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By: 3D Systems     Published Date: Feb 28, 2019
Der 3D-Druck begann als Prototyping-Technologie in den 1980er Jahren und hat sich seitdem rasant weiterentwickelt. Die stetigen Entwicklungen der letzten Jahrzehnte haben den 3D-Druck (auch als „Additive Fertigung“ bezeichnet) in der gesamten Produktionsumgebung zu einer praktikablen und kostengünstigen Technologie werden lassen: von der Prototypenentwicklung bis hin zur 3D-Direktherstellung. Unternehmen, die den 3D-Druck nutzen, können aufgrund der Fortschritte bei Dauer, Kosten und Fähigkeiten, die der 3D-Druck ermöglicht, eine Führungsposition in ihrer Branche erreichen und festigen. Dieses E-Book gibt einen Überblick über die Weiterentwicklungen bei den 3D-Drucktechnologien und Materialien von 3D Systems im Bereich der additiven Kunststofffertigung, die die Bandbreite der Einsatzmöglichkeiten in der Produktionsanwendung vergrößern.
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     3D Systems
By: 3D Systems     Published Date: Feb 28, 2019
3D printing emerged as a prototyping technology in the 1980s, and has been rapidly evolving ever since. The ongoing developments of the last few decades have transformed 3D printing (also called additive manufacturing), into a viable and cost-effective technology throughout the production environment: from prototyping, to production enablement, to direct 3D production. Companies that utilize 3D printing can attain and cement a leadership position in their industry through the time, cost, and capability advancements 3D printing makes possible. This ebook provides an overview of the 3D printing technology and material advancements in 3D Systems’ plastic additive manufacturing that extend the addressable range of production applications.
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By: 3D Systems     Published Date: Feb 28, 2019
L'impression 3D s'est imposée comme technologie de prototypage dans les années 80 et a rapidement évolué depuis. Les développements continus des dernières décennies ont transformé l’impression 3D (également appelée fabrication additive) en technologie durable et économique dans tout l’environnement de production : du prototypage à l'intégration à la production, jusqu'à la production 3D directe. Les entreprises qui utilisent l’impression 3D peuvent devenir des leaders de leur secteur et conforter leur position grâce aux progrès réalisés avec l'impression 3D en matière de délais, de coûts et de capacité. Cet ebook contient une présentation générale des avancées réalisées dans la technologie d’impression 3D et les matériaux de fabrication additive en plastique de 3D Systems, qui étendent l'éventail des applications de production possibles.
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     3D Systems
By: 3D Systems     Published Date: Feb 28, 2019
La stampa 3D è emersa come tecnologia di prototipazione negli anni '80 e da allora si è rapidamente evoluta. I continui sviluppi degli ultimi decenni hanno trasformato la stampa 3D, chiamata anche produzione additiva, in una tecnologia efficace ed economicamente conveniente all'interno dell'ambiente manifatturiero: la stampa 3D dà accesso alla prototipazione, all'abilitazione della produzione e alla produzione 3D diretta. Le aziende che utilizzano la stampa 3D possono ottenere e consolidare una posizione di vertice nel settore grazie ai progressi in termini di tempo, costi e capacità resi possibili dalla stampa 3D. In questo ebook viene fornita una panoramica della tecnologia di stampa 3D in plastica e dei progressi compiuti nell'ambito dei materiali da 3D Systems. Si estende così la gamma delle applicazioni di produzione.
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By: 3D Systems     Published Date: Feb 28, 2019
Ideal for engineers for prototyping and verifying designs across a range of industrial and consumer goods applications, the FabPro Elastic BLK material offers excellent compressive characteristics and shape recovery with a realistic opaque black rubber look and feel. Quick printing and quick curing, FabPro Elastic BLK material saves times and money versus outsourcing to a third party for manufacturing. Suggested applications include: • Overmolds, seals, grommets, grips and vibration dampening components • Functional parts including dust covers, push buttons and cable stress reliefs FabPro Elastic BLK material expands the range of functional materials for 3D Systems' most affordable industrial 3D printer, the FabPro 1000. Rugged and durable, the FabPro 1000 is designed for engineers and designers who want to save time and money by managing their design and prototyping processes in-house.
