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UG NX7.5 LOGOUG (Unigraphics NX) is a product engineering solution from Siemens PLM Software that provides digital modeling and validation of the product design and machining process for users. Unigraphics NX is a product engineering solution from Siemens PLM Software that provides digital modeling and validation tools for user product design and machining processes.Unigraphics NX provides proven solutions for users' virtual product design and process design needs.UG is also an acronym for User Guide and Universal Grammer; it is also known as Ghost in DOTA.
Table of Contents
A few of the significance of UG
Technology of UG NX
Benefits of UG NX
Main Functions of UG NXIndustrial Design and Style Modeling
Product Design
Simulation, Confirmation, and Optimization
NC Machining
Mold Design
Development solutions
UG NX brother software
UG NX secondary development
UG NX development history
UG NX7.0 version
Optics Guard (Ultra Guard) UG a few of the significance of the
The technology of UG NX p>
UG NX advantages
UG NX p>Main Functions of UG NX Industrial Design and Style Modeling
Product Design
Simulation, Confirmation and Optimization
NC Machining
Mold Design
Development of Solutions
UG NX Sibling Software
UG NX Secondary Development
History of UG NX Development
UG NX version 7.0
Ultra Guard (Ultra Guard) Expand Edit Several meanings of UG
UG for user guide abbreviation, meaning: user guide. UG is a hero in DOTA, known as the Ghost in Chinese. From Siemens PLM Software's CAD software UG NX UG in linguistics refers to the universal grammar proposed by Chomsky, the abbreviation of the English Universal Grammar.
Editing the technology of UG NX
UG is the abbreviation of Unigraphics, which is an interactive CAD/CAM (computer-aided design and computer-aided manufacturing) system, which is powerful enough to easily realize a variety of complex entities and modeling construction. It was born at the beginning of the main workstation-based, but with the development of PC hardware and the rapid growth of individual users, the application of the PC has made rapid growth, has become a mainstream application of three-dimensional design in the mold industry. The development of UG began in July 1990, it is based on the development of C language to realize the UG NX is a two- and three-dimensional space on the unstructured mesh using adaptive multigrid method to develop a flexible numerical solution to partial differential equations of the software tool. The design philosophy is flexible enough to support a wide range of discretization schemes. Thus the software can be reused for many different applications. Effective simulation of a given process requires knowledge from the application area (natural science or engineering), mathematics (analytical and numerical mathematics) and computer science. However, the use of all these techniques in complex applications is not too easy. This is due to the fact that combining all these methods requires enormous complexity and cross-disciplinary knowledge. Eventually software implementations become more complex than one person can manage. Some very successful techniques for solving partial differential equations, in particular adaptivemeshrefinement and multigrid methods have been studied by mathematicians in the last decade, while many new possibilities have been opened up with the great advances in computer technology, in particular the development of massively parallel computers. The goal of UG is to provide a flexible and reusable software base for the solution of complex application problems using the latest mathematical techniques, i.e., adaptive local mesh encryption, multigrids, and parallel computing. Architecture of UG NX A large software system such as UG NX usually needs to be described at different levels of abstraction.UG has three design levels, i.e. architecturaldesign, subsystemdesign and componentdesign. At least at the architectural and subsystem levels, the UG is designed using a modular approach and the principle of information hiding is widely used. All stated information is distributed among the subsystems.
Benefits of UG NX
NX from Siemens PLM enables organizations to achieve the goal of transitioning to full product lifecycle management with a new generation of digital product development systems. NX includes the most widely used integrated suite of applications in the enterprise for the full range of product design, engineering and manufacturing development processes. ug Design Drawing
The challenge for today's manufacturing industry is to balance the demands of continuous cost reduction with incremental increases in revenue and profitability through technological innovation in product development. To truly support innovation, more design options must be reviewed and critical decisions must be made earlier in the development process based on knowledge gained from past experience. NX is UGS PLM's next generation digital product development system that drives product innovation through process change. Unique to NX is its knowledge management foundation, which enables engineering professionals to drive innovation for greater profitability. NX manages production and system performance knowledge, validating every design decision against known guidelines. NX builds on a successful track record of providing customers with unrivaled solutions that comprehensively improve the efficiency of the design process, cut costs, and shorten time to market. NX's success has been well-documented through a renewed focus on technological innovation that spans the entire product lifecycle. These goals have enabled NX to integrate the early stages of product manufacturing, from concept to production, into a framework that enables digital management and collaboration through an unmatched range of product inspection applications and process automation tools.
