NASA-CR-1285-1969 Potential structural materials and design concepts for light aircraft《轻型飞机的潜在结构材料和设计理念》.pdf
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1、 Provided by IHSNot for Resale-,-,-NASA CR-1285 POTENTIAL STRUCTURAL MATERIALS AND DESIGN CONCEPTS FOR LIGHT AIRCRAFT Distribution of this report is provided in the interest of information exchange. Responsibility for the contents resides in the author or organization that prepared it. Prepared unde
2、r Contract No. NAS 2-4423 by SAN DIEGO AIRCRAFT ENGINEERING, INC. San Diego, Calif. for NASA Headquarters Mission Analysis Division Moffett Field, Calif. NATIONAL AERONAUTICS AND SPACE ADMINISTRATION For sale by the Clearinghouse for Federal Scientific and Technical Information Springfield, Virginia
3、 22151 - CFSTI price $3.00 Provided by IHSNot for Resale-,-,-Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHSPREFACE a NASA ai rcraf usef u I San Diego Aircraft Engineering, Inc., was responsible for conducting study of potential structural materials and
4、design concepts for light t, and to summarize the results of the study in a report which would be in guiding future structural designs of this class of aircraft. These tasks were performed under contract NAS 2-4423 for NASAs Mission Analysis Division located at Ames Research Center, Moffett Field, C
5、alifornia. Ladislao Pazmany, Chief Design Engineer of San Diego Aircraft En- gineering, managed the study program. He reporf-ed directly to Mr. G.D. Mc- Vicker, Chief Engineer and Executive Vice President of San Diego Aircraft Engineering, and to Mr. Frank Fink, President of the company. Assisting h
6、im were the following staff members: T.L. Gal many objectives of Aerodynamics: Design powered helicopters cost between $60.00 and $75.00 per pound empty; and (3) that the cost per pound empty of helicopters is apparently - not a function of empty weight. (1) that reciprocating engine powered CONSUME
7、R PRICE PER POUND (EMPTY) VS EMPTY WEIGHT $/kg $/lb (1967 General Aviation He1 icopters) 80 70 60 50 40 30 1100 1300 1500 1700 1900 Ib 20 900 EMPTY WEIGHT 400 500 600 700 800 kg Figure 5 The cost per pound of empty weight for most of the light airplanes in U.S. production is plotted against empty we
8、ight in Figure 6; it varies from about $8.00/lb to about $27,00/lb. The cost per pound of empty weight of most of the light airplanes in U.S. production is plotted against maximum speed in Figure 7. The cost varies from about $6.00/lb at 115 mph. to $27.00/Ib at 300 mph, The cost per pound of airfra
9、me planes in U.S. production is plotted aga The cost per pound of airframe planes in U.S. production is plotted aga varies from $3.90/lb to $9.25/1b. for some representative light air- nst empty weight in Figure 8. for some representative light air- nst maximum speed in Figure 9. It 8 Provided by IH
10、SNot for Resale-,-,-CONSUMER PRICE PER POUND OF EMPTY WEIGHT VS EMPTY WEIGHT 60 50 40 30 20 10 0- - - - - - T 60 50 40 30 20 10 0- 1 - - - - - - 1 0 5000 lb I I 1000 2000 kg Figure 6 $/lb. LL 0 z 3 0 a_ rT W n a W 0 fL a - CONSUMER PRICE PER POUND OF EMPTY WEIGHTVS MAXIMUM SPEED 100 200 MAXIMUM SPEE
11、D IO0 200 300 400 km/ h r Figure 7 1. 2. 4. 3. 5. 6. BEECH BARON C55 7. 8. 9. 10. 11. 12. BEECH MUSKETEER CUSTOM Ill 13. EEEM MISKETEER SWRT Ill 14. BEECH WSKETEER SUPER Ill 15. BEECH TRAVEL AIR 095A 16. 17. 18. 19. 20. 21. 22. 23. 24. 25. 26. 27. 28. 29. 30. BELLANCA 260C EELLANCA VIKING 300 CESSNA
