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- Costs, Benefits, and Adoption of Additive Manufacturing: A Supply Chain Perspective
- Aftermarket Spare Parts and 3D Printing: Is the Technology Worth the Investment?
- Our group of progressive and experienced brands and services makes the difference
- Additive Manufacturing: Siemens uses innovative technology to produce gas turbines
- The road ahead
- Spare part supply
Costs, Benefits, and Adoption of Additive Manufacturing: A Supply Chain PerspectiveVIDEO ON THE TOPIC: cnc machined parts for manufacturing equipment
Sustainable energy efficiency, constant cost pressures, special-purpose parts in short-run productions, unrelenting deadline pressures — industrial companies are confronted with many challenges. The production of small runs, however, can scarcely be cost effective with conventional, tool-based methods. Moreover, responding quickly to a changed part geometry just before the start of production involves a lot of work and costs. This can jeopardize delivery to schedule, for instance, at parts suppliers.
Additive Manufacturing provides industrial companies with completely new solutions for realising tool-less production methods. Providing material only where it is needed for mechanical strength or functionality, this solution can also manufacture lightweight parts with highly complex geometries. An EOS system can produce components with inbuilt functionality in the one manufacturing step. Tool-less Additive Manufacturing is a thoroughly cost effective solution especially for the serial production of small quantities.
Changes to part geometries can be transferred to production at any time, and risks to scheduled deliveries are no longer a problem. One other advantage is the practically unlimited availability of spare parts, which can be manufactured as and when they are needed. In addition, Additive Manufacturing operates with essentially greater material efficiency than machining methods.
A laser sintering machine applies the powdered material only to those sites where it is meant to be applied. Unfused material can be recycled and reintroduced to the production process. EOS Additive Manufacturing enables cost-efficient production of lightweight gripper systems with integrated functions that can be adapted individually to the product to be transported.
EOS Additive Manufacturing enables machine building companies to produce high-quality metal and plastic parts cost efficiently — even down to a batch size of just one.
EOS Additive Manufacturing is suitable for a great many industrial applications. It is also a fast, flexible, and cost effective solution for the production of complex parts.
At Achema , Bosch Packaging Technology presents its newly developed freeze dryer. The lyophilization system can be used to stabilize thermolabile and delicate active ingredients, like oncological medications, vaccines or antibodies. Launch of Xelum platform, an innovative solution for the continuous production of solid pharmaceuticals. The new solution combines dosing, mixing, granulating and pressing in one system. Presentation of various Industry 4. Instead of using polymer film, the new solution enables production of dust-tight packaging for dry products such as sugar, grains, flour or powders using sustainable mono-material paper, which contains no additional polymer fractions.
Aftermarket Spare Parts and 3D Printing: Is the Technology Worth the Investment?
As an internationally operating company, HAHN Automation specializes in the automation of assembly and testing processes related to rubber, plastic and metal parts. It is through our years of experience, innovative developments and a high degree of quality awareness that HAHN Automation has become a leading special machinery manufacturing company the world over. The SME-sector company based in Upper Austria has a workforce of around people and develops and produces pumps, brake systems, exhaust gas after-treatment systems, gears, turbochargers, car electrical systems, and safety boxes for the automotive industry. The entire digital expertise of all HAHN Group companies is combined in order to eliminate silos and refine innovative digital solutions. Together we enhance your operational technology to lead the digital transformation in manufacturing. For over 20 years GeKu has been implementing individual automation and handling solutions for companies in the industrial and automotive electronics sector, with focus on hybrid parts made of metal and plastic. The portfolio includes system robots, handling technology, conveyor and packaging systems as well as quality assurance systems.
Heavy machinery, especially Mining, Industrial or Farming Equipment, requires constant maintenance to keep it in good working order. Conversely, poorly maintained large machinery equipment runs inefficiently. Breakdowns are costly and safety is also an important consideration. Many types of large machinery have multiple operators. One of the ongoing inspections on any checklist should be overseeing the correct operation of the equipment.SEE VIDEO BY TOPIC: Injection Moulding -- automatic production of medical equipment -- Machines and Industry
For many industrial manufacturers, what was once a clear path to success is now fraught with uncertainty. Making equipment for a wide array of industrial activities — such as big construction projects, large industrial facilities, oil and gas fields, and refineries — has for years been difficult to navigate, but major companies often used their size to sidestep obstacles. The strength of having multiple product lines covering the full gamut of industrial operations frequently allowed industrial manufacturers to eke out profits from some segment of their customer base even as slowdowns imperiled other sectors. But juggling business in this way is no longer a viable strategy, particularly if a company relies on traditional machinery for its revenue streams, as many industrial manufacturers do. Customers increasingly seek improved efficiency and production transparency from connected technologies and digitization. Their loyalty to companies that fail to offer innovative products is waning. Equally important, the inherent advantages of large, diversified organizations — such as lower cost of capital and sophisticated talent development and recruitment programs — are diminishing as capital market efficiency improves lending outcomes for all participants and increasing information transparency provides windows into attractive new jobs across the corporate landscape for the best prospective workers.
