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    • 46. 发明申请
    • COMPOSITE MATERIAL HAVING STAMPING AND MICRO-PERFORATION
    • 具有冲压和微观性能的复合材料
    • US20140020650A1
    • 2014-01-23
    • US14007310
    • 2011-12-13
    • Klaus SchmittMarkus Löhr
    • Klaus SchmittMarkus Löhr
    • F02B77/11
    • F02B77/11F01N13/143F01N2260/20F16B5/045F16B17/008Y10T29/49826
    • A method includes the steps of providing a first panel of aluminium material; providing a second panel of steel material; stamping a plurality of first pimple-like bulges in the first panel; stamping a plurality of second pimple-like bulges in the second panel, wherein the arrangement of the second pimple-like bulges is congruent with the arrangement of the first pimple-like bulges; bringing together the sides of the first and second panels that are furnished with the bulges, so that the domes of each set of pimple-like bulges lie opposite each other; and clipping the first and second panels together to form a composite by ensuring that at least one tongue is broken out of each of the pimple-like bulges on the second panel and pressed into the corresponding pimple-like bulges in the first panel.
    • 一种方法包括提供铝材料的第一面板的步骤; 提供第二块钢材; 在第一面板中冲压多个第一疙瘩状凸起; 在第二面板中冲压多个第二疙瘩状凸起,其中第二疙瘩状凸起的布置与第一疙瘩状凸起的布置一致; 将具有凸起的第一和第二面板的侧面汇集在一起​​,使得每组疙瘩状凸起的圆顶彼此相对; 以及通过确保至少一个舌片从所述第二面板上的每个所述丘疹状凸起中分解出并且压入所述第一面板中的相应的丘疹状凸起而将所述第一和第二面板夹在一起以形成复合材料。
    • 47. 发明申请
    • FLUE HAVING AN ADJUSTABLE FLUE GAS FLOW UNIT
    • 具有可调节的气体流量单元的流体
    • US20130092105A1
    • 2013-04-18
    • US13703167
    • 2011-05-31
    • Klaus Schmitt
    • Klaus Schmitt
    • F24H1/16F23L11/00
    • F24H1/165F23J15/06F23L11/00F23M9/003F23N2033/04F23N2033/10F23N2035/08F24B9/04F24D11/003F24D11/004F24D12/02F24D17/0068F24H9/0031Y02A30/62Y02B10/20Y02B10/70Y02B30/14Y02E20/363
    • Known chimneys or chimney furnaces use flue gas flow units for heating buildings, said devices having displaceable or fixed obstacles for deflecting flue gas for generating flue gas turbulence. The invention relates to a device and method for transferring heat through a flue gas discharge pipe (28) in which (44, 45) pivotal guide plates (37) are inserted in the longitudinal direction of the pipe run, at which the flue gas flow (22) is more or less deflected in a sinuous line as function of the pivot angle (24) of the guide plates (37) that can be adjusted during furnace operation. A fan (19) can increase the flue gas flow (22). An optional furnace heat exchanger (29) generates additional hot water as needed. The controller (5) activates the actuators for the fan (19), guide plate pivot angle setting (24), and at least one circulating pump (10 or 11) as a function of the prescribed controlled variables such as flue gas temperature, reservoir temperature, heat exchanger performance, or flue gas flow.
    • 已知的烟囱或烟囱炉使用用于加热建筑物的烟道气流单元,所述装置具有用于偏转烟道气以产生烟道气紊流的可移位或固定的障碍物。 本发明涉及一种用于通过烟道气排放管(28)传递热量的装置和方法,其中(44,45)枢转导板(37)沿着管道的纵向插入,烟道气流 (22)或多或少在弯曲线中偏转,作为可在炉操作期间调节的导板(37)的枢转角(24)的函数。 风扇(19)可以增加烟气流(22)。 可选的炉热交换器(29)根据需要产生额外的热水。 控制器(5)根据规定的控制变量(如烟气温度,水库)激活用于风扇(19),导向板枢转角度设定(24)和至少一个循环泵(10或11)的致动器 温度,热交换器性能或烟气流量。
    • 49. 发明申请
    • Self-expanding stent
    • 自扩张支架
    • US20060142832A1
    • 2006-06-29
    • US11334639
    • 2006-01-17
    • Klaus Schmitt
    • Klaus Schmitt
    • A61F2/88
    • 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。
    • 50. 发明申请
    • Method and device for short-cycle arc welding
    • US20060131280A1
    • 2006-06-22
    • US11274763
    • 2005-11-15
    • Klaus SchmittJoachim Schneider
    • Klaus SchmittJoachim Schneider
    • B23K9/20
    • B23K9/20
    • The invention relates to a method for short-cycle arc welding with drawn-arc ignition, wherein a stud is welded to a piece of sheet metal, with the following steps: provision of a stud having an end face with which the stud is welded to a welding surface of the sheet metal, wherein an integral distinct projection is formed in the end face, placement of the projection on the welding surface and switch-on of an electric pilot current, lifting of the stud from the welding surface, whereby an arc is drawn, establishment of a welding current flowing through the arc in such a manner that the end face and the welding face start to melt, lowering of the welding stud onto the welding surface, wherein the melts at the end face and welding surface mix, and switch-off of the welding current so that the entire melt solidifies to join the stud to the sheet metal in a material-to-material manner, wherein after lifting of the welding stud and before establishment of the welding current, an alternating cleaning current is initially established in a cleaning step that is designed to clean the welding surface and/or the end face of contaminants, such as lubricants or wax, and/or of coatings, for example corrosion-protective coatings of zinc.