Product Development & Design for Additive Manufacturing (DfAM)Katie Marzocchi
Product Development & DfAM in the Dawn of Digital Transformation
Empire Group provides a glimpse into the future of product development and how an understanding of DfAM is critical to the success of PD professionals and manufacturers alike. You’ll learn some of the basic fundamentals of DfAM and see real-world design examples and optimizations from Empire Group’s Design & Engineering team.
Website: www.empiregroupusa.com
Phone: 508-222-3003
email: info@empirepd.com
Additive Manufacturing (AM) is undergoing a revolution as it moves from the model and tooling shop and onto the factory floor. A growing range of firms are deploying AM to create innovative new products that deliver increased performance in use and which could not be produced conventionally. Here we explore the drivers behind this transition and the increased demands that series production places on AM to deliver predictable, consistent parts. We look at the chains of linked processes and tools that are needed to create an integrated manufacturing process with AM at its heart, and the controls that must be employed to make AM a mainstream manufacturing process.
More companies are exploring industrial applications for additive manufacturing, driven by the design freedom and potential product performance gains that it provides. Renishaw's AM Solutions Centres overcome barriers to AM deployment by providing facilities, equipment and engineering support for manufacturers who want to learn about AM and build a investment case.
Leveraging Geometric Shape Complexity, in Optimal Design for Additive Manufac...Altair
Additive manufacturing (AM) technology enables the possibility of realizing highly efficient, optimized structural components with configurations not achievable using conventional manufacturing methods. The Altair and Solid Thinking toolsets provide advanced capabilities to design structural topologies to minimize weight and maximize other performance criteria. However, conventional manufacturing processes require application of design constraints, such as directional access for machining, in the optimization that limit the structural efficiency of the resulting design. AM can remove many of these constraints to allow for more efficient configurations under the applied loading conditions. Case studies show the potential to reduce weight up to 30% for components with applied bending and torsional loads by allowing increased complexity configurations that could only be manufactured additively.
Additive Manufacturing Series: Why You Need 3D Printing In Additive Manufactu...Adaptive Corporation
Make your part in a day instead of weeks
Markforged is transforming manufacturing by delivering 3D printing that produces high-quality, industrial-strength parts that are ready for production. Join us for a webinar introducing Markforged and its portfolio of industrial strength printers. This webinar will:
1.Show why 3D printers are crucial to manufacturing workflows
2.Explore Markforged composite 3D printers as well as their new metal 3D printer
3.Share Customer Success examples showcasing the magnitude of time and money saved by 3D printing
4.Review financing options so you can get your printer now vs. later
Presented by:
Wayne Tanner, Adaptive Corporation
Jason Rose, Markforged
James Maybrey, Capital Credit Services
Product Development & Design for Additive Manufacturing (DfAM)Katie Marzocchi
Product Development & DfAM in the Dawn of Digital Transformation
Empire Group provides a glimpse into the future of product development and how an understanding of DfAM is critical to the success of PD professionals and manufacturers alike. You’ll learn some of the basic fundamentals of DfAM and see real-world design examples and optimizations from Empire Group’s Design & Engineering team.
Website: www.empiregroupusa.com
Phone: 508-222-3003
email: info@empirepd.com
Additive Manufacturing (AM) is undergoing a revolution as it moves from the model and tooling shop and onto the factory floor. A growing range of firms are deploying AM to create innovative new products that deliver increased performance in use and which could not be produced conventionally. Here we explore the drivers behind this transition and the increased demands that series production places on AM to deliver predictable, consistent parts. We look at the chains of linked processes and tools that are needed to create an integrated manufacturing process with AM at its heart, and the controls that must be employed to make AM a mainstream manufacturing process.
More companies are exploring industrial applications for additive manufacturing, driven by the design freedom and potential product performance gains that it provides. Renishaw's AM Solutions Centres overcome barriers to AM deployment by providing facilities, equipment and engineering support for manufacturers who want to learn about AM and build a investment case.
Leveraging Geometric Shape Complexity, in Optimal Design for Additive Manufac...Altair
Additive manufacturing (AM) technology enables the possibility of realizing highly efficient, optimized structural components with configurations not achievable using conventional manufacturing methods. The Altair and Solid Thinking toolsets provide advanced capabilities to design structural topologies to minimize weight and maximize other performance criteria. However, conventional manufacturing processes require application of design constraints, such as directional access for machining, in the optimization that limit the structural efficiency of the resulting design. AM can remove many of these constraints to allow for more efficient configurations under the applied loading conditions. Case studies show the potential to reduce weight up to 30% for components with applied bending and torsional loads by allowing increased complexity configurations that could only be manufactured additively.
