Javascript must be enabled to continue!
Process Design Method of High Speed and Stable Cutting Hardened Steel
View through CrossRef
In view of the unstable cutting problem in the process of high speed milling hardened steel. Conduct
experiment of the stability of machine tool and high speed milling cutter. The machine tool spindle vibration spectrum and
vibration acceleration signal under the condition of different centrifugal force were detected. Obtained the critical speed of
security and stability cutting of milling cutter and machine tool spindle. Through the experiment of concave and convex
surface of hardened steel high speed milling, obtained the vibration characteristic of machine tool spindle and the shape
characteristic of machined surface of hardened steel concave and convex surface. Comparative analysis the experimental
results of milling cutter free running and milling hardened steel under the same speed condition. Recognizing the
significant effect of inherent vibration characteristics of machine tool to the stability of the hardened steel high speed
milling. With the aim of achieving stable and efficient cutting of hardened steel, put forward process design method of
high speed milling hardened steel. Using this process design method, obtained the process scheme of high efficient and
stability cutting hardened steel die. Process validation results show, the stability of the high speed milling concave convex
die of hardened steel improved over 33%.
Bentham Science Publishers Ltd.
Title: Process Design Method of High Speed and Stable Cutting Hardened Steel
Description:
In view of the unstable cutting problem in the process of high speed milling hardened steel.
Conduct
experiment of the stability of machine tool and high speed milling cutter.
The machine tool spindle vibration spectrum and
vibration acceleration signal under the condition of different centrifugal force were detected.
Obtained the critical speed of
security and stability cutting of milling cutter and machine tool spindle.
Through the experiment of concave and convex
surface of hardened steel high speed milling, obtained the vibration characteristic of machine tool spindle and the shape
characteristic of machined surface of hardened steel concave and convex surface.
Comparative analysis the experimental
results of milling cutter free running and milling hardened steel under the same speed condition.
Recognizing the
significant effect of inherent vibration characteristics of machine tool to the stability of the hardened steel high speed
milling.
With the aim of achieving stable and efficient cutting of hardened steel, put forward process design method of
high speed milling hardened steel.
Using this process design method, obtained the process scheme of high efficient and
stability cutting hardened steel die.
Process validation results show, the stability of the high speed milling concave convex
die of hardened steel improved over 33%.
Related Results
Sustainability Assessment, Investigations, and Modelling of Slot Milling Characteristics in Eco-Benign Machining of Hardened Steel
Sustainability Assessment, Investigations, and Modelling of Slot Milling Characteristics in Eco-Benign Machining of Hardened Steel
The hardened tool steel AISI O1 has increased strength, hardness, and wear resistance, which affects the complexity of the machining process. AISI O1 has also been classified as di...
Mist and Microstructure Characterization in End Milling Aisi 1018 Steel Using Microlubrication
Mist and Microstructure Characterization in End Milling Aisi 1018 Steel Using Microlubrication
Flood cooling is primarily used to cool and lubricate the cutting tool and workpiece interface during a machining process. But the adverse health effects caused by the use of flood...
Determination of permissible contact stress of case hardened raceway of roller slewing bearing
Determination of permissible contact stress of case hardened raceway of roller slewing bearing
The permissible contact stress for the rolling bearing made of the through hardened bearing steel has been established based on experience, while there is no definite value or calc...
Comparison of Contact Fatigue Strength of Carbon Case Hardening and Laser Hardening of Gears
Comparison of Contact Fatigue Strength of Carbon Case Hardening and Laser Hardening of Gears
Carbon case hardening of gears is a widely used surface treatment in the manufacturing industry. However, an evident shortcoming is that gear distortion after carbon case hardening...
Modeling of Critical Cutting Speed of White Layer Formation in Hard-Cutting Process
Modeling of Critical Cutting Speed of White Layer Formation in Hard-Cutting Process
Abstract
White layer exists on the machined surface of the hard-cutting and affects the surface quality and mechanical properties of a workpiece. Accurate predicting the cr...
Experimental tests and empirical models of the cutting force and surface roughness when cutting 1Cr13 martensitic stainless steel with a coated carbide tool
Experimental tests and empirical models of the cutting force and surface roughness when cutting 1Cr13 martensitic stainless steel with a coated carbide tool
Cutting force prediction is the key issue for planning and optimising the machining process. To explore the cutting of difficult-to-machine 1Cr13 martensitic stainless steel, an or...
High brightness lasers in cutting applications
High brightness lasers in cutting applications
Laser cutting machines with linear motor drives provide high contour accuracy and high cutting rates. Thus laser beam cutting has become increasingly competitive compared to mechan...

