Aerospace technicians build, install, test, and maintain what aerospace engineers design. They help engineers prepare technical drawings, diagrams, blueprints, and scale models of missiles, rockets, airplanes, and helicopters. They make calculations and computations and run computer simulations involving aerodynamics and structural design. They build and install components, equipment, and systems. They calibrate instruments. They evaluate flight tests.

\n

Degree programs in aerospace technology prepare students for this important role in the aerospace industry. The curriculum spans engineering mathematics, aircraft systems, propulsion and control systems, aerodynamics, aircraft structures and manufacturing, mechanical engineering, and management.

", "display_order": 1, "created_at": "2019-08-29T17:56:38.199849-07:00", "updated_at": "2021-11-18T13:55:44.313694-08:00"}, {"degree_id": 1191, "page": 1, "title": "Program Options", "summary_markdown": "**Note**: It is important to select an aerospace technology education program that prepares students for certification by SpaceTEC, which is accredited by the International Certification Accreditation Council (ICAC). *SpaceTEC Certified Aerospace Technician* is the only FAA-recognized, national, performance-based credential tailored for the US aerospace and aviation industries. \r\n\r\n**Associate Degree in Aerospace Technology \u2013 Two Year Duration** \r\nAssociate degree programs in aerospace technology provide students with foundational knowledge and skills in the discipline and prepare them for entry-level and some mid-level roles in the field. The associate curriculum also includes some general education classes, in subject areas like English, math, general science, and the social sciences. \r\n\r\n**Bachelor\u2019s Degree in Aerospace Technology \u2013 Four Year Duration** \r\nBachelor\u2019s degree programs offer the most comprehensive curriculum in aerospace technology. In addition to technology, design, and manufacturing subjects, they typically introduce management topics such as operations and financial tools. Bachelor\u2019s programs are also more likely to incorporate industrial placements or internships, through partnerships with engineering firms and organizations.", "content_markdown": "The courses and topics listed below are integral to *both* associate and bachelor\u2019s programs in aerospace technology. Because of their longer duration, bachelor\u2019s programs are able to explore these topics in greater depth. \r\n\r\n- Aerospace Technology and Industry \u2013 basic design of aircraft for function and performance \r\n- Mechanical Experimental Engineering \u2013 experimental methods, force systems, stress and strain, engineering beams, Newton\u2019s Laws of Motion \r\n- Engineering Statistics \u2013 basic tools of statistical analysis used in control of manufacturing processes, basics of probability theory \r\n- Introduction to Design for Technologists \u2013 the process off engineering design, computer-aided design (CAD) for creating and documenting design solutions \r\n- Introduction to Manufacturing for Technologists \u2013 production processes used in product manufacturing including turning, milling, welding, fabrication, and assembly \r\n- Materials and Electrical Technology \u2013 concepts of electrical units and relationships, AC and DC circuit theory, digital systems, electro-mechanical machines, engineering materials and their properties and structure, materials sustainability \r\n- Computing for Business and Technology \u2013 use of spreadsheets and databases to solve engineering and business problems, types of networking hardware, data security \r\n- Introduction to Practical Safety for Engineers \u2013 basic health and safety concepts, assessing risk \r\n- Mathematics for Engineering \u2013 key mathematical techniques for engineering \r\n- Aerospace Design Test and Certification \u2013 design of aircraft sub-assemblies; aircraft aerodynamics, stability, control, airworthiness, certification, and flight testing \r\n- Computer-Aided Design \u2013 use of computer-aided engineering (CAE) software for conceptual design, design calculations, detail design, and detail drawings \r\n- Computer-Aided Manufacturing \u2013 introduction to computer-aided manufacturing (CAM), application of a CAD/CAM system to machining processes \r\n- Product and Project Management \u2013 product development from definition to design and manufacture \r\n- Principles of Aircraft Systems \u2013 propulsion, electrical, pneumatic, and hydraulic systems of modern aircraft; safety management, flight critical systems, effects of human factors on safety of flight systems, regulatory bodies and maintenance safety \r\n- Thermo-fluid Experimental Engineering \u2013 the fundamental concepts of fluid and thermo-fluid mechanics \r\n- Simulation and Analysis Techniques \u2013 use of computer fluid dynamics (CFD) and finite element analysis (FEA) software in the analysis of engineering designs, case studies to simulate real world problems \r\n- Reliability Engineering \u2013 ensuring dependability in the lifecycle management of a component, product, plant, or process \r\n- Instrumentation and Control Systems \u2013 sensors, instrumentation systems, analog and digital systems \r\n- Avionics Technology \u2013 technologies that enable aircraft avionics to function in a modern aircraft \r\n- Aerospace Performance and Manufacture \u2013 performance: atmospheric properties and air speed definitions, flight performance, range calculations, climb rate prediction, accelerated flight; manufacture: metallic forming, joining and surface finishing processes, use of fiber-reinforced polymer aircraft structures \r\n- Aerospace Vehicle Design \u2013 conceptual design of an aircraft (student group laboratory experience)", "content_html": "

