Stresses at Screw Threads in Just Over 10 Minutes!

Stripped Screw Threads,
Stress at Critical Location of Screw Threads.
0:00 Screw Failure
1:16 Threads Free Body Diagram
2:09 Axial Stress
2:31 Bending Stress
4:10 Direct Shear Stress
5:26 Torsional Stress
6:11 First Engaged Thread Load
7:15 Von Mises Stress
8:23 Thread Stress Example
Previous Video: Power Screws - Torque to Force Relationships in Just Over 10 Minutes
• Power Screws - Torque ...
Example 1: • Screws Stress - Motor,...
Example 2: • Screws Stress - Power ...
Example 3: • Screws Stress - Self-L...
Next Video: Bolt (Fasteners) and Member Stiffness in Just Over 10 Minutes
• Bolt (Fasteners) and M...
_____________________________________________
Other "Mechanical Engineering Design 1" Links:
1. Axial Loading Review • Axial Loading Review f...
2. Torsion Review • Torsion Review for Mec...
3. Pure Bending and Deflection Review • Bending Review for Mec...
4. Pure Bending and Deflection Combined Example • Deflection of Beams Re...
5. Shear and First Moment About Neutral Axis Review • Transverse Shear Revie...
6. Mohr's Circle Review • COMPLETE Mohr's Circle...
7. Brittle Failure Theories - Fracture Criteria • Brittle Failure Theori...
8. Ductile Failure Theories - Yield Criteria • Ductile Failure Theori...
9. Design Factor and Uncertainty vs. Factor of Safety • DESIGN FACTOR and Unce...
10. Tolerance Stack Ups and Tolerance Loops • Uncertainty for Design...
11. Castigliano's Theorem • Castigliano's Theorem ...
12. Fracture Toughness • FRACTURE TOUGHNESS and...
13. Crack Propagation • CRACK PROPAGATION and ...
14. Fatigue SN Diagrams • Fatigue (Strength-Numb...
15. Marin Factors and Corrected Endurance Limit • Marin Factors for ENDU...
16. Fatigue Stress Concentration and Notch Sensitivity Factors • Fatigue STRESS CONCENT...
17. Fatigue Failure Criteria • Fatigue FAILURE CRITER...
18. Shaft Design and Iterative Process • Shaft Design for INFIN...
19. Power Screws - Torque to Force Relationship • Power Screws - Torque ...
20. Screw Thread Stress • Stresses at Screw Thre...
21. Fastener and Member Stiffness • Bolt (Fasteners) and M...
22. Bolt Tension • BOLT TENSION and Tensi...
23. Proof Strength and Factors of Safety • PROOF STRENGTH - Facto...
24. Spring Stress and Spring Constant • Mechanical Springs - S...
25. Shearing Yield Strength and Presetting • Springs - PRESETTING a...
26. Springs Fatigue - Zimmerli Data • Springs Fatigue and ZI...
27. Spring Design Restrictions • Mechanical SPRING DESI...
28. Extension Springs • EXTENSION SPRING Desig...
29. Gear Relations and Nomenclature • GEARS BASICS - Nomencl...
30. Gear Trains and Planetary Gears - Mechanical Advantage • Gear Trains and PLANET...
31. Spur Gear Forces and Force Components • Gear Forces and Power ...
32. Helical and Bevel Gear Forces • Gear Forces of HELICAL...
33. Worm Gear Forces • WORM GEARS - Forces an...
34. Bending Stress at the Teeth - Lewis Form Factor • LEWIS BENDING STRESS a...
35. Pitting - Surface Compressive Stress • Gear PITTING - Surface...
36. Bearing Radial Loads • BEARINGS BASICS and Be...
37. Bearing Reliability • Bearings RELIABILITY a...
38. Bearing Axial Loads and Equivalent Combined Loads • Bearings - COMBINED Ra...

Пікірлер: 33

  • @jesroe5842
    @jesroe58426 күн бұрын

    this video is amazing, you are out here doing savior's work

  • @jakubamin6006
    @jakubamin60062 жыл бұрын

    You are currently saving me and my CAD coursework ty and god bless

  • @karloornieta1807
    @karloornieta18073 жыл бұрын

    Your illustrations are great!

  • @glenntitmuss9147
    @glenntitmuss91472 жыл бұрын

    Great explanation. Just what I needed. Thanks

  • @trip_t2122
    @trip_t21223 жыл бұрын

    Excellent explanation!

  • @LessBoringLectures

    @LessBoringLectures

    3 жыл бұрын

    Thanks!

  • @kurtlin4745
    @kurtlin47452 жыл бұрын

    I barely leave any comment in any video, but you are awesome

  • @hepcatdsm
    @hepcatdsm2 жыл бұрын

    Great video and I really like the stressed areas representations! My question for you: For von Mises stress calculation, why are you considering 4 stress components while Shigley's is only considering 3; or why Shigley's not considering the thread pure shear stress tauZX in their root stress analysis? Thank you

  • @durannaidoo3770
    @durannaidoo37702 жыл бұрын

    This video is amazing, Thank you. Are the formulas applicable for ACME threads as well?

