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    • 41. 发明申请
    • Ventilation valve
    • 通风阀
    • US20110315240A1
    • 2011-12-29
    • US13010924
    • 2011-01-21
    • Matthias MüllerJürgen Theissler
    • Matthias MüllerJürgen Theissler
    • F16K31/18
    • F16K24/04Y10T137/7358
    • The invention refers to a ventilation valve for the fuel tank of a motor vehicle with a housing (2) that has a ventilation opening (28), a movably arranged float (5) in the housing in the direction of its middle longitudinal axis (16) and a float-held sealing element (29), which—seen in the top view towards the middle of the middle longitudinal axis (16) of the housing (2)—is fixed on the float (5) outside of the ventilation opening (28,28a) on the arranged fixing spot (35), in which case the ventilation opening (28,28a) has a non-circular opening contour and, extending away from the fixing spot (35), a terminal section (39) whose clear width (36) increases with increasing distance from the fixing spot (35), in which case the clear width (36) is measured transversally to an imaginary middle plane (37) that cuts the fixing point (35) in the center and contains the middle longitudinal axis (19) of the float (5).
    • 本发明涉及一种用于机动车辆的燃料箱的通风阀,具有壳体(2),壳体(2)具有通风口(28),壳体中的可移动布置的浮子(5)沿其中间纵向轴线(16)的方向 )和浮子密封元件(29),其在朝向壳体(2)的中间纵向轴线(16)的中间的顶视图中看到 - 固定在通风口外侧的浮子(5)上 (28,28a),在这种情况下,通风口(28,28a)具有非圆形的开口轮廓,并且远离固定点(35)延伸一个终端部分(39), 其清晰宽度(36)随着距离固定点(35)的距离的增加而增加,在这种情况下,透明宽度(36)横向于在中心切割固定点(35)的虚拟中间平面(37) 包含浮子(5)的中间纵向轴线(19)。
    • 42. 发明申请
    • Hand-Held Power Tool
    • 手持式电动工具
    • US20110241457A1
    • 2011-10-06
    • US13074079
    • 2011-03-29
    • Matthias MüllerHeiko RoßkampGernot LiebhardMichael Renz
    • Matthias MüllerHeiko RoßkampGernot LiebhardMichael Renz
    • H02K7/14
    • A01D34/902A01G3/06B25F5/008B25F5/02
    • A hand-held power tool has a tool member and a motor drivingly connected to the tool member, wherein the motor is arranged in a motor housing. A battery for driving the tool member is provided. A guide shaft has arranged on its first end the battery and on its second end the motor housing and the tool member. A rotatably power output part arranged on the motor housing is drivingly connected to the motor. The power output part supports the tool member. Cooling air is sucked through the guide shaft into the motor housing. Between the power output part and the motor housing an annular air exit gap is formed through which the cooling air exits the motor housing. At least one guide vane that projects into the annular air exit gap is provided.
