Automotive engineering technologists assist automotive engineers. They help determine the practicality of engineers\u2019 proposed product designs by planning and conducting durability and efficiency tests on experimental components, devices, equipment, systems, and vehicles of the future. They record data, make computations, plot graphs, analyze results, write reports, and often make recommendations for improvements to meet safety, quality, and performance requirements.

\n

The automotive engineering technology curriculum prepares students to take on this vital role in the growing automotive research, design, and development industry.

", "display_order": 1, "created_at": "2019-08-29T17:56:38.145023-07:00", "updated_at": "2021-11-18T13:55:38.643853-08:00"}, {"degree_id": 248, "page": 1, "title": "Program Options", "summary_markdown": "**It is important to select a program that is accredited by the Accreditation Board for Engineering and Technology (ABET).** \r\n\r\n**Associate Degree in Automotive Engineering Technology \u2013 Two Year Duration** \r\nThe associate degree is the most common credential held by automotive engineering technologists. \r\n\r\n**Bachelor\u2019s Degree in Automotive Engineering Technology \u2013 Four Year Duration** \r\nVery few schools in the US offer a distinct Bachelor\u2019s Degree in Automotive Engineering or Automotive Engineering Technology. At this level, programs are typically offered as a specialty of mechanical engineering / mechanical engineering technology. The bachelor\u2019s curriculum encompasses more advanced topics and is designed for students planning to go on to graduate school after earning their undergrad degree. \r\n\r\nBoth associate and bachelor\u2019s programs explore the design, manufacturing, and operation of modern vehicles through coursework in automotive engineering technology, general engineering technology, and mathematics and science. Throughout their studies, students learn how to use engineering fundamentals and state-of-the-art software to identify and solve problems related to the machine components and assemblies used in the automotive industry.", "content_markdown": "Here are some sample undergraduate courses: \r\n\r\n- Design of Machine Elements \u2013 stress and strain, load analysis, failure prediction, impact, fatigue, lubrication and sliding bearings, rolling bearings, shafts and associated parts, gears, fasteners, brakes and clutches, disassembly and reassembly of vehicle systems \r\n- Computer-Aided Design (CAD) \u2013 two-dimensional drafting: drawing environment and commands, drafting settings, drawing editing, plotting output, dimensioning, orthographic projections (a means of representing three-dimensional objects in two dimensions) and views, sectional and auxiliary views; three-dimensional solid modeling: parts, assemblies, 2D drawings generation \r\n- Structure and Properties of Materials \u2013 physical properties including tension forces and impact of materials, fracture, testing, and applications and selection of ceramics, metals and alloys, polymers, and advanced materials used in automobiles and vehicles; metal casting for automotive applications \r\n- Engineering Statistics \u2013 an introductory statistics course covering the following topics with engineering applications: organization and description of data, probability and distributions, hypothesis testing, and data analysis \r\n- Thermodynamics and Heat Transfer \u2013 thermodynamic principles; heat engines; gas turbine cycles; air conditioning; conductive, convective, and radiative heat transfer; heat transfer coefficients; heat exchangers; vehicle thermal management components and systems \r\n- Engineering Economics \u2013 costing methods of engineering designs and processes, minimum attractive rate of return, return sensitivities, time value of money, internal rates of return, payback period, amortization of equipment, and capital cost allowance structures \r\n- Automotive Engineering Technology \u2013 spark ignition engines, diesel engines, ignition systems, emission control devices, computers and on-board diagnostics, clutches, manual and automatic transmissions and transaxles, driveline, steering systems, suspension systems, brakes, and tires and wheels \r\n- Control Theory \u2013 analysis and design of a closed loop control system (a set of mechanical or electronic devices that automatically regulates a process variable to a desired state or set point without human intervention); topics include control system characteristics and performance, stability analysis, system types and performance improvement, digital control systems, compensation, filtering, and motion control system analysis and tuning \r\n- Fluid Mechanics \u2013 understanding the behavior of fluid under various forces and at different atmospheric conditions; fluids perform three crucial operations in automobiles: generation of power, lubrication, and cooling of the engine; the purpose of fluid mechanics in automobiles is to make the vehicle more environmentally friendly \r\n- Conceptual Design of Electric and Hybrid Vehicles \u2013 groups of students research, discuss, and implement conceptual design aspects of electric or hybrid electric vehicles; the major aspects of vehicle design are analyzed from the vehicle specification to the environmental assessment and sustainability \r\n- Internal Combustion Engines \u2013 internal combustion engine operating characteristics, engine maps, engine cycles, engine configuration and design, air and fuel induction, fluid motion within combustion chamber, heat transfer in engines, friction and lubrication \r\n- Vehicle Dynamics \u2013 acceleration performance, braking performance, aerodynamics and rolling resistance, ride, tires, steady-state cornering, suspensions, steering systems, rollover \r\n\r\nOther subjects addressed in the curriculum include: \r\n\r\n- Manufacturing Processes and Systems \r\n- Mechanical Vibrations \r\n- Quality Control and Assurance Methods \r\n- Electrical and Electronics Control Systems \r\n- Dynamic Modeling and Simulation \r\n- Robotics and Computer Integrated Manufacturing \r\n- Engine Performance, Diagnostics, and Emissions \r\n- Machine Health and Remote Monitoring \r\n- Technology Ethics and Sustainability", "content_html": "

