Materials » Ferrous Powders » Iron Powders » Iron Powder Reduced
- Iron Powder Reduced
- Production technique: water atomization, annealing (H2 furnace), sieving
- Particle shape: irregular
- Particle size distribution: 850 to 45 microns.
- Apparent density: 2.6 to 3.7 g/cm3
- Total oxygen content: 0.25 to 0.06%
- Fe content: up to 99.5%
- Depending on application, aspects like chemical composition, particle specific surface, shaping aspects, sintering behaviour, are defining production specifications.
- Colour: light grey
FerSint RI
Ferelet RI
Ferchim RI
Ferblast RI
Selefer
Fermiscres RI
Fertag RI
| Product Group: | Iron Powder Reduced |
| Description of the material and main chemical components: | iron powder with low content of oxides C and S |
| Description of the manufacturing process: | water atomisation, annealing and final sieving |
| Typical applications: | Fundamental material for sintering applications |
| Main characteristic of the product Type: | low content of oxides, irregular shape and low density are essential conditions to obtain flowability, green strenghts and characteristics after sintering |
| Particle shape: | irregular |
| Particle upper cut size (Full range): | 180 to 212 |
| Particle upper cut size (Typical): | 180 to 212 |
| Apparent density (Typical): | 2,6 to 3,0 |
| Recommended Pakaging: | BB 1500 |
| Application notes: | this product type is the essential material of any of Pometon sintering blend (ferrous sinterring) |
| Key elements: | Fe iron |
| Key Processing: | Annealing, Atomisation: powder |
Other grades are available
| grade | sieving size | Ot% | Carbon% | Apparent Density |
| RI 180/2.6 | 180 | 0.15 | 0.01 | 2.60 to 2.70 |
| RI 180/3.0 | 180 | 0.10 | 0.01 | 2.95 to 3.05 |
| RI 212/2.9 | 212 | 0.15 | 0.01 | 2.80 to 3.00 |
| Product Group: | Iron Powder Reduced |
| Description of the material and main chemical components: | iron powder with low content of Oxides. Similar to family Ferelet MT but with added processing of annealing. |
| Description of the manufacturing process: | water atomisation, annealing, sieving, (possible) mechanical action |
| Typical applications: | material for production of welding electrodes |
| Main characteristic of the product Type: | mostly characterised by coarse size and low Oxides content. Available in high and low density |
| Particle shape: | slightly irregular, globular, with smooth surface |
| Particle upper cut size (Full range): | 300 to 500 |
| Particle upper cut size (Typical): | 300 to 500 |
| Apparent density (Typical): | 3,0 to 3,7 |
| Recommended Pakaging: | BB 1500 |
| Application notes: | mechanical action has result to rise density |
| Key elements: | Fe iron |
| Key Processing: | Atomisation: powder |
Other grades are available
| grade | sieving size | Ot% | Carbon% | Apparent Density |
| RI 212/2,9 | 212 | 0,25 | 0,01 | 2,9 |
| RI 425/3 | 425 | 0,25 | 0,01 | 3 |
| RI 425/3,7 | 425 | 0,25 | 0,01 | 3,7 |
| Product Group: | Iron Powder Reduced |
| Description of the material and main chemical components: | iron powder with lowest content of Oxides and highest content of metallic Iron (ZVI) |
| Description of the manufacturing process: | Thightly controlled smelting, water atomisation, annealing and final sieving |
| Typical applications: | Ferchim has broad use as raw material to chemical processes to be transformed in other components (i.e. Fe2O3) , or as a catalyst, or to be used in electrolitic processes, or to alloy with other metals. |
| Main characteristic of the product Type: | Mostly characterised by strict parameters of chemical composition which can be customised in specific cases. Particle size distribution can also be selective. |
| Particle shape: | irregular to round |
| Particle upper cut size (Full range): | 63 to 500 |
| Particle upper cut size (Typical): | 63 to 500 |
| Apparent density (Typical): | 2.9 to 3.5 |
| Recommended Pakaging: | BB 1500 |
| Application notes: | Selected when application requires the highest level of Metallic iron and strict control on other metals presence |
| Key elements: | Fe iron |
| Key Processing: | Annealing, Atomisation: powder |
Other grades are available
| grade | sieving size | Ot% | Carbon% | Apparent Density |
| RI 63/3.2 | 63 | 0.5 | 0.01 | 3.2 |
| RI 106/3.4 | 106 | 0.25 | 0.01 | 3.4 |
| RI 150/3.4 | 150 | 0.25 | 0.01 | 3.4 |
| Product Group: | Iron Powder Reduced |
| Description of the material and main chemical components: | iron powder with low content of Oxides. Similar to family Ferblast MT but with added processing of annealing. |
| Description of the manufacturing process: | water atomisation, annealing and final sieving |
| Typical applications: | Soft blasting (i.e. rubber and glass moulds) |
| Main characteristic of the product Type: | mostly characterised by coarse size with shape and size distribution suiting to abrasion purposes. Low level of Oxides bring a very soft blasting effect |
| Particle shape: | slightly irregular, globular, with smooth surface |
| Particle upper cut size (Full range): | 106 to 850 |
| Particle upper cut size (Typical): | 300 to 500 |
| Apparent density (Typical): | 3,5 to 3,7 |
| Recommended Pakaging: | S25 P1000 |
| Application notes: | Powder colour grade on light grey suits most demanding product colour restrictions |
| Key elements: | Fe iron |
| Key Processing: | Atomisation: powder |
Other grades are available
| grade | sieving size | Ot% | Carbon% | Apparent Density |
