主题:【原创】螺旋桨疲劳试验机技术

浏览0 回复4 电梯直达
Amsler测试技术
结帖率:
100%
关注:0 |粉丝:0
新手级: 新兵
螺旋桨旋转叶片扭转疲劳试验机

中定时截尾数据的处理和评估方法.采用线性Goodman修正和Miner损伤累积法则将截尾疲劳寿命转换为疲劳极限样本数据,对该样本建立似然方程,利用似然方程组的极值条件迭代求解疲劳极限的最大似然估计量,并通过Monte-Carlo假设验证了方法的准确性.根据疲劳极限的最大似然估计可以得到更准确的S-N曲线,从而更有效地进行疲劳寿命评估.

有关螺旋桨材料的疲劳特性、本文作者利用在海水中再现实际运转的疲劳试验弄清了寿命达10~8次的疲劳强度及疲劳裂纹扩展特性[1~3]。但因螺旋桨的实际运转寿命是10~9次或更高,所以必须搞清10~9~10~(10)次寿命区域的疲劳强度。用实验的方法求出试验结果,需要超过10年的时间,因此,采用了将已求得的达10~3次寿命的疲劳特性的实验值进行统计整理,

一种测试螺旋桨叶疲劳性能的试验系统,它由螺旋桨叶试件、夹具、静载加载机构、振动台、应变片和动态应变仪组成;它们之间的位置连接关系是:4个螺旋桨桨叶试件的根部通过螺栓与夹具连接,左右各设置2个螺旋桨叶试件;在螺旋桨叶试件尖部位置打孔,以安装静载加载机构,每边的2个螺旋桨叶试件通过尖部的静载加载机构连接在一起;整个螺旋桨叶试件及夹具一体通过振动台的丝杠连接于振动台的动圈上;在螺旋桨叶试件的相应位置上粘贴应变片;动态应变仪与应变片连接。本发明结构简单、操作方便、效率高,用于螺旋桨叶劳性能试验测试,测试结果对于结构疲劳寿命评定具有重要的工程应用价值。
为您推荐
您可能想找: 拉力试验机 询底价
专属顾问快速对接
立即提交
Amsler测试技术
结帖率:
100%
关注:0 |粉丝:0
新手级: 新兵
螺旋桨旋转叶片扭转疲劳试验机

中定时截尾数据的处理和评估方法.采用线性Goodman修正和Miner损伤累积法则将截尾疲劳寿命转换为疲劳极限样本数据,对该样本建立似然方程,利用似然方程组的极值条件迭代求解疲劳极限的最大似然估计量,并通过Monte-Carlo假设验证了方法的准确性.根据疲劳极限的最大似然估计可以得到更准确的S-N曲线,从而更有效地进行疲劳寿命评估.

有关螺旋桨材料的疲劳特性、本文作者利用在海水中再现实际运转的疲劳试验弄清了寿命达10~8次的疲劳强度及疲劳裂纹扩展特性[1~3]。但因螺旋桨的实际运转寿命是10~9次或更高,所以必须搞清10~9~10~(10)次寿命区域的疲劳强度。用实验的方法求出试验结果,需要超过10年的时间,因此,采用了将已求得的达10~3次寿命的疲劳特性的实验值进行统计整理,

