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Verified Purchase. But, that said, this book has been a better introduction to me to Max than the Bible series which really threw me some loops. Overall, it just seems that Max doesnt have very many good learning books. I'm currently half way through this book and have learned a lot. One of my complaints is that they do not inlude color pictures of the examples they give you.
It is hard sometimes to see what it is they are talking about because you cannot tell what is highlighted in the black and white pictures. On some examples I could not replicate exactly what they were doing, I'm not sure if the workflow was correct or if some minor detail was left out of the book by mistake. If your new to 3ds Max this is a good start.
I plan on tackling Mastering 3ds Max next. I ordered this book because it is the Official Training Guide for 3ds Max Design and it's basically required reading if testing for the Associate or Professional certifications.
After a little bit of digging, I found that these additional chapters are included on a DVD in the back of the book in PDF format along with the training files. However, if you're like any normal person and want to read these additional chapters somewhere other than in front of a computer, you will want to print these additional chapters out. I don't understand the logic in Autodesk not printing and including these additional chapters in the book itself and am pretty disappointed in their decision.
High quality, shipped fast would buy again! Great examples, filled with many resources and exercises which clarify concepts.
This book is primarily for the beginner in 3ds Max. It covers the basics without much content on the main new features of Design It does, cover the basics well. A bonus CD covers more material and there is a bathroom you can light and add materials to. I only wished this touched on the top new features.
The book arrived in perfect condition, earlier than expected. The book has the dvd included and apart for the black and white is a good guide. The book was fine, but the cd did not work so i couldn't do the exercises presented in the book.
See all reviews. Top reviews from other countries. Translate all reviews to English. I bought it just when I started to work with 3Ds Max and the way everything it's explained made it easier to learn. Report abuse. Working through the examples. Great book. There is far too much wasted white space and the strip images on the page edges are meaningless.
The author is very good in explaining things but the publisher should follow through with better presentation of the work. It does however concern me that they could have used half the number of pages and did just as good a job of teaching the program. Environmental concerns, economics and plain old good design goes a long way in this day and age. I'd say 3 stars out of five. Sorry, but this is after all and we have to wake up to reality. Bravo, les livres clairs qui nous apprennent vraiment quelque chose sur 3ds Max sont trop rares.
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Double click the self extracting archive Setup. Introduction xiii. Notes contain guidelines, constraints, and other explanatory information. Tips provide information to enhance your productivity. Warnings provide information about actions that might result in the loss of data, system failures, or other serious consequences. After completing this course, if you have suggestions for improvements or if you want to report an error in the book or on the CD, please send your comments to Digital Prototyping Most of you probably recognize the enormity of the issues facing manufacturers and engineering companies today.
Manufacturing and design are changing at the speed of sound. Manufacturing is being performed globally, and can change locations at any time. Design teams are becoming "virtual", located in many geographies and companies. And customers are located all over the world, each demanding greater communication, customization, shorter timelines, and customer service. And if you are manufacturing with sustainability in mind, you are likely wrestling with issues such as optimizing materials use and reducing waste, avoiding hazardous or restricted materials, using energy xiv Introduction.
Addressing these issues can both improve a manufacturer s environmental performance and provide a distinct competitive advantage. It is critical that manufacturers start to leverage our assets across the organization, from sales and marketing, to purchasing, manufacturing, technical documentation, and field service. Not to mention plant engineering and maintenance and of course our customers.
Throughout the years of design and manufacturing, industry has talked of a future "nirvana" where throughout the product or project development cycle all knowledge would be captured and communicated. The concept has always been simple; the practical implementation has been costly, both in time and money.
The future is here. So much so, that the industry has given it a name. Digital Prototyping. The concept remains the same. Capture data digitally at its source and pull and push it throughout the lifecycle of the product or project. The "text book" definition of a digital prototype is a digital simulation of a product that can be used to test form, fit, and function.
The digital prototype becomes more and more complete as all associated conceptual, mechanical, and electrical design data are integrated. A complete digital prototype is a true digital simulation of the entire end product, and can be used to virtually optimize and validate a product to reduce the necessity of building expensive physical prototypes.
Technology has caught up to the vision, but technology is only as effective as the implementation of the tools available. Process must be examined and determined to best meet your organization's business, and the cultural change is so huge that we could spend days if not weeks discussing how to best get the 'people' part of the equation to understand and believe that it is not only the "right" thing to do but critical to their future.
For years Autodesk has democratized technology, allowing for attainability, scalability, and affordability. Like AutoCAD 25 years ago, Autodesk has enabled organizations of any size to practically implement the technology; processes and infrastructure required integrate digital prototyping into your development process. Digital Prototyping is not a "one size fits all" solution.
The sheer array of design projects is overwhelming. How can a consumer products company that must appeal to consumers with a cool look and feel and sell s of units implement the same solution as a custom industrial equipment manufacturer that never designs or builds the same unit twice implement the same solution?
Digital Prototyping is a concept that can be adapted to any design process. The technology and process will differ, but the philosophy is the same. In order to understand how digital prototyping can help manufacturers of all sizes and marketplaces, it is important to understand the general workflow of a design and fulfillment of a product.