| RI 212/3,7 | 212 | 0,25 | 0,01 | 3,65 |
| RI300/3,7 | 212 | 0,25 | 0,01 | 3,65 |
| RI 500/3,6 | 212 | 0,25 | 0,01 | 3,65 |
| Product Group: | Iron Powder Reduced |
| Description of the material and main chemical components: | iron powder with controlled content of S, C |
| Description of the manufacturing process: | water atomisation, annealing, mechanical action and sieving |
| Typical applications: | Agriculture seeds segregation, exploiting magnetic sensitivity of fine iron powder |
| Main characteristic of the product Type: | irregular shape, fine grade and high iron content |
| Particle shape: | partially lamellar/irregular |
| Particle upper cut size (Full range): | 63 to 150 |
| Particle upper cut size (Typical): | 106 |
| Apparent density (Typical): | 3,7 |
| Recommended Pakaging: | T25P500 |
| Application notes: | iron particles adhere to damaged seeds and allow a magnetic segregation |
| Key elements: | Fe iron |
| Key Processing: | Atomisation: powder |
Other grades are available
| grade | sieving size | Fe content % | Carbon% |
| HH | 63 | 96 | 0,05 |
| HSC | 106 | 98 | 0,05 |
| HSS | 106 | 95 | 0,6 |
| Product Group: | Iron Powder Reduced |
| Description of the material and main chemical components: | iron powder with low content of oxides and controlled content of S and C |
| Description of the manufacturing process: | water atomisation, annealing and final sieving |
| Typical applications: | filler to preparation of resin compounds |
| Main characteristic of the product Type: | irregular shape, high iron content, grade with important percentage of fine portion |
| Particle shape: | irregular |
| Particle upper cut size (Full range): | 106 |
| Particle upper cut size (Typical): | 106 |
| Apparent density (Typical): | 3,4 |
| Recommended Pakaging: | |
| Application notes: | Irregular shape and higher particle surface resulting in improvement of bonding effect. Broad particle dimension dispersion towards finer grades gives homogeneity to the bonding. |
| Key elements: | Fe iron |
| Key Processing: | Atomisation: powder |
Other grades are available
| grade | sieving size | Ot% | Carbon% | Apparent Density |
| RI 106/3,4 | 106 | 0,25 | 0,01 | 3,4 |
| RI 212/3,4 | 212 | 0,25 | 0,01 | 3,4 |
| RI 63/3,2 | 63 | 0,5 | 0,01 | 3,2 |
| Product Group: | Iron Powder Reduced |
| Description of the material and main chemical components: | iron powder with low content of Oxides, S, C |
| Description of the manufacturing process: | water atomisation, annealing, mechanical process and final sieving |
| Typical applications: | Flame cutting process |
| Main characteristic of the product Type: | High density , low content of Oxides, regular particle shape |
| Particle shape: | regular-round |
| Particle upper cut size (Full range): | 75 to 212 |
| Particle upper cut size (Typical): | 106 to 212 |
| Apparent density (Typical): | 3,7 |
| Recommended Pakaging: | |
| Application notes: | Use on flame cutting torches requires powder of good flowability and regular particles. Low oxide content, light grey colour allow bright finishing of cut metal. |
| Key elements: | Fe iron |
| Key Processing: | Atomisation: powder |
Other grades are available
| grade | sieving size | Ot% | Carbon % | apparent density |
| RI 150/3,4 | 150 | 0,25 | 0,01 | 3,4 |
| RI 212/3,4 | 212 | 0,25 | 0,01 | 3,4 |
| Models | FerSint RI | Ferelet RI | Ferchim RI | Ferblast RI | Selefer | Fermiscres RI | Fertag RI |
| Fe iron | • | • | • | • | • | • | • |
| Cr chromium | |||||||
| P phosphorous | |||||||
| Ni nickel | |||||||
| Mn manganese | |||||||
| Cu copper | |||||||
| Cu (elctrolytic) | |||||||
| Mo molybdenum | |||||||
| Zn zinc | |||||||
| Sn tin | |||||||
| Various Premix additive | |||||||
| AI aluminium | |||||||
| tiO2 titanium dioxide |
| Models | FerSint RI | Ferelet RI | Ferchim RI | Ferblast RI | Selefer | Fermiscres RI | Fertag RI |
| Annealing | • | • | |||||
| Diffusion Bonding | |||||||
| Atomisation: powder | • | • | • | • | • | • | • |
| Atomisation: granules | |||||||
| Electrolytic Powder | |||||||
| Crushing | |||||||
| Mixed/Homogenised powder (ready to use) |
| Model | FerSint RI | Ferelet RI | Ferchim RI | Ferblast RI | Selefer | Fermiscres RI | Fertag RI |
| Sintering | • | ||||||
| Friction | |||||||
| Blasting | |||||||
| Diamonds Tool | |||||||
| Welding | • | ||||||
| Flame cutting | • | ||||||
| Plastic/resin/ceramic filler | • | ||||||
| Carbon brush | |||||||
| Chemical | • | ||||||
| Jewellery | |||||||
| Food/Farmaceutical/Cosmetics | |||||||
| Magnetic | |||||||
| Brazing | |||||||
| Other iron applications | |||||||
| Soft Blasting | • |
- FerSint RI
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Catalogue Sintering
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Pometon introduction
- Ferelet RI
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Pometon introduction
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Catalogue Ferelet
- Ferchim RI
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Catalogue Ferchim
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Pometon introduction
- Ferblast RI
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Pometon introduction
- Fermiscres RI
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Pometon introduction
- Fertag RI
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Pometon introduction
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Fertag-Ferblast