• 제목/요약/키워드: Mini Excavator

검색결과 11건 처리시간 0.026초

소선회 미니굴삭기 운전실 내부 및 외부 소음평가 (Estimation of Noise in and out the Cabin of Zero Tail Type Mini Excavator)

  • 이종호;이성일;김철호;박종성;손민규
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2005년도 춘계학술대회논문집
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    • pp.217-220
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    • 2005
  • Zero tail type mini excavator is small in size and capacity compared with medium or large excavator. Therefore noise and heat problems are major issues in design due to layout of each components such as engine and hydraulic module. It is necessary to assure reduction of noise and vibration in construction machine, due to be enforced regulation for high noise construction machinery at home and abroad. The objective of this study is to provide basic data which is apply to predict noise effect in detail design stage by estimating noise of cabin for zero tail type mini excavator.

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소선회 미니굴삭기 캐빈의 차음효과 분석 (An experimental study about the sound insulation of the cabin for the zero tail type mini excavator)

  • 이종호;김철호;박종성;손민규
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2006년도 춘계학술대회논문집
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    • pp.292-295
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    • 2006
  • Dimension and capacity of the zero tail type mini excavator are small as compared with medium or large excavators. Therefore, problems of the noise and the heat are major issues in design due to layout of each component such as the engine and the hydraulic module. It is necessary to reduce the noise and the vibration of construction machine, due to be enforced regulation for high noise construction machinery in the world. The objective of this study is to provide basic data which is apply to predict noise effect in detail design stage by estimating noise of cabin for zero tail type mini excavator.

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필드로봇용 원격 굴삭 시스템의 궤적제어에 관한 연구 (A Study on Tracking Control of Remote Operated Excavator for Field Robot)

  • 양순용;진성민;최정주;이창돈;김용석
    • 유공압시스템학회논문집
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    • 제6권4호
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    • pp.9-15
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    • 2009
  • Hydraulic excavators are the representative of field robot and have been used in various fields of construction. Since the excavator operates in the hazardous working environment, operators of excavator are exposed in harmful environment. Therefore, the hydraulic excavator automation and remote operation system has been investigated to protect from the hazardous working environment. In this paper, remote operation excavator system is developed using the mini hydraulic excavator and the tracking control system of each links of excavator is designed. To apply the tracking control system, the adaptive sliding mode control algorithm is proposed. It is found that the performance of the proposed control system is improved through experimental results of using the remote operation excavator system.

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소형 굴삭기의 주행구동유니트 시험평가에 관한 연구 (A Study on Track Drive Unit Test and Evaluation for Mini Excavators)

  • 이기천;이용범;최병오
    • 한국신뢰성학회지:신뢰성응용연구
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    • 제15권3호
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    • pp.139-144
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    • 2015
  • Track drive unit adopted in the small sized excavator generally have been used in the construction equipment under the 10 tons as the driving device with forwarding and reversing of excavator. It is required to study the accelerated life test applied by over torque and speed to test the durability life test reflected the many driving modes of small sized excavator and also need to equip the comprehensive performance and life test equipments to do the various performance tests. This study had analyzed the failure modes of the components, and calculated the equivalent loads investigated the used loads in the real field conditions and elicits the acceleration factor adopted in the inverse power model. Also, this study have considered the changes of the acceleration factor and the durability test time in the case of the rotary group and the bearing through analyzing the main failure modes. It was calculated the no failure test time about 2 samples and confidence level 90% and elicited the accelerated life time 720 hours.

소형 굴삭기 방사소음 개선 사례 (A Case Study for the reduction of Mini Excavator Radiated Noise)

  • 박재성;박수동;조희;김주호
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2014년도 추계학술대회 논문집
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    • pp.488-489
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    • 2014
  • This paper is a case study for the reduction of excavator Radiated noise. The main purpose of the study is to reduction noise for the cooling fan and hydraulic line which is main noise source of the excavator. Recent, noise regulations for the construction equipment is becoming stricter. Compare to past excavator drivers requirements for noise level demanding are becoming more and more. Therefore, this progress is an important role in determining the quality of the excavator.

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전목 및 단목 집재작업시스템에서 작업비용 분석 (An Analysis of the Operational Cost in the Whole-tree and Cut-to-Length Logging Operation System)

  • 김민규;박상준
    • 한국산림과학회지
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    • 제102권2호
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    • pp.229-238
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    • 2013
  • 효율적인 임목수확작업 기술의 보급과 임목수확작업시스템을 구축하기 위해 타워야더 및 스윙야더 등에 의한 전목집재작업시스템과 굴삭기 그래플 등에 의한 단목집재작업시스템의 작업비용을 비교 분석하였다. 전목집재 작업시스템에서 작업비용을 산정한 결과, 체인톱에 의한 벌목작업비용이 2,099원/$m^3$, 타워야더에 의한 전목집재작업비용이 28,286원/$m^3$, 스윙야더에 의한 전목집재작업비용이 18,265원/$m^3$, 굴삭기 그래플 및 체인톱에 의한 조재작업비용이 18,939원/$m^3$, 바퀴식 미니포워더에 의한 소운재 및 집적 작업비용이 20,484원/$m^3$, 굴삭기 그래플 및 소형 운재차에 의한 소운재 및 집적 작업비용이 12,701원/$m^3$으로 나타났다. 또한, 단목집재작업시스템에서 작업비용을 산정한 결과, 체인톱에 의한 벌목 및 조재 작업비용이 10,160원/$m^3$, 굴삭기 그래플에 의한 단목집재작업비용이 7,567원/$m^3$, 굴삭기 그래플에 의한 지엽수집작업비용이 6,982원/$m^3$, 굴삭기 그래플에 의한 작업로개설비용이 3,040원/$m^3$, 바퀴식 미니포워더에 의한 소운재 및 집적 작업비용이 20,484원/$m^3$, 굴삭기 그래플 및 소형 운재차에 의한 소운재 및 집적작업비용이 12,701원/$m^3$으로 나타났다.

