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Dive into the research topics where Frauke Hoffmann is active.

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Featured researches published by Frauke Hoffmann.


Archive | 2013

Experimental Investigation of an Active Twist Model Rotor Blade Under Centrifugal Loads

Peter Wierach; Johannes Riemenschneider; Steffen Opitz; Frauke Hoffmann

Individual Blade Control (IBC) for helicopter rotors promises to be a method to increase flight performance and to reduce vibration and noise. Quite a few concepts to realize IBC Systems have been proposed so far. Some of them have already been tested in wind tunnels or on real helicopters. A drawback of all systems that include discrete mechanical components like hinges, levers or gears is their vulnerability in a helicopter environment with high centrifugal loads and high vibration levels. That’s why the idea of using smart materials that are directly embedded in the rotor blade structure is very attractive for this application. Operating as solid state actuators they can generate a twist deformation of the rotor blade without any friction and wear. In the common DLR-ONERA project “Active Twist Blade” (ATB), DLR designed and build a 1:2.5 mach scaled BO105 model rotor blade incorporating state of the art Macro Fiber Composite (MFC) Actuators. The design of the blade was optimized using a finite element code as well as rotor dynamic simulations to predict the benefits with respect to vibrations, noise and performance. Based on these tools a blade was designed that meets all mass and stiffness constraints. The blade has been intensively tested within some bench- and centrifugal tests. The mechanical properties of the blade obtained within the bench tests showed a good correlation between measured and calculated values. The centrifugal test comprised a measurement of the active twist performance at the nominal rotation speed of 1,043 RPM at different excitation frequencies from 2 up to 6/rev. It was proven, that also under centrifugal loads the predicted twist amplitudes can be achieved.


AHS International Forum 65 | 2009

Validation of Active Twist Modeling Based on Whirl Tower Tests

Frauke Hoffmann; Steffen Opitz; Johannes Riemenschneider


Archive | 2009

BENEFIT STUDIES FOR ROTOR WITH ACTIVE TWIST CONTROL USING WEAK FLUID-STRUCTURE COUPLING

Qinyin Zhang; Frauke Hoffmann; Berend G. van der Wall


Archive | 2014

STAR Hovering Test - Proof of Functionality and Representative Results -

Frauke Hoffmann; Oliver Schneider; Berend G. van der Wall; Ralf Keimer; Steffen Kalow; Andre Bauknecht; Benjamin Ewers; Kurt Pengel; Gerrit Feenstra


Archive | 2007

Testing and Simulation of an Active Twist Rotor Blade

Johannes Riemenschneider; Peter Wierach; Steffen Opitz; Frauke Hoffmann


Archive | 2010

Measurement of the dynamic tip twist angles of an Active Twist model scale rotor blade

Steffen Opitz; Johannes Riemenschneider; Frauke Hoffmann; Oliver Schneider


CEAS Aeronautical Journal | 2016

Structural Modeling and Validation of an Active Twist Model Rotor Blade

Frauke Hoffmann; Ralf Keimer; Johannes Riemenschneider


Archive | 2005

The vortex trajectory method applied to HART II PIV data

Frauke Hoffmann; Berend G. van der Wall


AHS International Forum 74 | 2018

The Physics behind BVI Noise Reduction in Descent Flight through the Use of Dynamic Active Twist Control

Frauke Hoffmann; Berend G. van der Wall; Jianping Yin


AHS International Forum 72 | 2016

Results of a parametric design study to adapt the structural properties and strain distribution of active twist blades

Steffen Kalow; Steffen Opitz; Johannes Riemenschneider; Frauke Hoffmann

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Ralf Keimer

German Aerospace Center

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