Edit UG NX key features
Industrial design and style modeling
NX provides a powerful solution for industrial design and style that fosters creativity and product technology innovation. With NX modeling, industrial designers can quickly build and refine complex product shapes, and use advanced rendering and visualization tools to maximize the aesthetic appeal of design concepts.
Product design
NX includes the world's most powerful and extensive suite of product design applications. With high-performance mechanical design and drafting capabilities, NX provides manufacturing design with the performance and flexibility customers need to design products of any complexity. NX outperforms general-purpose design tools with specialized piping and wiring design systems, sheet metal modules, specialized plastic part design modules, and other specialized applications required for industry design.
Simulation, Validation, and Optimization
NX allows manufacturers to digitally simulate, validate, and optimize products and their development processes. By utilizing digital simulation capabilities earlier in the development cycle, manufacturers can improve product quality while reducing or eliminating costly and time-consuming design, build, and reliance on change cycles for physical prototypes.
NC Machining
UG NX Machining Fundamentals provides the basic framework for linking all UG machining modules, providing an identical, user-friendly graphical windowing environment for all UG NX machining modules, which allows the user to graphically observe the tool's movement along the trajectory and make graphical modifications to it, such as lengthening, shortening, or modifying the tool trajectory. The module also provides a generalized pointing system. The module also provides general point machining programming functions, which can be used for drilling, tapping, boring and other machining programming. The module interactive interface can be flexible according to user needs for user-oriented modification and clipping, and can define standardized tool library, machining process parameters sample library so that the initial machining, semi-finishing, finishing and other operations commonly used parameters standardized to reduce the use of training time and optimize the machining process. all modules of the UG software can be generated directly in the solid model machining program, and to maintain and the solid model of the full correlation. UG NX machining post-processing module so that users can easily establish their own machining post-processing program, the module applies to almost all the world's mainstream NC machine tools and machining centers, the module in the practice of many years of application has been proved to be suitable for 2 ~ 5-axis or more axes of the milling process, 2 ~ 4-axis turning process and EDM wire cutting.
Mold Design
UG is one of the more popular mold design software today, mainly because of its powerful features. There are many processes involved in mold design, of which mold splitting is one of the key steps. There are two kinds of mold: one is automatic, the other is manual, of course, is not purely manual, but also to use the automatic mold toolbar commands, that is, mold guide. The process of automatic mold parting 1.Analyze the product, locate the coordinates so that the Z-axis direction is the same as the demolding direction. 2. Verify the molded part and set the color surface. 3. Patch against the broken hole 4. Pull out the parting surface 5. Extract the color surface, sew it with the parting surface and the piece to patch the hole to make a piece. 6. Make a box to wrap the whole product and divide it with 5 sewn pieces. 7. divided out of the upper and lower molds, look at the one with the product overlap, overlap the side with the product to find the difference can be. Manually split the steps of the mold is probably so, manually split the mold has a great advantage, is the use of MOLDWIZARD split the mold can not be reached, in the field of automatic mold is basically not feasible. However, the commands inside are more useful, we can use the relevant commands to improve our work efficiency.
Development Solutions
NX product development solutions fully support the tools manufacturers need to manage processes and share product information with an extended enterprise***. NX integrates seamlessly with the complete suite of other UGS PLM solutions. These complement CAD, CAM and CAE for collaboration, product data management, data conversion, digital solid modeling and visualization in a controlled environment. Major UG customers include General Motors, General Electric, Ford, Boeing McDonnell Douglas, Lockheed, Rolls-Royce, Pratt & Whitney Engines, Nissan, Chrysler, and the U.S. military. Almost all aircraft engines and most of the automobile engines are designed using UG, fully reflecting the UG in the field of high-end engineering, especially in the field of military industry's strong strength. In the high-end field and CATIA and drive.
