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高分子材料3DP法三维打印坯的水浸法脱黏研究
引用本文:黄大志,顾海,杨建明,王晓丽,陈现伦.高分子材料3DP法三维打印坯的水浸法脱黏研究[J].现代制造工程,2020(5):48-52.
作者姓名:黄大志  顾海  杨建明  王晓丽  陈现伦
作者单位:江苏海洋大学机械与海洋工程学院,连云港222005;南通理工学院江苏省3D打印装备及应用技术重点建设实验室,南通226002;南通理工学院江苏省3D打印装备及应用技术重点建设实验室,南通226002;江苏海洋大学机械与海洋工程学院,连云港222005
基金项目:江苏省3D打印装备;南通市3D打印技术;连云港市521工程资助项目;应用重点实验室资助项目;实验室开放基金
摘    要:以麦芽糊精粉末和聚乙烯醇粉末为黏结剂,采用3DP法三维打印制备得到高分子材料坯件,经过加热预熔合后,采用超声波清洗机进行水浸法脱黏,采用称重法和拉曼光谱分析检测黏结剂去除情况,研究了水温、超声振动和浸泡时间对脱黏效果的影响。结果表明,水温越高,脱黏效果越好;有超声振动时,可明显提高脱黏效率;浸泡时间越长,脱黏效果越好。得到本研究试样的两种较为理想的脱黏方案,即40℃水温超声振动下浸泡9 h和50℃水温超声振动下浸泡6 h。

关 键 词:三维打印  3DP法  脱黏  水浸法  超声振动

Study on water-immersed de-bonding of 3D printing blanks of polymer materials by 3DP method
Huang Dazhi,Gu Hai,Yang Jianming,Wang Xiaoli,Chen Xianlun.Study on water-immersed de-bonding of 3D printing blanks of polymer materials by 3DP method[J].Modern Manufacturing Engineering,2020(5):48-52.
Authors:Huang Dazhi  Gu Hai  Yang Jianming  Wang Xiaoli  Chen Xianlun
Affiliation:(School of Mechanical and Marine Engineering,Jiangsu Ocean University,Lianyungang 222005,Jiangsu,China;Jiangsu Key Laboratory of 3D Printing Equipment and Application Technology,Nantong Institute of Technology,Nantong 226002,Jiangsu,China)
Abstract:The malt dextrin and polyvinyl alcohol powder were used as binders to prepare the polymer material blank by 3DP method.After pre-melting by heating,the ultrasonic cleaning machine was used for de-bonding by water immersed method.The removal of binder was detected by weighing method and Raman spectroscopy.The effects of water temperature,ultrasonic vibration and immersion time on the de-bonding were studied.The results showed that with the increase of water temperature,the de-bonding effect was improved;when ultrasonic vibration was used,the de-bonding efficiency could be obviously improved,and as the soaking time gets longer,the de-bonding effect was improved too.Two ideal de-bonding schemes for the samples of this study were obtained,that is,immersion for 9 hours under ultrasonic vibration at 40℃water temperature and immersion for 6 hours under ultrasonic vibration at 50℃water temperature.
Keywords:three-dimensional printing  3DP method  de-bonding  water-immersed method  ultrasonic vibration
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