PERFORMANCE ENGINEERING SOLUTIONS
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Our Association with Hitachi as their Channel Partner for Pakistan Region and working on the Siemens PLM Enterprise Solutions.
Artificial Intelligence (AI) has emerged as a game-changing tool for various industries.
Solutions for industrializing additive manufacturing
Siemens’ robust portfolio of software allows you to execute the entire additive manufacturing process from design to production. Read below to learn what it takes to industrialize additive manufacturing.
Proven design tools for additively manufactured parts Generating the desired output from the additive manufacturing process begins with the right design. Design for AM is more than just optimizing geometry, but also verifying the design will print as expected. Get the tools you need to ensure first-article print quality.
NX for Design
The most powerful, flexible, and innovative product development solution in the industry, NX for Design has the features, performance, and capabilities to help you get product to market faster than ever before.
Solutions for industrializing additive manufacturing
The beginning of a quality additive manufacturing process is always in the design. AM provides the ability to manufacture highly complex designs with features like optimized surfaces and lattice structures. Our additive manufacturing solutions allow you to design and print complex geometries at scale.
- Unparalleled design tools
- Lattice structures
- Generative design
- Topology optimization
- Fluid flow optimization
- Performance simulation
Print build preparation
The beginning of a quality additive manufacturing process is always in the design. AM provides the ability to manufacture highly complex designs with features like optimized surfaces and lattice structures. Our additive manufacturing solutions allow you to design and print complex geometries at scale.
Build simulation
Simulation of the build process can help you generate quality 3D prints at scale. From build orientation optimization to mesoscale deposition path optimization, NX gives you the tools to print successfully the first time.
Machine connectivity
Connect to the widest range of 3D printing hardware with Siemens NX. Some of the systems covered include planar powder bed systems, filament deposition systems, multi-material systems and multi-axis systems.
Post-print processing
Industrialized 3D printing requires robust post-processing software. Printing is not the last step in the additive manufacturing process. Powder removal, removal of the part from the build tray, and post-process machining are all aspects of the full AM process—and all are part of our additive manufacturing solution set.
Process management
To maximize the efficiency of additive manufacturing production, the process must be well managed. This includes the order-to-shipment process, but also the management of materials and machine scheduling. We offer solutions for companies of all sizes to help ensure maximum efficiency of the complete AM process, thereby maximizing the ROI from your additive manufacturing investment.
Product Line
Automotive Engineering Software
Push the boundaries of design, engineering and innovation. Integrate simulation and test strategies, MBSE, AI and multiphysics expertise with automotive engineering software and balance automotive performance engineering characteristics, optimizing range, efficiency and comfort.
Optimize automotive performance engineering
Although the automotive industry embraced digital transformation, it doesn’t mean we collectively reached the summit. To engineer innovation faster and more efficiently, you also need to connect people, technologies and processes. When these work in unison, you’ll be able to close the gap between perfection in the digital twin and perfection in the product.
Product Lifecycle Management (PLM)
Optimize automotive performance engineering
The autonomous and electric revolution is here to stay. Although the automotive industry embraced digital transformation, it doesn’t mean we collectively reached the summit. To engineer innovation faster and more efficiently, you also need to connect people, technologies and processes. When these work in unison, you’ll be able to close the gap between perfection in the digital twin and perfection in the product.
Solutions
Computer Aided Design (CAD)
In product and industrial design, CAD is used mainly for the creation of detailed 3D solid or surface models, or 2D vector-based drawings of physical components. Throughout the engineering process, CAD will be used from conceptual design and layout of products, through strength and dynamic analysis of assemblies, to the definition of manufacturing methods; these enable engineers to interactively and automatically analyze design variants, to find the optimal design for manufacturing while minimizing the use of physical prototypes.
CAD Interoperability is always a concern for organization who works with multiple CAD software files. CAD interoperability improve design reuse, collaboration between internal colleague and external supplier, in return, improve engineering organization effectiveness and productivity.
Solutions
NX for Manufacturing
Digitally transform your production using comprehensive software to effectively plan, collaborate and execute high-performance part manufacturing.
With leading-edge design tools and technologies, Siemens NX (Unigraphics) streamlines and accelerates the product development process. Unlike CAD-only solutions and closed enterprise solutions, NX (Unigraphics) delivers the highest integration between development disciplines in an open, collaborative environment.