The courses and topics listed below are integral to both associate and bachelor\u2019s programs in aerospace technology. Because of their longer duration, bachelor\u2019s programs are able to explore these topics in greater depth.

\n", "display_order": 2, "created_at": "2019-08-29T17:56:38.202002-07:00", "updated_at": "2022-01-27T13:01:07.031560-08:00"}, {"degree_id": 1191, "page": 1, "title": "Degrees Similar to Aerospace Technology", "summary_markdown": "**[Aerospace Engineering](/degrees/aerospace-engineering-degree/)** \r\nAerospace engineering degree programs teach the analytical, computational, and engineering and design skills needed to work in the aerospace industry. Students learn how to apply this knowledge to the manufacturing, testing, and monitoring of civil or commercial aircraft, military aircraft, missiles, rockets, spacecraft, lunar vehicles, and space stations. \r\n\r\n**[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. \r\n\r\nThe typical curriculum covers both the airframe (structural) and power plant (engine) components of aircraft. Students learn about aircraft metal structures, fuel systems, electronics, hydraulics and propulsion systems, landing gear systems, and maintenance and inspection regulations. \r\n\r\n**[Drafting Technology](/degrees/drafting-technology-degree/)** \r\nThis degree field teaches students to use computer programs to create specialized drawings that are used in engineering, construction, and manufacturing. \r\n\r\n**[Electrical Engineering](/degrees/electrical-engineering-degree/)** \r\nStudents of electrical engineering learn how to use physics, electronics, and electromagnetism to design devices that are powered by or produce electricity. Most degree programs in the field start with foundational classes in calculus, physics, and chemistry.", "content_markdown": "**Engineering Technology** \r\nEngineering technology programs teach the engineering skills required to assist engineers in their work. Common classes are computers for engineering technology, structural systems, strength of materials, and technical drawing. \r\n\r\nIn addition to aerospace engineering technology, subfields include automotive engineering technology, civil engineering technology, construction engineering technology, electronics engineering technology, mechanical engineering technology, and industrial engineering technology. \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, automotive, medical, and energy 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_html": "

Engineering Technology
\nEngineering technology programs teach the engineering skills required to assist engineers in their work. Common classes are computers for engineering technology, structural systems, strength of materials, and technical drawing.

\n

In addition to aerospace engineering technology, subfields include automotive engineering technology, civil engineering technology, construction engineering technology, electronics engineering technology, mechanical engineering technology, and industrial engineering technology.

\n

Mechanical Engineering
\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, automotive, medical, and energy sectors.

\n

In addition to coursework in engineering and design, degree programs in the field include classes in mathematics, life sciences, and physical sciences.

\n

Robotics Technology
\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.

