• Title/Summary/Keyword: Automobile Industry

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Risk Factors of Musculoskeletal System in Automobile Manufacturing Workers with Mlid Intellectual Disabilities: Focus on Neck and Lower Back Regions (경도 지적장애 자동차제조업 근로자의 근골격계 위험 요인 조사 -목과 허리 부위 중점으로-)

  • Young-In Hwang;Du-Jin Park
    • PNF and Movement
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    • v.22 no.1
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    • pp.129-137
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    • 2024
  • Purpose: The aim of this study was to investigate and compare the risk factors focusing on the neck and lower back between general workers (GW) and mild intellectual disability workers (MIDW) in the automobile manufacturing industry. Methods: A total of 32 participants were required for this study design to achieve 80% power, 0.9 effect size, and an alpha level of 0.05. Each group consisted of 16 subjects, including GW and MIDW. Pain levels in the neck and lower back were measured for all participants using the visual analog scale (VAS). A dual digital inclinometer was used to measure the range of motion (ROM) in the neck and lower back three times, and the average was used for analysis. The independent t-test was used to compare between the wo groups. Cohen's d effect analysis was employed to determine the effect size. The significant level was set at 0.05. Results: In the MIDW, neck pain was significantly higher, and left cervical flexion was significantly decreased compared with the GW. There was no significant difference in lower back pain between the MIDW and GW. However, both lumbar flexion and extension, as well as lateral flexion, were significantly reduced in the MIDW compared with the GW. Conclusion: This study reveals that MIDW working in the automobile manufacturing industry have a greater risk of neck pain, limitation in left cervical flexion, and overall restriction in the ROM of the lower back compared with GW.

Preliminary study of Angle sensor module for Vehicle Steering System Based on Multi-track Encoder (자동차 조향장치용 TAS module을 위한 Multi-track Encoder기반 신호처리보드의 구현)

  • Woo, Seong Tak;Han, Chun Soo;Baek, Jun Byung;Lee, Sang-hoon;Jung, Min Woo;Choo, Sung Joong;Park, Jae Roul;Yoo, Jong-Ho;Jung, Sanghun;Kim, Ju Young
    • Journal of Sensor Science and Technology
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    • v.26 no.6
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    • pp.432-437
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    • 2017
  • As 4.0 industry has been developed, research on a self-driving car technology and related parts of an automobile has been highly investigated recently. Particularly, a TAS(Torque Angle Sensor) module on steering wheel system has been considered as a key technology because of its precise angle, torque detection and high speed signal processing. The environmental assessment is generally required on the TAS module to examine high resolution of angle/torque detection. In the case of existing TAS module, angle detection errors has been occurred by back-lash on main and sub gear in addition to complicated structure caused by gears. In this paper, a structure of the TAS module, which minimizes the numbers of components and angle detection errors on the module compared with the existing TAS module, for vehicle steering system based on a Multi-track Encoder has been proposed. Also, angle detection signal processing board, and key technology of the TAS module were fabricated and evaluated. As a result of the experiments, we confirmed an excellent performance of the fabricated signal processing board for angle detection and an applicability of the fabricated angle detection board on the TAS module of vehicles by the environmental assessment an automobile standard.

Welding Technology of Magnesium Alloy for Automobile Industry (자동차 산업에서 마그네슘 합금의 용접기술)

  • 윤병현;장웅성
    • Journal of Welding and Joining
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    • v.22 no.3
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    • pp.23-31
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    • 2004
  • 최근 선진국을 중심으로 세계 각국은 각종 환경 규제를 강화하여 환경오염을 억제하려는 노력을 기울이고 있다. 특히 세계적으로 5억대가 넘는 자동차에서 배출되는 배기가스는 환경오염과 지구 온난화의 주요 원인으로 지적되고 있다.(중략)

