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Металлорежущий инструмент и инструментальная оснастка / Cutting tools and tooling system MITSUBISHI | Каталог MITSUBISHI 2015 Токарный и вращающийся инструмент (Всего 1672 стр.) |
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When cutting with a general type holder feed is the distance a holder moves per workpiece revolution When milling feed is the distance a machine ta1618 Каталог MITSUBISHI 2015 Токарный и вращающийся инструмент Инструментальные решения Стр.Q006 |
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When cutting with a general type holder feed is the distance a holder moves per workpiece revolution When milling feed is the distance a machine ta When cutting with a general type holder feed is the distance a holder moves per workpiece revolution. When milling feed is the distance a machine table moves per cutter revolution divided by the number of inserts. Thus it is indicated as feed per tooth. Feed rate relates to finished surface roughness. Effects of Feed 1. Decreasing feed rate results in flank wear and shortens tool life. 2. Increasing feed rate increases cutting temperature and flank wear. However effects on the tool life is minimal compared to cutting speed. 3. Increasing feed rate improves machining efficiency. DEPTH OF CUT Depth of cut is determined according to the required stock removal shape of workpiece power and rigidity of the machine and tool rigidity. Effects of Depth of Cut 1. Changing depth of cut doesn't effect tool life greatly. 2. Small depths of cut result in friction when cutting the hardened layer of a workpiece. Thus tool life is shortened. 3. When cutting uncut surfaces or cast iron surfaces the depth of cut needs to be increased as much as the machine power allows in order to avoid cutting impure hard layers with the tip of cutting edge to prevent chipping and abnormal wear. 0-4 o-i - u 0.03 0.05 0.1 0.2 0.5 1.0 2.0 3.0 Depth of Cut (mm) Cutting Conditions Workpiece JIS SNCM431 Grade STi10T Insert 0-0-5-5-35-35-0.3mm Feed f0.20mm/rev Cutting Speed vc200m mln Cutting TimeTc10min Depth of Cut and Flank Wear Relationship in Steel Turning Roughing of Surface Layer that Includes Uncut Surface Feed (mm/rev) Cutting Conditions Workpiece JIS SNCM431 Grade STi10T Insert 0-0-5-5-35-35-0.3mm Depth of Cut ap1.0mm Cutting Speed vc200m/min Cutting Time Tc10min Feed and Flank Wear Relationship in Steel Turning Q006 TECHNICAL DATA TECHNICAL DATA EFFECTS OF CUTTING CONDITIONS FOR TURNING FEED |
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См.также / See also : |
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Соотношение твердостей Таблица / Hardness equivalent table |
Аналоги марок стали / Workpiece material conversion table |
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Отклонение размера детали / Fit tolerance table |
Перевод оборотов в скорость / Surface speed to RPM conversion |
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Диаметр под резьбу / Tap drill sizes |
Виды резьбы в машиностроении / Thread types and applications |
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Дюймы в мм Таблица / Inches to mm Conversion table |
Современные инструментальные материалы / Cutting tool materials |
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Каталоги инструмента и оснастки для металлообработки на станках / Cutting tools and tooling system catalogs |
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| Каталог MITSUBISHI 2015 Токарный и вращающийся инструмент (Всего 1672 стр.) | |||||
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1615 Trouble shooting for turning Solution Factors Insert Grade Selection Cutting Conditions Style and Design of the Tool Machine Installation of Tool S | 1616 Effects of coolant on the chip control range of a chip breaker If the cutting speed is the same the range of chip control differs according to whet | 1617 Cutting speed effects tool life greatly Increasing cutting speed increases cutting temperature and results in shortening tool life Cutting speed va | 1619 Function of tool features for turning Rake angle is cutting edge angle that has a large effect on cutting resistance chip disposal cutting temperat | 1620 Effects of Side Cutting Edge Angle (Lead Angle) 1 At the same feed rate increasing the side cutting edge angle increases the chip contact length an | 1621 Honing and land are cutting edge shapes that maintain cutting edge strength Honing can be round or chamfer type The optimal honing width is approxi |
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Lab2U | Catalogs | Tap drill sizes | Speed to RPM | Material table Разработчики сайта / Developers of site |
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