    • 手持电动工具具有工具构件和驱动地连接到工具构件的电动机,其中电动机布置在电动机壳体中。 提供用于驱动工具构件的电池。 引导轴在其第一端上布置有电池,并且在其第二端上布置有电动机壳体和工具构件。 布置在马达壳体上的可旋转动力输出部分驱动地连接到马达。 电源输出部分支持工具部件。 冷却空气通过导向轴吸入电动机壳体。 在动力输出部分和马达壳体之间形成环形空气出口间隙,冷却空气通过该空气出口间隙离开马达壳体。 提供突出到环形空气出口间隙中的至少一个导向叶片。
    • 43. 发明申请
    • THERMOPLASTIC MOLDING COMPOSITIONS WITH IMPROVED OPTICAL PROPERTIES
    • 具有改进的光学性质的热塑性成型组合物
    • US20110237749A1
    • 2011-09-29
    • US13072099
    • 2011-03-25
    • Matthias MüllerLudger LeberAchim DatkoLeonie Felicitas BraunChristian LemairePiyada CharoensirisomboonMichel Pepers
    • Matthias MüllerLudger LeberAchim DatkoLeonie Felicitas BraunChristian LemairePiyada CharoensirisomboonMichel Pepers
    • C08L51/06C08L33/12C08L33/20
    • C08L33/12C08F285/00C08L25/00C08L51/003C08L51/04C08L2207/53C08L25/12C08F212/08
    • The present invention relates to thermoplastic molding compositions comprising a mixture of (a) from 10 to 50% by weight, based on the entirety of components (A), (B), and (C), of a methyl methacrylate polymer as component (A), and (b) from 20 to 60% by weight, based on the entirety of components (A), (B), and (C), of a copolymer as component (B), obtainable via polymerization of a vinylaromatic monomer and of a vinyl cyanide, and (c) from 20 to 70% by weight, based on the entirety of components (A), (B), and (C), of a graft copolymer as component (C), obtainable from (c1) from 50 to 70% by weight, based on (C), of a core as component (C1), obtainable via polymerization of a 1,3-diene and of a vinylaromatic monomer and an agglomeration polymer, and (c2) from 15 to 25% by weight, based on (C), of a first graft shell as component (C2), obtainable via polymerization of a vinylaromatic monomer, of a C1-C8-alkyl ester of methacrylic acid, and/or of a C1-C8-alkyl ester of acrylic acid, and a crosslinking monomer, and (c3) from 15 to 25% by weight, based on (C), of a second graft shell as component (C3), obtainable via polymerization of a C1-C8-alkyl ester of methacrylic acid as component (C31) and a further monomer as component (C32), where it is essential to the invention that component (C32) is a vinylaromatic monomer and the graft copolymer (C) is produced via emulsion polymerization and is isolated from the reaction mixture by precipitation resulting from shear, and also to processes for producing said molding compositions, to the use of these, and to the moldings obtainable therefrom.
    • 本发明涉及热塑性模塑组合物,其包含(a)10至50重量%,基于组分(A),(B)和(C)的组分(A),(B)和(C))的混合物,所述甲基丙烯酸甲酯聚合物作为组分 A),(b)20〜60重量%,作为成分(B)的共聚物的组分(A),(B)和(C)的全部,可通过乙烯基芳族单体 和(c)20〜70重量%的组分(A),(B)和(C))作为组分(C)的接枝共聚物,可从( c1)基于(C)50〜70重量%的作为组分(C1)的芯可通过1,3-二烯和乙烯基芳族单体和附聚聚合物的聚合获得,和(c2)从 15重量%至25重量%,基于(C),作为组分(C2)的第一接枝壳可通过乙烯基芳族单体聚合得到甲基丙烯酸的C 1 -C 8烷基酯和/或C 1 -C 8烷基酯 丙烯酸的-C8-烷基酯,和a 交联单体和(c3)15至25重量%,基于(C),作为组分(C 3)的第二接枝壳可通过作为组分(C31)的甲基丙烯酸的C 1 -C 8烷基酯的聚合 )和作为组分(C32)的另外的单体,其中本发明组分(C32)是乙烯基芳族单体并且通过乳液聚合制备接枝共聚物(C)是重要的,并且通过沉淀从反应混合物中分离 剪切,以及用于生产所述模塑组合物的方法,使用它们以及由其获得的模制品。
    • 46. 发明申请
    • STYRENE BUTADIENE BLOCK COPOLYMER MIXTURES FOR SHRINK-WRAP FILMS
    • 苯乙烯丁二烯嵌段共聚物混合胶带
    • US20110098401A1
    • 2011-04-28
    • US13000817
    • 2009-06-23
    • Matthias MüllerKonrad KnollChristof MehlerHelmut SteiningerNorbert GüntherbergDaniel WagnerMichael SchusterGeert VerlindenFlorian Greger
    • Matthias MüllerKonrad KnollChristof MehlerHelmut SteiningerNorbert GüntherbergDaniel WagnerMichael SchusterGeert VerlindenFlorian Greger
    • C08L53/02
    • C08L53/02C08F297/04C08L2666/02C08L2666/24
    • A mixture which comprisesa) from 5 to 95% by weight of a copolymer A which comprises one or more copolymer blocks (B/S)A each composed of from 65 to 95% by weight of vinylaromatic monomers and from 35 to 5% by weight of dienes and of a glass transition temperature TgA in the range from 40° to 90° C.,b) from 95 to 5% by weight of a block copolymer B which comprises at least one hard block S composed of from 95 to 100% by weight of vinylaromatic monomers and of from 0 to 5 by weight of dienes, and comprises one or more copolymer blocks (B/S)A each composed of from 65 to 95% by weight of vinylaromatic monomers and of from 35 to 5% by weight of dienes and of a glass transition temperature TgA in the range from 40° to 90° C., and comprises one or more copolymer blocks (B/S)B each composed of from 20 to 60% by weight of vinylaromatic monomers and of from 80 to 40% by weight of dienes and of a glass transition temperature TgB in the range from −70° to 0° C.,c) from 0 to 45% by weight of thermoplastic polymers C other than A and B, andd) from 0 to 6% by weight of processing aids D,where the entirety of A to D gives 100% by weight, and its use for the production of shrink films.
