Florian Nimmervoll
Biographic Data
| ID | 3747779 |
|---|---|
| NAME | Florian Nimmervoll |
| GIVEN NAMES | Florian |
| FAMILY NAME | Nimmervoll |
| SIGNATURE | NIMMERVOLL F |
| VERIFIED | No |
| TOTAL WORKS | 2 |
| TOTAL CITATIONS | 2 |
| AUTHOR COUNT | 2 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2021 |
| LATEST PUBLICATION YEAR | 2021 |
| H-INDEX | 1 |
Method to Investigate Multi-Axis Release Action of Ski Safety Bindings
The authors developed and elaborated on a new method to release ski bindings by utilizing an industrial robot to simulate release movement showing a spatial repeatability of ± 0.06 mm. The parametric programming of the release parameters gave free control while executing repeatable release tests. A series of different motion patterns were performed, on the one hand, to test the applicability of the setup to the simulation of motion patterns and, …
Studying Force Patterns in an Alpine Ski Boot and Their Relation to Riding Styles and Falling Mechanisms
In skiing, performance and safety can depend on small details. Consequently, the measurement of forces within the ski boots, which represent the essential form-fitting and force transmitting interface during skiing, will lead to enhanced performance and more importantly safety. This study presents a methodology to measure force patterns (continuous data acquisition) under laboratory as well as realistic slope conditions. The force measurements wi…
Method to Investigate Multi-Axis Release Action of Ski Safety Bindings
The authors developed and elaborated on a new method to release ski bindings by utilizing an industrial robot to simulate release movement showing a spatial repeatability of ± 0.06 mm. The parametric programming of the release parameters gave free control while executing repeatable release tests. A series of different motion patterns were performed, on the one hand, to test the applicability of the setup to the simulation of motion patterns and, …
Studying Force Patterns in an Alpine Ski Boot and Their Relation to Riding Styles and Falling Mechanisms
In skiing, performance and safety can depend on small details. Consequently, the measurement of forces within the ski boots, which represent the essential form-fitting and force transmitting interface during skiing, will lead to enhanced performance and more importantly safety. This study presents a methodology to measure force patterns (continuous data acquisition) under laboratory as well as realistic slope conditions. The force measurements wi…
Method to Investigate Multi-Axis Release Action of Ski Safety Bindings
The authors developed and elaborated on a new method to release ski bindings by utilizing an industrial robot to simulate release movement showing a spatial repeatability of ± 0.06 mm. The parametric programming of the release parameters gave free control while executing repeatable release tests. A series of different motion patterns were performed, on the one hand, to test the applicability of the setup to the simulation of motion patterns and, …
Studying Force Patterns in an Alpine Ski Boot and Their Relation to Riding Styles and Falling Mechanisms
In skiing, performance and safety can depend on small details. Consequently, the measurement of forces within the ski boots, which represent the essential form-fitting and force transmitting interface during skiing, will lead to enhanced performance and more importantly safety. This study presents a methodology to measure force patterns (continuous data acquisition) under laboratory as well as realistic slope conditions. The force measurements wi…
Computer Science (2 works) · Cryospheric studies and observations (2 works) · Simulation (2 works) · Sports injuries and prevention (2 works) · Winter Sports Injuries and Performance (2 works) · Center of gravity (1 works) · Displacement (psychology (1 works) · Electrical engineering (1 works) · Engineering (1 works) · Falling (accident (1 works)