详细介绍: SANDVIK合金条料材质证明H10F 硬质合金长条(钨钢)进口钨钢板块,山特维克钨钢棒,进口钨钢精磨棒
山特维克硬质合金棒 山特维克硬质合金长条 山特维克硬质合金板料 山特维克硬质合金精磨棒
H6F硬质合金材料是山特维克一款在H10F基础上研发的材料,其钴含量5%,碳化钨颗粒度0.8微米,硬度HRA93.2。密度14.9。特有的硬度和超高耐磨性能,为一些特殊产品的低速精加工提供了更高的材质保障。 DM80硬质合金材料,钴含量8.5%,碳化钨颗粒度0.8微米,硬度HRA93.5,独有的生产工艺,硬度及韧性,更适合用于HRC45-60度之间材料的半成品加工。
PN90硬质合金材料是目前山特维克研发的一款新型超微颗粒材料,其硬度达到HRA93.9,碳化钨颗粒度0.2微米,为目前山特维克研发的最高硬度硬质合金。耐磨性以及韧性均达到了完美
的均衡组合,处于硬质合金材料的世界领先水平。 硬质合金比高速钢切削速度高4~7倍,寿命高5~80倍。制造模具、量具,寿命比合金工具钢高 20~150倍。可切削50HRC左右的硬质材料。但硬质合金脆性大,不能进行切削加工,难以制成形状复杂的整体,因而常制成不同形状的刀片,采用焊接、粘接、机械夹持等方法安装在刀体或模具体上使用。
SANDVIK alloy PN90 hard alloy (Wu Gang) import Wu Gang plate, Wu Gang bar, Wu Gang grinding rod
Sandvik tungsten rod Sandvik tungsten steel strip Sandvik tungsten steel materialSandvik tungsten steel grinding rod
H6F hard alloy material is Sandvik a based on H10F development of the material, thecontent of cobalt tungsten carbide particle size 5%, 0.8 micron, the hardness of HRA93.2. Density of 14.9. The peculiar hardness and super high wear resistance,provides higher material guarantee for the low speed precision machining of some special products. DM80 hard alloy material, the content of cobalt 8.5%, tungsten carbide particles of 0.8 micrometers, hardness HRA93.5, the unique production process, hardness and toughness, more suitable for the processing of semi-finished products between HRC45-60 degrees materials.
PN90 hard alloy material is the development of a new type of Sandvik ultrafine particlematerial, its hardness reaches HRA93.9, tungsten carbide particle degree 0.2 micron,is currently the highest hardness of cemented carbide Sandvik R & D. Wear resistance and toughness were perfect
A balanced portfolio, in the leading level in the world of hard alloy material. Hard alloy 4 ~ higher than high speed steel cutting speed 7 times, life of high 5 ~ 80 times.Manufacturing mold, measuring tools, life than alloy tool steel high 20 ~ 150 times.Hard material cutting about 50HRC. But the hard alloy brittleness, cutting can not, is difficult to made the overall shape of the complex, which often made into differentshapes of blade, installed on a cutter body or a die body by welding, bonding,mechanical clamping method.
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