Here are some sample undergraduate courses:

\n\n

Other subjects addressed in the curriculum include:

\n", "display_order": 2, "created_at": "2019-08-29T17:56:38.147919-07:00", "updated_at": "2021-12-14T13:07:09.401925-08:00"}, {"degree_id": 248, "page": 1, "title": "Degrees Similar to Automotive Engineering Technology", "summary_markdown": "**[Aircraft Maintenance Technology](/degrees/aircraft-maintenance-technology-degree/)** \r\nAircraft mechanics and technicians keep airplanes in safe operating condition. Degree programs in aircraft maintenance technology teach students how to inspect, maintain, and repair aircraft. The typical curriculum covers both the airframe (structural) and power plant (engine) components of aircraft. \r\n\r\nStudents learn about aircraft metal structures, fuel systems, electronics, hydraulics and propulsion systems, landing gear systems, and maintenance and inspection regulations. \r\n\r\n**[Automotive Mechanics](/degrees/automotive-mechanics-degree/)** \r\nAutomotive mechanics training programs prepare students to work in the servicing and maintenance of cars. Coursework covers preventative maintenance, brake systems, suspension systems, steering systems, wheel alignment, drive lines and axles, and electrical fundamentals. \r\n\r\n**[Industrial Design](/degrees/industrial-design-degree/)** \r\nIndustrial designers design the way that we live our lives, by creating, innovating, and styling the common mass-produced items that we buy, use, and consume. They research, build, and test prototypes to maximize the functionality and desirability of products, from cars to food packaging to consumer electronics. \r\n\r\nStudents of industrial design study the history of the field, design conceptualization, drawing, dimensional and computer-aided design, materials and processes, and model making. \r\n\r\n**[Mechanical Engineering](/degrees/mechanical-engineering-degree/)** \r\nStudents of mechanical engineering learn how to research, design, develop, and test mechanical and thermal devices, including tools, sensors, engines, and machines. These devices serve many industries, including the aerospace, medical, energy, and manufacturing sectors. \r\n\r\nIn addition to coursework in engineering and design, degree programs in the field include classes in mathematics, life sciences, and physical sciences. \r\n\r\n**[Robotics Technology](/degrees/robotics-technology-degree/)** \r\nDegree programs in robotics technology prepare students to work with engineers who design robots and robotic systems than can perform duties that humans are either unable or prefer not to perform.", "content_markdown": "", "content_html": "", "display_order": 3, "created_at": "2019-08-29T17:56:38.150141-07:00", "updated_at": "2021-12-14T13:10:54.803045-08:00"}, {"degree_id": 248, "page": 1, "title": "Skills You’ll Learn", "summary_markdown": "- Ability to work independently or as part of a team \r\n- Ability to work well under time and budget pressures \r\n- Active learning as technologies evolve \r\n- Adaptability \r\n- Attention to detail \r\n- Communication / Relationship-building \r\n- Complex problem solving / Design thinking \r\n- Computers and electronics / Technical savvy \r\n- Creativity / Imagination / Vision \r\n- Dependability \r\n- Drawing / Computer-aided design and drafting (CADD) \r\n- Initiative \r\n- Judgement and decision making \r\n- Mathematical skills \r\n- Mechanical skills \r\n- Operation monitoring \r\n- Planning and organization \r\n- Presentation \r\n- Project management \r\n- Quality control analysis \r\n- Spatial reasoning / Visualization \r\n- Systems analysis and evaluation \r\n- Troubleshooting", "content_markdown": "", "content_html": "", "display_order": 4, "created_at": "2019-08-29T17:56:38.152628-07:00", "updated_at": "2021-11-18T13:55:38.647659-08:00"}, {"degree_id": 248, "page": 1, "title": "What Can You Do with an Automotive Engineering Technology Degree?", "summary_markdown": "Students who graduate with an automotive engineering technology degree most often work in labs and on test courses, helping take new automobiles, trucks, agricultural equipment, construction equipment, and other vehicles from conception and design to the manufacturing and production stage. \r\n\r\nCommon job titles include: \r\n\r\n- Automotive Engineering Technician \r\n- Service Engineer \r\n- Performance Testing Engineer \r\n- Engineering Technician \r\n- Factory Technical Representative \r\n- Validation Engineer / Technician \r\n- Dynamometer Engineer / Technician \r\n- Research and Development Technician \r\n- Product Engineer \r\n- Quality Control Engineer", "content_markdown": "", "content_html": "