A Study on the Regional Development Effects by the Location of a New Automobile Assembly Plant -In the Case of Hyundai Motors Co. in Yulchon Industrial Complex, Chonnam Province- (자동차공업의 입지와 지역발전에 관한 연구 -전남 율촌 산업단지를 사례로-)

  • Lee, Jeong-Rock;Lee, Sang-Seok
    • Journal of the Korean association of regional geographers
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    • v.4 no.1
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    • pp.77-98
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    • 1998
  • In general, spatial imbalance in regional growth is a major cause of social and political conflicts within a state. In Korea, this inequality has functioned as a threat to the state's integration. With the economic development policies by regional industrialization over the past three decades, most of the industrial activities have been concentrated in Seoul and Pusan metropolitan areas, which are surrounded by Kyonggi, Kyongnam provinces respectively. Compared to these areas, Chonnam and Chonbuk provinces have lagged behind in economic development. Therefore, in order to increase the regional economic development of the southwestern region in Korea, the central government has been enforcing several policies aimed at regional industrialization since the 1980s. The purpose of this study focuses on the regional economic impacts of a newly established industrial estate-Yulchon industrial complex- which would act as a regional growth center in the Kwangyang bay area. The Kwangyang bay area consists of several industrial estates such as Kwangyang Iron and Steel Co. and its related industrial complex, Chuam rural industrial estate, Yeochon industrial complex, and so on. In addition, the Kwangyang container port was constructed in 1997. The Kwangyang bay area has been changing to a new industrial district in the southwestern part of Korea as a result of industrialization policies which were activated by central government. The Yulchon industrial complex, which is expected to be completed in 2001, would draw many manufacturing plants. For example, Hyundai Motors Co. has a plan to locate a new automobile assembly plant within the estate. As the plan has high probability to be realized, it will be interesting to study the effects a new automobile assembly plant and its related production linkages have on the region. This study is to estimate the expected structural characteristics of automobile production activities in Yulchon. The following details will be discussed: the regional economic impacts of a new automobile industry in Yulchon industrial complex, the production linkage formation via hierarchical subcontracting systems, the alternative strategies to promote the growth of regional economies, and the scheme to improve the auto-parts and components industry in Kwangju and Chonnam provinces by establishing auto-mobile production function. Automoblie industry generally gives great influences on not only regional economies but the related industries, for example, the firms producing automotive components. If a new plant producing automobiles and its related firms producing components are to be established in Yulchon, they will affect on the regional development directions and change the regional characteristics of industrial structure. In order to increase the spread effects of the new industry in Yulchon industrial complex, almost all of the automobile production processes must be organized concurrently within a limited range of distance. There is an imperative that the co-operation system should be structured between the assembly firm and many firms producing its components. In addition to those, it would be required such as the effective division of labors between the firms, much more capabilities in the technical innovations, and the reconstruction of interrelationship between the labor unions and the firms' managers.

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Development of the Two-piece Aluminum Wheels Using the Friction Stir Welding (마찰교반용접법을 이용한 2피스 알루미늄 휠의 개발)

  • Choi, In-Young;Kang, Young-June;Kim, Andrey;Ahn, Kyu-Saeng
    • Journal of the Korean Society of Manufacturing Technology Engineers
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    • v.22 no.4
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    • pp.700-707
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    • 2013
  • Owing to high oil prices and environmental issues, the automobile industry has conducted considerable research and made large investments to manufacture a high-efficiency automobiles. In the case of automobile wheels in which a lightweight material is used to increase the fuel efficiency a mold is used to increase the production efficiency; however, the use of the molding method for this purpose is very expensive. Therefore an automobile wheel consists of two parts. In this study a two-piece automobile wheel is manufactured by the friction stir welding(FSW) of Al6061-T6 to reduce the manufacturing cost and process complexity. The FSW welding tool geometry and rotational speed, and the feed rate are key factors that significantly affect the weld strength. Therefore tensile tests were conducted on specimens produced using various welding conditions, and the optimal FSW welding conditions were applied to manufacture aluminum wheels. To ensure reliability, prototype aluminum wheels were manufactured and their mechanical reliability and safety were evaluated using a durability test, fatigue durability test, and impact test. Through this study, aluminum wheel production was made possible using the FSW method.