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By: 3D Systems     Published Date: Feb 28, 2019
Riscrivi le regole dello stampaggio a iniezione con stampanti e materiali di produzione additiva di 3D Systems nella termoplastica. La tecnologia di sinterizzazione laser selettiva (SLS) è al centro dell'attenzione e in forte crescita nella produzione di massa personalizzata e nella prototipazione funzionale. Le giuste tecnologie additive, i materiali e le finiture stanno trasformando il modo di produrre. La manifattura termoplastica diretta digitale offre una qualità eccezionale che apre la porta a nuovi parametri di design non attuabili con il tradizionale stampaggio a iniezione. La produzione additiva di termoplastici evita anche i lunghi tempi di consegna e gli investimenti iniziali negli stampi e nelle attrezzature per lo stampaggio a iniezione. Se si misurano i pezzi finiti sui tre parametri: qualità, "time to market" e costo per metro cubo, in molte situazioni l'SLS industriale porta a una soluzione globalmente migliore. 3D Systems offre un'ampia varietà di materiali termoplas
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By: 3D Systems     Published Date: Feb 28, 2019
Rewrite the rules of injection molding with 3D Systems thermoplastic additive manufacturing printers and materials. Selective Laser Sintering (SLS) technology is at the heart of a growing trend in mass custom manufacturing as well as functional prototyping. The right additive technologies, materials and finishes are transforming manufacturing. Digital-direct thermoplastic manufacturing offers exceptional quality while opening the door to novel design parameters not possible with injection molding. Thermoplastic additive manufacturing also bypasses the long lead time and up-front investment in injection molding tooling. If you measure your finished parts on the three dimensions: quality, time to market, and cost per cubic inch, in many situations industrial SLS offers a better total value proposition. 3D Systems offers a wide variety of 3D printable thermoplastics, engineered for a range of applications. Materials specialists, designers, and manufacturing engineers can collaborate on
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By: 3D Systems     Published Date: Feb 28, 2019
Metal 3D printing is revolutionizing the manufacturing process. Complex shapes, enhanced functional properties and lightweighting are some of the unique benefits delivered by additive manufacturing (AM). While there is plenty of information about printing techniques, materials and hardware, a critical element is rarely mentioned: the need for an integrated software solution for metal additive manufacturing. It takes more than a 3D CAD model and a good printer to get a successful print. Metal AM software handles all preparation and optimization actions that are required for a printed part to meet the desired CAD model specifications. This ebook provides an overview of the preparation and optimization process for AM, explains the importance of software to the profitability of any additive manufacturing business and suggests what to look for when researching AM software solutions.
