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Category: Software » Graphic » 3D Design , Graphic » Engineering Design , Educational »Computer , Educational » Engineering, Science
& Knowledge
(Dec. 96/11) Changes:
- v13.8 version of the software has
been added!
LMS Virtual.Lab is one of Siemens's most popular products specializing in
simulation, analysis, and testing of Macintosh systems . This software has various parts that each have private applications;
structure integrity, noise analysis, vibration and system dynamics are among
these categories. The advanced simulation of mechatronics systems and its
widespread use in the automotive, aerospace, electronics, mechanics, and computer
industries is another great feature of this program.
This software is also referred to as the "Siemens Magic Lab", a
highly-lab equipped to perform a variety of engineering tests that have
countless capabilities. This software is based on numerical finite element
method and the Mac animals is common with FEMAP and NXNastran.
One of the applications of this software is the acoustic and vibrational simulation that helps engineers how to design isolated environments that are far from any unwanted and intrusive sound, this feature is more suitable for designing industrial environments in which devices work. It generates noise or vibrations.
An analysis of energy flows and simulations in moving systems (usually high-speed) such as cars, jets, planes, etc. is another feature of this software that helps engineers optimize their systems to the best of their ability and weaknesses. Identify.
One of the other applications of this software is in material engineering; with the help of this software it is possible to calculate the life of different components using timely simulations and to prevent the various types of fatigue failures in a timely manner; this makes it possible to Sensitive systems, such as aircraft, calculate their service life so that they do not cause a lot of damage.
Key features of LMS Virtual.Lab software:
- Advanced simulation of a variety of mechanical, dynamic and mechatronic systems
- 3D simulation and numerical solution of finite element equations
- Optimize pre-prototype design systems
- Calculate fatigue life and creep systems Sensitive systems
- FEA
- based modeling - Reduce cost and increase production efficiency
- High compatibility with engineering software such as NXNastran and FEMAP
- High compatibility with design software such as CATIA
The list of software in this package:
This collection is generally presented in a separate 3-way format.
1. LMS Virtual.Lab 13.8
2. LMS Virtual.Lab 13.8 APPSnDOCS
3. LMS Complementary Solvers & NXNastran 13.8
- Package 1 contains the original software and must necessarily be installed first.
- Package 2 includes software and additional tools that are available in the software as follows:
One of the applications of this software is the acoustic and vibrational simulation that helps engineers how to design isolated environments that are far from any unwanted and intrusive sound, this feature is more suitable for designing industrial environments in which devices work. It generates noise or vibrations.
An analysis of energy flows and simulations in moving systems (usually high-speed) such as cars, jets, planes, etc. is another feature of this software that helps engineers optimize their systems to the best of their ability and weaknesses. Identify.
One of the other applications of this software is in material engineering; with the help of this software it is possible to calculate the life of different components using timely simulations and to prevent the various types of fatigue failures in a timely manner; this makes it possible to Sensitive systems, such as aircraft, calculate their service life so that they do not cause a lot of damage.
Key features of LMS Virtual.Lab software:
- Advanced simulation of a variety of mechanical, dynamic and mechatronic systems
- 3D simulation and numerical solution of finite element equations
- Optimize pre-prototype design systems
- Calculate fatigue life and creep systems Sensitive systems
- FEA
- based modeling - Reduce cost and increase production efficiency
- High compatibility with engineering software such as NXNastran and FEMAP
- High compatibility with design software such as CATIA
The list of software in this package:
This collection is generally presented in a separate 3-way format.
1. LMS Virtual.Lab 13.8
2. LMS Virtual.Lab 13.8 APPSnDOCS
3. LMS Complementary Solvers & NXNastran 13.8
- Package 1 contains the original software and must necessarily be installed first.