Computer Simulation of Deformation in a Rubber Boots for Translation and Rotation of CV-joint for Automobile

  • Lee, Min-A;Lyu, Min-Young
    • Elastomers and Composites
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    • v.55 no.2
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    • pp.88-94
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    • 2020
  • Automobile industry, along with the automobile steering system, is rapidly changing and developing. The constant velocity joint transmits power to the wheels of vehicles without changing their angular velocity based on the movement of the steering wheel. Moreover, it controls their movement to act as a buffer. In order to prevent the excessive increase in temperature caused by the movement of vehicles, boots are attached to the constant velocity joint and lubricant is injected into the boots. The boots maintain the lubrication and protect the constant velocity joint from sand, water, and so on. As the wheels of the vehicle rotate, the boots are acted upon by forces such as bending, compression, and tension. Additionally, self-contact occurs to boots. Therefore, their durability deteriorates over time. To prevent this problem, polychloroprene rubber was initially used however, it was replaced by thermoplastic polyester elastomers due to their excellent fatigue durability. In this study, the structural analysis of boots was conducted. The results showed the deformation patterns of the boots based on the translation and rotation of the constant velocity joint. Moreover, it confirmed the location that was vulnerable to deformation. This study can be used to potentially design high-quality constant velocity joint boots.

Development of Upcycling Fashion Design Using Automotive Waste (자동차 폐기물을 활용한 업사이클링 패션 디자인 개발)

  • GAO LI;Kim, Chahyun
    • Journal of Fashion Business
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    • v.28 no.3
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    • pp.34-47
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    • 2024
  • This study aimed to enhance public awareness of the growing issue of automobile waste and promote environmental protection by developing visually appealing and innovative clothing designs. By leveraging successful examples of upcycled fashion design and products that could recycle automobile waste, this study proposed four garment designs utilizing various materials such as seat belts, leather seat fabrics, and airbags from automobile waste. Ultimately, two of these garments were produced as physical prototypes. Findings of this study are summarized as follows. First, the development of upcycled fashion products utilizing automotive waste opened new possibilities for sustainable fashion design. This approach demonstrates potential to meet demands of modem consumers who prioritize environmental values and social responsibility. Second, the study established an important foundation for understanding market acceptance and consumer perception of upcycled fashion products using automotive waste. As consumer awareness of environmental protection grows and demand for sustainable products increases, these upcycled products are likely to gain significant traction in the fashion industry.

Trend of Carbon Fiber-reinforced Composites for Lightweight Vehicles (자동차 경량화를 위한 탄소섬유강화 복합재료의 동향)

  • Kim, Ki-Seok;Bae, Kyong-Min;Oh, Sang-Yeob;Seo, Min-Kang;Kang, Chang-Gi;Park, Soo-Jin
    • Elastomers and Composites
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    • v.47 no.1
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    • pp.65-74
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    • 2012
  • Recently, the need of developing eco-friendly materials has been required with restriction strengthening on environment and energy saving by the resource depletion worldwide. These trends are not an exception in transport industry including automobile. In addition, these materials have to fulfill not only the high quality and cheap price but also the high-performance which meet the needs of costumer and society. Among the various materials, carbon fiber-reinforced composite which is actively studying for lightweight of the automobile is one of the most suitable candidates. Indeed, the carbon fiber-reinforced composites are used as the essential materials to substitute body and other parts in automobile and the demand is increasing largely. Carbon fiber-applied automobile has improved brake, steering, durability and high fuel efficiency, leading to the energy conservation and minimizing carbon dioxide emissions. This paper focuses on the necessity of carbon fiber-reinforced composites for lightweight of automobile and its technical trends.