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By: 3D Systems     Published Date: Feb 28, 2019
L'impression 3D en métal est en train de révolutionner le processus de fabrication. Parmi les avantages uniques liés à la fabrication additive (AM) figurent entre autres la réalisation de formes complexes, des propriétés fonctionnelles améliorées et un poids réduit. Bien que de nombreuses informations soient disponibles sur les techniques, les matériaux et le matériel d’impression, un élément essentiel est rarement mentionné : la nécessité d’une solution logicielle intégrée pour la fabrication additive en métal. Il ne suffit pas de disposer d'un modèle CAO et d'une bonne imprimante pour réussir une impression. Le logiciel de fabrication additive en métal gère toutes les opérations de préparation et d'optimisation nécessaires pour qu'une pièce imprimée soit conforme aux spécifications du modèle CAO. Cet ebook offre un aperçu du processus de préparation et optimisation pour la fabrication additive, explique l’importance du logiciel pour la rentabilité d’une activité de fabrication additi
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By: 3D Systems     Published Date: Feb 28, 2019
La stampa 3D in metallo sta rivoluzionando il processo di produzione. Forme complesse, proprietà funzionali migliorate e leggerezza sono alcuni dei vantaggi unici offerti dalla produzione additiva (PA). Sebbene vi sia una grande ricchezza di informazioni sulle tecniche di stampa, sui materiali e sull'hardware, un elemento critico che viene raramente menzionato è l'esigenza di una soluzione di software integrata per la produzione additiva in metallo. Non bastano un modello CAD 3D e una valida stampante per ottenere stampe di alta qualità. Il software di PA in metallo gestisce tutte le azioni di preparazione e ottimizzazione richieste per ottenere una parte stampata in grado di soddisfare le specifiche relative al modello CAD. Questo eBook offre una panoramica del processo di preparazione e ottimizzazione per la Produzione Additiva, spiegando l'importanza del software per la redditività di qualunque attività di produzione additiva. Suggerisce inoltre gli aspetti fondamentali di una soluz
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     3D Systems
By: 3D Systems     Published Date: Feb 28, 2019
Der 3D-Druck mit Metall revolutioniert den Fertigungsprozess. Komplexe Formen, verbesserte Funktionseigenschaften und Gewichtseinsparung sind einige der einzigartigen Vorteile der additiven Fertigung (Additive Manufacturing, AM). Es gibt eine Menge Informationen über Drucktechniken, Materialien und Hardware. Ein wichtiges Element wird jedoch eher selten betrachtet: Die Notwendigkeit einer integrierten Softwarelösung für die additive Metallfertigung. Es braucht mehr als ein 3D-CAD-Modell und einen guten Drucker, um erfolgreich zu drucken. Die Software für die additive Metallfertigung übernimmt alle Vorbereitungs- und Optimierungsschritte, die zur Umsetzung der gewünschten CAD-Modellspezifikationen erforderlich sind. Dieses eBook gibt einen Überblick über den Vorbereitungs- und Optimierungsprozess für die additive Fertigung. Es erklärt, wie wichtig die Software für die Rentabilität eines Unternehmens ist, das in der additiven Fertigung tätig ist. Es zeigt außerdem, worauf man bei der Aus
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     3D Systems
By: 3D Systems     Published Date: Mar 07, 2019
To stay competitive, manufacturers have to meet the rapidly changing needs of customers while retaining high quality products, at the same time as controlling costs. Product lifetimes are shrinking and customers are expecting more customization and innovation. Agility is the key to staying ahead of the competition and meeting the needs of customers. The FabPro 1000 entry-level industrial 3D printer delivers production-grade parts, at high speed, with six sigma repeatability, and can be used across a distributed manufacturing and engineering enterprise. With a low cost of entry, FabPro 1000 enables agile manufacturing operations to meet customer needs rapidly and effectively empowers engineers to deliver more value and quality in the product development process. To find out more download this whitepaper today!
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     3D Systems
By: 3D Systems     Published Date: Mar 07, 2019
La tecnologia di sinterizzazione laser selettiva (SLS) è al centro dell'attenzione e in forte crescita nella produzione di massa personalizzata e nella prototipazione funzionale. Le giuste tecnologie additive, i materiali e le finiture stanno trasformando il modo di produrre. La manifattura termoplastica diretta digitale offre una qualità eccezionale che apre la porta a nuovi parametri di design non attuabili con il tradizionale stampaggio a iniezione. La produzione additiva di termoplastici evita anche i lunghi tempi di consegna e gli investimenti iniziali negli stampi e nelle attrezzature per lo stampaggio a iniezione. Se si misurano i pezzi finiti sui tre parametri: qualità, "time to market" e costo per metro cubo, in molte situazioni l'SLS industriale porta a una soluzione globalmente migliore. 3D Systems offre un'ampia varietà di materiali termoplastici stampabili in 3D, progettati per una vasta gamma di applicazioni. Specialisti di materiali, progettisti e ingegneri di produzi
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By: 3D Systems     Published Date: Mar 07, 2019
Rewrite the rules of injection molding with 3D Systems thermoplastic additive manufacturing printers and materials. 3D Systems offers a wide variety of 3D printable thermoplastics, engineered for a range of applications. Materials specialists, designers, and manufacturing engineers can collaborate on getting the exact features they need for both aesthetics and function. These new design and manufacturing options open the door to improved products, new designs, new business models, and new markets. The key is to know when to use thermoplastic additive manufacturing instead of conventional injection molding. To read more about how 3D Systems can help your business download this whitepaper today.
