AM PravaH logo

AM PravaH

by Paanduv Applications · Since 2014
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ActiveAvailable globallyCloudOn-premise
Quick facts
VendorPaanduv Applications
Year launched2014
StatusActive
LocationHeadquarters Bareilly, UP INDIA
Countries servedGlobal
Languages8
Integrations
Free tier
Free trial
Contact salesYES

About AM PravaH

AM PravaH is a CFD and 3D simulation software from Paanduv Applications for additive manufacturing. It provides advanced simulation capabilities, integration with other products, and user-friendly courses so users can understand and utilize additive manufacturing technologies effectively. The software supports various applications in advanced industries, allowing engineers and designers to analyze and improve their processes and products. AM PravaH is designed to facilitate rapid prototyping and product development by providing detailed insights through simulations. Key capabilities: CFD analysis 3D modeling Additive manufacturing support Integration with DC Pracar User training modules Best for: engineers and manufacturers that need to simulate and evaluate additive manufacturing processes.

AM PravaH emerges as a groundbreaking 3D simulation software, meticulously engineered by Paanduv R&D to cater specifically to the intricate demands of additive manufacturing. Billed as the world’s first all-inclusive solution, its core mission is to empower next-generation AM industries by offering a high-performance, GUI-based platform for comprehensive process simulation. This powerful tool aims to preemptively identify and mitigate defects, rigorously optimize process parameters, and ultimately facilitate more informed decision-making throughout the AM workflow. At its heart, AM PravaH provides extensive computational modeling capabilities spanning both macro and micro scales, including specialized particle modeling crucial for metal powder-based processes. Its functionality is underpinned by an "elaborate physics, less assumptions" philosophy, integrating a sophisticated 4-phase multiphase system, accurate Fresnel reflections, and precise Marangoni convection modeling to ensure high fidelity in simulations. A particularly innovative aspect is its robust deep learning module, which leverages both experimental and simulated data to intelligently predict optimal AM process parameters and assess build quality, setting it apart in the competitive landscape of AM simulation.

Pros & Cons

What users like
  • +Comprehensive Physics Modeling – Covers all major phenomena in AM
  • +Deep Learning Capabilities – Advanced prediction with minimal input
  • +Flexible Licensing Options – Fits both educational and commercial budgets
  • +Secure Standalone Deployment – Ideal for sensitive projects
  • +Scalable Performance – Runs faster on multi-core machines
What users flag
  • No Cloud Support – Limits remote or collaborative access
  • Windows-Only Likely – May lack native support for Linux/macOS
  • Steep Learning Curve for Beginners – Complex for first-time users
  • Hardware Dependent Performance – Requires high-spec systems for fast results
  • Niche Focus – Only relevant for AM-focused teams or researchers

Features

Key features

GUI-Based Interface – Simple, minimalist design tailored to AM engineers
Multiscale Modeling – Simulates at macroscale and microscale including melt pool and grain structure
AI Prediction Module – Deep learning-based prediction of process parameters and build quality
4-Phase Multiphase Physics – Captures gas, solid, liquid, and vapor phases
Marangoni Convection Modeling – Includes surface-tension-driven flow effects
Parallel Computing Support – Run simulations on multiple processors
Defect Prediction & Parameter Optimization – Identify flaws early and optimize build conditions
Offline/On-Premise Operation – No cloud access ensures data security

Additional features

Macroscale Simulation – Models heat transfer, melt pool dynamics, and laser interactions
Microscale Simulation – Models grain structure and morphology
Particle Modeling – Specifically for metal powder behavior in AM
Marangoni Effect Simulation – Includes fluid flow due to surface tension gradients
Fresnel Reflection Modeling – Accurate laser-material interaction modeling
4-Phase Multiphase System – Handles complex physical states in AM
Deep Learning Integration – Predict quality and parameters using AI
Simulation Data Reuse – Use past simulation data for better forecasting
Experimental Data Integration – Validate and calibrate with lab data
Seamless Defect Prediction – Identify common AM defects during planning
Multi-Processor Scalability – Accelerated simulation speed
User Manual and Documentation – In-depth guides for users
AM-Specific GUI – Interface tailored for additive processes
Single Track Low-Accuracy Runs – Quick parameter sweeps
High-Accuracy Full Builds – Final validation runs
Academic & Commercial Licensing – Suitable for education and industry
Subscription & Perpetual Plans – Flexible licensing
Stand-Alone Installation – No internet or cloud dependency
Support for LPBF Processes – Especially tuned for Laser Powder Bed Fusion
User-Focused FAQs – Common concerns addressed on website

Pricing

Free trial
Free version
Request a quote
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Countries & Languages

Global
Countries served
8
Interface languages
6
Billing currencies

Interface languages

EnglishFrenchSpanishGermanItalianChineseJapaneseRussian

Billing currencies

🇺🇸USD🇪🇺EUR🇬🇧GBP🇯🇵JPY🇦🇺AUD🇨🇦CAD

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