• 제목/요약/키워드: Binder Jetting

검색결과 10건 처리시간 0.026초

사형 주조에서 바인더 젯 3D 프린터를 이용한 기계적 물성 향상을 위한 공정 연구 (A Study on the Process for Improving Mechanical Property of Sand Casting by Using the Binder Jetting Method)

  • 황정철;김태성
    • 대한안전경영과학회지
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    • 제25권1호
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    • pp.23-29
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    • 2023
  • Among the Additive Manufacturing (AM) technologies, the Binder-Jetting printing technology is a method of spraying an adhesive on the surface of powder and laminate layer by layer. Recently, this technique has become a major issue in the production of large casting products such as ship-building, custom vehicles and so on. In this study, we performed research to make actual mold castings and increase mechanical property by using special sand and water-based binders. For use as a mold, it has a strength of more than 3MPa and permeability. Various experiments were carried out to obtain suitable them. The major process parameters were binder jetting volume, binder types, layer thickness and heat treatment condition. As a result of this study, the binder drop quantity was measured to be about 60 pico-liter, layer thickness was 100㎛ and the heat treatment condition was measured about 1,000℃ and compressive strength were measured to be more than 5MPa. The optimum condition of this experiment was established through actual casting of aluminum. The equipment used in this study was a Freeforms T400 model (SFS Co., Ltd.), and the printing area of 420 * 300 * 250mm and resolution of 600dpi can be realized.

접착제 분사 기술을 활용한 산업용 중자 제작 (Production of Casting Cores using Powder Binder Jetting Techniques)

  • 최진용;신승중
    • 한국인터넷방송통신학회논문지
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    • 제19권5호
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    • pp.245-250
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    • 2019
  • 현대 주조산업에서는 적층제조기술과 같은 신기술을 도입하면서 과거에는 불가능했던 일들의 실현가능성을 보여주고 있다. 이미 해외에서는 적층제조기술을 활용한 중자 생산 및 적용 사례가 심심치 않게 보도되고 있으며, 정부지원 하에 고유 기술들을 개발하고 시장을 확장해 나가고 있다. 반면 국내에서는 고유장비 기술은커녕 적층제조기술의 활용조차 전무한 실정이다. 이러한 상황에서 적층제조기술의 도입과 국산화는 반드시 필요하다. 본 논문의 각 장에서는 여러가지 적층제조기술 중 접착제 분사 기술에 관련된 적층제조장비의 개발 과정에서부터 개발 장비를 활용한 산업용 중자 생산의 내용을 다루고 있으며, 실제 주조 산업의 적용 가능성에 대해서 언급하고 있다.

다중써멀버블 잉크젯방식의 3D 프린팅 시스템 개발 및 성능평가 (Evaluation and Development of Multi Thermal Bubble Ink Jet 3D Printing System)

  • 신문관;배성우;김정수
    • 한국정밀공학회지
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    • 제32권9호
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    • pp.787-792
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    • 2015
  • Recently, 3D printing technology is a hot issue in various industrial fields. According to the user's application, it allows for the free form fabrication method to be utilized in a wide range. The powder based fusion technique is one of the 3D printing methods. When using this method it is possible to apply the various binder jetting techniques such as piezo, thermal bubble jet, dispenser and so on. In this paper, a multi thermal bubble ink jet was integrated for jetting of powder binding material and developing a power fused 3D printing system. For high quality 3D printing parts, it needs an analysis and evaluation of the behavior of the thermal bubble ink jet head. In the experiment, a correlation between jetting binder quantity and layer thickness of powder was investigated, and a 3D part model was fabricated, which was used by measuring the scale factor.

Multi-step Metals Additive Manufacturing Technologies

  • Oh, Ji-Won;Park, Jinsu;Choi, Hanshin
    • 한국분말재료학회지
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    • 제27권3호
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    • pp.256-267
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    • 2020
  • Metal additive manufacturing (AM) technologies are classified into two groups according to the consolidation mechanisms and densification degrees of the as-built parts. Densified parts are obtained via a single-step process such as powder bed fusion, directed energy deposition, and sheet lamination AM technologies. Conversely, green bodies are consolidated with the aid of binder phases in multi-step processes such as binder jetting and material extrusion AM. Green-body part shapes are sustained by binder phases, which are removed for the debinding process. Chemical and/or thermal debinding processes are usually devised to enhance debinding kinetics. The pathways to final densification of the green parts are sintering and/or molten metal infiltration. With respect to innovation types, the multi-step metal AM process allows conventional powder metallurgy manufacturing to be innovated continuously. Eliminating cost/time-consuming molds, enlarged 3D design freedom, and wide material selectivity create opportunities for the industrial adoption of multi-step AM technologies. In addition, knowledge of powders and powder metallurgy fuel advances of multi-step AM technologies. In the present study, multi-step AM technologies are briefly introduced from the viewpoint of the entire manufacturing lifecycle.

