首页|基于热处理的选区激光烧结PA12力学性能调控研究(特邀)

基于热处理的选区激光烧结PA12力学性能调控研究(特邀)

扫码查看
为解决选区激光烧结技术在聚酰胺12(PA12)材料成形时机械性能较差的问题,自主研制了一种均热-速冷装置。旨在通过改善材料内部的组织缺陷,使其达到材料本征机械性能。经过热处理后的样品常温下性能得到了极大改善,其最大拉伸强度为(57。6±1。9)MPa,断裂伸长率介于 293%至297%之间。此外,该材料在高、低温环境中依然保持了良好的拉伸性能,在-80℃时的拉伸强度最高达110。5 MPa,断裂伸长率为22%至25%;+80℃时的拉伸强度则为(53。1±3。3)MPa,断裂伸长率最高达578。6%。经过热处理的具有三周期极小曲面结构样品,在弹性阶段的承载能力均有所提升,增幅最高达19%。其中,热处理后的D型TPMS表现出色,其弹性阶段的最大承载力达7。3 kN,且具有出色的能量吸收性能。
Research on the Control of Mechanical Properties of Selective Laser Sintering PA12 Based on Heat Treatment(Invited)
Additive manufacturing plays an indispensable role in the field of complex structure forming,which enables the precise manufacturing of complex products directly through digital models.Among them,Selective Laser Sintering(SLS)technology,as an advanced technology for powder-based additive manufacturing,PA12 is an ideal material that can be used in SLS technology.However,during the forming process,the particles are connected by sinter necks,which often results in microporous parts and high surface roughness,which prevents the intrinsic properties of the material from being achieved.In order to improve the mechanical properties of SLS molded parts,three methods are usually applied:first,the process parameters are optimized,which is a relatively simple method,but usually the material properties are not greatly improved;the second is to enhance the performance of the part by introducing reinforcement,which can indeed bring about the improvement of the performance of the molded parts,but it is usually difficult to form,and at the same time will cause many problems such as the surface quality of the molded parts;finally,this situation is improved by post-treatment of the formed parts,which is also a good way to improve the mechanical properties of the molded parts,which are commonly improved by heat treatment,but this method often leads to the deformation of the parts after heat treatment,which is usually caused by overheating and slow cooling.In order to solve this problem,this paper independently developed a uniform heating and rapid cooling device for heat treatment of SLS-printed PA12 materials and complex structural parts.It aims to achieve the intrinsic mechanical properties of the material by improving the internal structural defects of the material.The properties of the heat-treated sample were greatly improved at room temperature,with a maximum tensile strength of(57.6±1.9)MPa and an elongation at break between 293%and 297%.In addition,the material still maintains good tensile properties in high and low temperature environments,with a tensile strength of up to 110.5 MPa and an elongation at break of 22%to 25%at-80℃.The tensile strength at+80℃is(53.1±3.3)MPa,and the elongation at break is up to 578.6%.The load-bearing capacity of the heat-treated samples with Triply Periodic Minimal Surfaces(TPMS)structures increased by up to 19%in the elastic stage.Among them,the heat-treated D-type TPMS performed excellently,with a maximum load-bearing capacity of 7.3 kN in the elastic stage and excellent energy absorption performance.At the same time,this study found that with the gradual increase of temperature,the tensile properties basically increased first and then decreased.There is little difference between the crystallinity and the peak melting temperature of the unheat-treated specimen and the specimen under different heat-treated temperatures,and the crystal form does not change.With the gradual increase of heat treatment temperature,the surface roughness value of the sample showed a gradual downward trend,and the roughness was the lowest at 230℃.After heat treatment,the porosity and defects in the cross-section of the sample basically disappeared,and the plastic deformation occurred during the tensile process.At the same time,it can promote the molten growth and microstructure densification of SLS-formed PA12 specimen particles,eliminate internal pore defects,and improve the mechanical properties of the material.

Additive manufacturingPolyamide 12Three-period minimal surfaceHeat treatmentMechanical properties

韩壮、李猛、曾勇、陈继民、刘秀斌

展开 >

北京工业大学 物理与光电工程学院,北京 100124

中国航天员科研训练中心,北京 100094

人因工程全国重点实验室,北京 100094

增材制造 PA12 三周期极小曲面 热处理 力学性能

2024

光子学报
中国光学学会 中国科学院西安光学精密机械研究所

光子学报

CSTPCD北大核心
影响因子:0.948
ISSN:1004-4213
年,卷(期):2024.53(10)