Edit UG NX brother software
1. Team Center, with Dassault's Smarteam and known as the most powerful PLM software, Teamcenter support your business to identify, capture and **** enjoy a variety of different forms of product knowledge, and will be used as a wealth of information in the automation of the enterprise's processes, so as to optimize those Teamcenter is the industry's first complete product lifecycle management solution that delivers a purely product-centric Web solution to help organizations develop new products faster, better and more cost-effectively. It can penetrate into a variety of business environments to promote product knowledge and other business systems such as ERP and CRM to achieve synchronization between , at the same time the whole wide range of enterprises can be based on such product knowledge to collaborate , so that enterprises optimize the product lifecycle process and get the maximum profit . [1] 2. Postbuilder, precisely part of UG software, a powerful CAM/CNC post processor. 3. 3. Nastran, from the same root and group as NASA's Nastran, powerful CAE software for the military and aerospace industries, mainly used for linear problem solving. 4. 4. I-DEAS, high-end software for the military, used by Ford and Nissan, commonly used in the CAE field 5. SolidEdge, Solid Edge is a powerful 3D computer-aided design software that allows manufacturing companies to develop insightful designs and gain a competitive advantage by reducing costs while increasing top-line revenue. The unique Solid Edge Insight technology embeds design management capabilities directly within CAD, providing insight into design intent across the organization and enhancing collaboration. the insights complemented by Solid Edge's superior core modeling and workflows dramatically ease the pressure of designing ever more complex products to adapt to changing market demands. solid Edge has a wide user base around the world. Solid Edge has an extensive user base of designers from thousands of companies around the world, including Alcoa, NEC Engineering, and Volvo.The Solid Edge Voyager program includes 200 integrated engineering software programs and computer hardware solutions. This is a library for mechanical and piping design only.[2] 6. [2] 6. Imageware, widely used in automotive, aerospace, aeronautics, consumer appliances, mold and die, and computer components. It has a broad user base such as BMW, Boeing, GM, Chrysler, Ford, raytheon, Toyota. Imageware provides application-driven solutions for all key areas of freeform product design. Unprecedented technological advances ensure that users can design, reverse engineer, and accurately construct and fully inspect high-quality free-form surfaces in less time. The latest version of the product focuses more on advanced surfacing, 3D inspection, reverse engineering and polygonal modeling, creating an intuitive and flexible design environment for product design, engineering and manufacturing. [3]
Edit UG NX secondary development
1. Open Grip, provides the simplest interpretive language, similar to AutoCAD's Lisp, which can accomplish most of the curves, solid CAD manipulation functions, and generates a file that can be called by UI Styler's secondary development of the menu.men file, or by Open API (C language) or Open C++ call. 2. 2. Open API, also known as Open C, UG's a C language function library, the function of similar functions in the same .h header file, as long as the .c file #include it can be used, compiled to generate a dll, this dll file can be called directly by three ways: 1) through the .men call, you need to write in the .men file 2) through UI Styler secondary development of dialog boxes. Styler secondary development of the dialog box.dlg in the button response function to call 3) through the Open Grip function to call. Open C, the most powerful secondary development tool, can achieve the secondary development of sketching, 3D solid surface, product assembly, automotive module, mold module, knowledge engineering (Knowledge fusion), CAM processing, finite element FEM, database operation and all other UG functions. 3. Open C++, similar to Open C, except that the function library is in the form of C++ class library, which can be written and called by C process-oriented or C++ object-oriented methods. But the function is only limited to CAD. 4. UI Styler, used for secondary development of extended menu commands and dialog boxes, interfaces, generated .men, .dlg can call the executable code written in the above secondary development language. 5. 5. Tooling Language, UG's own set of tools to provide a descriptive language, more often used in Genius equipment tool management and Postbuilder CAM post-processor, in general, do not need to make any changes to Postbuilder, for example, in this cross-platform tool written in Java, the type of machine tool, spindle The machine type, spindle, machine axes, feed rates, tool descriptions, etc. are all already done by this Java-generated tool language. Any visual modifications in the Postbuilder window will automatically modify these tool languages. Experienced users or third parties can also modify these tools themselves. 6. To add, you can use VB, Java and other languages, through the UG installation directory of the various .set, .template, .dat, .dlg, .men file and database operations to achieve the same effect of the above secondary development tools. This is the power of UG's secondary development tools.