바인더 젯팅 적층제조기술을 활용한 다공성 세라믹필터 제작 (Fabrication of Ceramic Filters via Binder Jetting Type 3D Printing Technology)

  • 권모세;최종한;황광택;최정훈;한규성;김응수;김진호
    • 한국재료학회지
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    • 제33권7호
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    • pp.285-294
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    • 2023
  • Porous ceramics are used in various industrial applications based on their physical properties, including isolation, storage, and thermal barrier properties. However, traditional manufacturing environments require additional steps to control artificial pores and limit deformities, because they rely on limited molding methods. To overcome this drawback, many studies have recently focused on fabricating porous structures using additive manufacturing techniques. In particular, the binder jet technology enables high porosity and various types of designs, and avoids the limitations of existing manufacturing processes. In this study, we investigated process optimization for manufacturing porous ceramic filters using the binder jet technology. In binder jet technology, the flowability of the powder used as the base material is an important factor, as well as compatibility with the binder in the process and for the final print. Flow agents and secondary binders were used to optimize the flowability and compatibility of the powders. In addition, the effects of the amount of added glass frit, and changes in sintering temperature on the microstructure, porosity and mechanical properties of the final printed product were investigated.

TiO2 입자의 사이즈가 바인더젯 3D 프린팅 시멘트계 재료의 특성에 미치는 영향 (Effect of nano-TiO2 size on the properties of cement-based materials produced by binder jet 3D printing)

  • 유준성;리패기;배성철
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2022년도 봄 학술논문 발표대회
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    • pp.188-189
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    • 2022
  • With the development of nano-reinforcement technology, TiO2 nanomaterials have received widespread attention as one of the additives without pozzolanic reaction, which can be used to improve the mechanical properties of cement-based materials. Meanwhile, with the development of additive manufacturing technology or known as 3D printing technology, its application in the construction field has also got noticed. Therefore, in this work, the effect of three sizes of TiO2 on the compressive strength of hardened cement-based materials fabricated by binder jetting 3d printing was evaluated. According to the results, the TiO2 particles with larger sizes can provide better reinforcement to the hardened cement due to its more significant filling effect.

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진공함침을 적용한 바인더젯 3D 프린팅 출력물의 성능 평가 (Evaluation of Binder jetting 3D Printed Specimens Using Vacuum Impregnation)

  • 박광민;박수현;;이봉춘;노영숙
    • 한국구조물진단유지관리공학회 논문집
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    • 제24권2호
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    • pp.103-110
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    • 2020
  • 본 연구는 바인더젯 3D 프린팅 출력물의 강도증진을 위하여 진공함침 후처리 공정의 적용성을 검토하였다. 또한, 출력물 크기에 따른 강도발현 한계를 확인하기 위하여 10 mm, 20 mm, 30 mm 및 40 mm 큐빅 출력물을 대상으로 침투성, 부피밀도 및 압축강도를 확인하였다. 그 결과, 진공함침 후처리 공정에서 최대압력이 증가함에 따라 후처리 용액이 출력물 내부까지 침투하게 되고 이에 따라서 침투면적률이 개선되는 것을 확인하였다. 출력물 압축강도율과 후처리 용액 침투면적률은 보정결정계수 0.992의 지수함수 형태의 상관관계를 나타내고 있다. 또한, 부피밀도가 증가하였으며 이는 후처리 용액이 내부까지 침투한 것으로 유추할 수 있다. 결론적으로 바인더젯 3D 프린팅 출력물의 강도증진을 위해서는 출력물 내부까지 후처리 용액을 침투하는 것이 필수적이며, 이를 위한 유효한 방법으로써 진공함침을 제안한다.

