Here is a summary of the core mechanical engineering courses:

\n

Engineering Graphics
\nThis course focuses on the methods of engineering graphics. Using both freehand sketching and computer aided drafting (CAD) technology, students learn how to present ideas in graphic form. Topics include dimensioning; views; sections; production standards; and tolerance, which in engineering is a range of how far a true measurement can range from what is intended.

\n

Engineering Mathematics
\nThis is generally an upper-level course. It covers aspects of linear algebra used in mechanical engineering. Students may use computers to solve equations.

\n

Electrical and Mechanical Systems
\nThis course looks at electronics and basic electrical circuits. Subject areas covered are semiconductor physics, bias circuits and active loads, frequency response, the physics of noise, and data converters. Students learn how to design analog integrated circuits using semiconductor transistors.

\n

Thermodynamics
\nThe fundamentals of thermodynamic properties, temperature, and systems is the focus of this course. Topics include statistical thermodynamics, internal energy, absolute temperature, entropy, enthalpy, and energy equations for flow.

", "display_order": 1, "created_at": "2019-08-29T17:56:37.561617-07:00", "updated_at": "2022-04-21T12:28:08.675624-07:00"}, {"degree_id": 92, "page": 1, "title": "Program Options", "summary_markdown": "**Bachelor\u2019s Degree in Mechanical Engineering - Four Year Duration** \r\nFor a large number of mechanical engineering jobs, a four-year bachelor\u2019s degree is a sufficient level of education. Some example courses are:\r\n\r\n- Introduction to Engineering \u2013 how engineering principles are used to solve real-world problems\r\n- Product Manufacturing and Performance \u2013 applying engineering principles to product design and assembly\r\n- Metals Selection \u2013 analyzing, comparing, and selecting metals for various products\r\n- Heat Transfer \u2013 the fundamentals of heat conduction, convection, and radiation transfer; understanding heat transfer equations and using programming languages to analyze heat transfer\r\n\r\n**Master\u2019s Degree in Mechanical Engineering - Two Year Duration** \r\nA two-year master\u2019s degree program in mechanical engineering is generally aimed at students who want to specialize in a specific area of the field. Some specializations are robotics, biomedical, automotive, and aerospace. Example courses at this level are:\r\n\r\n- Product Definition \u2013 how to design and develop products, with knowledge of what users value, how the product supply chain works, and the product life cycle\r\n- Simulation Modeling and Experimentation \u2013 using graphic simulation computer programs; conducting simulation experiments; how simulation modeling can be applied to real-world projects\r\n- Patent law \u2013 patent laws and the relationship between engineering and patents; designing products that will not infringe on existing or pending patents; protecting patents throughout the design process; determining if a design can be patented\r\n- Engineering Project Management \u2013 strategies for managing engineering projects; budgets; risk assessment; supervising a project team", "content_markdown": "**Doctoral Degree in Mechanical Engineering - Three to Five Year Duration** \r\nThe doctoral level degree in this field is focused on research and theory. Coursework covers advanced research and advanced mathematics. This degree can take between four and five years to complete. Graduates come away with a very in-depth understanding of classical mechanical concepts, as well as of the latest developments and techniques in the field. They tend to become college professors or industry researchers.", "content_html": "

Doctoral Degree in Mechanical Engineering - Three to Five Year Duration
\nThe doctoral level degree in this field is focused on research and theory. Coursework covers advanced research and advanced mathematics. This degree can take between four and five years to complete. Graduates come away with a very in-depth understanding of classical mechanical concepts, as well as of the latest developments and techniques in the field. They tend to become college professors or industry researchers.

