会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 7. 发明授权
    • Method and system for generating material remover cutting paths for a machine tool
    • 用于生成机床的材料去除器切割路径的方法和系统
    • US09489339B2
    • 2016-11-08
    • US13712861
    • 2012-12-12
    • Delcam Limited
    • Stephen William Mackman
    • G06F17/00G05B19/4093G05B19/4097
    • G05B19/19G05B19/4093G05B19/4097G05B2219/35159G05B2219/36266G05B2219/45145G06F17/00Y02P90/265
    • A method of generating a plurality of cutting paths for a material remover, which generates a set of offsets from the perimeter of the model for each corner region of the model; creates, for each offset within each of the sets, a subset of cutting paths based upon each offset with each cutting path within the subset separated from a neighbouring cutting path within the subset by a stepover, wherein a portion of a first cutting path in one of the subsets has a distance of greater than the stepover to the last cutting path in a previous subset; joins cutting paths from within a subset at each corner region forming complete cutting paths causing a material remover to move between corner regions; and creates backfill cutting paths used to remove material from between subsets of cutting paths in the portion greater than the stepover between the subsets.
    • 一种用于产生用于材料去除器的多个切割路径的方法,其从模型的周边生成与模型的每个拐角区域的边界的一组偏移量; 为每个组中的每个偏移创建基于每个偏移的切割路径的子集,所述每个偏移与所述子集内的每个切割路径通过步进与所述子集内的相邻切割路径分离,其中一个第一切割路径的一部分 子集的距离大于前一子集中的最后切割路径的距离; 在每个拐角区域内从子集内连接切割路径,形成完整的切割路径,导致材料去除器在拐角区域之间移动; 并产生用于从部分之间的切割路径的子集之间移除材料的回填切割路径,大于子集之间的间隔。
    • 8. 发明申请
    • High Speed Smooth Tool Path
    • 高速平滑刀具路径
    • US20160246280A1
    • 2016-08-25
    • US14628246
    • 2015-02-21
    • Samarinder Singh
    • Samarinder Singh
    • G05B19/19B23C3/00
    • G05B19/19B23C3/20G05B2219/35101G05B2219/45145
    • Improvements in a high speed smooth tool path is presented where the high speed smooth tool path to be used for primarily finishing for finishing any type of walls (negative/positive drafted) for any given bounded region be it 3, 4, 5, . . . n sided shape. The tool path incorporates a combined strategy for finishing the walls while removing any excess material leftover from a previous larger diameter cutter. This tool-motion can be utilized for roughing the regions by approximating the walls by offsetting the regions inwards. The finished boundaries are offset inwards and then cut using these methods. This is optimized as opposed to moving the cutter at a consistent speed in the cutting path. This is performed to eliminate the wasted tool-motion to the maximum extent. This technique is implemented for roughing any closed or open bounded areas regardless of the walls being straight, drafted (negative/positive or both).
    • 提出了高速平滑刀具路径的改进,其中用于主要精加工的高速平滑刀具路径用于完成任何给定有界区域的任何类型的壁(负/正吸取)为3,4,5。 。 。 n面形。 刀具路径结合了整理墙壁的组合策略,同时从之前的较大直径刀具中除去多余的剩余材料。 该工具运动可以用于通过使区域向内偏移来逼近壁来粗加工区域。 完成的边界向内偏移,然后使用这些方法切割。 这是优化的,而不是在切割路径中以一致的速度移动切割器。 这是为了最大限度地消除浪费的刀具运动。 这种技术用于粗加工任何封闭或开放的有界区域,而不管壁是直的,起草的(负/正或两者)。