Customization: | Available |
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Manufacturing Process: | Electroplating |
Shape: | Dish-Shaped |
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Parameter
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Diamond Grinding Wheel
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CBN Grinding Wheel
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Abrasive Grain Size
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Ranging from coarse grain sizes, such as [specific grit value, e.g., 30#] for rapid stock removal, to fine grain sizes like [e.g., 2000#] to meet ultra-precision mirror grinding requirements. Multiple options are available to adapt to different machining precision needs.
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Similar to the diamond grinding wheel grain size system, ranging from [starting coarse grit value] to [finest grit value], meeting the transition from rough machining to finish machining.
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Binder Types
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Including resin binders, which have good elasticity and self-sharpening properties, suitable for fine grinding and form grinding; metal binders, with high strength and excellent wear resistance, applicable for heavy-duty rough grinding; and ceramic binders, possessing strong chemical stability and good heat resistance, conducive to high-precision and long-term continuous grinding.
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Mainly including ceramic binders, endowing the grinding wheel with excellent high-temperature stability, suitable for high-speed and high-precision grinding; resin binders, providing a certain degree of flexibility to reduce the risk of surface damage to workpieces, commonly used for precision small part grinding.
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Grinding Wheel Dimensions
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The outer diameter ranges from 10 to 50 mm, the inner diameter from 5 to 20mm, and the thickness from10 to 50 mm. Customization is available according to customer requirements for machine tools and workpieces.
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The outer diameter interval is 20 mm, the inner diameter 15mm, and the thickness 10 mm. Customization services are also provided.
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Hardness Grades
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Classified into multiple levels such as soft, medium, and hard in accordance with national or international standards, like [specific hardness designations, e.g., H, M, S, etc.], ensuring good performance under different grinding forces.
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Set according to specific standards to different hardness levels, facilitating customers to choose based on actual working conditions and ensuring a balance between machining efficiency and quality.
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