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By: 3D Systems     Published Date: May 14, 2019
For more than two centuries, industrial factory production has excelled in four key aspects: repeatability of the process, durability of parts produced, productivity of the workflow, and an economical total cost of operation. Factory workflows have been optimized to produce the best possible parts in volume, as inexpensively as possible. Any new production method or workflow process that hopes to be accepted alongside this standard process must meet or improve on these time-tested elements. To learn more, download this whitepaper today.
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By: 3D Systems     Published Date: May 15, 2019
La microfusione è un'accurata metodologia di produzione che fornisce valore aggiunto a vari settori, dalle parti meccaniche, ai componenti per automobili e aerospaziali, fino agli intricati modelli per prodotti odontoiatrici, gioielli e sculture. In passato la produzione di parti microfuse lisce e accurate comportava costi elevati e tempi lunghi di consegna legati ai modelli di fusione. Oggi l'evoluzione delle parti sta accelerando drasticamente in molti settori industriali, con conseguente riduzione dei cicli di vita dei prodotti e dei volumi di parti fuse tra un ciclo e l'altro. L’attesa di stampi per realizzare parti obsolete di aerei più vecchi significa anche ritardi nella riparazione degli aerei, con conseguenti costi di tempo e denaro. La domanda di una produzione di fonderia più rapida è in aumento in tutti i settori industriali e le fonderie devono essere pronte a rispondere.
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By: 3D Systems     Published Date: May 15, 2019
La technologie de Frittage sélectif par laser (SLS) est au cœur d'une tendance croissante à la fabrication personnalisée de masse et au prototypage fonctionnel. La disponibilité de technologies de fabrication additive, de matériaux et de finitions adaptés transforme la fabrication. La fabrication thermoplastique numérique directe à partir de données numériques offre une qualité exceptionnelle tout en ouvrant la porte à de nouveaux paramètres de conception que n'autorise pas le moulage par injection.
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     3D Systems
By: 3D Systems     Published Date: May 15, 2019
La tecnologia di sinterizzazione laser selettiva (SLS) è al centro dell'attenzione e in forte crescita nella produzione di massa personalizzata e nella prototipazione funzionale. Le giuste tecnologie additive, i materiali e le finiture stanno trasformando il modo di produrre. La manifattura termoplastica diretta digitale offre una qualità eccezionale che apre la porta a nuovi parametri di design non attuabili con il tradizionale stampaggio a iniezione. La produzione additiva di termoplastici evita anche i lunghi tempi di consegna e gli investimenti iniziali negli stampi e nelle attrezzature per lo stampaggio a iniezione. Se si misurano i pezzi finiti sui tre parametri: qualità, "time to market" e costo per metro cubo, in molte situazioni l'SLS industriale porta a una soluzione globalmente migliore.
Tags : 
     3D Systems
By: 3D Systems     Published Date: May 15, 2019
Selective Laser Sintering (SLS) technology is at the heart of a growing trend in mass custom manufacturing as well as functional prototyping. The right additive technologies, materials and finishes are transforming manufacturing. Digital-direct thermoplastic manufacturing offers exceptional quality while opening the door to novel design parameters not possible with injection molding. Thermoplastic additive manufacturing also bypasses the long lead time and up-front investment in injection molding tooling. If you measure your finished parts on the three dimensions: quality, time to market, and cost per cubic inch, in many situations industrial SLS offers a better total value proposition.
