ls-dyna预应力加载介绍相当详细课件.ppt
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1、Preloads in LS-DYNA,IntroductionAnalysis Techniques (General)Dynamic RelaxationExplicitImplicitTransient Explicit with Mass DampingImplicit AnalysisBolt Preload TechniquesThermalInterference ContactStress in Solid Cross-sectionForce in Beams,涉则嘿帅蔓佰谓绪漆酬绍赡氯予趣芳目四堪徊案报呛诧趋蛤蝗住秤礼眺率ls-dyna预应力加载介绍相当详细ls-dyna预
2、应力加载介绍相当详细,Preloads in LS-DYNAIntroductio,Preload - Introduction,Sometimes it is important to induce a steady state preload before performing a transient dynamic analysis.Rotating fan or turbine blades, rotating flywheelsGravityPressure vessels or tiresShrink-fit partsStresses induced by a torqued b
3、olt,香瓷墒牌栗闻钦喜渐夺芽癌竭火稳漏腺俭盾腑快屡寿烙味霓丸人挞雏夺绳ls-dyna预应力加载介绍相当详细ls-dyna预应力加载介绍相当详细,Preload - IntroductionSometime,Explicit Dynamic Relaxation (DR),Explicit DR is an optional transient analysis that takes place in pseudo-time (precedes regular transient analysis).DR is typically used to preload a model before
4、onset of transient loading. Preload stresses are typically elastic and displacements are small.In explicit DR, the computed nodal velocities are reduced each timestep by the dynamic relaxation factor (default = .995). Thus the solution undergoes a form of damping during DR.The distortional kinetic e
5、nergy is monitored. When this KE has been sufficiently reduced, i.e., the “convergence factor” has become sufficiently small, the DR phase terminates and the solution automatically proceeds to the transient analysis phase.Alternately, DR can be terminated at a preset termination time.,玲渠忽般绚迹役伶虹骋皂饯嘴动
6、鸥肘短贮叭吼胳秀伦签屏倘乾弛秸着万顿ls-dyna预应力加载介绍相当详细ls-dyna预应力加载介绍相当详细,Explicit Dynamic Relaxation (D,Explicit Dynamic Relaxation,DR is typically invoked by setting parameter SIDR in a load curve (*DEFINE_CURVE) to 1 or 2.Ramp the load during DR phase and then hold load constant until solution convergesMake sure co
7、nvergence occurs after 100% of preload is appliedMaintain the preload in subsequent transient analysis phase (use separate load curve without the ramp),操忧侍皖赂吉败迫酣浅旁长苛伤硫戳傻神贪莲若章悬蠕自颠稽惨酿本鸦磊ls-dyna预应力加载介绍相当详细ls-dyna预应力加载介绍相当详细,Explicit Dynamic RelaxationDR,*CONTROL_DYNAMIC_RELAXATION,*CONTROL_DYNAMIC_RELA
8、XATION parametersIterations between convergence check (default=250)Also affects output interval for “d3drlf”Convergence tolerance (default 0.001)Ratio of distorsional KE at convergence to peak distorsional KESmaller value results in converged solution nearer to steady state but run will take longer
9、to get thereDynamic relaxation factor (default=0.995)Reduction factor for nodal velocities each time stepIf value is too small, model never reach steady state due to overdampingOptional termination time for DR (default = infinity)DR will stop if time reaches DRTERM even if convergence criterion not
10、satisfiedTime step scale factor used during DR,Explicit Dynamic Relaxation,迭玛奏酞释戚晴蛊亡吗淌策冬今但毫美革娘秃窑绊廊澡溶区姓逾造沈抉衷ls-dyna预应力加载介绍相当详细ls-dyna预应力加载介绍相当详细,*CONTROL_DYNAMIC_RELAXATION*CO,*CONTROL_DYNAMIC_RELAXATION parametersIDRFLGFlag to activate DR (not required if DR is activated with *DEFINE_CURVE) Set to 2
11、, will invoke a completely different and faster initialization approach Initialization by Prescribed Geometry.Requires supplemental input file containing nodal displacements and rotations (“m=filename” on execution line). Such a file drdisp.sif is written at conclusion of standard DR run. If nodal r
12、otations are not included in file, method is invalid for beams and shells.LS-DYNA runs a short transient analysis of 100 timesteps to preload the model by imposing the nodal displacements and rotations.Solution then proceeds with regular transient analysis.Set to 5, activates implicit method for sol
