Recently, in the case of the root industry, although it is a basic industry that forms the basis of manufacturing competitiveness, there continues to be a shortage of manpower due to reasons such as dangerous working environments, industrial economic difficulties, and low wage systems. In addition, the demand for automation of production lines using robots is increasing due to a shrinking labor market due to a decrease in the working population due to aging, higher wages, shorter working hours, and limitations of foreign workers. In this study, a system was developed to automate the injection molding process for producing ball valves for automobiles by applying robot system. The applied process flow consists of alignment and insertion of insert parts, and removal, transfer, and loading of the product after injection molding, which is currently performed manually. Through the application of the developed robot automation system, the cycle time was improved by more than 30% and the defect rate was reduced by more than 70%.
In this research, the applicability of modified fouling index (MFI) on ultrapure water (UPW) production system was assessed to predict performance of reverse osmosis (RO) process. The practical study on MFI-UF was first performed at a pilot-scale UPW plant (Hwaseong-si, Gyeonggi-do, Korea), monitoring water quality parameters (i.e., conductivity, turbidity and TOC) as well as MFI-UF of pretreatment stage for 10 months. While water quality parameters were maintained in a stable manner, the MFI-UF was fluctuated implying the different propensity of RO influent. The increment of fouling potential was intimately related with RO performance, the aggravation of permeate quality. The sensitivity of MFI-UF was also verified by evaluating the fouling potential of reclaimed water in UPW production system.
It is not easy to establish the correct standard time and standard manhour in a process of small quantity batch production system, especially in a case of irregular quantity of production. Therefore, how to establish rational standard time about manufactu
At present, tendency of ERP(Enterprise Resource Planning) enterprises is that many ERP enterprises from abroad are rushing into capture of small and medium enterprises at home actively. SAP Korea and Korean Oracle have already showed their new product targeting domestic market of small or medium standing enterprise, and more, even MS(Micro Soft) also rushes into this market in earnest. The domestic business circle of ERP should prepare countermeasure by raising the perfection of product and having good command of minute marketing strategy to survive from aggressive strategy of SMB market. In addition, about the computerization of main affairs of business, ordering developing process was general that developing staffs analysed the affairs of each department that needed computerization and construct according to the operation process by using different tools, but condition is changing that businesses themselves are purchasing business application package from expert soft program enterprise and construct. Therefore, in this study, I try to grasp the problem of management, and define a new process that can help for more efficient management by making it an object producing and management module of enterprise 'K' that is one of domestic small and medium enterprise and that is operating ERP at present. As well, through the analysis of affair related producing, we are aiming to prepare for establishment of target, its range, and making the standard of result evaluation.
반도체 제조 시스템에 대한 다양한 상황과 관련한 연구는 많지 않다 게다가, 모든 상황에 항상 적합한 생산시스템 전략은 없다. 반도체 제조공정 시스템에 대한 스케줄은 생산공정의 재진입, 공정의 높은 불확실성, 급속하게 변하는 제품과 기술과 같은 특성 때문에 반도체 제조공정시스템에 대한 스케줄은 복잡하고 어려운 작업이며, 사이클타임의 절감 및 단위시간당 생산량의 증대와 같은 시스템 목적을 달성하기 위하여, 반도체 제조 시스템에 대한 좋은 방법을 발견하기 위한 많은 연구가 있었다. 반도체 산업의 생산 흐름은 가장 독특한 특징을 가지고 있으며 생산계획과 반도체 제조의 스케줄링과 계획을 어렵게 하고 있다. 각각 다른 단계에 있는 자재는 같은 장비의 사용을 위해 경쟁을 하는데, 이로 인하여 작업시간 보다 단지 기다리는 시간에 상당한 시간을 할애하고 있다. 따라서 본 연구에서는 선행 연구를 바탕으로 반도체 공정에 모듈 생산방식을 접목시켜 공정의 사이클 타임을 줄이고, WIP를 최소화하여, 생산량을 최대화는 방안을 제시하고 공정 모듈 시스템 (Process Modular System)을 구축하고자 한다.
본 연구는 R-B & HDDR process를 적용해서 Nd-Fe-B계 회토류 이방성 본드자석의 제조를 위한 기초 데이터를 확보할 목적으로. 환원확산법을 사용해서 Nd-Fe-B계 자석합금분말을 제조하는 데 필요한 금속 Ca에 의한 Nd2O3의 환원반응과 Fe-B합금분말중에서의 Nd확산반응을 조사하였다. 그 결과 Nd2O3의 환원시 필요한 최적의 Ca첨가량은 1000˚C에서 1h동안 R-D 반응후 Nd 및 B원소의 수율관계로부터 이론당량의 1.3배정도가 적량인 것으로 나타났다. 또한 Fe-B합금분말중에 Nd의 확산과 관련된 XRD의 분석결과에 따라 완전한 균질화를 위해서는 1100˚C에서 45min정도의 R-D반응이 필요하였으며, R-D반응에 대한 Nd의 수율도 그 조건에서 최대로 얻어졌다. 그리고 수세후의 최종 분말시료중에 잔류하는 Ca 및 O2량을 ICP발광분석 및 산소분석기에 의해 분석한 결과, 각각의 함유량은 0.17 및 0.42wt%정도가 검출되었다
The treatment efficiencies of domestic sewage treatment processes were analysed and assessed to suggest and design a suitable technology for coal seam gas (CSG) water treatment. Two sewage treatment plants (S and G in Busan) were selected. The former operates with standard activated sludge and modified Ludzak Ettinger processes while the later uses the combination of A2/O and gravity fiber filtration. For both plants, the concentrations of BOD, CODMn, T-N and T-P were about 5.0, 19.0, 5.0, 11.0 and 1.0 ppm, respectively, which satisfy the discharge standards. Therefore, although sewage treatment processes seems to be applicable for CSG water treatment, additional processes to remove total dissolved solids and ionic compounds (i.e. bicarbonate) need to be introduced to produce fit-for-purpose water resources for beneficial use (in accordance with Water ACT 2013). This, for the CSG treatment process design, it is necessary to align the operating conditions with merging methods of combinable unit technology obtained from sewage treatment processes.