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    • 4. 发明申请
    • STEP FOR ESCALATOR, AND ESCALATOR WITH SUCH A STEP
    • 自动扶梯步骤,以及自动扶梯等
    • US20100282570A1
    • 2010-11-11
    • US12680775
    • 2008-09-26
    • Michael MatheislThomas NovacekKurt StreibigAndreas Trojer
    • Michael MatheislThomas NovacekKurt StreibigAndreas Trojer
    • B66B23/12
    • B66B23/12
    • The step (1) comprises cheeks (5) which are manufactured from deep drawing sheet metal, and a tread element (22) and a deep drawn seating element (24). The arc (BO1) of the seating element (24) follows a first radius (R1) in the upper region and a second radius (R2) in the lower region, wherein the second radius (R2) is somewhat smaller than the first radius (R1). The sheet (BO1) of the seating element (24) merges smoothly at the line (ÜR) from one radius into the other radius. By way of the two radii (R1, R2), the size of the step gap between the tread element (22) and the seating element (24) of the adjacent step is independent of the position of the step gap; the step gap always remains very small, for example smaller than 2.8 mm. As a result, the risk of clothing items, sharp objects, shoes, children's fingers and so on getting jammed is reduced considerably.
    • 步骤(1)包括由深冲金属板制成的面颊(5),以及胎面元件(22)和深拉座位元件(24)。 座元件(24)的弧(BO1)在上区域中遵循第一半径(R1),在下区域中具有第二半径(R2),其中第二半径(R2)略小于第一半径 R1)。 座位元件(24)的片材(BO1)在线(ÜR)从一个半径平滑地合并到另一个半径中。 通过两个半径(R1,R2),胎面元件(22)和相邻台阶的座位元件(24)之间的台阶间隙的尺寸与台阶间隙的位置无关; 台阶间隙总是保持非常小,例如小于2.8毫米。 因此,服装物品,尖锐物体,鞋子,儿童手指等被卡住的风险大大降低。
    • 5. 发明授权
    • Step for escalator, and escalator with such a step
    • 自动扶梯步骤,自动扶梯步骤如此
    • US08220612B2
    • 2012-07-17
    • US12680775
    • 2008-09-26
    • Michael MatheislThomas NovacekKurt StreibigAndreas Trojer
    • Michael MatheislThomas NovacekKurt StreibigAndreas Trojer
    • B66B21/00
    • B66B23/12
    • The step (1) comprises cheeks (5) which are manufactured from deep drawing sheet metal, and a tread element (22) and a deep drawn seating element (24). The arc (BO1) of the seating element (24) follows a first radius (R1) in the upper region and a second radius (R2) in the lower region, wherein the second radius (R2) is somewhat smaller than the first radius (R1). The sheet (BO1) of the seating element (24) merges smoothly at the line (ÜR) from one radius into the other radius. By way of the two radii (R1, R2), the size of the step gap between the tread element (22) and the seating element (24) of the adjacent step is independent of the position of the step gap; the step gap always remains very small, for example smaller than 2.8 mm. As a result, the risk of clothing items, sharp objects, shoes, children's fingers and so on getting jammed is reduced considerably.
    • 步骤(1)包括由深冲金属板制成的面颊(5),以及胎面元件(22)和深拉座位元件(24)。 座元件(24)的弧(BO1)在上区域中遵循第一半径(R1),在下区域中具有第二半径(R2),其中第二半径(R2)略小于第一半径 R1)。 座位元件(24)的片材(BO1)在线(ÜR)从一个半径平滑地合并到另一个半径中。 通过两个半径(R1,R2),胎面元件(22)和相邻台阶的座位元件(24)之间的阶梯间隙的尺寸与台阶间隙的位置无关; 台阶间隙总是保持非常小,例如小于2.8毫米。 因此,服装物品,尖锐物体,鞋子,儿童手指等被卡住的风险大大降低。
    • 7. 发明授权
    • Conveyor equipment
    • 输送设备
    • US08727095B2
    • 2014-05-20
    • US13332569
    • 2011-12-21
    • Andreas TrojerDirk BlondiauMichael MatheislPaul Sailer
    • Andreas TrojerDirk BlondiauMichael MatheislPaul Sailer
    • B66B23/00B65G43/02
    • B66B29/005G01N22/02
    • A handrail with handrail elements is moved past a sensor support with at least one sensor. Each handrail element has, for example, a collar, which extends into the adjacent handrail element. The handrail elements, which are pivotably fastened to a second transport chain, can move relative to the adjacent handrail elements without a gap then arising between two adjacent handrail elements. Merely a segment groove with such a small depth that fingers are not caught arises between two adjacent handrail elements. The sensor can recognize each segment groove as well as defective handrail elements. Operating magnitudes such as speed, acceleration and deceleration of the handrail are ascertainable and/or risk-laden operating states are recognizable by means of the sensor signal.
    • 带有扶手元件的扶手通过至少一个传感器移动通过传感器支架。 每个扶手元件具有例如延伸到相邻扶手元件中的套环。 可枢转地紧固到第二输送链的扶手元件可以相对于相邻的扶手元件移动,而不会在两个相邻的扶手元件之间产生间隙。 仅两个相邻的扶手元件之间产生具有如此小的深度的分段凹槽,从而不会产生手指。 传感器可识别每个分段凹槽以及有缺陷的扶手元件。 确定扶手的速度,加速度和减速度等操作的大小,并且可以通过传感器信号来识别和/或承担风险的操作状态。