12、 401 CESSNA 150 CESSNA 172 CESSNA 182 CESSNA 210 CESSNA SUPER SKYMASTER CESSNA 3lOL CESSNA SKYNIGHT CHAWlON 7ECA CHAWION 7WA-A HELIO COURIER HELIO SUPER COURIER LAKE LA-4 31. 32. 33. 34. 35. 36. 31. 38. 39. 40. 41. 42. 43. 44. 45. MAULE M-4JETASEN MAULE M-4RCCKET MX)NEY MASTER WNEY MARK 21 NOONEY SU
13、PER 21 WNEY EXECLITIVE 21 MX)NEY MUSTANG NAVlMI MOOEL H BOLKOW JUNIOR PIPER PA 18 PIPER CHEROKEE 140 PIPER CHEROKEE 150 PIPER CHEROKEE 160 PIPER CHEROKEE CIS0 PIPER CHEROKEE 2358 46. PIPER CHEROKEE SIX 47. PIPER CHEROKEE 300-SIX 48. PIPER COMANCHE E 49. PIPER TWIN COMANCHE B 50. PIPER AZTEC C 51. PI
14、PER NAVAJO 52. TURBO TWIN COMANCHE 8 53. PIPER TUREW AZTEC C 54. PlPER TUURBO NAVAJO 55. RILEY TUURBO ROCKET 56. WACO TS250 57. WACO S220 58. WREN 460 I mph 9 Provided by IHSNot for Resale-,-,-$/ kg 20.00 18.00 16.00 34.00 12.00 10.00 8.00 6.00 4.00 2.00 0 $/ kg 20.00 18.00 16.00 14.00 12.00 10.00 8
15、.00 6.00 4.00 2.00 0 UNIT AIRFRAME COST VS WEIGHT EMPTY $/lb. (Light-single engine airplanes - 1967) 10. 9. 8. 7. 6. 5. 4. 3. 2. 1. Ib I I I 0 500 1000 kg Figure 8 $/lb. 10.00 9.00 8.00 7.00 6.00 5.00 4.00 3.00 2.00 1 .oo 0 UNIT AIRFRAME COST VS AIR SPEED (Light-single engine airplanes - 1967) 1 I I
16、 I 0 100 200 300 km/hr. Figure 9 10 Provided by IHSNot for Resale-,-,-Cost by Component Based on manufacturers suggested retail prices and on catalog whole- sale prices, the airframe (structure) cost of the various main components of a typical light airplane has been determined. Figure 10 illustrate
17、s the cost Der pound of structure for: the wing, tail group, fuselage, and landing gear. TYPICAL COST OF STRUCTURE (in dollars per pound) (-3 From Suggested Retail Price (Parts Lists) From Estimations Based on Wholesale Cata I ogs Te I econs Figure 10 11 Provided by IHSNot for Resale-,-,-Cost Breakd
18、own The cost of a typical four-place airplane Capproximately $17,000) is broken down both by dollar and by precentage of the total cost in Table I. The airframe fabrication cost represents approximately 36% of the consumer price. Dividing the airframe fabrication cost by its AMPR (*I, or airframe we
19、ight, yields a unit airframe cost of $6.75 per pound. TABLE I COST BREAKDOWN OF A TYPICAL LIGHT AIRPLANE Percent Tota I Do I I ars I tern Direct Labor - 630 hours ( $2.70/hr) Overhead (130% of $1,700.00) Material - Airframe Equ i pment ($2420 Eng i ne; $375 Prop. ; $13G5 Other 1 Su b-Tota I Direct,
20、Sales, and General Administrative Expenses (32% of $8,775.00) Sub-Total (Manufacturing Cost) Factory Prof it ( 10% of $1 1,585.00) Total Dealers Cost Distributor and Dealer Mark-up (33% of $12,744.00) Tota I Cost -to Customer AIRFRAME FABRICATION COST ANALYS (80% of $2,210 f $2,8 Ai rf rame Labor (8
21、0% of Di rect Labor) Airframe share of Overhead Raw Materia I s Airframe Fabrication Cost * AMPR Weight is assumed to be 910 pounds. Unit Airframe Cost: $ 6,140.00 = $ 6.75/1b 910 Ibs $ 1,700.00 10.0 2,2 10.00 13.0 765.00 4.5 4,100.00 24.2 $ 8,775.00 51.7 2,8 10.00 16.5 $ 11,585.00 68.2 1,159.00 6.8
22、 $ 12,744.00 75.0 4,256 .OO 25.0 $ 17,000.00 100.0 S $ 1,360.00 4,015.00 765.00 $ 6,140.00 * AMPR weight includes Empty Weight less the following items: wheels, brakes and tires, engine (incl. carb. air box), starter, propel ler and spinner, instruments, navigation equipment, battery and generator,
23、electronics, cabin heat and vent. Figure 11 illustrates this same breakdown. It should be noted that, although airframe labor and raw material represent only 12.5% of the consumer price of typical four-place, single-engine airplanes, this has a much farther- reaching effect on the total price of the
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