", "display_order": 2, "created_at": "2019-08-29T17:56:37.564004-07:00", "updated_at": "2021-12-09T13:50:18.298997-08:00"}, {"degree_id": 92, "page": 1, "title": "Degrees Similar to Mechanical Engineering", "summary_markdown": "**[Aerospace Engineering](/degrees/aerospace-engineering-degree/)** \r\nThis field is dedicated to the design and development of aircraft, spacecraft, and missiles. Degree programs include the study of aerodynamics, orbits, launch, flight controls, and engines.\r\n\r\n**[Engineering Physics](/degrees/engineering-physics-degree/)** \r\nStudents of engineering physics focus on learning how to use physics to solve practical problems. Whereas mechanical engineering is concerned with design, applied physics is concerned with using physics to solve an engineering problem. For this reason, it is sometimes referred to as the bridge between physics and engineering.\r\n\r\n**[Biomedical Engineering](/degrees/biomedical-engineering-degree/)** \r\nSimply stated, biomedical engineering uses engineering to solve health and medical problems. For example, a biomedical engineer might look for chemical signals in the body that warn of a particular disease or condition.\r\n\r\n**[Civil Engineering](/degrees/civil-engineering-degree/)** \r\nGraduates of civil engineering degree programs design large construction projects. In their work they are concerned with such things as how much weight a structure can support and the environmental issues presented by construction.", "content_markdown": "**[Electrical Engineering](/degrees/electrical-engineering-degree/)** \r\nElectrical engineering degree programs teach students how electricity works, how it is generated, and how it is used.\r\n\r\n**[Industrial Engineering](/degrees/industrial-engineering-degree/)** \r\nIndustrial engineering majors learn how to improve the way that industries and organizations, such as hospitals and factories, operate. They draw on their knowledge in math, science, business, and psychology to consider factors like materials, equipment, and people.\r\n\r\n**[Robotics Technology](/degrees/robotics-technology-degree/)** \r\nAs its name implies, this field uses engineering principles to create and test robots to be used in various sectors. Coursework in the degree program covers robotics and robot design, testing, and repair.", "content_html": "

Electrical Engineering
\nElectrical engineering degree programs teach students how electricity works, how it is generated, and how it is used.

\n

Industrial Engineering
\nIndustrial engineering majors learn how to improve the way that industries and organizations, such as hospitals and factories, operate. They draw on their knowledge in math, science, business, and psychology to consider factors like materials, equipment, and people.

\n

Robotics Technology
\nAs its name implies, this field uses engineering principles to create and test robots to be used in various sectors. Coursework in the degree program covers robotics and robot design, testing, and repair.

", "display_order": 3, "created_at": "2019-08-29T17:56:37.566413-07:00", "updated_at": "2021-12-09T13:52:09.600092-08:00"}, {"degree_id": 92, "page": 1, "title": "Skills You’ll Learn", "summary_markdown": "Earning a degree in this field and becoming a mechanical engineer can lay the foundation for work in other sectors because of the wide range of transferrable skills that results from studying mechanical engineering:\r\n\r\n- Technical design skills\r\n- Capacity to work under pressure\r\n- Critical and analytical thinking / problem-solving\r\n- Creativity\r\n- Verbal and written communication\r\n- Awareness of business and industry sectors\r\n- Teamwork\r\n- Leadership\r\n- Research\r\n- Math\r\n- Hand drawing and Computer-Aided Design (CAD)\r\n- Strategic planning and project management\r\n- Understanding of diagrams, and flow charts\r\n- Data analysis / statistics", "content_markdown": "", "content_html": "", "display_order": 4, "created_at": "2019-08-29T17:56:37.568838-07:00", "updated_at": "2021-12-09T13:55:53.092666-08:00"}, {"degree_id": 92, "page": 1, "title": "What Can You Do with a Mechanical Engineering Degree?", "summary_markdown": "**Aerospace** \r\nIn the aerospace industry, mechanical engineers design planes, missiles, rockets, and satellites. Their focus may be on achieving greater fuel efficiency and cutting emissions or improving aerodynamics and flight mechanics.\r\n\r\n**Automotive** \r\nAutomotive mechanical engineers design, develop, and test vehicles. They conduct lab tests for safety and performance and in the case of recalled vehicles they troubleshoot design or manufacturing flaws. In addition, they look to develop and advance technologies like solar panels and hydrogen cells.\r\n\r\n**Biomedical** \r\nMechanical engineers who work in the biomedical field design devices, such as artificial internal organs, replacements for body parts, and machines for medical diagnosis, and robotic surgical assistants.\r\n\r\n**Construction** \r\nMechanical engineers are very much involved in construction projects of every kind. They design heating, cooling, ventilation, gas main, elevator, and escalator systems.\r\n\r\n**Manufacturing** \r\nIn the manufacturing sector, mechanical engineers design the machines and ultra-tech equipment that produce the goods that the world relies on.", "content_markdown": "**Power / Energy** \r\nMechanical engineers deliver the energy that powers the world, by designing nuclear power plants, boilers, grid connections, solar storage cells, and hydroelectric batteries.\r\n\r\n**Process** \r\n\u2018Process\u2019 mechanical engineers improve how we do things. They evaluate mechanical processes and come up with ways to make them safer and more efficient. They apply their skills in many different industries, including water supply, oil and gas, food manufacturing, and pharmaceuticals.\r\n\r\n**Railway** \r\nMechanical engineering is at the heart of railway operations. Engineers in this field are responsible for tracks, signals, tunnels, and control systems. Their work may include developing faster propulsion methods and coming up with solutions to handle growing passenger numbers.", "content_html": "