Design Advantages
- Fast, Flexible, Efficient Product Design
- Integrated Design Validation
- Work Seamlessly with Data from Other CAD Systems
- Visual Analytics Improve Decision-Making
- Power and Capacity for Complex Products
Design Benefits
- Reduce Development Time by More than 30 Percent
- Reduce Delivery Cycle Time by 35 percent
- Increase the Number of New Products Introduced Each Year
How NX for manufacturing can help you
Computer Aided Manufacturing (CAM)
Computer-Aided Manufacturing (CAM) commonly refers to the use of Numerical Control (NC) computer software applications to create detailed instructions (G-code) that drive Computer Numerical Control (CNC) machine tools for manufacturing parts. Manufacturers in a variety of industries depend on the capabilities of CAM to produce high-quality parts.
Manufacturers in a variety of industries depend on the capabilities of CAM to produce high-quality parts. Manufacturers also rely on CAM as engineers can define a manufacturing plan for tooling design, Computer-Aided Design (CAD) model preparation, NC programming, Coordinate Measuring Machine (CMM) inspection programming, machine tool simulation, or post-processing. With these plans generated, only then execution take place in a production environment, such as Direct Numerical Control (DNC), tool management, CNC machining, or CMM execution.
Solutions
Computer Aided Engineering (CAE)
Computer-Aided Engineering (CAE) is the use of computer software to simulate performance to improve product designs or assist in the resolution of engineering problems for a wide range of industries.
This includes simulation, validation, and optimization of products, processes, and manufacturing tools. As some of the engineering problems require the simulation of multiple phenomena to represent the underlying physics, CAE applications also support a wide range of engineering disciplines or phenomena including:
- Stress nd dynamics analysis on components and assemblies using finite element analysis (FEA)
- Thermal and fluid analysis using computational fluid dynamics (CFD)
- Kinematics and dynamic analysis of mechanisms (multibody dynamics)
- Mechanical event simulation (MES)
- Control systems analysis
- Simulation of manufacturing processes like casting, moulding and die press forming
- Optimization of the product or process
Solutions
Product Data Management (PDM)
Product Data Management (PDM) is use of software to manage product data and process-related information in a single and central system. This information includes Computer-Aided Design (CAD) data, models, parts information, manufacturing instructions, requirements, notes, and documents.
The ideal PDM system is accessible by multiple applications and multiple teams across an organization and supports business-specific needs. In any industry, a company that choose the right PDM will be able to build a solid foundation that can be easily expanded into a full Product Lifecycle Management (PLM) platform. Besides that, PDM system also provides solutions for secure data management, process enablement, and configuration management to the companies.
Digital Manufacturing
Digital Manufacturing is the use of an integrated, computer-based system comprised of simulation, three- dimensional (3D) visualization, analytics, and various collaboration tools to create product and manufacturing process definitions simultaneously.
Evolving from manufacturing initiatives such as Design for Manufacturability (DFM), Computer-Integrated Manufacturing (CIM), flexible manufacturing, lean manufacturing and others that highlight the need for more collaborative product and process design, Digital Manufacturing had become the key point of integration between PLM and various shop floor applications and equipment, enabling the exchange of product-related information between design and manufacturing groups. This alignment allows manufacturing companies to achieve their time-to-market and volume goals, as well as realize cost savings by reducing expensive downstream changes.
With Digital Manufacturing systems, manufacturing engineers can create the complete definition of a manufacturing process in a virtual environment, which includes tooling, assembly lines, work centres, facility layout, ergonomics, and resources.
Solutions
3D Printing
3D printing, also known as additive manufacturing, is a method of creating a three-dimensional object layer-by-layer using a computer created design.
3D printing is an additive process whereby layers of material are built up to create a 3D part.
The advantages of 3D printing include:-
- Bespoke, cost-effective creation of complex geometries
- Affordable start-up costs
- Completely customisable
- Ideal for rapid prototyping
- Allows for the creation of parts with specific properties
Examples of 3D printing include:-
- Consumer products (eyewear, footwear, design, furniture)
- Industrial products (manufacturing tools, prototypes, functional end-use parts)
- Dental products
- Prosthetics
- Architectural scale models & maquettes
- Reconstructing fossils
- Replicating ancient artefacts
- Reconstructing evidence in forensic pathology
- Movie props
PLM Training Services
All our trainers are certified, and they have years of hands-on experience with PLM software