- Package 2 includes software and additional tools that are available in the software as follows:
- LMS Virtual.Lab On-Line
Help
- LMS Virtual.Lab Powertrain Dynamic Simulator
- LMS Virtual.Lab Composer
- LMS Virtual.Lab Transmission Builder
- LMS Virtual.Lab Driving Dynamics
- LMS Virtual.Lab Motion-TWR
- LMS Virtual.Lab Flex Wizard
- LMS Virtual.Lab MRR Com for Excel / MRR API / MRR Command-line
- LMS Virtual.Lab Motion Advanced Features Editor
- LMS Virtual.Lab Eloads
- LMS Virtual.Lab Leaf Spring
- LMS Virtual.Lab Powertrain Dynamic Simulator
- LMS Virtual.Lab Composer
- LMS Virtual.Lab Transmission Builder
- LMS Virtual.Lab Driving Dynamics
- LMS Virtual.Lab Motion-TWR
- LMS Virtual.Lab Flex Wizard
- LMS Virtual.Lab MRR Com for Excel / MRR API / MRR Command-line
- LMS Virtual.Lab Motion Advanced Features Editor
- LMS Virtual.Lab Eloads
- LMS Virtual.Lab Leaf Spring
- Package 3 includes additional and complementary solvers that
include two LMS Complementary Solvers and Siemens NXNastran for LMS;
complementary LMS solvers for Acoustic and Durability modules are installed on
the main software and Siemens NXNastran is in fact a version Optimized for
NXNastran, designed for LMS
LMS Virtual.Lab is an integrated suite of 3D FE and multibody simulation
software that simulates and optimizes the performance of mechanical systems for
structural integrity, noise and vibration, system dynamics and
durability. The LMS suite Virtual.lab Using, engineering teams can:
- Build accurate simulation models
- Simulate design mechanical behavior
- Quickly assess multiple design alternatives
- Optimize designs before prototype construction
- Accurately detect weak spots
- Efficiently explore multiple design alternatives
- Build accurate simulation models
- Simulate design mechanical behavior
- Quickly assess multiple design alternatives
- Optimize designs before prototype construction
- Accurately detect weak spots
- Efficiently explore multiple design alternatives
Finite Element Acoustics
LMS Virtual.Lab Finite Element Acoustics offers a method for acoustic simulation, helping you predict and improve the sound and noise performance of systems. Finite Element Acoustics can create a weak and fully coupled vibro-acoustic simulation to determine how acoustic sources affect the structure.
NVH Response Analysis
LMS Virtual.Lab NVH Response Analysis is an easy-to-use, entry-level simulation tool for predicting the noise and vibration behavior of a component, subsystem or complete model under operational loading conditions.
Structural Correlation and Pre-Test Analysis
When preparing measurements for physical structures, using the modal information of preliminary finite element models to determine the optimal measurement setup is called pre-test analysis. After a good test data for a physical model is available, structural correlation analysis allows you to quantify the geometrical and dynamic, such as frequency response function (FRF) and modal, similarity between the test model and its equivalent FE model.
Advanced Optimization
LMS Virtual.Lab Advanced Optimization incorporates additional optimization methods as well as multi-objective optimization and robust design techniques. Global Optimization solves general constrained optimization problems. The Multi-objective Optimization module helps to optimize designs with two or more competing goals. You can study the result variation and build higher quality products by making the design more robust and reliable.
SEA +
SEA + software, developed by InterAC, simulates performance of mid and high frequency noise and vibration (N & V). SEA + provides breakthrough technologies in the N & V design process based on the method of statistical energy analysis (SEA).
Multibody Dynamic Motion
LMS Virtual.Lab Motion is an integrated multibody solution for modeling, simulating and analyzing a realistic dynamic motion of any mechanical system. The multibody modeling software helps you to analyze and optimize real-world mechanical design behavior in order to ensure optimal performance before committing to physical prototype testing.
Component Fatigue
LMS Virtual.Lab Component Fatigue is a complete solution to accurately evaluate the fatigue performance of individual components in one, integrated simulation environment. By combining component loads derived from prototype measurements or multibody simulations, FE-based stress results and cyclic fatigue material parameters, you can predict fatigue hotspots and fatigue life as well as optimize component design.
FEA Pre / Post
LMS Virtual.Lab FEA Pre / Post is the standard configuration for simulation engineers performing linear, nonlinear and crash finite element analysis using industry standard solvers. The preprocessing and postprocessing configuration allows you to import models or meshes from industry standard solver formats, perform additional mesh modeling, set up load and boundary conditions, drive the preferred solver and post processing results.
Meshing
LMS Virtual.Lab Meshing is a complete configuration for geometry healing, meshing and performing linear, nonlinear, and crash finite element analysis (FEA) using industry standard solvers. The meshing engine combines a basic and advanced mesher for automatic and associative generation of a finite element model on a wireframe, surface or solid geometries.
LMS Virtual.Lab Finite Element Acoustics offers a method for acoustic simulation, helping you predict and improve the sound and noise performance of systems. Finite Element Acoustics can create a weak and fully coupled vibro-acoustic simulation to determine how acoustic sources affect the structure.
NVH Response Analysis
LMS Virtual.Lab NVH Response Analysis is an easy-to-use, entry-level simulation tool for predicting the noise and vibration behavior of a component, subsystem or complete model under operational loading conditions.
