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    • 5. 发明申请
    • STRIKE TIP FOR A PICK TOOL HAVING A FLAT APEX AREA
    • 对于具有平坦的APEX区域的PICK工具的诀窍
    • US20150211366A1
    • 2015-07-30
    • US14430001
    • 2013-09-27
    • ELEMENT SIX GMBH
    • Bernd Heinrich RiesFrank Friedrich Lachmann
    • E21C35/183E01C23/12
    • E21C35/183E01C23/12E21C2035/1806E21C2035/1816
    • A strike tip (100) for a pick tool, comprising a strike structure (120) joined to a substrate (110) at an interface boundary (115), the strike structure (120) comprising or consisting or super-hard material and the substrate (110) comprising or consisting of carbide material; the strike tip having a proximate strike end (117) coterminous with the super-hard material and a distal end (118) defined by the substrate (110), a side connecting the strike and distal ends; the strike end (117) including a flat apex area (150) and an outer area extending from the apex to the side. The apex area (150) is substantially less than the outer area, and is at least 1 square millimetre and at most 25 square millimetres.
    • 用于拾取工具的击打尖端(100),包括在界面边界(115)处接合到基底(110)的冲击结构(120),所述击打结构(120)包括或组成或超硬材料,并且所述基底 (110)包括或由碳化物材料组成; 所述击打尖端具有与所述超硬材料相邻的邻近冲击端(117)和由所述基底(110)限定的远端(118),连接所述冲击和远端的侧面; 所述冲击端部(117)包括平坦的顶点区域(150)和从顶点延伸到侧面的外部区域。 顶点区域(150)基本上小于外部区域,并且至少为1平方毫米且至多为25平方毫米。
    • 9. 发明授权
    • Pick tool assembly and method of using same
    • 选择工具组装及其使用方法
    • US09334732B2
    • 2016-05-10
    • US14435185
    • 2013-11-06
    • ELEMENT SIX GMBH
    • Frank Friedrich LachmannBernd Heinrich Ries
    • E21C35/193E21C35/19E21C35/183E21C35/18
    • E21C35/19E21C35/183E21C35/1933E21C2035/1806E21C2035/182
    • A pick tool assembly (100) comprises a strike tip (210), a holder (230) and a reversible attachment mechanism 245, 350) for coupling the strike tip (210) to the holder (230), in which the strike tip (210) comprises a strike surface including an apex. The pick tool assembly (100) will be configured such that the strike tip (210) can be non-moveably coupled to the holder (230) in a plurality of mutually opposite orientations relative to the holder, the orientations being about a symmetry axis (L) through the apex. The attachment mechanism will limit the opposite orientations (245-ii, 245-ii) to being at least about 160 degrees azimuthally apart, and be configured such that the strike tip (210) may be coupled to the holder assembly (230) in either of two and only two mutually opposite orientations.
    • 拾取工具组件(100)包括击打尖端(210),保持器(230)和可逆附接机构245,350,用于将击打尖端(210)联接到保持器(230),其中击打尖端 210)包括包括顶点的撞击表面。 拾取工具组件(100)将被构造成使得撞击尖端(210)能够以相对于保持器的多个相互相反的取向不可移动地联接到保持器(230),该取向约为对称轴线 L)通过顶点。 附接机构将相反的取向(245-ii,245-ii)限制在至少约160度的方位角分开,并且被构造成使得撞击尖端(210)可以联接到保持器组件(230) 只有两个相互相反的方向。
    • 10. 发明授权
    • Cemented carbide material
    • 硬质合金材料
    • US09314847B2
    • 2016-04-19
    • US14475465
    • 2014-09-02
    • Element Six GmbH
    • Igor Yurievich KonyashinBernd Heinrich RiesFrank Friedrich Lachmann
    • B22F3/24C22C29/08B22F7/00C22C29/00C22C29/06B22F5/00
    • Cemented carbide material comprising tungsten carbide (WC) material in particulate form having a mean grain size D in terms of equivalent circle diameter of at least 0.5 microns and at most 10 microns, and a binder phase comprising cobalt (Co) of at least 5 weight per cent and at most 12 weight per cent, W being present in the binder at a content of at least 10 weight per cent of the binder material; the content of the WC material being at least 75 weight per cent and at most 95 weight per cent; and nanoparticles dispersed in the binder material, the nanoparticles comprising material according to the formula CoxWyCz, where X is a value in the range from 1 to 7, Y is a value in the range from 1 to 10 and Z is a value in the range from 0 to 4; the nanoparticles having a mean particle size at most 10 nm, at least 10 per cent of the nanoparticles having size of at most 5 nm; the cemented carbide material having a magnetic coercive force in the units kA/m of at least −2.1XD+14.
    • 硬质合金材料包括颗粒形式的碳化钨(WC)材料,其平均晶粒尺寸D以当量圆直径为至少0.5微米至至多10微米,以及包含至少5重量%的钴(Co)的粘结相 百分之一和最多12重量百分比,W以粘合剂材料的至少10重量%的含量存在于粘合剂中; WC材料的含量至少为75重量%,最多为95重量%; 和分散在粘合剂材料中的纳米颗粒,纳米颗粒包含根据式CoxWyCz的材料,其中X为1至7的范围内的值,Y为1至10范围内的值,Z为范围内的值 从0到4; 纳米颗粒具有至多10nm的平均粒度,至少10%的纳米颗粒具有至多5nm的尺寸; 具有至少-2.1XD + 14的单位kA / m的磁矫顽力的硬质合金材料。