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15 Records Found
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I could not find the article I request
含能材料
Chinese Journal of Energetic Materials
Year 2022
Volume
30
Issue
9
han neng kuai di (含能快递)
..................
page:
873
han neng cai liao yu 3d da yin rong he fa zhan de si kao (含能材料与3D打印融合发展的思考)
..................
page:
874
-
876,前插2
Construction and Combustion Performance of Al/PTFE-based Reactive Materials with Hollow Structure (空心结构的Al/PTFE基反应材料构筑及其燃烧性能)
..................
page:
877
-
885,前插1
Preparation of Graded Structured HMX/Al to Enhance Combustion and Pressure Output Performance (制备梯度结构来提高HMX/Al复合材料的燃烧和压力输出性能)
..................
page:
886
-
896
Extrusion 3D Printing Technology of Double base Gun Propellants (双基发射药挤出式3D打印技术)
..................
page:
897
-
902
Direct Ink Writing and Properties of Nitrocellulose-based Gun Propellants Embedded with Multi-cubic Pores (直写打印硝化棉基内嵌多方孔发射药及其性能)
..................
page:
903
-
910
Explosive Ink Design,Direct Ink Writing,and Micro-scale Detonation Transmission Characteristics of PVA/FEVE/CL-20 (PVA/FEVE/CL-20炸药油墨设计、直写成型及其微尺度传爆特性)
..................
page:
911
-
919
Inkjet Printing and Performance Characterization of CL-20/HTPE Based Microscale Booster with High Strength (高强度CL-20/HTPE基微尺度传爆药的打印成型及性能表征)
..................
page:
920
-
926
Integrated Additive Manufacturing Technology of Composite Solid Propellant and Resistive Temperature Sensor (复合固体推进剂与电阻式温度传感器一体化增材制造技术)
..................
page:
927
-
936
Review on Ink-jet Printing for Ink Droplet Forming Mechanism and its Application in Energetic Materials (喷墨打印墨滴成形机理及其在含能领域应用进展)
..................
page:
937
-
951
Ultrasonic Detection and Imaging of Metal-explosive Interface Debonding Defects Using Multiple Pulse-echoes (金属-炸药界面脱粘缺陷的多次超声脉冲反射检测及成像)
..................
page:
952
-
958
Thermal Shock Damage Characteristics of Polymer Bonded Explosive based on X-ray Micro-computed Tomography (基于X射线显微CT的PBX热冲击损伤特征)
..................
page:
959
-
965
Separation and Purification of Metal Pentazolates (五唑金属盐分离纯化方法)
..................
page:
966
-
970
Applicability Analysis of Time-temperature-stress Equivalent Principle in Tensile Creep of TATB-Based PBX (时间-温度-应力等效原理在TATB基PBX拉伸蠕变中的适用性分析)
..................
page:
971
-
977
zheng gao qi shi (征稿启事)
..................
page:
后插1
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