成形性
材料科学
复合材料
金属薄板
夹芯板
极限抗拉强度
夹层结构复合材料
堆积
成形极限图
芯(光纤)
结构工程
核磁共振
物理
工程类
作者
Juan Liao,Jin-yuan Qian,Huấn Cao,Xin Xue
标识
DOI:10.1002/adem.202401977
摘要
Metallic sandwich panels featuring cellular metal cores are widely utilized across various sectors due to their exceptional load‐bearing efficiency and design versatility. However, their application is often limited by the challenge of shaping complex geometries. This study introduces a novel thin sandwich panel incorporating stainless steel wire mesh (SSWM) core, designed to offer both lightweight properties and enhanced flexibility. Mechanical properties and forming limit diagrams of the sandwich sheet are assessed through tensile tests and Nakajima forming tests. The study investigates how the SSWM stacking angle and strain paths influence the panel's failure behavior and formability. Comparative analyses with monolithic stainless steel sheets of identical dimensions are also conducted. The findings reveal that the sandwich sheet exhibits comparable formability to the monolithic sheet in the tension‐compression stain zone, with about 32% higher average specific tensile strength compared to the monolithic counterpart. Importantly, the formability and failure characteristics of the sandwich panel are significantly influenced by in‐plane shear deformation of the SSWM core, which is primarily dictated by the SSWM stacking angle and strain paths. Notably, the sandwich sheet with 45° stacking angle demonstrates superior plasticity and formability.
科研通智能强力驱动
Strongly Powered by AbleSci AI