History of UG NX
In 1960, McDonnell Douglas Automation was founded. In 1976, United Computer Corporation, the developer of the Unigraphics CAD/CAE/CAM system, was acquired, and the prototype of UG was launched. In 1983, UG went public. In 1986, Unigraphics incorporated some of the features of Parasolid, the industry-leading, field-proven solid modeling core. In 1989, Unigraphics announces support for the UNIX platform and open systems architecture, and introduces a new STEP-compliant 3D solid modeling core, Parasolid, to UG. In 1990, Unigraphics is adopted as the mechanical CAD/CAE/CAM standard for McDonnell Douglas (now Boeing Aircraft). /CAM standard. 1991 Unigraphics begins its migration from the mainframe version of CAD/CAE/CAM to the workstation version. In 1993, Unigraphics introduced the concept of composite modeling, which allows solid modeling, curve modeling, box-and-line modeling, semi-parametric and parametric modeling to be integrated. In 1995, Unigraphics was first released for Windows NT. In 1996, Unigraphics released an advanced assembly module with automatic interference checking, a state-of-the-art CAM module, and an industrial modeling module with Class A curve modeling capabilities: it has grown rapidly around the world, captured a huge market share, and has become the go-to software for high-end and commercial CAD/CAE/CAM application development. In 1997, Unigraphics added a number of industry-leading additions, including WEAV (Geometry Connector), a feature for defining, controlling, and evaluating product templates, which is considered to be one of the most influential new technologies in the industry in the coming years. In 2000, Unigraphics released a new version of UG17, and with this latest release, UGS became the first supplier in the industry to load a world-class MCAD software product that includes a y embedded Knowledge Based Engineering (KBE) language. In 2001, Unigraphics released a new version, UG18, which simplified design by restructuring the dialog boxes of older versions to allow more work to be done in fewer dialog boxes. In 2002, Unigraphics released UG NX1.0. The new version inherited the advantages of UG18, improved and added many features to make it more powerful and perfect. In 2003, Unigraphics released the new version UG NX2.0 . The new version is based on the latest industry standards and is a new PLM-enabled architecture that EDS, together with its major customers, has designed to support complete product engineering. In 2004, Unigraphics released a new version of UG NX 3.0, which provides users with digital modeling and validation tools for their product design and machining processes. It provides proven solutions for users' virtual product design and process design needs. In 2005, Unigraphics released a new version of UG NX4.0. It is the new NX architecture, which makes development and application easier and faster. In April 2007, UGS released NX5.0 - the next generation of digital product development software for NX, helping users develop innovative products faster and more cost-effectively. In June 2008, Siemens PLM Software released NX 6.0. Built on new synchronous modeling technology, NX 6 is set to make a significant impact in the marketplace. The release of Simultaneous Modeling Technology marks a major milestone for NX and demonstrates Siemens' serious commitment to the MCAD market. NX 6 will provide significant productivity gains for our valued customers. October 2009 - Siemens PLM Software, a division of Siemens Industry Automation and a leading global provider of Product Lifecycle Management (PLM) software and services, announced the release of the latest version of its flagship digital product development solution, NX software. NX 7.0 introduces "HD3D", an open, intuitive visualization environment that helps global product development teams unlock the full value of PLM information and significantly improve their ability to make effective product decisions. In addition, NX 7.0 includes new enhancements to Simultaneous Modeling technology. Many of the bugs that existed in 6.0 have been fixed, and stability has been greatly improved over 6.0.