Students who graduate with an automotive engineering technology degree most often work in labs and on test courses, helping take new automobiles, trucks, agricultural equipment, construction equipment, and other vehicles from conception and design to the manufacturing and production stage.

\n

Common job titles include:

\n", "display_order": 5, "created_at": "2019-08-29T17:56:38.154785-07:00", "updated_at": "2021-11-18T13:55:38.648741-08:00"}], "degree_specializations": []}">

什么是汽车工程技术学位?

汽车工程技术人员协助汽车工程师。他们通过对未来的实验部件、装置、设备、系统和车辆进行耐久性和效率测试,帮助确定工程师提出的产品设计的实用性。他们记录数据、进行计算、绘制图表、分析结果、撰写报告,并经常提出改进建议,以满足安全、质量和性能需求。

汽车工程技术课程为学生在不断发展的汽车研究、设计和开发行业中扮演重要角色做好准备。

程序选项

选择由工程与技术认证委员会(ABET)认证的课程是很重要的。

汽车工程技术副学士学位-两年学制
副学士学位是汽车工程技术人员最常见的资格证书。

汽车工程技术学士学位-四年学制
在美国,很少有学校提供汽车工程或汽车工程技术专业的独立学士学位。在这个层次上,通常提供机械工程/机械工程技术的专业。学士课程包含更高级的主题,是为计划在获得本科学位后继续攻读研究生的学生设计的。

副学士和学士课程都通过汽车工程技术、通用工程技术、数学和科学的课程来探索现代汽车的设计、制造和操作。在整个学习过程中,学生学习如何使用工程基础知识和最先进的软件来识别和解决与汽车工业中使用的机器部件和组件相关的问题。

以下是一些本科课程的例子:

  • 机械元件的设计——应力和应变,负载分析,故障预测,冲击,疲劳,润滑和滑动轴承,滚动轴承,轴和相关部件,齿轮,紧固件,刹车和离合器,车辆系统的拆卸和重组
  • 计算机辅助设计(CAD) -二维绘图:绘图环境和命令、绘图设置、绘图编辑、绘图输出、尺寸标注、正投影(在二维中表示三维物体的一种方法)和视图、剖面和辅助视图;三维实体建模:零件,组件,二维图纸生成
  • 材料的结构和性能-物理性能,包括材料的拉力和冲击,断裂,测试,陶瓷,金属和合金,聚合物,以及汽车和车辆用先进材料的应用和选择;汽车用金属铸造
  • 工程统计学-一门介绍统计学的课程,涵盖了以下工程应用的主题:数据的组织和描述,概率和分布,假设检验和数据分析
  • 热力学和热传导。热力学原理;热引擎;燃气轮机循环;空调;导热、对流和辐射传热;传热系数;热交换器;车辆热管理组件和系统
  • 工程经济学-工程设计和过程的成本计算方法,最低吸引力回报率,回报敏感性,货币的时间价值,内部回报率,回收期,设备的摊销,和资本成本备用结构
  • 汽车工程技术-火花点火发动机,柴油发动机,点火系统,排放控制装置,计算机和车载诊断,离合器,手动和自动变速器和变速箱,传动系统,转向系统,悬挂系统,刹车,轮胎和车轮
  • 控制理论——闭环控制系统的分析和设计(一组机械或电子设备,在不需要人为干预的情况下自动调节过程变量到所需状态或设定值);主题包括控制系统特性和性能,稳定性分析,系统类型和性能改进,数字控制系统,补偿,滤波,运动控制系统分析和调优
  • 流体力学——理解流体在各种力和不同大气条件下的行为;液体在汽车中起着三大重要作用:产生动力、润滑和冷却发动机;汽车流体力学的目的是使车辆更环保
  • 电动汽车和混合动力汽车的概念设计——学生小组研究、讨论和实施电动汽车或混合动力汽车的概念设计;从车辆规格到环境评估和可持续性,分析了车辆设计的主要方面
  • 内燃机——内燃机工作特性、发动机图、发动机循环、发动机配置和设计、空气和燃料感应、燃烧室内流体运动、发动机传热、摩擦和润滑
  • 车辆动力学-加速性能,制动性能,空气动力学和滚动阻力,平顺性,轮胎,稳态转弯,悬挂,转向系统,侧翻