Additive Manufacturing Series: Why You Need 3D Printing In Additive Manufactu...Adaptive Corporation
Make your part in a day instead of weeks
Markforged is transforming manufacturing by delivering 3D printing that produces high-quality, industrial-strength parts that are ready for production. Join us for a webinar introducing Markforged and its portfolio of industrial strength printers. This webinar will:
1.Show why 3D printers are crucial to manufacturing workflows
2.Explore Markforged composite 3D printers as well as their new metal 3D printer
3.Share Customer Success examples showcasing the magnitude of time and money saved by 3D printing
4.Review financing options so you can get your printer now vs. later
Presented by:
Wayne Tanner, Adaptive Corporation
Jason Rose, Markforged
James Maybrey, Capital Credit Services
Design Optimization for Additive Manufacturing - Webinar - June 28th
With the widespread use of Additive Manufacturing, a new generation of design concepts are now possible to economically produce that weren’t feasible with traditional manufacturing methods. Design Engineers can now quickly optimize designs for 3D Printing, using the new Generative Shape Designer role in the 3DEXPERIENCE platform. This new role allows designers to create optimized designs in a fraction of the time possible with current tools, while using the powerful Abaqus™ solver. See how this exciting new technology can transform your design process!
Design Optimization for Additive Manufacturing - Webinar - June 28th
With the widespread use of Additive Manufacturing, a new generation of design concepts are now possible to economically produce that weren’t feasible with traditional manufacturing methods. Design Engineers can now quickly optimize designs for 3D Printing, using the new Generative Shape Designer role in the 3DEXPERIENCE platform. This new role allows designers to create optimized designs in a fraction of the time possible with current tools, while using the powerful Abaqus™ solver. See how this exciting new technology can transform your design process!
Advanced manufacturing technology
Advanced manufacturing technology refers to applying more improved technology to optimize production. The technology process relates to production equipment and procedures used by manufacturing companies (Stornelli, Ozcan, & Simms, 2021). There are various examples of advanced manufacturing, such as composite or advanced materials, that ensure that glass, plastics, ceramics, and other specific cocktails of metals serve a particular application.
The participants involved in the manufacturing process of turning raw materials into final goods using tools, machinery, chemical processing, and human labor include; Engineers, production managers, CEOs, heads of sections, and junior employees. During the manufacturing process, the responsibility of the engineers is to identify the areas that need improvement, design new products, and various processes, and maintain high levels of manufacturing and high-quality products. On the other hand, the production managers oversee the day-to-day operations of manufacturing by coordinating, planning, and directing activities used to create a wide range of goods such as computer equipment, cars, and others.
The primary purpose of justification for the advanced manufacturing technology is to provide organizations with the opportunity to improve the quality of their manufacturing products to succeed in the business (Roca & O'Sullivan, 2020). That is because the advanced manufacturing capability can be determined by many employees and the processes that provide a good match and offer consistent products of high quality and at a lower price Advanced manufacturing technology is one of the modern ways of production where sophisticated and highly automated and computerized systems are incorporated in the production processes. Advanced manufacturing technologies aim to ensure quality products at low costs within a short period (Bai & Sarkis, 2017). The manufacturing sector is the strength of any industrialized nation. Even though a more significant percentage of the population might be unemployed in the service industries, the manufacturing industry is responsible for producing the nation’s wealth.
Decisões mais inteligentes que auxiliam a Manufatura e InovaçãoRenato Leite
Soluções de manufatura digital ajudando as empresas a tomar decisões mais inteligentes para aumentar a produtividade, reduzir custos e alcançar as metas de qualidade
Gear Manufacturing Support - Accialini Training & ConsultingNicola Accialini
Accialini Training & Consulting provides support in Gear Manufacturing. Please visit our website www.accialiniconsulting.com or send us an email at info@accialiniconsulting.com for additional info.
Please don't forget to subscribe to our newsletter!
AUTOMATION IN PLASTIC INDUSTRY
The plastic industry relies increasingly on automation to improve productivity, reduce operating costs and create innovative products.
Automation in plastic industry has helped to reduce the human content in the manufacturing process, enhancing accuracy, speed and quality, especially in repetitive tasks.
Messung's connections with India's plastic industry goes back three decades.
Based in Pune, Messung develops customised automation and control solutions for automation in plastic machinery and automation in plastic manufacturing process.
With more advanced diagnostics, controls, and tremendous growth in software sophistication, Messung’s industrial automation and control can help manufacturers rise to the challenge of constantly-growing demands for lower cost and optimisation
Using Design Automation to Reduce Costs and Increase ProfitabilitySOLIDWORKS
By implementing design automation, engineer-to-order manufacturers can complete days of custom engineering in just minutes. Design automation also expedites and simplifies the creation of SolidWorks® software models, drawings, quote documents, manufacturing data—virtually any requirement of the custom sales process.