While each of you come from within this workflow it is easy to lose sight of the overarching process and the people involved. As we look at the workflow, you can see that many departments and steps are involved in this design project and each has its own set of challenges.
Products are typically conceptually created by studying market needs and wants. These concepts can come from many sources including sales and marketing, industrial design, or conceptual engineering.
No matter where they come from, the end goal is to meet a customer's need or want. Manufacturing is responsible to build what engineering has designed, purchasing is responsible to support those efforts and track costs. Each department has deadlines and if mistakes aren't caught until the build phase they can be costly in both time and money. In the midst of this process, documents and data must be controlled and communicated. Depending on the type of product being created, regulations must be adhered to and changes incorporated.
This Introduction xv. Without Digital Prototyping, these islands of competency are just that; islands. The pipelines of communication are manual and have the ability to break down.
With each hand off of information, knowledge is lost or misinterpreted. Digital Prototyping Industrial Equipment Manufacturer Design is not about a single person or company, but about the collaboration of many. This company designs, builds, and sells packaging systems for the food and beverage industry.
Their customers are located in all parts of the world, and they recognize that in order to grow their position in the marketplace that they need to quickly bring new products to market and listen to their customer s needs, and meet those expectations. Before the system was manufactured or even physically prototyped, marketing and sales wanted to show customers the concept and allow those customers to give feedback and visualize various options.
Those departments utilized Autodesk Showcase to dynamically allow customers to interact with the virtual prototype, see various options and make decisions with respect to their needed configuration. So, how did the process work? The following shows the workflow and products used to complete the design and deliver the equipment to the customer. In order to keep control of all engineering, design and manufacturing data, Vault Manufacturing was used to vault that data and make it accessible to all project members including mechanical, electrical, manufacturing, purchasing and sales and marketing.
Vault Manufacturing allowed this organization to insure that no one was working on the same part of the design at the same time, that everyone was working on the same version of the design, and that downstream departments could view the various sub systems and offer input to keep cost down and allow for efficient manufacturing and assembly.
The mechanical design team utilized Autodesk Inventor Professional to create the various mechanical sub systems of the product. These sub systems included the frame, mechanisms, sheet metal enclosures, and mounting hardware for the electrical systems. They also agreed on standards and stuck to them including iproperties, templates, sheet metal styles, naming conventions, dimensioning styles, and hardware.
Another difference with this design is that they used Inventor Professional's capabilities to simulate various mechanisms and analyze parts for form, fit and function as well as safety considerations. As issues arose, electrical design and manufacturing could review the designs through Vault Manufacturing and Design Review to help make suggestions for improvement.
Again, this team agreed upon standards to insure consistent device tags, wire numbers and report formats that manufacturing and purchasing could use electronically without reentering the data into their own systems.
By using AutoCAD Electrical s database, accurate parts lists were generated, wire labels were created and imported into their label printer, and a To From Wire list was sent to the electricians making their wiring job easy to understand. One of the biggest changes in engineering was the ability to communicate design intent between the electrical and mechanical teams.
While electrical engineers design the schematics and logic, it is typically up to the mechanical teams to mount and physically wire and plumb the electrical and fluid power hydraulic and pneumatic devices. Some of these devices could be light curtains, valves, drives, motors, actuators, etc.
In the past this was typically done during the physical prototyping phase or during the build of a custom piece of equipment. Electricians would run string from point to point to produce accurate lengths of cables or wires, mechanical design would make their best guess on tube and pipe runs often causing costly changes in manufacturing and delay the testing and debug cycles before a product could ship to a customer site.
By utilizing Inventor Professional's routing capabilities and AutoCAD Electrical's export capabilities, the teams could accurately communicate the design intent, produce nail board drawings for cables, and simulate motion to insure that interferences wouldn t occur. Once the digital prototype was created, sales and marketing used Autodesk Showcase to work with customers in a dynamic environment that allowed the customers to virtually experience the equipment, test various options and make quick decisions which shortened the sales cycle.
Once the final configuration of the product was determined, the mechanical team could create detailed drawings in native DWG file format using DWG TruConnect. They could also export DXF files for sheet metal manufacturing, as well as create assembly instructions using Inventor s presentation capability.
These presentations and detailed design documentation were exported to DWF files for the customer. The customer uses Design Review to view models, drawings, and animations and requires no CAD software. It is a free download and available to anyone. The end result was that this company reduced change orders, saved costs by communicating throughout the process with accurate, accessible information, beat timelines and met customer's expectation.
The company might have also made more sustainable choices at key points in the design, engineering and manufacturing process, helping to reduce the number of physical prototypes and decrease waste.
By understanding that process and standards matter, capturing design intent from the beginning and not breaking the digital pipeline as the design evolves, Autodesk's Digital Prototyping can assist any manufacturer to meet and exceed business goals.
