获部级科技进步一等奖1项、二等奖3项、三等奖7项。
Research on the Self-sharpening Characteristics of WC-Co Alloy Projectile core during Penetration(SCI 2区)
Formation of explosively-formed projectile with tail fins using polygonal charges,(SCI 4区)
Investigation into Damage Characteristics and Ballistic Performance of in-contact Multi-layer Steel Targets Subjected to High-Velocity Impact by EFP,(SCI3区)
Research on the Mechanical Response and Constitutive Model of 18Ni300 Manufactured by SLM with Different Build Directions,(SCI3区)
The constitutive behavior of Ti-5Al-3V-2Cr-2Fe under high-velocity impact: Experimental, modeling, and validation(SCI2区)
Meso-mechanical model of concrete under a penetration load(SCI2区)
A constitutive model of the compressive mechanical properties of ultra high molecular weight polyethylene (UHMWPE) at different temperatures and different strain rates(SCI4区)
Mechanical properties and constitutive model of Sn-58Bi alloy(SCI4区)
Dynamic Constitutive Model of Ultra-High Molecular Weight Polyethylene (UHMWPE): Considering the Temperature and Strain Rate Effects(SCI3区)
Compressive Properties and Constitutive Model of Semicrystalline Polyethylene(SCI3区)
Split Hopkinson pressure bar test of Silicone Rubber:Considering Effects of Strain rate and Temperature(SCI3区)
Strain Rate and Temperature Effects of the JOXL‐1 Explosive (SCI4区)
Penetration and Cratering of Steel Target by Jets from Titanium Alloy Shaped Charge Liner(SCI3区)
Study on Plastic Deformation Behavior of Mo-10Taunder Ultra-High Strain Rate(SCI3区)
Study on mechanical properties and constitutive model of 5052 aluminium alloy(SCI3区)
Shock InitiationofCovered Flake JH‐2High Explosive by Simultaneous Impact of Multiple Fragments(SCI4区)
Method of evaluating energy released by a warhead charge based on average fragment quality(SCI4区)
Study on Bulge State of PCrNi3MoV Target Plates Penetrated by Square Fragments(SCI4区)
Ballistic Performance of Spherical Fragments Penetrating PCrNi3MoV Target Plates(SCI2区)
快速烤燃条件下B炸药战斗部的临界泄压面积,爆炸与冲击,2023,通讯作者,(EI)
钨合金破片侵彻钢靶的穿靶能量研究,哈尔滨工程大学学报,2023,通讯作者,(EI: 20233714709982
2023年授权专利
一种XXX方法,Zl202018015838.4,2023
一种利用xxx的战斗部结构
一种强约束下多层陶瓷金属复合装甲 授权
一种基于破片xx的评估方法
一种控制破片xx的装置和方法
一种xxx弹药的泄压结构