", "display_order": 3, "created_at": "2019-08-29T17:56:38.204500-07:00", "updated_at": "2022-01-27T13:05:34.005528-08:00"}, {"degree_id": 1191, "page": 1, "title": "Skills You’ll Learn", "summary_markdown": "Aerospace technology graduates come away from their studies with this valuable set of transferable skills: \r\n\r\n- Ability to adapt to working with new systems \r\n- Ability to read and understand technical information, follow guidelines, and conduct technical inspections \r\n- Ability to read gauges, dials, and other instruments \r\n- Ability to work both independently and as part of a team \r\n- Ability to work to deadlines \r\n- Attention to detail \r\n- Critical / analytical thinking and problem solving \r\n- Focus / concentration \r\n- Hand/eye coordination and manual dexterity \r\n- Math / measurement skills \r\n- Mechanical skills \r\n- Physical strength \r\n- Safety awareness \r\n- Spatial perception \r\n- Verbal and written communication \r\n- Visualization skills", "content_markdown": "", "content_html": "", "display_order": 4, "created_at": "2019-08-29T17:56:38.206831-07:00", "updated_at": "2022-01-27T12:55:37.859397-08:00"}, {"degree_id": 1191, "page": 1, "title": "What Can You Do with an Aerospace Technology Degree?", "summary_markdown": "Aerospace technicians are most frequently employed in these sectors: \r\n\r\n- Aerospace products and parts manufacturing \r\n- Engineering services \r\n- Computer and electronic product manufacturing \r\n- Scientific research and development services \r\n- Testing laboratories \r\n- Scheduled air transportation \r\n\r\nDepending on their employer and the specific responsibilities of their position, aerospace technicians may hold various titles. Here are some examples: \r\n\r\n- Aerospace Technician \r\n- Aerospace Technologist \r\n- Engineering Technician \r\n- Avionics and Electrical Technician \r\n- Aerospace Laboratory Technician", "content_markdown": "", "content_html": "", "display_order": 5, "created_at": "2019-08-29T17:56:38.209159-07:00", "updated_at": "2022-01-27T12:55:37.883272-08:00"}], "degree_specializations": []}">

什么是航空航天技术学位?

航空航天技术人员建造、安装、测试和维护航空航天工程师设计的东西。他们帮助工程师准备技术图纸、图表、蓝图和导弹、火箭、飞机和直升机的比例模型。他们进行计算和计算,并运行涉及空气动力学和结构设计的计算机模拟。他们建造和安装组件、设备和系统。他们校准仪器。他们评估飞行测试。

航空航天技术学位课程为学生在航空航天工业中扮演这一重要角色做好准备。课程涵盖工程数学、飞机系统、推进和控制系统、空气动力学、飞机结构和制造、机械工程和管理。

程序选项

请注意:重要的是要选择一个航天技术教育计划,使学生准备由国际认证认可委员会(ICAC)认可的SpaceTEC认证。SpaceTEC认证航空航天技术员是美国联邦航空局为美国航空航天和航空工业量身定制的唯一认可的、全国性的、基于业绩的证书。

航空航天技术副学士学位-两年制
航空航天技术的副学士学位课程为学生提供该学科的基本知识和技能,并为他们在该领域的入门级和一些中级职位做好准备。副课程还包括一些通识教育课程,如英语、数学、通识科学和社会科学等学科领域。

航空航天技术学士学位-四年学制
学士学位课程提供最全面的航空航天技术课程。除了技术、设计和制造科目外,它们通常还介绍管理科目,如运营和财务工具。通过与工程公司和组织的合作,学士学位课程也更有可能包含行业实习或实习。

