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    • 31. 发明申请
    • Metal cylinder head gasket without a spacing layer
    • 金属气缸盖垫片无间隔层
    • US20100038865A1
    • 2010-02-18
    • US10583535
    • 2004-09-22
    • Klaus SchmittRalf Flemming
    • Klaus SchmittRalf Flemming
    • F02F11/00
    • F16J15/0825F16J15/0818F16J2015/0862
    • The invention relates to a metal cylinder head gasket provided with at least one opening corresponding to a combustion chamber of an internal combustion engine, comprising a function layer and an annular support arranged thereon. The functional layer comprises one full bead. The cylinder head gasket is characterised in that the annular support comprises one full bead which is defined on the functional layer, and the annular support comprises one bead which is arranged on the side of the full bead which is oriented away from the combustion chamber The invention also relates to a metal cylinder head gasket provided with at least one opening corresponding to a combustion chamber of an internal combustion engine, comprising an upper functional layer, an annular support and a lower functional layer. The annular support is arranged between the upper functional layer and the lower functional layer and is adjacent to the lower functional layer. The upper functional layer comprises one full bead which is adjacent to the annular support. The cylinder head gasket is characterised in that the lower functional layer comprises one bead which is arranged on the side of the full bead which is oriented away from the combustion chamber.
    • 本发明涉及一种金属气缸盖垫圈,其具有与内燃机的燃烧室相对应的至少一个开口,该开口包括功能层和布置在其上的环形支撑件。 功能层包括一个完整的珠粒。 气缸盖垫片的特征在于,环形支撑件包括限定在功能层上的一个完整的胎圈,并且环形支撑件包括布置在远离燃烧室的整个胎圈侧面上的一个胎圈。本发明 还涉及一种设置有至少一个对应于内燃机的燃烧室的开口的金属气缸盖垫片,其包括上部功能层,环形支撑件和下部功能层。 环状支撑体配置在上部功能层和下部功能层之间,与下部功能层相邻。 上部功能层包括与环形支撑件相邻的一个完整的胎圈。 气缸盖垫片的特征在于,下功能层包括布置在远离燃烧室的整个胎圈侧面的一个胎圈。
    • 32. 发明授权
    • Self-expanding stent
    • 自扩张支架
    • US07458986B2
    • 2008-12-02
    • US11334639
    • 2006-01-17
    • Klaus Schmitt
    • Klaus Schmitt
    • A61F2/06
    • A61F2/88A61F2/07A61F2002/072A61F2250/0007
    • In an inventive stent (10), helical filaments (12, 13) are disposed on a first tubular layer (11). The helical filaments (12, 13) are mutually phase-shifted such that they do not touch and lie in one plane. The helical filaments (12, 13) are completely coated by a second elastic tubular polymer layer (14) which is connected to the first elastic tubular layer (11). Further helical filaments may be disposed on the second elastic tubular layer (14). The inventive stent can be lengthened for introduction into a hollow organ and is self-expanding.
    • 在本发明的支架(10)中,螺旋细丝(12,13)设置在第一管状层(11)上。 螺旋丝(12,13)相互相移,使得它们不接触并位于一个平面中。 螺旋细丝(12,13)被连接到第一弹性管状层(11)的第二弹性管状聚合物层(14)完全涂覆。 另外的螺旋丝可以设置在第二弹性管状层(14)上。 本发明的支架可以延长以引入中空器官并且是自膨胀的。
    • 39. 发明授权
    • Method of welding weld studs to a workpiece
    • 将焊接螺柱焊接到工件上的方法
    • US5938945A
    • 1999-08-17
    • US675480
    • 1996-07-03
    • Jorg HofmannRoland KurzKlaus Schmitt
    • Jorg HofmannRoland KurzKlaus Schmitt
    • B23K9/20
    • B23K9/205
    • The invention relates to a method of welding weld studs to a workpiece, in particular of aluminum in each case, by the stroke ignition method, in which the stroke height(s) of the weld stud (1) is altered as a function of the measured arc voltage and optionally of the arc firing time. In particular, the stroke height(s) of the stud (1) can be increased during the occurrence of short circuits, i.e. during a sudden drop in the arc voltage, preferably in predetermined steps. The weld stud is immersed into a pool of melt after a predetermined period of time of between 5 and 10 ms after the welding current has been switched off. The polarity of the stud or of the workpiece is changed at least once during the welding process. The welding current is interrupted for a predetermined period of time for this purpose. The method leads to an improved, readily reproducible quality of weld.
    • 本发明涉及一种通过冲程点火方法将焊接焊头焊接到工件,特别是铝的工件的方法,其中焊接螺柱(1)的冲程高度被改变为 测量电弧电压和任选的电弧点火时间。 特别地,螺柱(1)的行程高度可以在短路发生期间,即在电弧电压突然下降期间,优选以预定步骤增加。 在焊接电流关闭后,在5到10 ms的预定时间段之后,将焊接螺柱浸入熔池中。 螺栓或工件的极性在焊接过程中至少改变一次。 为此,焊接电流中断预定的时间。 该方法导致焊接质量的改善,易于重现。