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    • 1. 发明授权
    • Corner-consolidating inflatable apparatus and method for manufacturing composite structures
    • 用于制造复合结构的角巩固充气装置和方法
    • US07824171B2
    • 2010-11-02
    • US11261519
    • 2005-10-31
    • Steven F. HansonAmitabh Vyas
    • Steven F. HansonAmitabh Vyas
    • B29C43/36B28B7/30
    • B29C70/446B29C33/505B29C43/10B29C2043/3649B29D99/0003B29L2022/00B29L2031/54Y10S425/112
    • An inflatable compaction tool for consolidating a composite material inside a faceted hollow or tubular mold for a composite part is made from an elastic material. The compaction tool includes relatively flat wall segments conjoined by corner segments that define a sealed chamber. The wall segments curve away from the mold surface toward the midpoint of each wall segment, so that as a pressurized fluid is introduced into the compaction tool, a component of the force exerted on the tool interior surface is transmitted through the wall segments toward the corner segments. Thus, during initial inflation, the corner segments are forced toward the corner regions of the mold before the wall segments contact the composite material, firmly compressing the composite material into the corner regions of the mold before the friction of the wall segments against the composite material inhibits expansion of the corner segments into the mold corner regions.
    • 用于将复合材料固定在用于复合部件的小面中空或管状模具内的可充气压实工具由弹性材料制成。 压实工具包括由限定密封室的角部段相结合的相对平坦的壁段。 壁段从模具表面向每个壁段的中点弯曲,使得当加压流体被引入到压实工具中时,施加在工具内表面上的力的一部分通过壁段传递到角部 细分。 因此,在初始膨胀期间,在壁段接触复合材料之前,角部段被迫朝向模具的拐角区域,在壁段与复合材料摩擦之前,将复合材料牢固地压缩到模具的拐角区域 抑制拐角部分扩展到模具拐角区域。
    • 2. 发明授权
    • Corner-consolidating inflatable method for manufacturing composite structures
    • 用于制造复合结构的角巩固充气方法
    • US08394310B2
    • 2013-03-12
    • US12905804
    • 2010-10-15
    • Steven F. HansonAmitabh Vyas
    • Steven F. HansonAmitabh Vyas
    • B29C43/36B28B7/30
    • B29C70/446B29C33/505B29C43/10B29C2043/3649B29D99/0003B29L2022/00B29L2031/54Y10S425/112
    • An inflatable compaction tool for consolidating a composite material inside a faceted hollow or tubular mold for a composite part is made from an elastic material. The compaction tool includes relatively flat wall segments conjoined by corner segments that define a sealed chamber. The wall segments curve away from the mold surface toward the midpoint of each wall segment, so that as a pressurized fluid is introduced into the compaction tool, a component of the force exerted on the tool interior surface is transmitted through the wall segments toward the corner segments. Thus, during initial inflation, the corner segments are forced toward the corner regions of the mold before the wall segments contact the composite material, firmly compressing the composite material into the corner regions of the mold before the friction of the wall segments against the composite material inhibits expansion of the corner segments into the mold corner regions.
    • 用于将复合材料固定在用于复合部件的小面中空或管状模具内的可充气压实工具由弹性材料制成。 压实工具包括由限定密封室的角部段相结合的相对平坦的壁段。 壁段从模具表面向每个壁段的中点弯曲,使得当加压流体被引入到压实工具中时,施加在工具内表面上的力的一部分通过壁段传递到角部 细分。 因此,在初始膨胀期间,在壁段接触复合材料之前,角部段被迫朝向模具的拐角区域,在壁段与复合材料摩擦之前,将复合材料牢固地压缩到模具的拐角区域 抑制拐角部分扩展到模具拐角区域。
    • 3. 发明申请
    • Corner-Consolidating Inflatable Method for Manufacturing Composite Structures
    • 用于制造复合结构的合并充气方法
    • US20110027405A1
    • 2011-02-03
    • US12905804
    • 2010-10-15
    • Steven F. HansonAmitabh Vyas
    • Steven F. HansonAmitabh Vyas
    • B29C49/08
    • B29C70/446B29C33/505B29C43/10B29C2043/3649B29D99/0003B29L2022/00B29L2031/54Y10S425/112
    • An inflatable compaction tool for consolidating a composite material inside a faceted hollow or tubular mold for a composite part is made from an elastic material. The compaction tool includes relatively flat wall segments conjoined by corner segments that define a sealed chamber. The wall segments curve away from the mold surface toward the midpoint of each wall segment, so that as a pressurized fluid is introduced into the compaction tool, a component of the force exerted on the tool interior surface is transmitted through the wall segments toward the corner segments. Thus, during initial inflation, the corner segments are forced toward the corner regions of the mold before the wall segments contact the composite material, firmly compressing the composite material into the corner regions of the mold before the friction of the wall segments against the composite material inhibits expansion of the corner segments into the mold corner regions.
