Abstract:
Das erfindungsgemäße Verfahren und die darauf beruhende Einrichtung zur Bestimmung des zeitlichen Verlaufs der Stosswelle in einem durch Schlag oder schlagähnliche Belastung beanspruchten ferromagnetischen Bauteil, insbesondere Werkzeug wie zum Beispiel Bohrer, bei dem das Bauteil mit einem Magnetfluss beaufschlagt wird, dessen Änderungsgeschwindigkeit aufgrund der Schlageinwirkung als Mess-Spannung erfasst wird, sieht vor, den Stosswellenverlauf aus einer additiven Überlagerung der Mess-Spannung der integrierten Mess-Spannung zu ermitteln. Aufgrund der Erfindung lassen sich bei der Messung des zeitlichen Verlaufs der Stosswelle Wirbelstromeinflüsse weitgehend kompensieren.
Abstract:
Das erfindungsgemäße Verfahren und die darauf beruhende Einrichtung zur Bestimmung des zeitlichen Verlaufs der Stosswelle in einem durch Schlag oder schlagähnliche Belastung beanspruchten ferromagnetischen Bauteil, insbesondere Werkzeug wie zum Beispiel Bohrer, bei dem das Bauteil mit einem Magnetfluss beaufschlagt wird, dessen Änderungsgeschwindigkeit aufgrund der Schlageinwirkung als Mess-Spannung erfasst wird, sieht vor, den Stosswellenverlauf aus einer additiven Überlagerung der Mess-Spannung der integrierten Mess-Spannung zu ermitteln. Aufgrund der Erfindung lassen sich bei der Messung des zeitlichen Verlaufs der Stosswelle Wirbelstromeinflüsse weitgehend kompensieren.
Abstract:
A sensor, comprising a deformable substrate, comprising a structural metamaterial in a first configuration; a plurality of raised structures disposed throughout the substrate, wherein the plurality of raised structures are invertible; a responsive material layer, wherein the responsive material layer is disposed on the plurality of raised structures and is configured to invert the plurality of raised structures in the presence of an external stimuli; and a plurality of second configurations of the deformable substrate that correspond to a plurality of inverted raised structures.
Abstract:
Provided is an elastically actuating device including an actuator configured to generate a rotary force, a gear part connected to the actuator and configured to transfer the rotary force from the actuator to an outside, and an elastic member including one end fastened to a ground and the other end connected to the gear part, and an elastic member including one end fastened to a ground and another end connected to the gear part, disposed outside the actuator to cover the actuator from the one end to the other end, and deformed in response to the gear part rotating relative to the actuator.
Abstract:
A method of determining torsional deformation in a drivetrain e.g. of a wind turbine. To provide a reliable and simple deformation assessment, the method comprises the step of generating a first signal representing first rotational speed of a low speed shaft, generating a second signal representing the second rotational speed of a high speed shaft, and determining torsional deformation based on changes in the ratio between the first and second signals.
Abstract:
In an embodiment, a sensor substrate includes a first end, a second end, and a body. The body contains provisions for accommodating one or more sense elements. The first end and the second end contain attachment points for attaching the sensor substrate to a shaft. In addition, the first end and the second end include curved portions. For a particular end, a spacing of the attachment points and/or a depth of the curved portion may define, in part, a flexibility of the end. This flexibility may be used to control a sensitivity of the sense elements.
Abstract:
In an embodiment, a sensor substrate includes a first end, a second end, and a body. The body contains provisions for accommodating one or more sense elements. The first end and the second end contain attachment points for attaching the sensor substrate to a shaft. In addition, the first end and the second end include curved portions. For a particular end, a spacing of the attachment points and/or a depth of the curved portion may define, in part, a flexibility of the end. This flexibility may be used to control a sensitivity of the sense elements.
Abstract:
A trailer coupling for a towing vehicle, having a coupling carrier, which includes, in particular, a coupling arm and at whose free end a coupling body, in particular, a coupling ball is arranged for connecting a trailer, and which coupling carrier is fixedly or movably arranged on a mount which is or can be attached to the towing vehicle, and having a sensor arrangement which has at least one sensor and has the purpose of sensing a traction force and/or thrust force which can be caused by a traction load acting on the coupling element during a traction operation of the trailer and of outputting a force signal representing the traction force and/or thrust force, and having an evaluation device for determining a trailer mass value of the trailer on the basis of the force signal.
Abstract:
In a spring body for a force transducer built into a force-transmitting part, a force-input section is provided for receiving a force, a force-output section for transmitting the force, and an elastic deformation body arranged therebetween which couples the force-output section to the force-input section such that the force received by the force-input section is transmitted to the force-output section. The elastic deformation body performs a predetermined elastic deformation movement caused by the force to be transmitted at at least one point. A coding sampling section is provided at the at least one point of the deformation body and which follows deformation movements of the at least one point.