Minting - System solutions for the minting industry
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Minting - System solutions for the minting industry - 1

Platzhalterbild (Marktsegmentbild "Minting" ist noch in Arbeit) Minting System solutions for the minting industry

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Table of contents / Minting System solutions for the minting industry 4 A long history S uccess stories in minting technology for more than a century 6 Innovative systems Challenges in minting technology 8 From coil to coin Manufacturing process for coins 10 Manufacture of coin blanks Tailor-made systems with the Schuler Blankmaster 13 Schuler ABI-Plus line control system Modular and flexible control concept 14 Sorting, rimming and edge lettering Blank processing with RS 50 and ST 50 S models 16 MRH and MRV model series minting lines Minting press lines in horizontal and vertical design,...

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A long history. Success stories in minting technology for more than a century. Historic press – about 1900. National Mint, Jakarta (Indonesia) 1956. Coin manufacture over the course of time. The manufac- At the turn of the century, Schuler knuckle-joint presses ture of coins has been a manual process for hundreds of were producing coins at rates up to 60 per minute – years. The manual spindle press, used since the Middle a remarkable achievement for the time. Ages, could produce no more than two or three coins per minute. Schuler presses were also being widely exported at that time. A 1905...

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A long history / Minting National Mint, San Luis Potosi (Mexico) 1983. Bayerisches Hauptmünzamt (Germany), about 1990. Ground-breaking development. With the development of the MRH / MRV series of minting presses, a new epoch of minting technology dawned in the 1980s. Gradually, the performance of these Schuler machines was expanded and increased – to as much as 850 coins per minute. In parallel to this, and using the same concept with almost the same power, a series of machines was created in a vertical design for manufacturing round and multi-sided coins, as well as bi-metal and tri-metal...

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INNOVATIVE SYSTEMS. CHALLENGES IN MINTING TECHNOLOGY. Horizontal minting presses MRH.

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Innovative systems / Minting Exacting requirements. The manufacture of coins has always been especially demanding. In addition to quality and output rate, one of the most important criteria for cost-effective industrial production is the multi-functional use of the equipment. Specimens and collectors' items. Over and above their function as a means of payment, coins and medallions are also »calling cards« for the individual country – often desirable collectors' items, awards and artifacts of a particular time period. For more than a century, Schuler has been setting the standards for...

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FROM COILTO COIN. MANUFACTURING PROCESS FOR COINS. Coins in all shapes and colors.

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FROMCOILTOCOIN /MINTING OVERVIEW OF THE VARIOUS STAGES OFTHE COIN MANUFACTURING PROCESS Incoming goods Outgoing goods Rimmed blank tool coating tool coating Schuler can provide its customers with the entire product spectrum - from coil to finished coin - using expert partners for certain production stages.

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Manufacture of coin blanks. Tailor-made systems with the Schuler Blankmaster. Schuler Blankmaster SAK, complete system. 10

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Blank manufacture / Minting Precision and high production rate. For high-volume manufacture of coin blanks, Schuler offers fully automated blanking lines specially designed for this task. A complete modular system with peripherals is available to permit assembly of a »tailor-made« blanking line. The Blankmaster SAK processes a variety of materials – from soft to very hard – for coin blank production. The rule of thumb is: the wider the coil, the greater the output per stroke and the greater the material recovery – between 75% and 85%. The market trend toward ever harder materials, increased...

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Schuler Blankmaster SAK, Canada. Coin blanks. Three options for the processing of blanking scrap: Coil thickness monitor. The coil thickness measurement separate shear, downstream from the press, cuts the A device checks deviations from the correct coil thickness scrap web into strips which are then bound together in in on-line operation. If there are tolerance deviations, the material is advanced to a point in front of the die space, the n auxiliary scrap cutter on the press bed separates the A press is stopped in TDC and the electric roll feed moves scrap web after each stroke. This...

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Blank manufacture and line control / Minting Schuler ABI-Plus. Modular and flexible control concept. Simple operation by touchscreen interface. Easy to operate. ABI-Plus, the Schuler line operation and information system, offers a user-friendly and versatile software for industrial PCs. It ensures a high level of uptime for the line by fast clearance of faults, maintenance support and shorter changeover times. Data can be evaluated in the national language. ABI-Plus allows operation, maintenance and fault diagnostics for the minting press in the language of the user country. At the same...

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Sorting, rimming and edge lettering. RS 50 and ST 50 S models. Top quality rimming and edge lettering. Rimming and edge lettering. and output. The highest level of uptime for all such Schuler offers high-performance systems for modern equipment is ensured by means of simple design of minting facilities. These systems include not only minting the tooling, and quick die changes as well as ease and presses and blanking lines, but also edge-lettering (RS 50) and rimming machines (ST 50 S). RS 50 model. The RS 50 model is a machine for the To achieve high-quality coins, the edge surfaces of the...

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Blank processing / Minting High output up to 600,000 coins per hour by rimming with the ST 50 S. very gentle treatment, especially for precious-metal blanks. For blanks of 14 mm diameter, the rimming machine can process up to 130,000 pieces per hour. ST 50 S model. The ST 50 S model can process blanks in the diameter range of 14 mm to 50 mm. Especially high output is achieved by the use of two feed drums. The production yield for 14 mm blanks is up to 600,000 pieces per hour, and for 50 mm blanks up to 225,000 per hour. The effective yield is influenced by weight, material and quality of...

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