Structural Correlation and Pre-Test Analysis
When preparing measurements for physical structures, using the modal information of preliminary finite element models to determine the optimal measurement setup is called pre-test analysis. After a good test data for a physical model is available, structural correlation analysis allows you to quantify the geometrical and dynamic, such as frequency response function (FRF) and modal, similarity between the test model and its equivalent FE model.
Advanced Optimization
LMS Virtual.Lab Advanced Optimization incorporates additional optimization methods as well as multi-objective optimization and robust design techniques. Global Optimization solves general constrained optimization problems. The Multi-objective Optimization module helps to optimize designs with two or more competing goals. You can study the result variation and build higher quality products by making the design more robust and reliable.
SEA +
SEA + software, developed by InterAC, simulates performance of mid and high frequency noise and vibration (N & V). SEA + provides breakthrough technologies in the N & V design process based on the method of statistical energy analysis (SEA).
Multibody Dynamic Motion
LMS Virtual.Lab Motion is an integrated multibody solution for modeling, simulating and analyzing a realistic dynamic motion of any mechanical system. The multibody modeling software helps you to analyze and optimize real-world mechanical design behavior in order to ensure optimal performance before committing to physical prototype testing.
Component Fatigue
LMS Virtual.Lab Component Fatigue is a complete solution to accurately evaluate the fatigue performance of individual components in one, integrated simulation environment. By combining component loads derived from prototype measurements or multibody simulations, FE-based stress results and cyclic fatigue material parameters, you can predict fatigue hotspots and fatigue life as well as optimize component design.
FEA Pre / Post
LMS Virtual.Lab FEA Pre / Post is the standard configuration for simulation engineers performing linear, nonlinear and crash finite element analysis using industry standard solvers. The preprocessing and postprocessing configuration allows you to import models or meshes from industry standard solver formats, perform additional mesh modeling, set up load and boundary conditions, drive the preferred solver and post processing results.
Meshing
LMS Virtual.Lab Meshing is a complete configuration for geometry healing, meshing and performing linear, nonlinear, and crash finite element analysis (FEA) using industry standard solvers. The meshing engine combines a basic and advanced mesher for automatic and associative generation of a finite element model on a wireframe, surface or solid geometries.
More info (open / close)
required system
Supported
Operating Systems: Windows 7 SP1 64-bit or
Windows 8.1 64-bit
CPU: Single core at 3 GHz or better with at least 4 MB of L2 cache
RAM: 4 GB minimum
Graphics: Nvidia Quadro FX 4500 or better
Hard disk: at At least 100 GB of disk space with 7200 rpm or higher
CPU: Single core at 3 GHz or better with at least 4 MB of L2 cache
RAM: 4 GB minimum
Graphics: Nvidia Quadro FX 4500 or better
Hard disk: at At least 100 GB of disk space with 7200 rpm or higher
Specifications
Manufacturer: Siemens AG
Price: $ 25,000 (for information only) File size: 5048 + 4393 + 290 MB Release Date: 00:25 - 1396/11/3 | 2018.01.23 Source: PC Download / www.p30download.ir Rating:
Price: $ 25,000 (for information only) File size: 5048 + 4393 + 290 MB Release Date: 00:25 - 1396/11/3 | 2018.01.23 Source: PC Download / www.p30download.ir Rating:
Installation guide
Main installation and activation guide:
. First download the software and unzip it.
. Create a folder in Drive C called LMS_RLM and copy all the contents inside the Crack folder.
. Enter the LMS_RLM_Server folder located in C: \ LMS_RLM and right-click the server_install.bat file, and then select Run as Administrator.
. Allow the necessary service to be performed and the steps to be taken.
. Right-click on the Computer icon on Deskop and select Properties.
. From the menu on the left, select Advanced system settings, and then click Enviroment Variables from the Advanced tab.
. In the System variables section, click New and enter the following values:
. First download the software and unzip it.
. Create a folder in Drive C called LMS_RLM and copy all the contents inside the Crack folder.
. Enter the LMS_RLM_Server folder located in C: \ LMS_RLM and right-click the server_install.bat file, and then select Run as Administrator.
. Allow the necessary service to be performed and the steps to be taken.
. Right-click on the Computer icon on Deskop and select Properties.
. From the menu on the left, select Advanced system settings, and then click Enviroment Variables from the Advanced tab.
