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치수 공차와 끼워맞춤방식 DIMENSIONAL TOLERANCES AND METHODS OF FITS

Lesson 10. Importance of dimensional tolerances Definitions Tolerancing method Type of fits Methods of fits Fits and deviations. 치수 공차와 끼워맞춤방식 DIMENSIONAL TOLERANCES AND METHODS OF FITS. IMPORTANCE OF DIMENSIONAL TOLERANCES.

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치수 공차와 끼워맞춤방식 DIMENSIONAL TOLERANCES AND METHODS OF FITS

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  1. Lesson 10 • Importance of dimensional tolerances • Definitions • Tolerancing method • Type of fits • Methods of fits • Fits and deviations 치수 공차와 끼워맞춤방식 DIMENSIONAL TOLERANCES AND METHODS OF FITS

  2. IMPORTANCE OF DIMENSIONAL TOLERANCES • The workman cannot be expected to produce the exact size of part as indicated by the dimensions on a drawing. a certain amount of variation on each dimension must be tolerated. Especially, the problem of interchangeable manufacture developed from the making of parts to a supposedly exact size to the holding of part sizes between two limits lying so closely together that any intermediate size would be acceptable.

  3. DEFINITIONS • Basic size (기준 치수): reference size • Limit of size • The maximum and minimum sizes permitted for a specific dimension. • Maximum limit of size (최대 허용 한계 치수) • Minimum limit of size (최소 허용 한계 치수)

  4. DEFINITIONS • 최대 허용 치수 A = 50.025 mm, a = 49.975 mm • 최소 허용 치수 B = 50.000 mm, b = 49.950 mm

  5. DEFINITIONS • Deviation (치수 허용차 또는 허용차) = limit of size - basic size   • Upper deviation = maximum limit of size - basic size • Lower deviation = minimum limit of size - basic size

  6. DEFINITIONS • Zero line (기준선) • 기준 치수 50.000 mm

  7. DEFINITIONS • Tolerances : Total permissible variation in its size = maximum limit of size - minimum limit of size = Upper deviation - Lower deviation • Allowance : The intentional difference in correlated dimensions of mating parts

  8. TOLERANCING METHODS (공차 기입 방법) • Limit dimensioning : Only the maximum & minimum dimensions are specified

  9. TOLERANCING METHODS • Plus and minus tolerancing : The dimension of the specified size is given first, followed by ± expression of tolerance.

  10. TOLERANCING METHODS (공차 기입 방법)

  11. TOLERANCING METHODS (공차 기입 방법)

  12. TOLERANCING METHODS (공차 기입 방법)

  13. TOLERANCING METHODS (공차 기입 방법)

  14. TYPE OF FITS (끼워 맞춤의 종류) • Clearance (틈새) & Interference (죔새) • Clearance : bore diameter > shaft diameter • Interference : bore diameter < shaft diameter • Clearance fit (헐거운 끼워 맞춤) • Transition fit (중간 끼워 맞춤) • Interference fit (억지 끼워 맞춤)

  15. TYPE OF FITS (끼워 맞춤의 종류) p. 280 표 13-6

  16. TYPE OF FITS (끼워 맞춤의 종류)

  17. TYPE OF FITS (끼워 맞춤의 종류)

  18. METHODS OF FITS (끼워 맞춤 방식) • Basic bore system (구멍기준 끼워 맞춤) • Basic size : use a minimum limit of size of the bore • H5 - H10

  19. METHODS OF FITS (끼워 맞춤 방식) • 상용하는 구멍 끼워 맞춤

  20. METHODS OF FITS (끼워 맞춤 방식) • 상용하는 구멍 끼워 맞춤

  21. METHODS OF FITS (끼워 맞춤 방식) • Basic shaft system (축 기준 끼워 맞춤) • Basic size : use a maximum limit of size of the shaft • h4 - h9

  22. METHODS OF FITS (끼워 맞춤 방식) • 상용하는 축 끼워 맞춤

  23. METHODS OF FITS (끼워 맞춤 방식) • 상용하는 축 끼워 맞춤

  24. ISO TOLERANCE (IT 기본 공차) • 0 mm - 3150 mm 의 축과 구멍에 적용 • 21등급으로 나누어 적용

  25. ISO TOLERANCE (IT 기본 공차)

  26. ISO TOLERANCE (IT 기본 공차) • IT 기본 공차 구하는 예 • 6급 공차계열의 • 구멍 ∅ 35 ∅45 : 공차 0.016 30~50에 속함 • 구멍 ∅ 200     : 공차 0.029 180~250에 속함 • 같은 6급 공차 계열이라도 작을수록 공차가 작다. • 정밀도 면에서는 같음

  27. FIT AND DEVIATION • 구멍과 축의 종류 및 기호

  28. FIT AND DEVIATION • 표시법 • 구멍  ∅ (치수) (구멍종류 기호) (등급) • 예 ∅12H7 → 위 치수 허용차 + 0.018, 아래치수 허용차 0 • 축  ∅ (치수) (구멍종류 기호) (등급) • 예 ∅100H7 → 위 치수 허용차 0, 아래치수 허용차 - 0.035 • 끼워 맞춤 표시 • 예 H8/g7

  29. FIT AND DEVIATION • 예제 ∅30f8 인 축의 위 치수 허용차 및 아래치수 허용차를 구해보라. • f는 위 치수 허용차가 기초가 되는 치수 허용차 •  표 10-5 → 위 치수 허용차 -20 • 표 10-3 → IT 기본공차 : 33 • 위 치수 허용차 - 아래치수 허용차 = IT 기본공차 • (-20) - (아래치수 허용차) =33 ∴ 아래치수 허용차 = -53 답 :

  30. FIT AND DEVIATION

  31. FIT AND DEVIATION • 구멍기준 상용 끼워 맞춤

  32. FIT AND DEVIATION • 축 기준 사용 끼워 맞춤

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