Tags : 
     3D Systems
By: 3D Systems     Published Date: May 15, 2019
3D printing emerged as a prototyping technology in the 1980s, and has been rapidly evolving ever since. The ongoing developments of the last few decades have transformed 3D printing (also called additive manufacturing), into a viable and cost-effective technology throughout the production environment: from prototyping, to production enablement, to direct 3D production. Companies that utilize 3D printing can attain and cement a leadership position in their industry through the time, cost, and capability advancements 3D printing makes possible. This ebook provides an overview of the 3D printing technology and material advancements in 3D Systems’ plastic additive manufacturing that extend the addressable range of production applications.
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     3D Systems
By: 3D Systems     Published Date: May 15, 2019
Jigs and fixtures offer manufacturers a reliable process for delivering accurate, high-quality outcomes, whether for a specific part or feature, or for consistency across multiples of parts. Although the methodologies and materials for producing jigs and fixtures have evolved beyond the conventional metal tooling of years past, their position as a manufacturing staple remains constant due to the benefits they offer. This eBook discusses the use of additive manufacturing (AM) for jig and fixture applications, and demonstrates how production support can be improved in terms of speed, cost and functionality. The applications included within this eBook offer a mere glimpse at what is possible with AM for production support. The examples chosen illustrate opportunities for applying design principles and technology capabilities that are transferable across a wide range of applications.
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     3D Systems
By: 3D Systems     Published Date: May 15, 2019
Jigs and fixtures offer manufacturers a reliable process for delivering accurate, high-quality outcomes, whether for a specific part or feature, or for consistency across multiples of parts. Although the methodologies and materials for producing jigs and fixtures have evolved beyond the conventional metal tooling of years past, their position as a manufacturing staple remains constant due to the benefits they offer. This eBook discusses the use of additive manufacturing (AM) for jig and fixture applications, and demonstrates how production support can be improved in terms of speed, cost and functionality. The applications included within this eBook offer a mere glimpse at what is possible with AM for production support. The examples chosen illustrate opportunities for applying design principles and technology capabilities that are transferable across a wide range of applications.
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     3D Systems
By: 3D Systems     Published Date: May 17, 2019
This new world is not only delivering better quality components at lower cost but is offering whole new design possibilities, new business models and new markets. The key is to know when to use metal additive manufacturing instead of or complementing conventional milling or casting. Read this executive brief to learn about the transformative value of the fifth wave of metal 3D printing, as well as compelling use cases for direct metal printing from the aerospace, automotive and industrial sectors.
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     3D Systems
By: 3D Systems     Published Date: May 24, 2019
In den letzten zwei Jahrhunderten hat sich die industrielle Fabrikproduktion in den folgenden vier Schlüsselaspekten immer wieder selbst übertroffen: Wiederholbarkeit des Prozesses, Langlebigkeit der produzierten Teile, Produktivität des Arbeitsablaufs und Wirtschaftlichkeit der Betriebskosten. Die Arbeitsabläufe in Fabriken wurden optimiert, sodass die bestmöglichen Teile so kostengünstig wie möglich in großen Mengen gefertigt werden können. Sämtliche neue Produktionsmethoden oder Arbeitsabläufe, die neben diesem Standardprozess akzeptiert werden sollen, müssen diesen bewährten Charakteristiken gerecht werden oder eine Verbesserung darstellen.
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     3D Systems
By: 3D Systems     Published Date: May 24, 2019
Per più di due secoli la produzione industriale in fabbrica si è distinta in quattro aspetti chiave: ripetibilità del processo, durata delle parti prodotte, produttività nel flusso di lavoro e un costo totale operativo ridotto. I flussi di lavoro in fabbrica sono stati ottimizzati per produrre le parti migliori in grande quantità e nel modo più economico possibile. Qualsiasi nuovo metodo di produzione o processo del flusso di lavoro che si proponga di affiancarsi a questo processo standard deve soddisfare o altrimenti migliorare questi elementi, che sentono ormai il peso del tempo.
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     3D Systems
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