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Basics of Mechanical Design Engineering

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Basics of Mechanical Design Engineering

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53 enrolled
2579 views
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2 hrs
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Hindi , Gujarati
2579 views
HEXSPUR FOUNDATION
HEXSPUR FOUNDATIONMechanical Design Engineer & Trainer
  • Session recordings included
  • Certificate of completion
  • Foundational Learning
  • Access to Study Materials

Why enroll

Unlock your potential as a mechanical designer with our Basics of Mechanical Design Engineering course! Whether you're a student, professional, or aspiring engineer, this course will give you the essential knowledge and hands-on skills to create innovative, reliable mechanical systems. Learn core principles of design, materials selection, and engineering analysis, and gain experience with industry-standard CAD tools. By the end of the course, you'll be ready to tackle real-world design challenges and contribute to the creation of cutting-edge mechanical products. Start building your engineering career today—no prior experience needed!

What enrolled engineers say

12 verified reviews
  • May 3, 2026

    Kept catching myself jotting notes I’d actually reuse during reviews, not just passively watching. The tolerances stack‑up section with the shaft/bearing example stuck; walking through worst‑case math before CAD felt like a PR checklist for arch decisions, and it maps cleanly to how infra mistakes show up later in prod. I’ve got a small gripe: the fastener preload bit was quick, and I wasn’t sold on skipping fatigue beyond a slide. Still, it’s the kind of grounding that saves a couple bad nights chasing failures later, don’t doubt it.

    roberth M. Verified
  • May 3, 2026

    Quality felt consistent across the modules, which helped when bouncing between basics and applied bits. As a software engineer, I liked the bridge from legacy shop practices to modern arch thinking; the tolerances chapter walking through an H7/g6 shaft‑bearing fit stuck, since it mapped cleanly to how I reason about interfaces in prod. it's mostly clear, though I wasn't sold on the fasteners section pacing and wished there was a bit more on fatigue. Finished with design notes sketched out like a PR plan, ready to clean up a few old assumptions.

    Suneel Y. Verified
  • May 3, 2026

    Was hunting for ways to tighten our workflow and fill some mech gaps before handoff to manufacturing. The fits & tolerances chapter stuck, especially the shaft‑bushing example where they walk ISO H7/g6 and show what breaks when you guess; that clicked fast. As a BootcampGrad, I mapped it to how we think about arch and infra in prod—assumptions propagate, same as a sloppy repo or CI config. Mostly good, though I wasn't sold on the skim of fatigue; still, it’ll nudge how I frame my next PR.

    Soumen M. Verified

Is this course for you?

You should take this if

  • You work in Manufacturing & Industrial
  • You're a Mechanical Engineering / CAD & Analysis professional
  • You prefer live, instructor-led training with Q&A

You should skip if

  • You need a different specialisation outside Mechanical Engineering
  • You need fully self-paced, on-demand content

Course details

The "Basics of Mechanical Design Engineering" course provides an introduction to the fundamental principles, concepts, and techniques used in the design and development of mechanical systems and components. This course is ideal for students or professionals interested in understanding the basics of mechanical design and the tools required to create functional, reliable, and efficient products.

Throughout this course, students will explore core topics such as engineering drawing, material selection, mechanical components, design analysis, and the principles of mechanics. Emphasis will be placed on the application of design processes, from problem identification to conceptualization, prototyping, and testing.

Course suitable for

Key topics covered

Basics of Design

Design Software use in industry

Key role of design in manufacturing industry

Opportunities that await you!

Career opportunities

Certifications

PMP

Training details

This is a live course that has a scheduled start date.

Live session

Starts

Sun, Dec 15, 2024

6:00 AM UTC· your timezone

Duration

2 hours per day

Why people choose EveryEng

Industry-aligned courses, expert training, hands-on learning, recognized certifications, and job opportunities-all in a flexible and supportive environment.

What learners say about this course

Soumen Metya
Soumen Metya Student
May 3, 2026

Was hunting for ways to tighten our workflow and fill some mech gaps before handoff to manufacturing. The fits & tolerances chapter stuck, especially the shaft‑bushing example where they walk ISO H7/g6 and show what breaks when you guess; that clicked fast. As a BootcampGrad, I mapped it to how we think about arch and infra in prod—assumptions propagate, same as a sloppy repo or CI config. Mostly good, though I wasn't sold on the skim of fatigue; still, it’ll nudge how I frame my next PR.

Sufyan Zeeshan
Sufyan Zeeshan Student
May 3, 2026

No fluff on the tougher bits; the course moves straight into CMS IntelliCAD basics without theatrics. The GD&T chapter where true position is applied to a 4-hole bolt pattern stuck, especially the tolerance frame walkthrough. From a team standpoint, it helps tighten our drawing PRs and arch consistency before anything hits prod. I wasn't sold on the brief blocks/layers section—wished there was more on standards for automotive prints, but it's made me a bit sharper heading into the next review.

MOHANAPRIYA N
MOHANAPRIYA N Mechanical engineer
May 3, 2026

Our group’s been circling the same drawing standards for weeks, so this beginner course landed at the right moment. The IntelliCAD walkthrough clicked once it hit Chapter 3’s constraint example, especially the bit locking a rectangle before dimensioning; that’s close to what I’m doing in prod drawings. gd&t finally stopped feeling abstract after the true position callout with datums A|B|C, though I wasn’t sold on the quick skim of profile tolerance. It didn’t feel like a drain for the team between meetings.

Amruth Malovath
Amruth Malovath Engineer
May 3, 2026

The IntelliCAD Blocks section where you build a parametric title block stuck; seeing constraints update dims in real time clarified basic workflows. It's mostly beginner-friendly, but I wasn't sold on the GD&T Chapter 4 tolerance stack-up example—wished there was more on datum selection before feature control frames.

COMPLETED

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Questions and Answers

A: Getting the order wrong burns hours and can mask a dead coil as a logic fault, leaving the tractor locked out. Power and polarity at the actuator is the first hard gate; if the coil never energizes, nothing upstream matters. Once voltage and polarity are proven under command, you move to mechanics and calibration without risking a false PLC chase.

A: Pick the wrong mechanism and you'll spec the wrong fix, leading to pinhole leaks mid-season. Fertilizer slurry carries chlorides and stays wet; paint chips become corrosion cells that creep under the coating. That's what eats the line, not high-temp or electrochemical effects that aren't present here.

A: Underestimating heat cooks seals and thins oil until steering fades. Power is flow times pressure: 40 L/min is about 6.7e-4 m³/s; multiply by 18 MPa and you're near 12 kW. Even intermittent duty demands a cooler that can shed that load during peaks.

A: Ignoring the pressure rise can crack hoses or hammer the pump. Reduced displacement at constant load pushes pressure up, and the relief starts to sing. Recognizing that behavior lets you tune ramps or relief settings instead of blaming sensors.