Javascript must be enabled to continue!
Strain-rate correlation of biaxial tension and compression mechanical properties of HTPB and NEPE propellants
View through CrossRef
An effective biaxial tension and compression test method is proposed based on the shortcomings of current research for the mechanical properties of solid propellants under complex stress states. The equal proportion biaxial tension and compression test of HTPB (Hydroxyl-terminated polybutadiene) and NEPE (NitrateEster Plasticized Polyether) solid propellants is performed at different rates while at room temperature, and the damage morphology of the tension–compression zone is analyzed using micro-CT. The results show that the failure mode of the solid propellant under biaxial tension and compression loading is similar to that under uniaxial tension. Meanwhile, the compressive strength is much greater than the tensile strength, which will eventually cause tensile failure. With an increased loading rate, the growth trend of the initial modulus, ultimate strength, and maximum elongation of the propellant is gradually flattened, and the damage degree is gradually reduced. Additionally, damage that forms in the HTPB propellant is from dewetting and particle fracture while that for the NEPE propellant is from matrix tearing. The porosity can be used as the meso-damage parameter of the propellant.
AIP Publishing
Title: Strain-rate correlation of biaxial tension and compression mechanical properties of HTPB and NEPE propellants
Description:
An effective biaxial tension and compression test method is proposed based on the shortcomings of current research for the mechanical properties of solid propellants under complex stress states.
The equal proportion biaxial tension and compression test of HTPB (Hydroxyl-terminated polybutadiene) and NEPE (NitrateEster Plasticized Polyether) solid propellants is performed at different rates while at room temperature, and the damage morphology of the tension–compression zone is analyzed using micro-CT.
The results show that the failure mode of the solid propellant under biaxial tension and compression loading is similar to that under uniaxial tension.
Meanwhile, the compressive strength is much greater than the tensile strength, which will eventually cause tensile failure.
With an increased loading rate, the growth trend of the initial modulus, ultimate strength, and maximum elongation of the propellant is gradually flattened, and the damage degree is gradually reduced.
Additionally, damage that forms in the HTPB propellant is from dewetting and particle fracture while that for the NEPE propellant is from matrix tearing.
The porosity can be used as the meso-damage parameter of the propellant.
Related Results
Study on mechanical properties of solid propellant NEPE
Study on mechanical properties of solid propellant NEPE
AbstractNitrate ester plasticized polyether (NEPE) propellants, are high energy solid propellants that are used widely in solid rocket motor. It is necessary to study the mechanica...
Research on NEPE Propellant at High Strain Rates
Research on NEPE Propellant at High Strain Rates
Abstract
In order to study the mechanical properties of Nitrate Ester Plasticized Polyether (NEPE) propellant at high strain rates, the impact tests of NEPE propella...
Thermomechanical and Morphological Characteristics of Cross‐Linked GAP and GAP–HTPB Networks with Different Diisocyanates
Thermomechanical and Morphological Characteristics of Cross‐Linked GAP and GAP–HTPB Networks with Different Diisocyanates
AbstractThis paper describes the mechanical and thermal characterisation of cross‐linked glycidyl azide polymer (GAP) and GAP–hydroxyl terminated polybutadiene (HTPB) networks. Cro...
Micro-CT-based HTPB propellant double-axis stretch test design
Micro-CT-based HTPB propellant double-axis stretch test design
Abstract
In order to study the microstructural damage evolution of solid propellants under biaxial tension, firstly, based on finite element numerical calculation, small sp...
Macroeconomic and Social Precursors of Suicide Rates in the Philippines: A Quantitative Analysis (Preprint)
Macroeconomic and Social Precursors of Suicide Rates in the Philippines: A Quantitative Analysis (Preprint)
BACKGROUND
Suicide is a complex, serious and multifaceted public health issue that poses significant challenges to societies worldwide. In fact, it represen...
Mesoscopic Damage Evolution of Hydroxyl‐Terminated Polybutadiene Propellants under Biaxial Tension
Mesoscopic Damage Evolution of Hydroxyl‐Terminated Polybutadiene Propellants under Biaxial Tension
ABSTRACTThis study conducted systematic in‐situ tensile scanning tests on hydroxyl‐terminated polybutadiene (HTPB) propellant under biaxial tensile conditions. It successfully acqu...
Low Cycle Fatigue Crack Initiation of Rotating Structures Under Biaxial Stress States
Low Cycle Fatigue Crack Initiation of Rotating Structures Under Biaxial Stress States
Rotating structures can experience biaxial stress states with a wide range of biaxiality ratios on structure surfaces. Low cycle fatigue (LCF) crack initiation in such conditions d...
Experimental Investigation on Combustion Characteristics and Agglomeration of Al/NEPE Propellants
Experimental Investigation on Combustion Characteristics and Agglomeration of Al/NEPE Propellants
AbstractIn order to understand the ignition and combustion characteristics of NEPE propellants under different pressure conditions and the agglomeration behavior of aluminum partic...