. In the System variables section, click New and enter the following values:
- Variable name: LMS_LICENSE
- Variable value: 5053 @ localhost
- Variable value: 5053 @ localhost
8. Log into the installer folder and run the Launch.exe file with
Administrator access.
9. In the window that opens, click Install LMS Virtual.Lab with one installer.
10. Do not change the location of the software installation and install the application in the same default path.
11. In the next step, when you encounter the Enter your RLM license server or file, enter the following in the Name field and click Next.
9. In the window that opens, click Install LMS Virtual.Lab with one installer.
10. Do not change the location of the software installation and install the application in the same default path.
11. In the next step, when you encounter the Enter your RLM license server or file, enter the following in the Name field and click Next.
5053 @ localhost
12. Allow the software to be installed, this step may take a while.
13. After installing the software, log into the LMS_RLM folder and copy its contents to the software installation path, namely C: \ Program Files \ LMS, and replace the previous files.
14. Run the SolidSQUADLoaderEnabler.reg file from the LMS_RLM folder and allow the necessary changes.
15. Restart your system once.
16. Run the application; the program tells you that the license program is not set, and then click OK to enter the License settings.
17. In the popup window, select Select Configurations.
18. In the window that opens for each item you need, select the green check box and OK at the end.
19. Then, in the Current Product Configurations section, select the smallest modules you need, and click on green and then OK.
20. Open the application once and again.
21. The software is activated and can be used without any restrictions.
Tip: If you wish, you can download and install other additional Virtual.Lab applications as described in the following guide.
How to install and activate LMS Virtual.Lab Powertrain Dynamic Simulator:
1. First download the APPSnDOCS package and unzip it.
2. Run the Launch.exe file with Administrator access.
3. In the window that opens, click Install LMS Virtual.Lab Powertrain Dynamic Simulator.
4. Install the application in your default path and if you encounter the DADS 9.6 installation message, select No.
5. When installing, be sure to uncheck DADS Patch Files.
6. Leave it blank in the LM_LICENSE_FILE section of the License Selection step.
7. Allow the installation of the program to finish.
8. Right-click on the Computer icon on Deskop and select Properties.
9. From the menu on the left, select Advanced system settings and select Enviroment Variables from the Advanced tab.
10. For both User variables and System variables, enter the New option and enter the following values for both:
13. After installing the software, log into the LMS_RLM folder and copy its contents to the software installation path, namely C: \ Program Files \ LMS, and replace the previous files.
14. Run the SolidSQUADLoaderEnabler.reg file from the LMS_RLM folder and allow the necessary changes.
15. Restart your system once.
16. Run the application; the program tells you that the license program is not set, and then click OK to enter the License settings.
17. In the popup window, select Select Configurations.
18. In the window that opens for each item you need, select the green check box and OK at the end.
19. Then, in the Current Product Configurations section, select the smallest modules you need, and click on green and then OK.
20. Open the application once and again.
21. The software is activated and can be used without any restrictions.
Tip: If you wish, you can download and install other additional Virtual.Lab applications as described in the following guide.
How to install and activate LMS Virtual.Lab Powertrain Dynamic Simulator:
1. First download the APPSnDOCS package and unzip it.
2. Run the Launch.exe file with Administrator access.
3. In the window that opens, click Install LMS Virtual.Lab Powertrain Dynamic Simulator.
4. Install the application in your default path and if you encounter the DADS 9.6 installation message, select No.
5. When installing, be sure to uncheck DADS Patch Files.
6. Leave it blank in the LM_LICENSE_FILE section of the License Selection step.
7. Allow the installation of the program to finish.
8. Right-click on the Computer icon on Deskop and select Properties.
9. From the menu on the left, select Advanced system settings and select Enviroment Variables from the Advanced tab.
10. For both User variables and System variables, enter the New option and enter the following values for both:
Variable name:
LMS_INTL_LICENSE_FILE
Variable value: C: \ LMS_RLM \ lms_intl_SSQ.dat
Variable value: C: \ LMS_RLM \ lms_intl_SSQ.dat
9. The software is activated and can be used without any restrictions.
Siemens NXNastran for LMS Installation and Activation Guide:
1. First download the LMS Complementary Solvers & NXNastran package and make a free purchase.
2. Run the Launch.exe file with Administrator access.
3. Select the Siemens NXNastran for LMS option.
4. In the next step, when you encounter the "Enter your license server," enter the following in the Name field and click Next.