  • @wren4077
    @wren40772 жыл бұрын

    I love you :')

  • @TheSunshineRequiem
    @TheSunshineRequiem3 ай бұрын

    Great video! However, the 10 min video really covers entire semester of classes... kind wish there is an extended version for ppl who is rusty with this topic, i would watch a 40 min video on this for sure.

  • @itziksh3272
    @itziksh32723 жыл бұрын

    Thanks!!! How will I can know how much engagement I have in triple starts?

  • @alperensozer5096
    @alperensozer50962 жыл бұрын

    Great video! Will you share the notes?

  • @mohammadesmaeilzadeh8240
    @mohammadesmaeilzadeh82402 жыл бұрын

    Could you, please, check again the calculations of the shear stresses at almost the end of the video (tau yz and tau zx) or the given value for the torque (T)? Thanks for the video.

  • @vilivont4436
    @vilivont44363 жыл бұрын

    Just love your explanations, wish Shigleys or any other book gave such detailed explanation. Does this apply to metric threads too?

  • @LessBoringLectures

    @LessBoringLectures

    3 жыл бұрын

    Yup! The only difference between metric and english is the nomenclature: for example, M2 × 0.4 mm (metric) means 2 mm nominal diameter with a 0.4 mm pitch. A 3/16"-56 (english) means 3/16-in. nominal diameter and 56 threads per inch.

  • @vilivont4436

    @vilivont4436

    3 жыл бұрын

    @@LessBoringLectures thanks for answering, hope yt algorithm recommends you to much more people, you deserve far more subscribers.

  • @4evrjustintime
    @4evrjustintime11 ай бұрын

    I am guessing that the formulas also apply to internal threads (subbing in minimal thread spec values for worst case)?

  • @christopherstovall3957
    @christopherstovall39575 ай бұрын

    Can this be applied to threads of different geometries, such as V-shaped threads?

  • @theadel8591
    @theadel85912 жыл бұрын

    the textbook (Shigley's 10th ed.) sets the shear stress in xz plane to zero, why ?

  • @fadillahanugrahsaputra_20-96
    @fadillahanugrahsaputra_20-967 күн бұрын

    what the book u used to reference that formula?

  • @user-bz7gg6dw9o
    @user-bz7gg6dw9o3 жыл бұрын

    9:42 Transverse shear stress will equal to zero when the bending stress is maximum. So how did you combine these two stresses ?

  • @LessBoringLectures

    @LessBoringLectures

    3 жыл бұрын

    You are right: but no transverse shear was considered here. Only direct shear.

  • @user-bz7gg6dw9o
    @user-bz7gg6dw9o3 жыл бұрын

    Does torsion shear stress and axial stress affecting the hole power screw ? or only the free region ?

  • @LessBoringLectures

    @LessBoringLectures

    3 жыл бұрын

    They are found in the region between the external load and the engaged threads.

  • @josedavidcastilloblanco2437
    @josedavidcastilloblanco24373 жыл бұрын

    Damm, why I didn't see this explanation before???

  • @trip_t2122
    @trip_t21223 жыл бұрын

    Hello Sir, could you help me understand why the expressions at 7:14 are only valid when the number of engaged threads are six or more.

  • @LessBoringLectures

    @LessBoringLectures

    3 жыл бұрын

    When 6 threads are engaged, the first engaged thread takes roughly 38% of the load. If there are fewer threads, this number would be higher. For example, if there's only 1 engaged thread, the number would be 100% of the load.

  • @trip_t2122

    @trip_t2122

    3 жыл бұрын

    @@LessBoringLectures Thanks alot

  • @mlulekipraisegodxaba5057
    @mlulekipraisegodxaba50573 жыл бұрын

    Sir let us say you want to calculate the maximum force the threads can withstand but you are neither given a torque nor any force, only the material properties with which the bolt is made of are available to you and the thread type with its dimensions, How can you go about calculating it?

  • @LessBoringLectures

    @LessBoringLectures

    3 жыл бұрын

    With the yield strength of the material of the screw, you can find the maximum allowable von Mises stress at the threads (Sy = σ', if factor of safety is 1). With the maximum von Mises stress you can either solve for the force/torque combination (they are related, like you see in this video) analytically (very long process), or try different forces (in a MATLAB script or EXCEL spreadsheet), increasing them gradually until the von Mises stress reaches that value.

  • @amrithpurandhar9882
    @amrithpurandhar98823 жыл бұрын

    First engaged thread of screw is it nut right

  • @LessBoringLectures

    @LessBoringLectures

    3 жыл бұрын

    Yup