전목 및 단목 집재작업시스템에서 작업시간 및 공정 분석 (An Analysis of the Operational Time and Productivity in Whole-tree and Cut-to-Length Logging Operation System)

  • 김민규;박상준
    • 한국산림과학회지
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    • 제101권3호
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    • pp.344-355
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    • 2012
  • 임목수확작업시스템 구축과 효율적인 임목수확작업 기술을 보급하기 위해 타워야더 및 스윙야더 등에 의한 전목집재작업시스템과 굴삭기 그래플 등에 의한 단목집재작업시스템의 작업시간 및 공정을 분석하였다. 전체 조사작업시간을 기준으로 분석한 1 cycle당 작업시간은 전목집재작업시스템에서 체인톱에 의한 벌목 46.6초/cycle, 타워야더에 의한 집재 480.6초/cycle, 스윙야더에 의한 집재 287.4초/cycle, 체인톱에 의한 조재 155.14초/cycle로 나타났다. 또 한 단목집재작업시스템에서는 체인톱에 의한 벌목 및 조재 225.65초/cycle, 굴삭기 그래플에 의한 단목집재 4,972초/cycle, 지엽집재 3,143초/cycle로 나타났으며, 바퀴식 미니포워더에 의한 소운재 4,688초/cycle, 굴삭기 그래플 및 소형운재차에 의한 소운재 2,118초/cycle로 나타났다. 전목집재작업시스템의 작업공정에서 체인톱에 의한 평균 벌목공정이 $57.89m^3$/일, 타워야더에 의한 평균 집재공정이 $20.3m^3$/일, 스윙야더에 의한 평균 집재공정이 $31.55m^3$/일, 체인톱에 의한 평균 조재공정이 $20.3m^3$/일로 나타났다. 또한, 단목집재작업시스템의 작업공정에서 체인톱에 의한 평균 벌목 및 조재공정이 $11.96m^3$/일, 굴삭기 그래플에 의한 평균 단목집재공정이 $34.75m^3$/일, 굴삭기 그래플에 의한 평균지엽수집공정이 $37.66m^3$/일, 굴삭기 그래플에 의한 평균 작업로의 개설공정이 73.8 m/일로 나타났으며, 바퀴식 미니포워더와 굴삭기 그래플 및 소형 운재차에 의한 평균 소운재 작업공정이 각각 $15.73m^3$/일과 $65.03m^3$/일로 나타났다.

소형 굴삭기의 원격제어를 위한 주행 알고리즘 및 통신특성에 관한 연구 (A Study on Driving Algorithm and Communication Characteristics for Remote Control of Mini Excavator)

  • 정진범;김경수
    • 드라이브 ㆍ 컨트롤
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    • 제15권4호
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    • pp.81-90
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    • 2018
  • Indoor construction site such as building demolition sites, tunnel, vinyl house, and cattle shed are subject to various risk factors such as falling stones, soot and bad odors. However, most of the mini excavators have no cabin that can protect the driver from such risk factors. Therefore, researches on remote control technology of construction equipment are actively conducted as a method for protecting the driver from the risk factors occurring in the working environment. For effective remote control, it is necessary to be able to control the travelling and work using a portable small transmitter. However, due to the limitation of the size of the transmitter, complex operation control is required to control two or more actuators with a single joystick. Also, it is essential to check how remote control characteristics change in various environments such as distance, signal strength, obstacle. Therefore, in this study, an algorithm that can control two actuators simultaneously with a single joystick signal was developed, and a communication method suitable for indoor and outdoor mini construction equipment by analyzing experimentally how the remote control characteristics vary according to various work environments and telecommunication methods proposed.

건설로봇용 인간-로봇 협업 제어 (Human-Robot Cooperative Control for Construction Robot)

  • 이승열;이계영;이상헌;한창수
    • 대한기계학회논문집A
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    • 제31권3호
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    • pp.285-294
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    • 2007
  • Previously, ASCI(Automation System for Curtain-wall Installation) which combined with a multi-DOF manipulator to a mini-excavator was developed and applied on construction site. As result, the operation by one operator and more intuitive operation method are proposed to improve ASCI's operation method which need one person with a remote joystick and another operating an excavator. The human-robot cooperative system can cope with various and untypical constructing environment through the real-time interacting with a human, robot and constructing environment simultaneously. The physical power of a robot system helps a human to handle heavy construction materials with relatively scaled-down load. Also, a human can feel and response the force reflected from robot end effecter acting with working environment. This paper presents the feasibility study regarding the application of the proposed human-robot cooperation control for construction robot through experiments on a 2DOF manipulator.

다 자유도 매니퓰레이터를 이용한 커튼월 시공 자동화에 관한 연구 (A Study of the Automation System using a Multi-DOF Manipulator for the Curtain Wall Installation in a Skyscraper)

  • 유승남;이승열;최현석;이계영;이상헌;한창수
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2004년도 춘계학술대회
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    • pp.940-945
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    • 2004
  • Recently, the trend in architectural forms has been toward taller and larger building. The building materials, therefore, are getting larger and heavier as wall. Most of the construction projects are, however, dependent on outdated equipment and human resources. Construction processes up to now face a number of problems, including dangerous work, high construction cost and heterogeneous construction quality. In various construction sites, automation in construction has been introduced to address these problems. This paper proposes a human-machine cooperative system in the construction site; the system utilizes construction of a curtain wall in tall buildings. The use of automation system at construction sites can reduce the need of human involvement. Construction time and cost can be reduced as well. The most important aspect of the use of automation system at construction sites is prevention of accidents.

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