    • 一种混合物,其包含a)5至95重量%的共聚物A,其包含一种或多种共聚物嵌段(B / S)A,每个共聚物嵌段(B / S)A由65至95重量%的乙烯基芳族单体和35至5重量% 二烯的重量和玻璃化转变温度TgA在40℃至90℃的范围内,b)95至5重量%的嵌段共聚物B,其包含至少一种由95至100组成的硬质块S 重量百分比的乙烯基芳族单体和0至5重量份的二烯,并且包含一种或多种共聚物嵌段(B / S)A,各自由65至95重量%的乙烯基芳族单体和35至5重量% 的二烯的玻璃化转变温度TgA和40〜90℃的玻璃化转变温度TgA,并且包含一种或多种共聚物嵌段(B / S)B,各自由20至60重量%的乙烯基芳族单体组成, 80〜40重量%的二烯,玻璃化转变温度TgB在-70℃〜0℃的范围内,c)0〜45%的重量 除了A和B之外的热塑性聚合物C,以及d)0至6重量%的加工助剂D,其中A至D的总量为100重量%,以及其用于生产收缩膜的用途。
    • 47. 发明授权
    • Method and device for determining material properties
    • 用于确定材料性质的方法和装置
    • US07810382B2
    • 2010-10-12
    • US11883900
    • 2006-02-10
    • Thomas SchimmelMatthias Müller
    • Thomas SchimmelMatthias Müller
    • G01Q60/26G01Q10/00G01Q60/24G01N19/02
    • G01Q60/26G01Q60/28
    • The invention relates to a method of determining material properties of a contact formed between a measurement tip of a microscopic probe and a sample surface of a sample material. According to the method, a distance modulation is applied for modulating a distance between a support of the microscopic probe end the sample surface in a direction essentially normal to the sample surface and wherein a normal force signal indicative of a normal force is measured and demodulated. In the method it is proposed that the material properties be determined using measurement data comprised in the demodulated normal force signal and related to a (concave) buckling deformation of the microscopic probe relative to and away from the sample surface.
    • 本发明涉及一种确定在微观探针的测量尖端和样品材料的样品表面之间形成的接触材料特性的方法。 根据该方法,施加距离调制以在基本上垂直于样品表面的方向上调制微观探针端的样品表面的支撑体之间的距离,并且其中测量和解调表示法向力的法向力信号。 在该方法中,建议使用包含在解调的法向力信号中并与微观探针相对于和远离样品表面的(凹))屈曲变形相关的测量数据来确定材料性质。
    • 49. 发明申请
    • Movement System for Moving an Object, Patient Couch and Method for Operating a Movement System
    • 用于移动物体的运动系统,患者长沙发和操作运动系统的方法
    • US20150276439A1
    • 2015-10-01
    • US14671372
    • 2015-03-27
    • Matthias Müller
    • Matthias Müller
    • G01D18/00
    • G01D18/00A61B6/0457A61B6/547A61G13/02
    • A movement system includes a drive having a drive shaft, a mechanism that converts an alteration to a rotational angle of the drive shaft into an alteration to an object position, and a rotational angle sensor for detecting the alteration to the rotational angle. The movement system includes a reference sensor for emitting a reference signal when the object enters a predetermined reference volume, and a controller communicating with the rotational angle sensor and the reference sensor. The controller is configured for determining a total rotational angle from alterations to the rotational angle detected according to the reference signal and for activating the drive for rotating the drive shaft by a reference rotational angle determined as a function of a predetermined reference positional value and the total rotational angle. The movement system also includes a calibration sensor for emitting a calibration signal when the object enters a predetermined calibration volume.