Our group of progressive and experienced brands and services makes the difference
This article presents information on the medical equipment industry in India-on production, procurement and utilization related activities of key players in the sector, in light of the current policies of liberalization and growth of a "health-care industry" in India. Policy approaches to medical equipment have been discussed elsewhere. Users Online:
There are three primary aspects to the economics of additive manufacturing: measuring the value of goods produced, measuring the costs and benefits of using the technology, and estimating the adoption and diffusion of the technology. This paper provides an updated estimate of the value of goods produced. It then reviews the literature on additive manufacturing costs and identifies those instances in the literature where this technology is cost effective. The paper then goes on to propose an approach for examining and understanding the societal costs and benefits of this technology both from a monetary viewpoint and a resource consumption viewpoint. The final section discusses the trends in the adoption of additive manufacturing. Current research on additive manufacturing costs reveals that it is cost effective for manufacturing small batches with continued centralized production; however, with increased automation distributed production may become cost effective. Due to the complexities of measuring additive manufacturing costs and data limitations, current studies are limited in their scope. Many of the current studies examine the production of single parts and those that examine assemblies tend not to examine supply chain effects such as inventory and transportation costs along with decreased risk to supply disruption. The additive manufacturing system and the material costs constitute a significant portion of an additive manufactured product; however, these costs are declining over time.
Additive Manufacturing: Siemens uses innovative technology to produce gas turbines
Information technology is revolutionizing products. Once composed solely of mechanical and electrical parts, products have become complex systems that combine hardware, sensors, data storage, microprocessors, software, and connectivity in myriad ways. Information technology is revolutionizing products, from appliances to cars to mining equipment. Products once composed solely of mechanical and electrical parts have become complex systems combining hardware, sensors, electronics, and software that connect through the internet in myriad ways. The changing nature of products is disrupting value chains, argue Michael Porter and PTC CEO James Heppelmann, and forcing companies to rethink nearly everything they do, from how they conceive, design, and source their products; to how they manufacture, operate, and service them; to how they build and secure the necessary IT infrastructure. Smart, connected products raise a broad set of new strategic choices for companies about how value is created and captured, how to work with traditional partners and what new partnerships will be required, and how to secure competitive advantage as the new capabilities reshape industry boundaries. Smart, connected products offer exponentially expanding opportunities for new functionality, far greater reliability, much higher product utilization, and capabilities that cut across and transcend traditional product boundaries.
The road ahead
In over countries all over the world, hundreds of thousands of Memmert products have been permanently in use for decades. This is why Memmert is one of the leading suppliers of temperature control appliances worldwide. Storing sensitive sensors in a climate chamber with a maximum temperature deviation of 0. Reducing your process times during vacuum drying to an optimum? Ensuring interruption-free long-term testing? Running experiments with defined air exchange rates?
Spare part supply
Find out how companies have been able to achieve significant business advantages by using EOS solutions. Please note: We also provide selected Case Studies in French. Time-critical development and production of a cable routing mount for a camera in the vertical stabilizer of the A using additive manufacturing.
Manufacturing is the production of products for use or sale using labour and machines , tools , chemical and biological processing, or formulation, and is the essence of secondary industry. The term may refer to a range of human activity, from handicraft to high tech , but is most commonly applied to industrial design, in which raw materials from primary industry are transformed into finished goods on a large scale. Such finished goods may be sold to other manufacturers for the production of other more complex products such as aircraft , household appliances , furniture , sports equipment or automobiles , or distributed via the tertiary industry to end users and consumers usually through wholesalers , who in turn sell to retailers , who then sell them to individual customers. Manufacturing engineering or manufacturing process are the steps through which raw materials are transformed into a final product.
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Industrial Outlook. Presents industry reviews including a section of "trends and forecasts," complete with tables and graphs for industry analysis. Health and Medical Services The World Economic Outlook in