Identifying and managing asset reliability risks that could adversely affect plant or business operations. Primary role is to find out loss elimination, risk management and life cycle asset management
Platform manufacturing is the implementation of standard technologies, systems and work practices within manufacturing facilities, and their use for the manufacture of different products
Platform technologies are considered a valuable tool to improve efficiency and quality in drug product development. The basic idea is that a platform, in combination with a risk-based approach, is the most systematic method to leverage prior knowledge for a given new molecule. Furthermore, such a platform enables a continuous improvement by adding data for every new molecule developed by this approach, increasing the robustness of the platform
Technology was lauded as the savior of the drug discovery and development (DDD) process during the late 1990s. A myriad of independent companies developed and offered ‘innovative’ tools, technologies and platforms (TTPs) to pharmaceutical companies in order to mitigate the time, cost and risk of developing new therapeutic drugs.
The words tool, technology and platform are often used interchangeably. However, in the biotech and DDD sectors a single tool is a component item (think hammer on a carpenter’s tool-belt), which when combined together constitute a technology (think carpenter’s tool-belt). A combination of technologies, when applied in a cohesive manner, can be labelled as a platform (think the carpenter him/herself complete with tool-belt, safety glasses, mode of transportation etc).
In this, we use such relationships to provide a general perspective on what constitutes a platform, whether it is technological, biological, molecular or digital in nature.
The words tool, technology and platform are often used interchangeably. However, in the biotech and DDD sectors a single tool is a component item (think hammer on a carpenter’s tool-belt), which when combined together constitute a technology (think carpenter’s tool-belt). A combination of technologies, when applied in a cohesive manner, can be labelled as a platform (think the carpenter him/herself complete with tool-belt, safety glasses, mode of transportation etc).
In this, we use such relationships to provide a general perspective on what constitutes a platform, whether it is technological, biological, molecular or digital in nature.
Production System Design Support - Accialini Training & ConsultingNicola Accialini
Accialini Training & Consulting provides support in Production System Design. Please visit our website www.accialiniconsulting.com or send us an email at info@accialiniconsulting.com for additional info.
Please don't forget to subscribe to our newsletter!
Immunizing Image Classifiers Against Localized Adversary Attacksgerogepatton
This paper addresses the vulnerability of deep learning models, particularly convolutional neural networks
(CNN)s, to adversarial attacks and presents a proactive training technique designed to counter them. We
introduce a novel volumization algorithm, which transforms 2D images into 3D volumetric representations.
When combined with 3D convolution and deep curriculum learning optimization (CLO), itsignificantly improves
the immunity of models against localized universal attacks by up to 40%. We evaluate our proposed approach
using contemporary CNN architectures and the modified Canadian Institute for Advanced Research (CIFAR-10
and CIFAR-100) and ImageNet Large Scale Visual Recognition Challenge (ILSVRC12) datasets, showcasing
accuracy improvements over previous techniques. The results indicate that the combination of the volumetric
input and curriculum learning holds significant promise for mitigating adversarial attacks without necessitating
adversary training.
CW RADAR, FMCW RADAR, FMCW ALTIMETER, AND THEIR PARAMETERSveerababupersonal22
It consists of cw radar and fmcw radar ,range measurement,if amplifier and fmcw altimeterThe CW radar operates using continuous wave transmission, while the FMCW radar employs frequency-modulated continuous wave technology. Range measurement is a crucial aspect of radar systems, providing information about the distance to a target. The IF amplifier plays a key role in signal processing, amplifying intermediate frequency signals for further analysis. The FMCW altimeter utilizes frequency-modulated continuous wave technology to accurately measure altitude above a reference point.
Welcome to WIPAC Monthly the magazine brought to you by the LinkedIn Group Water Industry Process Automation & Control.
In this month's edition, along with this month's industry news to celebrate the 13 years since the group was created we have articles including
A case study of the used of Advanced Process Control at the Wastewater Treatment works at Lleida in Spain
A look back on an article on smart wastewater networks in order to see how the industry has measured up in the interim around the adoption of Digital Transformation in the Water Industry.
NUMERICAL SIMULATIONS OF HEAT AND MASS TRANSFER IN CONDENSING HEAT EXCHANGERS...ssuser7dcef0
Power plants release a large amount of water vapor into the
atmosphere through the stack. The flue gas can be a potential
source for obtaining much needed cooling water for a power
plant. If a power plant could recover and reuse a portion of this
moisture, it could reduce its total cooling water intake
requirement. One of the most practical way to recover water
from flue gas is to use a condensing heat exchanger. The power
plant could also recover latent heat due to condensation as well
as sensible heat due to lowering the flue gas exit temperature.
Additionally, harmful acids released from the stack can be
reduced in a condensing heat exchanger by acid condensation. reduced in a condensing heat exchanger by acid condensation.
