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    • 5. 发明申请
    • METHOD AND BLADDER APPARATUS FOR FORMING COMPOSITE PARTS
    • 用于形成复合材料零件的方法和刀片装置
    • US20130341816A1
    • 2013-12-26
    • US13973474
    • 2013-08-22
    • Spirit AeroSystems, Inc.
    • Blaise F. Bergmann
    • B29C43/58
    • B29C43/58B29C51/085B29C51/28B29C70/44
    • A material forming apparatus and method for shaping a material to a forming tool having complex contours. The material forming apparatus may comprise a bladder sealed to a support structure, cooperatively forming a hollow space therebetween into which air or another gas may be pumped to inflate the bladder. The forming tool may comprise a protrusion of any shape to which the material may conform. The material may be placed between the bladder and the protrusion and the support structure may be actuated toward the forming tool. As the support structure progresses toward the forming tool, an area of material pressed against the protrusion by the bladder increases in an outward direction. A pressure regulator may regulate an amount of pressure applied to the material by the bladder as the bladder presses the material against the forming tool.
    • 一种用于将材料成形为具有复杂轮廓的成形工具的材料形成装置和方法。 材料形成装置可以包括密封到支撑结构的气囊,协同地在其间形成中空空间,空气或另外的气体可以被泵送到空腔中以使气囊膨胀。 成形工具可以包括材料可以符合的任何形状的突起。 该材料可以放置在囊和突起之间,并且支撑结构可以朝向成形工具致动。 随着支撑结构向成形工具的前进,通过气囊压靠突起的材料面积向外的方向增加。 当气囊将材料压靠成形工具时,压力调节器可以调节由气囊施加到材料的压力的量。
    • 8. 发明申请
    • METHOD AND BLADDER APPARATUS FOR FORMING COMPOSITE PARTS
    • 用于形成复合材料零件的方法和刀片装置
    • US20120256348A1
    • 2012-10-11
    • US13082024
    • 2011-04-07
    • Blaise F. Bergmann
    • Blaise F. Bergmann
    • B29C51/28
    • B29C43/58B29C51/085B29C51/28B29C70/44
    • A material forming apparatus and method for shaping a material to a forming tool having complex contours. The material forming apparatus may comprise a bladder sealed to a support structure, cooperatively forming a hollow space therebetween into which air or another gas may be pumped to inflate the bladder. The forming tool may comprise a protrusion of any shape to which the material may conform. The material may be placed between the bladder and the protrusion and the support structure may be actuated toward the forming tool. As the support structure progresses toward the forming tool, an area of material pressed against the protrusion by the bladder increases in an outward direction. A pressure regulator may regulate an amount of pressure applied to the material by the bladder as the bladder presses the material against the forming tool.
    • 一种用于将材料成形为具有复杂轮廓的成形工具的材料形成装置和方法。 材料形成装置可以包括密封到支撑结构的气囊,协同地在其间形成中空空间,空气或另外的气体可以被泵送到空腔中以使气囊膨胀。 成形工具可以包括材料可以符合的任何形状的突起。 该材料可以放置在囊和突起之间,并且支撑结构可以朝向成形工具致动。 随着支撑结构向成形工具的前进,通过气囊压靠突起的材料面积向外的方向增加。 当气囊将材料压靠成形工具时,压力调节器可以调节由气囊施加到材料的压力的量。
    • 10. 发明授权
    • Vacuum heat-set of net shape latex vacuum bags
    • 真空热定型网状乳胶真空袋
    • US07662334B2
    • 2010-02-16
    • US12040611
    • 2008-02-29
    • Finley B. MillerSteven P. DeCoux
    • Finley B. MillerSteven P. DeCoux
    • B29C51/00
    • B29C51/28B29K2105/0064B29K2105/06B29K2105/24B29K2105/246B29L2031/3076
    • A net shaped latex vacuum bag as used in the fabrication of composite structural parts having complex shapes. Liquid latex is first allowed to air dry in the form of a thin flat, flexible sheet. The latex sheet is then vacuum formed over a tool having the complex shape of the part to be fabricated and assumes the shape and configuration of the tool's outer surface. The latex sheet is then rapidly cured at an elevated temperature, so as to permanently assume the part's shape for subsequent use in forming composite structural parts of the same complex shape. In one embodiment, the latex sheet may be formed on the tool by dipping the tool in liquid latex, allowing the latex coating to dry, and cutting the dry latex coating to permit separation of the tool from the latex coating which is then used in composite part fabrication.
    • 用于制造具有复杂形状的复合结构部件的网状胶乳真空袋。 首先允许液体胶乳以薄的平坦柔性片材的形式空气干燥。 然后在具有待制造部件的复杂形状的工具上真空地形成胶乳片,并且呈现工具的外表面的形状和构造。 然后将胶乳片材在高温下快速固化,以便永久地呈现部件的形状,以便随后用于形成相同复合形状的复合结构部件。 在一个实施例中,胶乳片可以通过将工具浸入液体胶乳中而形成在工具上,允许胶乳涂层干燥,并切割干胶乳涂层,以允许工具与胶乳涂层分离,然后将其用于复合材料 零件制造。