下面列出的课程和主题是不可或缺的这两个航空航天技术方面的副学士和学士课程。由于他们的时间较长,学士学位课程能够更深入地探索这些主题。

  • 航空航天技术和工业。飞机功能和性能的基本设计
  • 机械实验工程-实验方法,力系统,应力和应变,工程梁,牛顿运动定律
  • 工程统计学:用于控制制造过程的统计分析的基本工具,概率论的基础
  • 技术人员设计入门-工程设计的过程,计算机辅助设计(CAD)创建和记录设计解决方案
  • 技术人员制造入门-产品制造中使用的生产过程,包括车削、铣削、焊接、制造和装配
  • 材料与电气技术-电气单元和关系的概念,交流和直流电路理论,数字系统,机电机械,工程材料及其性能和结构,材料可持续性
  • 商业和技术计算-使用电子表格和数据库解决工程和商业问题,网络硬件的类型,数据安全
  • 工程师实用安全入门-基本健康和安全概念,评估风险
  • 工程数学-工程的关键数学技术
  • 航空航天设计试验和认证。飞机部件的设计。飞机空气动力学、稳定性、控制、适航、认证和飞行试验
  • 计算机辅助设计——使用计算机辅助工程(CAE)软件进行概念设计、设计计算、详细设计和详细图纸
  • 计算机辅助制造-介绍计算机辅助制造(CAM), CAD/CAM系统在机械加工过程中的应用
  • 产品和项目管理-产品开发从定义到设计和制造
  • 飞机系统原理-现代飞机的推进、电气、气动和液压系统;安全管理,飞行关键系统,人为因素对飞行系统安全的影响,监管机构和维修安全
  • 热流体实验工程——流体和热流体力学的基本概念
  • 模拟和分析技术-使用计算机流体动力学(CFD)和有限元分析(FEA)软件在工程设计分析,案例研究模拟现实世界的问题
  • 可靠性工程——确保组件、产品、工厂或过程的生命周期管理的可靠性
  • 仪表和控制系统-传感器,仪表系统,模拟和数字系统
  • 航空电子技术-使航空电子设备在现代飞机上发挥作用的技术
  • 航空航天性能和制造。性能:大气特性和空气速度定义,飞行性能,航程计算,爬升率预测,加速飞行;制造:金属成型,连接和表面整理工艺,使用纤维增强聚合物飞机结构
  • 航空航天飞行器设计-飞机概念设计(学生小组实验室经验)

类似航空航天技术的学位

航空航天工程
航空航天工程学位课程教授在航空航天行业工作所需的分析、计算、工程和设计技能。学生学习如何将这些知识应用到民用或商用飞机、军用飞机、导弹、火箭、航天器、月球飞行器和空间站的制造、测试和监控中。

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。

起草技术
该专业教授学生使用计算机程序创建工程、建筑和制造中使用的专业图纸。

电气工程
电气工程专业的学生学习如何使用物理学、电子学和电磁学来设计由电力驱动或产生电力的设备。该领域的大多数学位课程都是从微积分、物理和化学等基础课程开始的。

工程技术
工程技术课程教授协助工程师工作所需的工程技能。常用课程有工程技术计算机、结构系统计算机、材料强度计算机和技术制图计算机。

除航空航天工程技术外,还有汽车工程技术、土木工程技术、建筑工程技术、电子工程技术、机械工程技术、工业工程技术等子领域。

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、汽车、医疗和能源部门。

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

航空航天技术的毕业生从他们的学习中获得了这些宝贵的可转移技能:

  • 能够适应新系统的工作
  • 能够阅读和理解技术信息,遵循指导方针,并进行技术检查
  • 能够阅读仪表,刻度盘和其他仪器
  • 具有独立工作和团队合作的能力
  • 能够在截止日期前完成工作
  • 对细节的关注
  • 批判性/分析性思维和问题解决能力
  • 关注/浓度
  • 手/眼协调能力和手灵巧性
  • 数学/测量技能
  • 机械技能
  • 体力
  • 安全意识
  • 空间知觉
  • 口头和书面交流
  • 可视化技术

航空航天技术学位能做什么?

航空航天技术人员最常被雇用在以下部门:

  • 航空航天产品及零部件制造
  • 工程服务
  • 计算机及电子产品制造
  • 科研开发服务
  • 测试实验室
  • 安排航空运输

根据他们的雇主和职位的具体职责,航空航天技术人员可能拥有各种头衔。下面是一些例子:

  • 航空航天技术
  • 航空航天技术
  • 工程技术员
  • 航空电子和电气技术员
  • 航空航天实验室技术员

学费

看看哪些学校最贵,哪些学校最便宜。

读到学费