课程中涉及的其他科目包括:

  • 制造过程和系统
  • 机械振动
  • 质量控制和保证方法
  • 电气和电子控制系统“,
  • 动态建模与仿真
  • 机器人与计算机集成制造“,
  • 发动机性能,诊断和排放
  • 机器运行状况和远程监视
  • 技术伦理与可持续发展

汽车工程技术相关学位

飞机维修技术
飞机机械师和技术人员保持飞机的安全运行状态。飞机维修技术学位课程教授学生如何检查、维护和修理飞机。典型的课程包括飞机的机身(结构)和动力装置(发动机)部件。

学生学习飞机金属结构、燃料系统、电子、液压和推进系统、起落架系统以及维护和检查法规。

汽车力学
汽车机械师培训计划使学生准备从事汽车的维修和保养工作。课程内容包括预防性维护,制动系统,悬挂系统,转向系统,车轮定位,驱动线和轴,以及电气基础知识。

工业设计
工业设计师通过创造、创新和设计我们购买、使用和消费的常见大规模生产的物品来设计我们的生活方式。他们研究、制造和测试原型,以最大化产品的功能和可取性,从汽车到食品包装再到消费电子产品。

工业设计专业的学生学习该领域的历史、设计概念化、绘图、尺寸和计算机辅助设计、材料和工艺以及模型制作。

机械工程
机械工程专业的学生学习如何研究、设计、开发和测试机械和热器件,包括工具、传感器、发动机和机器。这些设备服务于许多行业,包括航空航天、医疗、能源和制造部门。

除了工程和设计课程外,该领域的学位课程还包括数学、生命科学和物理科学。

机器人技术
机器人技术学位课程让学生能够与设计机器人和机器人系统的工程师一起工作,而这些工程师能够执行人类无法或不愿执行的任务。

技能You’学习

  • 能够独立工作或作为团队的一员
  • 能够在时间和预算压力下很好地工作
  • 随着技术的发展主动学习
  • 适应性
  • 对细节的关注
  • 通信/关系
  • 解决复杂问题/设计思维
  • 计算机和电子/精通技术
  • 创造力/想象力/远见
  • 可靠性
  • 制图/计算机辅助设计与制图(CADD)
  • 倡议
  • 判断和决策
  • 数学技能
  • 机械技能
  • 运行监控
  • 规划和组织
  • 演讲
  • 项目管理
  • 质量控制分析
  • 空间推理/可视化
  • 系统分析与评价
  • 故障排除

汽车工程技术学位能做什么?

汽车工程技术专业毕业的学生通常在实验室和测试课程中工作,帮助新汽车、卡车、农业设备、建筑设备和其他车辆从概念和设计到制造和生产阶段。

常见的职位头衔包括:

  • 汽车工程技术人员
  • 服务工程师
  • 性能测试工程师
  • 工程技术员
  • 工厂技术代表
  • 验证工程师/技术员
  • 测功机工程师/技术员
  • 研发技术员
  • 产品工程师
  • 质量控制工程师

学费

看看哪些学校最贵,哪些学校最便宜。

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