    • 移动系统包括具有驱动轴的驱动器,将变更转换为对轴位置的变化的驱动轴的旋转角度的机构,以及用于检测对旋转角度的变化的旋转角度传感器。 移动系统包括:参考传感器,用于当物体进入预定参考体积时发出参考信号;以及控制器,与旋转角度传感器和参考传感器通信。 控制器被配置为确定根据参考信号检测到的从改变到旋转角度的总旋转角度,并且用于启动用于使驱动轴旋转的驱动器以根据预定参考位置值确定的参考旋转角度,并且总计 旋转角度。 移动系统还包括校准传感器,用于当物体进入预定的校准体积时发出校准信号。
    • 50. 发明授权
    • Method for producing flame-proofed thermoplastic molding compounds
    • 生产防火热塑性模塑料的方法
    • US09034949B2
    • 2015-05-19
    • US13879246
    • 2011-10-13
    • Matthias MüllerNortbert Güntherberg
    • Matthias MüllerNortbert Güntherberg
    • C08G59/42C08J3/20B29C47/00B29C47/10B29C47/60B29C47/38B29K105/00C08K7/24
    • C08J3/203B29C47/0004B29C47/0014B29C47/0021B29C47/1045B29C47/1081B29C47/38B29C47/6087B29K2105/0005B29K2105/0026B29K2995/0016B29K2995/0059C08K7/24
    • The invention relates to a method for producing thermoplastic molding compounds, comprising: A) 40 to 99 wt % of at least one thermoplastic polymer, B) 1 to 60 wt % of a flame-proofing agent component containing an expandable graphite, and C) 0 to 60 wt % of further additives, by melt-mixing components A), B) and C) in a screw-type extruder, wherein the screw-type extruder, along the feed direction, comprises, in the following order, at least one dosing zone, a plastifying zone, a homogenizing zone, a second dosing zone, and a discharge zone, in that the dosing takes place into the screw-type extruder having the length L, wherein the length L is defined as the section starting with the first dosing unit for adding components A, B and/or C and ending, in the feed direction, at the discharge opening, a melt is generated after adding components A, B and C in the range of 0 liter to 0.15 liter in a first method step in the presence of component B1), and in a second method step, after the addition of component B1) in the range of 0.5 liter to 0.95 liter, component B1) is mixed into said melt, wherein said method offers technical advantages.
    • 本发明涉及一种生产热塑性模塑料的方法,包括:A)40至99重量%的至少一种热塑性聚合物,B)1至60重量%的含可膨胀石墨的阻燃剂组分,和C) 0至60重量%的其它添加剂,通过在螺杆式挤出机中熔融混合组分A),B)和C),其中沿着进料方向的螺杆型挤出机至少包含以下顺序 一个给料区,一个塑化区,一个均质区,一个第二配量区和一个排放区,其中配料发生到长度为L的螺杆式挤出机中,其中长度L被定义为以 用于添加组分A,B和/或C并且在进料方向上在排出口处结束的第一计量单元,在将组分A,B和C在0升至0.15升的范围内添加后,在 在组分B1)的存在下的第一方法步骤,并且在第二方法步骤中,在a之后 组分B1)在0.5升至0.95升的范围内的组分B1)混合到所述熔体中,其中所述方法具有技术优点。