Edit UG NX 7.0 Release
SIEMENS PLM SOFTWARE RELEASES UG NX 7.0 WITH NEW "HD3D" AND SYNCHRONOMED MODELING TECHNOLOGY ENHANCEMENTS [4]Design Productivity: More Innovation with Less Inputs NX 7's power, flexibility, and groundbreaking technology dramatically increase your design productivity. Thanks to vastly improved Simultaneous Modeling Technology, you can model and modify designs faster than ever before, and process data from other CAD systems with unprecedented efficiency. multiCAD capabilities in NX 7 improve collaboration and simplify interactions with extended design teams and the supply chain. Your Product Development Schematic Your Product Development Schematic NX 7 introduces HD3D, an innovative visualization method that leverages the entire product definition to aid in decision making. NX7 Innovative Visualization Methodology
Product and process information can be your company's most valuable asset. Even if you have invested in a product lifecycle management system to protect, control, and manage the data, these knowledge assets may not be utilized at their full value. With NX 7, Siemens PLM Software introduces HD3D, a more efficient and effective technology that helps you fully utilize the value of your PLM information. HD3D is a visual schematic board for product development. Getting the most out of your PLM data HD3D combines the capabilities of NX and Teamcenter to visually deliver the information you need to help you understand, collaborate, and make decisions across your globally distributed product development teams. HD3D provides a simple, intuitive way to gather, organize, and present information. It visually reports Teamcenter-managed data directly in the 3D product development environment and uses this data directly in the 3D product development environment for critical decision making. Visual Synthesis of Product and Process Information HD3D efficiently and effectively indexes and manipulates lists of attribute data and manually associates them with the 3D product model, so you can interactively navigate to visually understand PLM data and get the detailed information you need. By viewing a 3D representation of your product, you can instantly answer questions about project status, design changes, team responsibilities, issues, problems, costs, suppliers, and other attributes. HD3D formats your 3D part, assembly, and component models to answer your inquiries and provides color coding, screen labels, and legends to help you quickly visualize, evaluate, and interpret. Simplified Interactive Verification HD3D, along with the NX Check-Mate verification tool, provides direct visual interaction to help you identify and resolve quality issues faster. It not only allows you to monitor critical functional requirements throughout the development process, but also provides you with visually rich feedback to help you quickly understand, navigate, and resolve quality issues. Simulation and Manufacturing Productivity: Enabling Lean Manufacturing Downstream With full integration and seamless data transfer from design to simulation and manufacturing, NX can help you save time and improve over NX7 Manufacturing Efficiency
Process efficiency with CAE and CAM. By using the advanced modeling tools in NX, your engineering analysis team can reduce simulation model preparation time from days or weeks to minutes, enabling you to evaluate simulation results faster and complete design-analysis iterations faster, resulting in a synchronized process free of process bottlenecks and increasing productivity by 30% to 100%, thus helping you take advantage of the benefits of on-time performance. This results in a synchronized process free of process bottlenecks, increasing productivity by 30% to 100%, helping you leverage timely, accurate simulation to improve product quality and performance. Manufacturing Efficiency With NX 7, your manufacturing team can quickly optimize process models with new Simultaneous Modeling Technology tools. Double the programming speed with multi-process calculation tools that simultaneously handle toolpaths and interactive NC programming. New programming and post-processing tools help you take advantage of productivity-critical machine tool and controller features. Comparison with Pro/E Both are mainstream software.
Edit paragraph Ultra Guard (Ultra Guard)
Ultra Guard (ULTRA GUARD) Abbreviation UG Saiwen Ultraman in the fight against monsters in the war team Records of the Ultra Guard involved in the event of monsters and cosmic beings. The Ultra Guard is an elite unit of the Far East Branch of the Earth Defense Force, selected from among 300 members to protect the Earth from invaders. There is a magnificent secret base at the foot of Mount Fuji. It is a place where invaders from all over the world are kept at bay. According to records, under the leadership of the calm Captain Kiriyama, there were the powerful Furuhashi, the expert shooter Soga, the combatant Tensei, and Annu, who was in charge of medical care, and there were six members of the newly-acquired Star Corps I***. The Ultramarines, with their advanced weaponry, are one of the more successful of the Showa series of Ultraman.