Condensation of vapors in flue gas is a complicated
phenomenon since heat and mass transfer of water vapor and
various acids simultaneously occur in the presence of noncondensable
gases such as nitrogen and oxygen. Design of a
condenser depends on the knowledge and understanding of the
heat and mass transfer processes. A computer program for
numerical simulations of water (H2O) and sulfuric acid (H2SO4)
condensation in a flue gas condensing heat exchanger was
developed using MATLAB. Governing equations based on
mass and energy balances for the system were derived to
predict variables such as flue gas exit temperature, cooling
water outlet temperature, mole fraction and condensation rates
of water and sulfuric acid vapors. The equations were solved
using an iterative solution technique with calculations of heat
and mass transfer coefficients and physical properties.
HEAP SORT ILLUSTRATED WITH HEAPIFY, BUILD HEAP FOR DYNAMIC ARRAYS.
Heap sort is a comparison-based sorting technique based on Binary Heap data structure. It is similar to the selection sort where we first find the minimum element and place the minimum element at the beginning. Repeat the same process for the remaining elements.
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About
Indigenized remote control interface card suitable for MAFI system CCR equipment. Compatible for IDM8000 CCR. Backplane mounted serial and TCP/Ethernet communication module for CCR remote access. IDM 8000 CCR remote control on serial and TCP protocol.
• Remote control: Parallel or serial interface.
• Compatible with MAFI CCR system.
• Compatible with IDM8000 CCR.
• Compatible with Backplane mount serial communication.
• Compatible with commercial and Defence aviation CCR system.
• Remote control system for accessing CCR and allied system over serial or TCP.
• Indigenized local Support/presence in India.
• Easy in configuration using DIP switches.
Technical Specifications
Indigenized remote control interface card suitable for MAFI system CCR equipment. Compatible for IDM8000 CCR. Backplane mounted serial and TCP/Ethernet communication module for CCR remote access. IDM 8000 CCR remote control on serial and TCP protocol.
Key Features
Indigenized remote control interface card suitable for MAFI system CCR equipment. Compatible for IDM8000 CCR. Backplane mounted serial and TCP/Ethernet communication module for CCR remote access. IDM 8000 CCR remote control on serial and TCP protocol.
• Remote control: Parallel or serial interface
• Compatible with MAFI CCR system
• Copatiable with IDM8000 CCR
• Compatible with Backplane mount serial communication.
• Compatible with commercial and Defence aviation CCR system.
• Remote control system for accessing CCR and allied system over serial or TCP.
• Indigenized local Support/presence in India.
Application
• Remote control: Parallel or serial interface.
• Compatible with MAFI CCR system.
• Compatible with IDM8000 CCR.
• Compatible with Backplane mount serial communication.
• Compatible with commercial and Defence aviation CCR system.
• Remote control system for accessing CCR and allied system over serial or TCP.
• Indigenized local Support/presence in India.
• Easy in configuration using DIP switches.
Forklift Classes Overview by Intella PartsIntella Parts
Discover the different forklift classes and their specific applications. Learn how to choose the right forklift for your needs to ensure safety, efficiency, and compliance in your operations.
For more technical information, visit our website https://intellaparts.com
6th International Conference on Machine Learning & Applications (CMLA 2024)ClaraZara1
6th International Conference on Machine Learning & Applications (CMLA 2024) will provide an excellent international forum for sharing knowledge and results in theory, methodology and applications of on Machine Learning & Applications.
6th International Conference on Machine Learning & Applications (CMLA 2024)
DFAM & AMTOP(R)
1. _______________
"The best way to
predict the future
is to invent it."
_______________
The key feature of
the DFAM
methodology
consists in the
concurrent
product and
process design
and optimization,
which allows to
obtain novel
concepts, while
minimizing the
costs of
production.
DFAM
Design for Additive Manufacturing
The DFAM methodology reorganizes the
design process of structural products and is
designed to meet the new design opportunities
of additive technologies, using the most
appropriate CAx tools.
What benefit?
Products
• Maximum robustness
• Maximum structural performance/weight ratio
• Maximum reproducibility
• Maximum geometric accuracy
Processes
• Minimum use of energy and material
• Minimum lead time
• Minimum number of trials
2. The service
Offered functions
AMTOP®
Additive Manufacturing Tool Optimization Platform
A dedicated tool
Who we are
In short
Experts in best-in-
class methodologies
for the analysis of
industrial products
and manufacturing
processes, for
optimal
management of the
product
development cycle.
Contact
Address:
Via Calosso, 3
14100 Asti
Phone:
+39 0141 1706009
E-mail:
info@itacae.com
Web:
www.itacae.com
Features:
• Topological optimization with AM constraints;
• Advanced computing technology for FE thermal-
structural analyses & process simulation;
• Preparation for printing with orientation and
supports optimization.
Benefits:
• design for time- & cost-efficient manufacturing;
• modularity & user-friendliness;
• interface with external CAD & CAE tools.