Physical Vapor Deposited(PVD)TiAlN coatings are extensively utilized as protective layers for cutting tools,renowned for their excellent comprehensive performance.To optimize quality control of TiAlN coatings for cutt...Physical Vapor Deposited(PVD)TiAlN coatings are extensively utilized as protective layers for cutting tools,renowned for their excellent comprehensive performance.To optimize quality control of TiAlN coatings for cutting tools,a multi-scale simulation approach is proposed that encompasses the microstructure evolution of coatings considering the entire preparation and service lifecycle of PVD TiAlN coatings.This scheme employs phase-field simulation to capture the essential microstructure of the PVD-prepared TiAlN coatings.Moreover,cutting simulation is used to determine the service temperature experienced during cutting processes at varying rates.Cahn-Hilliard modeling is finally utilized to consume the microstructure and service condition data to acquaint the microstructure evolution of TiAlN coatings throughout the cutting processes.This methodology effectively establishes a correlation between service temperature and its impact on the microstructure evolution of TiAlN coatings.It is expected that the present multi-scale numerical simulation approach will provide innovative strategies for assisting property design and lifespan prediction of TiAlN coatings.展开更多
为解决在一些一对二的交流场景中使用信息隐藏技术来传递信息时对载密图像的视觉质量和载体图像的精确度的高要求问题.在本文中提出了一种基于模函数和像素值差值(pixel value difference,PVD)的双图像可逆信息隐藏方案,通过模函数和对...为解决在一些一对二的交流场景中使用信息隐藏技术来传递信息时对载密图像的视觉质量和载体图像的精确度的高要求问题.在本文中提出了一种基于模函数和像素值差值(pixel value difference,PVD)的双图像可逆信息隐藏方案,通过模函数和对数函数确定了PVD范围表,从而确定在单位面积上的信息嵌入位数以及模函数的系数.所提出的方案可以在信息嵌入位数不断增加的情况下仍然保持像素值的修改量与信息嵌入位数之比不大于0.5,所以与目前一些基于PVD的方案相比在像素对差值越大的图像中越占有优势.实验结果表明与现有的一些在载密图像质量方面优质的方案相比,具有更高的PSNR和SSIM,此外本方案在抗RS隐写分析和PDH隐写分析的静态攻击方面上具有良好的性能,并且避免了大多数在基于像素值差值的信息隐藏方案中对溢出问题的解决方案复杂繁琐的情况.展开更多
基金support from Youth Fund of the National Natural Science Foundation of China(Grant No.52101028)China Postdoctoral Science Foundation(Grant No.2021M703628)Natural Science Foundation of Hunan Province(Grant No.2022JJ40629)is acknowledged.
文摘Physical Vapor Deposited(PVD)TiAlN coatings are extensively utilized as protective layers for cutting tools,renowned for their excellent comprehensive performance.To optimize quality control of TiAlN coatings for cutting tools,a multi-scale simulation approach is proposed that encompasses the microstructure evolution of coatings considering the entire preparation and service lifecycle of PVD TiAlN coatings.This scheme employs phase-field simulation to capture the essential microstructure of the PVD-prepared TiAlN coatings.Moreover,cutting simulation is used to determine the service temperature experienced during cutting processes at varying rates.Cahn-Hilliard modeling is finally utilized to consume the microstructure and service condition data to acquaint the microstructure evolution of TiAlN coatings throughout the cutting processes.This methodology effectively establishes a correlation between service temperature and its impact on the microstructure evolution of TiAlN coatings.It is expected that the present multi-scale numerical simulation approach will provide innovative strategies for assisting property design and lifespan prediction of TiAlN coatings.
文摘为解决在一些一对二的交流场景中使用信息隐藏技术来传递信息时对载密图像的视觉质量和载体图像的精确度的高要求问题.在本文中提出了一种基于模函数和像素值差值(pixel value difference,PVD)的双图像可逆信息隐藏方案,通过模函数和对数函数确定了PVD范围表,从而确定在单位面积上的信息嵌入位数以及模函数的系数.所提出的方案可以在信息嵌入位数不断增加的情况下仍然保持像素值的修改量与信息嵌入位数之比不大于0.5,所以与目前一些基于PVD的方案相比在像素对差值越大的图像中越占有优势.实验结果表明与现有的一些在载密图像质量方面优质的方案相比,具有更高的PSNR和SSIM,此外本方案在抗RS隐写分析和PDH隐写分析的静态攻击方面上具有良好的性能,并且避免了大多数在基于像素值差值的信息隐藏方案中对溢出问题的解决方案复杂繁琐的情况.