5S - A Japanese Method of Work Place Management | आपकी फैक्ट्री को चमकाने का राज़ |

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  • เผยแพร่เมื่อ 27 ธ.ค. 2024

ความคิดเห็น • 12

  • @QualityHUBIndia
    @QualityHUBIndia  หลายเดือนก่อน +1

    Visit our Portal courses.qualityhubindia.com and website qualityhubindia.com/ for online free & paid courses
    Contact at +91-8094078781 / 7073111630; Email: qhi2017@gmail.com or noiceglobal@gmail.com for Training, Certification & Business Consultancy services.

  • @pkumar3713
    @pkumar3713 24 วันที่ผ่านมา +1

    Dear sir please continue quality related videos.

    • @QualityHUBIndia
      @QualityHUBIndia  24 วันที่ผ่านมา +1

      Thanks for the suggestion, I'll definitely explore more quality-related topics in the future.

  • @ydharmendrakumar4243
    @ydharmendrakumar4243 หลายเดือนก่อน +1

    Short video with good understanding
    Very good Sir

  • @ramanujupadyay8003
    @ramanujupadyay8003 หลายเดือนก่อน +1

    Very good

  • @IBRAR007
    @IBRAR007 20 วันที่ผ่านมา +1

    Sir snap gauge nominal size 25+-0.02 ke liye go aur no go size kya hogi? Please try to respond sir?

    • @QualityHUBIndia
      @QualityHUBIndia  20 วันที่ผ่านมา +1

      For a snap gauge with a nominal size of 25 ± 0.02 mm:
      GO size = 25 + 0.02 = 25.02 mm (upper limit)
      NO-GO size = 25 - 0.02 = 24.98 mm (lower limit)
      The GO gauge ensures the part fits within the maximum limit, while the NO-GO gauge ensures it doesn't fall below the minimum limit.

    • @IBRAR007
      @IBRAR007 20 วันที่ผ่านมา

      @QualityHUBIndia Sir A lot of thanks for your valuable response 🙏.

  • @IBRAR007
    @IBRAR007 13 วันที่ผ่านมา +1

    Sir please answer a question:-
    If the size of hole equal to the size of shaft then the type of fitment will be:
    A. No fitment, B. Interference fit, C. Transition Fit, D. Clearence Fit

    • @QualityHUBIndia
      @QualityHUBIndia  12 วันที่ผ่านมา +1

      If the size of the hole is equal to the size of the shaft, the type of fitment will be:
      C. Transition Fit
      Explanation:
      Transition Fit occurs when the shaft size and hole size are such that the fit could result in either a slight clearance or a slight interference, depending on the actual dimensions after machining. This type of fit is designed to allow some flexibility in the assembly.