Siemens NXNastran for LMS Installation and Activation Guide:
1. First download the LMS Complementary Solvers & NXNastran package and make a free purchase.
2. Run the Launch.exe file with Administrator access.
3. Select the Siemens NXNastran for LMS option.
4. In the next step, when you encounter the "Enter your license server," enter the following in the Name field and click Next.
5053 @ localhost
5. Allow the software to be installed.
6. Copy the NXNastran folder from the LMS_RLM folder and place it in the software installation path, namely C: \ Program Files \ LMS.
7. The software is activated and can be used without any restrictions.
How to install and activate LMS Virtual.Lab Composer Creato
6. Copy the NXNastran folder from the LMS_RLM folder and place it in the software installation path, namely C: \ Program Files \ LMS.
7. The software is activated and can be used without any restrictions.
How to install and activate LMS Virtual.Lab Composer Creato
First download the APPSnDOCS package and unzip it.
2. Run the Launch.exe file with Administrator access.
3. Click Install Verticals.
4. Click Install LMS Virtual.Lab Composer.
5. In the next step, when you encounter the Enter your license server message, enter the following in the Name field and click Next.
2. Run the Launch.exe file with Administrator access.
3. Click Install Verticals.
4. Click Install LMS Virtual.Lab Composer.
5. In the next step, when you encounter the Enter your license server message, enter the following in the Name field and click Next.
5053 @ localhost
6. In the final step, select the Run Composer Creator option.
7. Allow the software to be installed.
8. Copy the LMS Composer 13.8 folder from the LMS_RLM folder and place it at the installation location of the software: C: \ Program Files (x86) \ LMS.
9. The software is activated and can be used without any restrictions.
Activation Tips:
- After installing the programs, restart your system.
You can change the license settings from the Tools -> Options -> LMS Licensing menu and if you have installed a new module, enable it from this section.
- There are no additional programs that need to be activated, or License can be activated through LMS Licensing.
Tips:
- This software has been completely tested by the download team and cracks it properly.
- This software is only installed on 64-bit systems.
- The list of software in this package can be found in the description above.
- Files are compressed as much as possible and can be repaired with WinRAR.
7. Allow the software to be installed.
8. Copy the LMS Composer 13.8 folder from the LMS_RLM folder and place it at the installation location of the software: C: \ Program Files (x86) \ LMS.
9. The software is activated and can be used without any restrictions.
Activation Tips:
- After installing the programs, restart your system.
You can change the license settings from the Tools -> Options -> LMS Licensing menu and if you have installed a new module, enable it from this section.
- There are no additional programs that need to be activated, or License can be activated through LMS Licensing.
Tips:
- This software has been completely tested by the download team and cracks it properly.
- This software is only installed on 64-bit systems.
- The list of software in this package can be found in the description above.
- Files are compressed as much as possible and can be repaired with WinRAR.
download links
Software Siemens LMS Virtual.Lab Rev. X64 13.8 - 5048
MB
Downloa - Part One
Download - Part II
Download - Part III
Software Siemens LMS Virtual.Lab Rev. X64 Appsndocs 13.8 - 4393 MB
Download - Part One
Download - Part II
Download - Part III
Download - Software LMS Complementary & Nxnastran Solvers V13.5 x64 - 290 MB
Downloa - Part One
Download - Part II
Download - Part III
Software Siemens LMS Virtual.Lab Rev. X64 Appsndocs 13.8 - 4393 MB
Download - Part One
Download - Part II
Download - Part III
Download - Software LMS Complementary & Nxnastran Solvers V13.5 x64 - 290 MB
File password
www.p30download.com
Siemens Lms Virtual.Lab Rev. 13.8 X64 + Appsndocs V13.8 X64 + Lms Complementary Solvers And Nxnastran V13.5 X64 - The Most Powerful Engineering Simulation Software And Mechanical Systems - Gyan Ganga ज्ञान गंगा >>>>> Download Now
ReplyDelete>>>>> Download Full
Siemens Lms Virtual.Lab Rev. 13.8 X64 + Appsndocs V13.8 X64 + Lms Complementary Solvers And Nxnastran V13.5 X64 - The Most Powerful Engineering Simulation Software And Mechanical Systems - Gyan Ganga ज्ञान गंगा >>>>> Download LINK
>>>>> Download Now
Siemens Lms Virtual.Lab Rev. 13.8 X64 + Appsndocs V13.8 X64 + Lms Complementary Solvers And Nxnastran V13.5 X64 - The Most Powerful Engineering Simulation Software And Mechanical Systems - Gyan Ganga ज्ञान गंगा >>>>> Download Full
>>>>> Download LINK um