    • 用于将复合材料固定在用于复合部件的小面中空或管状模具内的可充气压实工具由弹性材料制成。 压实工具包括由限定密封室的角部段相结合的相对平坦的壁段。 壁段从模具表面向每个壁段的中点弯曲,使得当加压流体被引入到压实工具中时,施加在工具内表面上的力的一部分通过壁段传递到角部 细分。 因此,在初始膨胀期间,在壁段接触复合材料之前,角部段被迫朝向模具的拐角区域,在壁段与复合材料摩擦之前,将复合材料牢固地压缩到模具的拐角区域 抑制拐角部分扩展到模具拐角区域。
    • 5. 发明申请
    • METHOD OF MAKING ACOUSTIC HOLES USING UV CURING MASKING MATERIAL
    • 使用紫外线固化掩模材料制造声孔的方法
    • US20090163115A1
    • 2009-06-25
    • US11961272
    • 2007-12-20
    • Amitabh VyasPeter H. Wu
    • Amitabh VyasPeter H. Wu
    • B24B1/00
    • B24C1/04
    • A method of forming acoustic holes in a composite sound-insulating material includes creating a image of at least a portion of an array of holes and transferring the image to an ultraviolet (UV) radiation transparent medium. The method continues with positioning the medium in contact with a UV-curable mask and exposing the medium-covered mask to UV radiation to cure the UV-exposed areas. The method further includes removing the uncured mask material to create an abrading mask that includes a plurality of holes in a desired pattern. The method also includes positioning the abrading mask in contact with the sound-insulating material and directing a stream of abrasive matter at the abrading mask to create perforations in the sound-insulating material that correspond to the pattern of holes in the abrading mask.
    • 在复合隔音材料中形成声孔的方法包括产生孔阵列的至少一部分的图像并将图像转印到紫外线(UV)辐射透明介质上。 该方法继续定位介质与UV可固化掩模接触,并将介质覆盖的掩模暴露于UV辐射以固化UV暴露区域。 该方法还包括去除未固化的掩模材料以产生包含所需图案的多个孔的研磨掩模。 该方法还包括将研磨掩模定位成与隔音材料接触并将研磨物质流引导到研磨掩模,以在隔音材料中产生与研磨掩模中的孔的图案相对应的穿孔。
    • 6. 发明申请
    • Corner-consolidating inflatable apparatus and method for manufacturing composite structures
    • 用于制造复合结构的角巩固充气装置和方法
    • US20070096368A1
    • 2007-05-03
    • US11261519
    • 2005-10-31
    • Steven HansonAmitabh Vyas
    • Steven HansonAmitabh Vyas
    • B29C43/02
    • B29C70/446B29C33/505B29C43/10B29C2043/3649B29D99/0003B29L2022/00B29L2031/54Y10S425/112
    • An inflatable compaction tool for consolidating a composite material inside a faceted hollow or tubular mold for a composite part is made from an elastic material. The compaction tool includes relatively flat wall segments conjoined by corner segments that define a sealed chamber. The wall segments curve away from the mold surface toward the midpoint of each wall segment, so that as a pressurized fluid is introduced into the compaction tool, a component of the force exerted on the tool interior surface is transmitted through the wall segments toward the corner segments. Thus, during initial inflation, the corner segments are forced toward the corner regions of the mold before the wall segments contact the composite material, firmly compressing the composite material into the corner regions of the mold before the friction of the wall segments against the composite material inhibits expansion of the corner segments into the mold corner regions.
    • 用于将复合材料固定在用于复合部件的小面中空或管状模具内的可充气压实工具由弹性材料制成。 压实工具包括由限定密封室的角部段相结合的相对平坦的壁段。 壁段从模具表面向每个壁段的中点弯曲,使得当加压流体被引入到压实工具中时,施加在工具内表面上的力的一部分通过壁段传递到角部 细分。 因此,在初始膨胀期间,在壁段接触复合材料之前,角部段被迫朝向模具的拐角区域,在壁段与复合材料摩擦之前,将复合材料牢固地压缩到模具的拐角区域 抑制拐角部分扩展到模具拐角区域。
    • 8. 发明授权
    • Method and apparatus for hard machining
    • 硬加工方法和装置
    • US06733365B1
    • 2004-05-11
    • US09554319
    • 2000-05-10
    • Milton C. ShawAmitabh Vyas
    • Milton C. ShawAmitabh Vyas
    • B24B4900
    • B23B27/12B23B2226/18
    • A hard machining process uses a cylindrical tool (21) of ceramic or other hard machining material of comparatively low cost that provides a circular cutting edge to be engaged in cutting relation with hardened workpiece (20) to be machined. As tool cutting edge wear occurs, the tool (21) is rotated through a small angle to bring into contact with the workpiece (20) a fresh portion of the cutting edge. It is not necessary to rotate that tool (21) sufficiently to effect replacement of the entire cutting edge portion in engagement with the tool. Sufficient angular movement of the tool is made to replace that of the cutting edge that has the greatest effect on the finish of the machined workpiece (20), which is the cutting location where the removed chip is thinnest.
    • 硬加工工艺使用陶瓷或其他硬质加工材料的圆柱形工具(21),其具有相对较低成本的圆形切削刃,该圆形刀刃与要加工的硬化工件(20)进行切削关系啮合。 当刀具切削刃磨损发生时,工具(21)以小角度旋转,以使工件(20)与切削刃的新鲜部分接触。 没有必要充分旋转该工具(21)以实现与工具接合的整个切削刃部分的更换。 进行刀具的足够的角度运动来代替对加工的工件(20)的精加工效果最大的切削刃的角度运动,这是被去除的切屑最薄的切割位置。