一种测试螺旋桨叶疲劳性能的试验系统,它由螺旋桨叶试件、夹具、静载加载机构、振动台、应变片和动态应变仪组成;它们之间的位置连接关系是:4个螺旋桨桨叶试件的根部通过螺栓与夹具连接,左右各设置2个螺旋桨叶试件;在螺旋桨叶试件尖部位置打孔,以安装静载加载机构,每边的2个螺旋桨叶试件通过尖部的静载加载机构连接在一起;整个螺旋桨叶试件及夹具一体通过振动台的丝杠连接于振动台的动圈上;在螺旋桨叶试件的相应位置上粘贴应变片;动态应变仪与应变片连接。本发明结构简单、操作方便、效率高,用于螺旋桨叶劳性能试验测试,测试结果对于结构疲劳寿命评定具有重要的工程应用价值。
yayicuo
结帖率:
100%
关注:0 |粉丝:0
新手级: 新兵
qqqid
结帖率:
100%
关注:0 |粉丝:0
新手级: 新兵
amsler测试技术
结帖率:
100%
关注:0 |粉丝:0
新手级: 新兵
Technical Info
Application Notes & White Papers
T-Film Slip Table Analysis?
Bringing Broadband 6-DOF Vibration into the Lab?
An Accurate Repeatable SSTS?
A 6DoF Vibration Specification Development Methodology?
A Large Slip Table to Vibrate Ariane 5 Payloads?
A Three Dimensional Vibration System - Fred Edgington WSMR?
Advanced High-Freq 6-DOF Vibration Testing using the Tensor 18kN-SV March 2013?
Benefits and Challenges of Over Actuated Excitation Systems?
Benefits of Force Limiting Vibration Testing?
Brief Overview of Vehicle Seat Test Standards?
Comparison of Electronic Component Durability Under Uniaxial and Multiaxial Random Vibrations?
Comparison of Response of Simple Structure to Single and Multiple Axis Random Vibration Inputs?
Comparisons of Simultaneous and Sequential Durabilty Testing?
Control of an Over-Actuated Single DoF Excitation System?
Defining the Global Error of a MIMO Vibration Test?
Defining the Global Error of a Multi-axis Vibration Test?
Development of 6DoF Motion Replication Based Production Acceptance Test?
Dynamic Testing: Toward a Multiple Exciter Test?
Electrohydraulic Shakers?
Engine Simulator Reduces Development Time and Expense?
Estimating CUBE Performance?
Evaluation of 6DoF ED Shaker System?
Experimentation using Single and Multi Axis Vibration?
Gunfire Loads are Simulated in A-10 Fatigue Testing?
High Force Testing of Saturn IV-B?
High Intensity Noise Generation for Extremely Large Reverberant Room Test Applications?
Historical Development of High Performance Multi Axis Vibration Test Systems?
Hydrostatic Pad Bearing Application Notes?
Improved Reliability Test Using Multiaxial Electrodynamics Vibration?
Input Observer Convergence and Robustness: Application to Compression
Installation and Testing CUBE?
Introduction to Engine Simulation Systems?
Leuven Cube Dynamics Analysis?
MIRA Article?
Multishaker Upgrade at ESTEC-ESA?
Multi Axis Testing of Underwing?
Multi-Axis Vibration Reduces Test Time?
Nonlinear Model-Based Control of Combustion Timing in Premixed Charge Compression Ignition
Novel Approach to Improve Electronics Reliability?
Novel Guided Head Expander?
Reliability Test Multiaxial Electrodynamics Vibration?
Simulate and Stimulate?
Space Power Facility: Capabilities for Space Environmental Testing in a Single Facility?
Spatial Requirements for Transducer Mapping?
Structural Developments Improve High-Frequency Vibration Testing on Cube System?
Subsidiary (Component) Shock Test System (SSTS)?
Team Spherical Couplings?
Technical Analysis of Team T-Film Slip Table?
TENSOR Multi Axis Vibration System?
Testing behind the Test Facility Acoustic Design NASA Glenn?
Time Domain and Frequency Domain Techniques for Multi Shaker Time Waveform Replication?
Validation Techniques for 6DoF Vibration Data Acquisition?
Vibration Test Evolution?
Waveform Replication for Accurate Replication?
Data Sheets & Brochures
Team Overview Brochure
4-Poster?
50/60/80 Linear Actuators?
Automotive Test Systems?
Acoustic Noise Generator?
Bearings and Couplings?
BiAxial IEEE Test System?
Cube? 6 DoF Vibration?
Engine Simulator?
EX Series Hydraulic Actuators?
Horizontal Vibration Systems?
Horizontal and Dual Axis Systems?
Hydraball?
Hydraulic Power Supplies?
Hydrostatic Spherical Couplings?
LCS-48 Package Test System?
Mantis? 6 DoF Vibration?
Multi-Axis Specifications?
NEBS-GR63 Seismic Test System?
Pad Bearings?
Pitch Table?
R-10 Series Rotary Actuators?
RVC 400 Rotary Vibration System?
T-Film Slip Tables?
Subsidiary Shock Test System?
Standard Products?
Tensor 18kN 6 DoF vibration?
Tensor 900 6 DoF vibration?
Torsional Vibration Table?
V8 & T8 Bearings?
Vertical System?
Vibration Test System Components?
Maintenance & Operational Notes
How to take a Fluid Sample?
Hydraulic Fluid Requirements for Team Systems?
Presentations
ESTECH 2015- Design and Integration of a Large Capacity/General Purpose 6-DOF Servo-Hydraulic Excitation System?
NASA 2010 SCLV RATF?
NASA 2010 SCLV MVF?
NASA 2010 IEST RATF?
NASA 2010 IEST MVF?
NASA 2008 SCLV VTC?
NASA 2008 IEST VTC?
ESTECH 2011?
NASA RATF Test Design?
Hughes Resubmitted to I
猜你喜欢 最新推荐 热门推荐
品牌合作伙伴