm Ø, 200 pieces (approx. 14 ml)
22.455.00035 mm Ø, 200 pieces (approx. 25 ml)
05.368.00345 mm Ø
05.368.00357 mm Ø
05.368.006310 mm Ø
05.368.003712 mm Ø
05.368.010915 mm Ø
05.368.006220 mm Ø
 

Węglik wolframu

22.455.00063 mm Ø, 200 pieces (approx. 6 ml)
22.455.00054 mm Ø, 200 pieces (approx. 14 ml)
22.455.00045 mm Ø, 200 pieces (approx. 25 ml)
05.368.00385 mm Ø
05.368.00397 mm Ø
05.368.007110 mm Ø
05.368.004112 mm Ø
05.368.011015 mm Ø
05.368.007020 mm Ø
 

Agat

05.368.00245 mm Ø
05.368.00257 mm Ø
05.368.006710 mm Ø
05.368.002712 mm Ø
05.368.011115 mm Ø
05.368.002820 mm Ø
 

Korund

05.368.00195 mm Ø
05.368.002110 mm Ø
05.368.011215 mm Ø
05.368.005420 mm Ø
 

Tlenek cyrkonu

32.368.00050,1 mm Ø, 0,5 kg (ok. 135 ml)
32.368.00030.5 mm Ø, 0,5 kg (ok. 135 ml)
32.368.00041 mm Ø, 0,5 kg (ok. 135 ml)
05.368.00892 mm Ø, 0,5 kg (ok. 135 ml)
05.368.00903 mm Ø, 0,5 kg (ok. 140 ml)
22.455.00073 mm Ø, 200 pieces (approx. 6 ml)
22.455.00095 mm Ø, 200 pieces (approx. 25 ml)
05.368.01467 mm Ø
05.368.009410 mm Ø
05.368.009612 mm Ø
05.368.011315 mm Ø

Further information