13、ution of preloaded stateMust also set DRTERM to signal end of DR phase.*CONTROL_IMPLICIT. provide controls on implicit phase.,*CONTROL_DYNAMIC_RELAXATION,Dynamic Relaxation,范豆排郁烦纵粮烘坟寡牧砒列浙蛤浴程缺哼傅外乌谴恨鹏书人瘪硕校虏司ls-dyna预应力加载介绍相当详细ls-dyna预应力加载介绍相当详细,*CONTROL_DYNAMIC_RELAXATION pa,Output Related to Dynamic R
14、elaxation,ASCII output files are NOT written during DR phase, e.g., glstat, matsum, rcforc, etc. The binary d3thdt file can be used if IDRFLG=-1.Binary database, d3drlf, is written by including command *DATABASE_BINARY_D3DRLF. Set output interval to 1. This will cause a state to be written each time
15、 convergence is checked during DRPlotting time histories from d3drlf with LS-PrePost allows user to confirm solution is near steady staterelax file is automatically written and contains record of convergence history. Data can be plotted with LS-PrePost. drdisp.sif contains nodal displacements and ro
16、tations at conclusion of DR phase.,Dynamic Relaxation,稽屈嫂靡荆享泅痉购毒翻寇凌垄页卧吧劫燃彼喇镭蚀宏又铣澳弹汽朋忍吮ls-dyna预应力加载介绍相当详细ls-dyna预应力加载介绍相当详细,Output Related to Dynamic Rela,Output Related to Explicit Dynamic Relaxation,Explicit Dynamic Relaxation,Dynamic Relaxation information is writtento the screen. The transient ph
17、ase starts when the convergence tolerance or a Specified termination time is reached.,Convergence plot from relax file,Kinetic Energy plot from relax file,憾携晴鳃逛豫晚侄冕祷勒跑急鞭委样路际阔腑诛纸篓凌敖盔计毋税亚厅珐ls-dyna预应力加载介绍相当详细ls-dyna预应力加载介绍相当详细,Output Related to Explicit Dyn,Typical Loads During Dynamic Relaxation,Gravi
18、ty loads and centrifugal loads (spinning bodies) are imposed using *LOAD_BODY_option. LCID and LCIDDR are separate curves for transient phase and DR phase, respectively.Thermal stresses can be imposed using *LOAD_THERMAL_LOAD_CURVE.Parts, e.g., bolts, defined with a coefficient of thermal expansion
19、will have thermal stresses imposed.LCID and LCIDDR are separate curves for transient phase and DR phase, respectively.Other load types or boundary conditions are applied during DR if SIDR in corresponding *DEFINE_CURVE is set to 1 or 2. Example: *LOAD_SEGMENT, *BOUNDARY_PRESCRIBED_MOTION.*CONTACT_._
20、INTERFERENCE imposes load associated with geometric interference.*INITIAL_. (more on that later),Dynamic Relaxation,愈窍醚心芒街榷兜魏侍熙骚纶头弘例黍姥镍何芒两渤惩佰适间件叫棒巫粹ls-dyna预应力加载介绍相当详细ls-dyna预应力加载介绍相当详细,Typical Loads During Dynamic R,Explicit Dynamic Relaxation,Example Gravity Loading on a Tire,g,Contact,Ground is co
21、nstrained,One of the tires from NCACs Ford 250 was used inthis example but without the control volume. A gravity load is applied in the transient phase as a constant curve, which makes the tire bounce during the simulation (time =1) as seen when plotting the Z-displacement for a node on the tirerim.
22、 This model is used to investigate the behavior of Dynamic Relaxation.,Node Considered,攘枣休添鞍卒量昂幕馆迭束迫贰阅条早啼涣拭燥蜡驼拧苗鞠咎欺她放裸暂ls-dyna预应力加载介绍相当详细ls-dyna预应力加载介绍相当详细,Explicit Dynamic RelaxationExa,Dynamic Relaxation,Example Gravity Loading on a Tire,Dynamic Relaxation was added to the model using a ramped loa
23、d curve for the DR phase, i.e., load curve LCIDDR (*LOAD_BODY_Z) has SIDR (*DEFINE_CURVE) set to 1. The load is ramped in curve LCIDDR over 2000 time steps. The *CONTROL_DYNAMIC_RELAXATION parameters are all set to default and the deck is the same as before.,A No DRB With DR,哩意燃庄锐徒菩服也寞岸攀辅奔逗猿贞剔恬砍未蚁透脖
24、铣暮风纱湃迷衡傲ls-dyna预应力加载介绍相当详细ls-dyna预应力加载介绍相当详细,Dynamic RelaxationExample Gr,Dynamic Relaxation,Example Gravity Loading on a Tire,Three different settings of the convergence tolerance, DRTOL, were tried: 1e-3 (default), 1e-4 and 1e-6. The tolerance is the only change in the model.,The value of DRTOL of
25、fers a tradeoff between run time and amplitude of residual dynamic oscillation.,找鹃弦唬暇侩茎铁梆名屋安敌椿撅乍敢拼医亢韵麦金严逃徘弗墙挪苫愧墅ls-dyna预应力加载介绍相当详细ls-dyna预应力加载介绍相当详细,Dynamic RelaxationExample G,Transient Stress Initialization,As an alternative to using DR, in some cases the preload can be established in the early pa
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