사형 주조 3D 프린팅용 소재의 기계적 특성 및 신뢰성 (Mechanical Properties and Reliability of Sand Casting 3D Printing Materials)

  • 손현진;장성완;이환종;양정직;정영근;배창준
    • 한국재료학회지
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    • 제30권1호
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    • pp.38-43
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    • 2020
  • Sand casting 3D printing uses a binder jetting method to produce a mold having complicated shape by spraying a binder on sand coated with activator. Appropriate heat treatment process in sand mold fabrication can increase the degree of polymerization to improve flexural strength. However, long heat treatment of over 24 hours decreases flexural strength and reliability due to chemical bond decomposition through thermal degradation. The main role of the activator is to control the reaction rate between the polymer chains. As a result, when the activator composition is increased from 0.15 wt% to 0.25 wt%, the flexural strength is increased by 218 N/㎠. However, excess activator (0.40 wt%) has been shown to decrease reliability without increasing flexural strength. The main role of the binder is to control the flexural strength of the specimen. As the binder composition is increased from 2.00 wt% to 4.00 wt%, the flexural strength increases to about 255 N/㎠, indicating the maximum flexural strength increase. Finally, the reliability of the flexural strength of the fabricated specimens is evaluated by a Weibull plot. Weibull modulus calculations are used to evaluate the flexural strength reliability of the specimens, and maximum reliability value of 11.7 is obtained at 0.20 wt% activator composition. Therefore, it is confirmed that this composition has maximum flexural strength reliability.

3DP 공정을 이용한 오피스용 임의형상 제작시스템 에 관한 연구 (SFFS) (A Study of SFFS for Office Type using Three-dimensional Printing Process)

  • 이원희;김동수;이택민
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2004년도 추계학술대회 논문집
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    • pp.1128-1131
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    • 2004
  • SFF(solid freeform fabrication) is another name of RP(rapid prototyping). The SFFS for office type wishes to develop system that can produce small object such as hand phone, cup, accessory etc. with high speed, and also intend suitable system in office environment by compact design, and buy easily by inexpensive price. As can manufacture high speed in existent SFF process technology, representative process that have competitive power in price is 3DP (three dimensional printing) technology. The 3DP technology is way to have general two dimensional printing technology and prints to three dimension, is technology that make three-dimensional solid freeform that want binder doing jetting selectively on powder through printer head. We designed and manufactured SFFS for office based on 3DP process technology design and manufactured, and composed head system so that use 3 printer heads at the same time to improve the fabrication speed of system. We used printer head of INCJET company and cartridge used HP45 series model who can buy easily in general city. And we directly fabricated three dimensional solid freeform using developed SFFS for office type.

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실제 3D 프린팅 작업장에서 발생하는 공기 중 유기화합물, 금속 및 입자특성 평가 (Assessment of Emitted Volatile Organic Compounds, Metals and Characteristic of Particle in Commercial 3D Printing Service Workplace)

  • 김성호;정은교;김세동;권지운
    • 한국산업보건학회지
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    • 제30권2호
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    • pp.153-162
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    • 2020
  • Objectives: 3D printing technologies have become widely developed and are increasingly being used for a variety of purposes. Recently, the evaluation of 3D printing operations has been conducted through chamber test studies, and actual workplace studies have yet to be completed. Therefore, the objective of this study was to determine the emission of volatile organic compounds(VOCs), metals, and particles from printing operations at a workplace. This included monitoring conducted at a commercial 3D printing service workplace where the processes involved material extrusion, material jetting, binder jetting, vat photo polymerization, and powder bed fusion. Methods: Area samples were collected with using a Tenax TA tube for VOC emission and MCE filter for metals in the workplace. For particle monitoring, Mini Particle Samplers(MPS) were also placed in the printer, indoor work area, and outdoor area. The objective was to analyze and identify particles' size, morphology, and chemical composition using transmission electron microscopy with energy dispersive spectroscopy(TEM-EDS) in the workplace. Results: The monitoring revealed that the concentration of VOCs and metals generated during the 3D printing process was low. However, it also revealed that within the 3D printing area, the highest concentration of total volatile organic compounds(TVOC) was 4,164 ppb at the vat photopolymerization 3D printing workplace, and the lowest was 148 ppb at the material extrusion 3D printing workplace. For the metals monitoring, chromium, which, is carcinogenic for humans, was detected in the workplace. As a characteristic of the particles, nano-sized particles were also found during the monitoring, but most of them were agglomerated with large and small particles. Conclusions: Based on the monitoring conducted at the commercial 3D printing operation, the results revealed that the concentration of VOCs and metals in the workplace were within Korea's occupational exposure limits. However, due to the emission of nano-sized particles during 3D printing operations, it was recommended that the exposure to VOCs and metals in the workplace should be minimized out of concern for workers' health. It was also shown that the characteristics of particles emitted from 3D printing operations may spread widely within an indoor workplace.