Power / Energy
\nMechanical engineers deliver the energy that powers the world, by designing nuclear power plants, boilers, grid connections, solar storage cells, and hydroelectric batteries.

\n

Process
\n\u2018Process\u2019 mechanical engineers improve how we do things. They evaluate mechanical processes and come up with ways to make them safer and more efficient. They apply their skills in many different industries, including water supply, oil and gas, food manufacturing, and pharmaceuticals.

\n

Railway
\nMechanical engineering is at the heart of railway operations. Engineers in this field are responsible for tracks, signals, tunnels, and control systems. Their work may include developing faster propulsion methods and coming up with solutions to handle growing passenger numbers.

", "display_order": 5, "created_at": "2019-08-29T17:56:37.571069-07:00", "updated_at": "2021-12-09T13:56:57.934909-08:00"}, {"degree_id": 92, "page": 1, "title": "Case Study", "summary_markdown": "It may come as a surprise to many readers, but the reach of mechanical engineers even extends to the entertainment industry, where they design elaborate moving Broadway stages and exhilarating roller coasters.", "content_markdown": "", "content_html": "

It may come as a surprise to many readers, but the reach of mechanical engineers even extends to the entertainment industry, where they design elaborate moving Broadway stages and exhilarating roller coasters.

", "display_order": 6, "created_at": "2019-08-29T17:56:37.573394-07:00", "updated_at": "2021-11-18T13:55:37.992596-08:00"}], "degree_specializations": []}">

机械工程学位是什么?

有抱负的机械工程师学习如何研究、设计、开发和测试机械和热设备,包括工具、传感器、发动机,和机器。这些设备为许多行业,包括航空航天、医疗、能源和制造业。

除了在工程和设计课程,学位在机械工程类包含在数学、自然科学和物理科学。

这是一个总结的核心机械工程课程:

工程图学
本课程的重点是工程图学的方法。使用徒手草图和计算机辅助绘图(CAD)技术,学生们学习如何呈现图形形式的观点。主题包括尺寸;视图;部分;生产标准;工程和宽容,这是一系列真正的测量范围可以从多远的目的是什么。

工程数学
这通常是一个高级课程。它涵盖了线性代数中使用机械工程的各个方面。学生可以使用电脑来解决方程。

电气和机械系统
本课程着眼于电子和基本电路。主题领域涉及半导体物理,偏压电路和有源负载,频率响应、噪声的物理,和数据转换器。学生学习如何使用半导体设计模拟集成电路晶体管。

热力学
基本的热力学性质、温度、和系统是本课程的重点。主题包括统计热力学,内部能量,绝对温度,熵,焓,为流能量方程。

程序选项

机械工程学士学位,四年时间
大量的机械工程的工作,四年学士学位是一个足够的教育水平。课程是一些例子:

  • 介绍工程,工程原则是用来解决实际问题的能力
  • 产品制造和性能——产品设计和组装应用工程原则
  • 金属的选择,分析、比较和选择各种产品的金属
  • 传热-热传导的基本原理,对流,辐射传输;了解传热方程,使用编程语言来分析传热

机械工程硕士学位,两年的时间
两年机械工程硕士学位课程通常是针对学生想专攻一个特定区域的字段。有些专门化机器人、生物医学、汽车和航空航天。课程在这个级别是例子:

  • 产品定义——如何设计和开发产品,与知识的用户价值,产品供应链是如何工作的,以及产品生命周期
  • 仿真建模和实验——使用图形仿真计算机程序;进行仿真实验;仿真模型可以应用于实际项目如何
  • 专利法,专利法律、工程与专利之间的关系;设计的产品不会侵犯现有或正在申请的专利;保护专利的整个设计过程;确定一个设计可以申请专利
  • 工程项目管理——战略管理工程项目;预算;风险评估;监督项目团队

机械工程博士学位,三到五年时间
该领域的博士学位水平是专注于研究和理论。课程涵盖了高级研究和高等数学。这个学位可以需要四到五年才能完成。毕业生有很深入的了解古典力学的概念,以及该领域的最新进展和技术。他们倾向于成为大学教授或行业人员。

类似于机械工程学位

航空航天工程
这个字段是用于飞机的设计和开发,航天器和导弹。学位课程包括空气动力学的研究,轨道,发射,飞行控制和发动机。

工程物理
工程物理学生关注学习如何用物理学来解决实际问题。而机械工程涉及设计、应用物理学涉及使用物理学来解决工程问题。出于这个原因,它有时被称为物理和工程之间的桥梁。

生物医学工程
简单地说,生物医学工程使用工程来解决医疗问题。例如,生物医学工程师可能会寻找身体的化学信号,警告说,一个特定的疾病或状况。

土木工程
土木工程学位的毕业生设计大型建设项目。在工作中他们关心诸如结构究竟能产生多大的支持和建设带来的环境问题。

电气工程
电气工程学位课程教导学生电是如何工作的,它是如何产生的,以及如何使用它。

工业工程
工业工程专业的学生学习如何提高产业和组织的方式,如医院和工厂运作。他们利用他们的知识在数学,科学,商业,和心理学的考虑因素,如材料、设备、和人。

机器人技术
顾名思义,这个领域使用工程原则来创建和测试机器人各领域使用。课程的学位课程包括机器人和机器人设计、测试和维修。

技能You’学习

这一领域的学位和成为一个机械工程师可以为其他行业工作奠定基础,因为广泛的可转换的技能,学习机械工程的结果:

  • 技术设计技能
  • 在压力下工作的能力
  • 关键和分析思考和解决问题
  • 创造力
  • 口头和书面沟通
  • 对企业和行业的认识
  • 团队合作
  • 领导
  • 研究
  • 数学
  • 手绘和电脑辅助设计(CAD)
  • 战略规划和项目管理
  • 理解图和流程图
  • 数据分析/统计数据

与机械工程学位你能做什么?

航空航天
在航空航天工业,机械工程师设计飞机、导弹、火箭和卫星。他们的重点可能实现更高的燃油效率和减排或改善空气动力学和飞行力学。

汽车
汽车机械工程师设计、开发和测试车辆。他们进行实验室测试的安全性能和召回的汽车他们排除设计或制造缺陷。此外,他们寻求发展,推进技术和太阳能电池板和氢电池。

生物医学
机械工程师工作在生物医学领域设计的设备,比如人工内部器官,替代身体部位,为医学诊断和机器,机器人手术助手。

建设
机械工程师非常参与各种建设项目。他们设计供暖、制冷、通风、气体主要,电梯和自动扶梯系统。

制造业
在制造业,机械工程师设计机器和高技术设备生产货物,世界依赖。

电力/能源
机械工程师提供的能量世界,通过设计核电站,锅炉、电网连接,太阳能储存电池,水力发电的电池。

过程
“过程”的机械工程师提高我们做事的方式。评估机械流程和想出办法使他们更安全、更有效率。他们运用他们的技能在许多不同的行业,包括供水、石油和天然气,食品生产和药品。

铁路
机械工程是铁路运营的核心。在这一领域的工程师负责跟踪,信号,隧道,和控制系统。他们的工作可能包括开发更快的推进方法和提出的解决方案来处理越来越多的乘客数量。

案例研究

很多读者可能会感到惊讶,但机械的工程师甚至延伸到娱乐业,在那里他们设计复杂的移动百老汇阶段和令人兴奋的过山车。

学费

看哪个学校是最和最便宜的。

读到学费