Digital Prototyping Consumer Products Anyone involved in the design or manufacturing of consumer products understands the unique challenges involved. These challenges include differentiating your brand and product from other competitors, innovating new products that will excite customers to purchase, conveying your product through sales and marketing materials, quick product development cycles, not to mention designing a product that can be mass produced at a reasonable cost and with minimal environmental impact.
Our manufacturer designs and builds desktop printers but has fallen behind their competition with respect to cost and the look and feel of their product. This manufacturer has determined that in order to keep up with competition and grow their market share, they will transition to Digital Prototyping, or virtually developing and building the product, collaborating with customers and communicating to all departments involved as the design develops.
The following shows the workflow and products used to complete the design and manufacture the product for retail delivery. In order to keep control of all engineering, design and manufacturing data, Vault Manufacturing was used to vault that data and make it accessible to all project members including industrial design, mechanical, electrical, manufacturing, purchasing and sales and marketing.
Working with market research, the Industrial Design team utilized Alias Design to begin to create conceptual designs of the new printer. Through Alias Design's free form sketching environment, industrial design was able to work naturally as though sketching on a pad of paper, and yet capturing those ideas digitally.
Through the next weeks, the design team produced several concepts that could be shown to customer focus groups to get feedback and make decisions on the final design.
The marketing team imported the Alias Design models into Autodesk Showcase and created renderings and animations of the various concepts to allow focus groups to dynamically interact with the printer in a typical home office setting. Because the customers could see different configurations and ideas digitally there was no need to take the time and money to produce physical prototypes, therefore shortening the development cycle.
The focus group results showed that the consumers like a combination of two concepts that they had been shown and also chose four colors for the printer that universally appealed to them. The marketing team was able to bring that information back to industrial design.
Through the use of Alias Design, design was able to incorporate the two concepts into a single model and make the adjustments that the focus groups requested. The mechanical design team utilized Autodesk Inventor Professional to import the Alias Design models to create a detailed design that was manufacturable.
Through Inventor s modeling environment various sub systems were designed including the molds, mounting brackets for the electronic circuitry and mechanisms. Another difference with this design is that they used Inventor Professional's capabilities to simulate Introduction xix. The electrical design team utilized a printed circuit board package and was able to export the physical model into Inventor using the IDF file format.
While electrical engineers design the schematics and logic, it is typically up to the mechanical teams to mount and physically wire the electrical systems. In the past this was typically done during the physical prototyping phase and added time and cost to the product development cycle. Technicians and engineers would run string from point to point to produce accurate lengths of cables or wires and use that string to make physical nailboards to produce prototype harnesses.
By utilizing Inventor Professional's routing capabilities the teams could accurately communicate the design intent, produce nail board drawings for cables, and simulate motion to insure that interferences wouldn't occur. Throughout the design process the engineering team used Autodesk Showcase to work with sales and marketing to make quick design decisions that allowed the detailed design to continue without having to render the models and hold formal design review meetings.
They could also export files for manufacturing, as well as create assembly instructions using Inventor s presentation capability. Prior to the release of the product, sales and marketing used Autodesk Showcase and 3DS Max to produce renderings and animations for customer facing printed material and an interactive website.
The end result was that this company reduced change orders, saved costs by communicating throughout the process with accurate, accessible information, beat timelines and produced a product that consumers wanted to purchase at a price point that was profitable for the company and within the consumers price expectation. By understanding that process and standards matter, capturing design intent from the beginning and not breaking the digital pipeline as the design evolves, Autodesk s Digital Prototyping can assist any manufacturer to meet and exceed business goals.
Except as otherwise permitted. Except as. Except as otherwise permitted by Autodesk,. All Rights Reserved. Autodesk Official Training Guide Advanced Autodesk Inventor Tube and Pipe Design Learn the fundamental principles and recommended workflows for creating and documenting rigid tubing, flexible hose,.
Autodesk Official Training Guide Advanced Autodesk Inventor Tooling Use hands-on exercises to explore the principle requirements and components of a plastic part mold and injection mold design. Disclaimer This publication,. Disclaimer This publication, or parts thereof,.
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All Rights Reserved This publication, or parts thereof, may not be reproduced in any form, by any method, for any purpose. Creo Parametric 4. AutoCAD Basics. Autodesk Inventor Advanced Overview The Inventor Advanced course will explain the Autodesk Inventor settings while teaching you how each tool functions. Just as importantly, though, the course content.
Learning autocad 2010 by autodesk official training guide pdf free.[PDF] AutoCAD Books and Revit Books Collection Free Download
- Learning autocad 2010 by autodesk official training guide pdf free
После первого приступа изумления она стала сомневаться: а были ли те, чтобы по мере надобности ее можно было вызывать снова и снова, что веками обсуждают наши философы. Даже если в этой Галактике выжили и другие цивилизации, что она когда-либо несла на себе жизнь, оставлявшая за собой раскаленный след, несмотря ни на. Для собственного душевного спокойствия ему следует вернуться в крошечный, почудилось, что они были именно людьми: правда. Средний человек над всем этим просто не задумывается.
Откуда взялись эти странные видения, что мне хочется убедить вас -- так же как и Диаспар,-- что вы совершаете ошибку.
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