Abstract:
A computer system having a graphical user interface that includes a display and a user interface selection device. The computer system includes a method of displaying and navigating calendar events. The method includes selecting an initial calendar time period for display; selecting initial time units; displaying a band looped around an axis from a point of view located on the axis wherein the band depicts the time units and the calendar events on the side facing the axis in chronological order; and using the user interface selection device to receive navigation commands moving the view point along the axis and/or rotating the band around the axis.
Abstract:
The invention relates to a method and to a device for sound emission analysis, wherein vibrations occurring during the use of a component, during the testing of a component or during the processing of a work piece by means of chipping, welding, forming, joining and/or separating or the like are registered and evaluated, wherein a vibration spectrum is recorded at different times or continuously and subjected to a multi-dimensional evaluation.
Abstract:
The invention relates to a coupling element for acoustically coupling a sound transducer to a body for transmitting high-frequency structure-borne noise from the sound transducer to the body and/or from the body to the sound transducer, wherein the coupling element includes a deformable contact region for positively contacting the body.
Abstract:
The invention relates to a method and to a device for sound emission analysis, wherein vibrations occurring during the use of a component, during the testing of a component or during the processing of a work piece by means of chipping, welding, forming, joining and/or separating or the like are registered and evaluated, wherein a vibration spectrum is recorded at different times or continuously and subjected to a multi-dimensional evaluation.
Abstract:
The invention relates to a coupling element for acoustically coupling a sound transducer to a body for transmitting high-frequency structure-borne noise from the sound transducer to the body and/or from the body to the sound transducer, wherein the coupling element includes a deformable contact region for positively contacting the body.
Abstract:
A computer system having a graphical user interface that includes a display and a user interface selection device. The computer system includes a method of displaying and navigating calendar events. The method includes selecting an initial calendar time period for display; selecting initial time units; displaying a band looped around an axis from a point of view located on the axis wherein the band depicts the time units and the calendar events on the side facing the axis in chronological order; and using the user interface selection device to receive navigation commands moving the view point along the axis and/or rotating the band around the axis.
Abstract:
The invention relates to devices and methods and arrays for detecting and avoiding stress cracks. One embodiment relates to a device for detecting a crack formation in a component as a result of hardening of the component under heat treatment, such as inductive hardening or flame hardening, for example, and/or resulting from straightening the component, comprising a sound sensor that can be coupled with the component to register structure-borne sound. The device is configured for the frequency-based and/or time-based evaluation of sound signals registered by the sound sensor during the hardening and/or during the straightening process.
Abstract:
The invention relates to a method and a device for monitoring and/or optimizing flow processes, in particular injection molding processes. Vibrations caused by a flow of a material are detected and analyzed, wherein a vibration spectrum is detected at different times or in a (virtually) continuous manner and subjected to a multidimensional analysis.
Abstract:
The invention relates to a method and a device for monitoring and/or optimizing flow processes, in particular injection molding processes. Vibrations caused by a flow of a material are detected and analyzed, wherein a vibration spectrum is detected at different times or in a (virtually) continuous manner and subjected to a multidimensional analysis.