Статус документа
Статус документа

ГОСТ OIML R 111-1-2009 Государственная система обеспечения единства измерений (ГСИ). Гири классов E(1), E(2), F(1), F(2), M(1), M(1-2), M(2), M(2-3) и M(3). Часть 1. Метрологические и технические требования

Библиография

[1]

International Vocabulary of Basic and General Terms in Metrology (VIM) 1993, ISO

(Международный словарь основополагающих терминов в метрологии)

[2]

International Vocabulary of Terms in Legal Metrology (VIML) (2000), OIML

(Международный словарь терминов в законодательной метрологии)

[3]

OIML D 28

Conventional value of the result of weighing in air (2004) (D 28 was previously published as OIML R 33) (Условное значение результата взвешивания в воздухе)

[4]

ISO 4287:1997

Geometrical product specifications (GPS) - Surface texture: Profile method - Terms, definition, and surface parameters (Геометрические характеристики изделий (GPS). Структура поверхности. Профильный метод. Термины. Определения и параметры структуры)

[5]

ISO/IEC Guide 2:2004*

Standardization and related activities - General vocabulary

(Стандартизация и смежные виды деятельности. Общий словарь)

     * Действует взамен ISO/IEC Guide 2:1996

[6]

Davis, R. S., "Determining the magnetic properties of 1 kg mass standards" J. Res. National Institute of Standards and Technology (USA), 100, 209-25, May - June 1995; Errata, 109, 303, March - April 2004

[7]

Guide to the expression of uncertainty in measurement (GUM), first edition, 1993, corrected and reprinted 1995, ISO

(Руководства по выражению неопределенности измерения)

[8]

Myklebust T., H., Lau P., Nielsen L. and Riski K., "Testing of weights: Part 3 - Magnetism and convection", OIML Bulletin XXXVIII (1997), pp.5-10

[9]

, M., "Magnetic interactions between weights and weighing instruments" Meas. Sci. Technol. 12 (2001), pp.709-715

[10]

ISO 261:1998-ISO general-purpose metric screw threads-General plan

(Резьбы метрические ИСО общего назначения. Общий вид)

[11]

, M., "Chang of the apparent mass of weights arising from temperature differences", Metrologia 36 (1999), pp.183-197

[12]

Jean M. Bennett and Lars Mattsson, "Introduction to Surface Roughness and Scattering" Optical Society of America (1989)

[13]

ISO 5436-1:2000*,

Geometrical Product Specifications (GPS). Surface texture: Profile method; Measurement standards. Part 1. Material measures

(Геометрические параметры продукции (ГПП). Текстура поверхности: профильный метод. Эталоны. Часть 1. Материальные меры)

ISO 5436-2:2001*

Geometrical Product Specifications (GPS). Surface texture: Profile method. Measurement standards. Part 2. Software measurement standards

(Геометрические характеристики изделий. Текстура поверхности: профильный метод; эталоны. Часть 2. Эталоны программного обеспечения)

* Действуют взамен ISO 5436:1985

Calibration specimens - Stylus instruments - Types, calibration and use of specimens. (Ed. 1); 20 p; K)

(Образцы для калибрования. Щуповые приборы. Типы, калибрование и использование образцов)

[14]

ISO 3274:1996

Geometrical Product Specifications (GPS) - Surface texture: Profile method - Nominal characteristics of contact (stylus) instruments (Ed. 2; 13 p; G). ISO 3274:1996/Cor 1:1998 (Ed. 1; 1 p;*)

(Геометрические характеристики изделий (GPS). Структура поверхности. Профильный метод. Номинальные характеристики контактных (щуповых) приборов)

[15]

ISO 4288:1996

Geometrical Product Specifications (GPS) - Surface texture: Profile method - Rules and procedures for the assessment of surface texture (Ed. 2; 8 p; D). ISO 4288:1996/Cor 1:1998 (Ed. 1; 1 p;*)

(Геометрические характеристики изделий (GPS). Структура поверхности. Профильный метод. Определение и параметры структуры)

[16]

Myklebust, Т., "Methods to determine magnetic properties of weights and magnetic field and field gradients of weights" National Measurement Service, Norway (1995)

[17]

Myklebust, T. 1997 "Intercomparison: Measurement of the volume magnetic susceptibility and magnetization of two cylindrical (kg) weights. EUROMET project 324", Justervesenet (NO)

[18]

Myklebust, T. and Davis, R.S., "Comparison between JV and BIPM to determine the volume susceptibility of one 20 g weight and two 1 g weights", Justervesenet (1996)

[19]

Myklebust, T. and , L., "Comparison of two instruments based on attracting method" National Measurement Service, Norway (1995)

[20]

Ueki, M., Nezu, Y. and Ooiwa, A., "New facility for weight calibration service", Proceedings of the 14 IMEKO World Congress and Bulletin of NRLM vol.46, No 4, pp.223-228 (1997)

[21]

Schoonover, R.M. and Davis, R.S., "Quick and Accurate Density Determination of Laboratory Weights". (Proceedings. 8 Conference. IMEKO Technical Committee TC3 on Measurement of Force and Mass, Krakow, Poland. September 9-10, 1980) (Paper in "Weighing Technology", pp.1123-1127 (Druk, Zaklad Poligraficzny Wydawnictwa SIGMA, Warsaw, Poland (1980)

[22]

Kobata, T., Ueki, M., Nezu, Y., Ooiwa, A, and Ishii, Y., "Characterization of an Acoustic Volume of Weights", Proceedings of 15 IMEKO World Congress (1999)

[23]

Ueki, M., Kobata, T., Mizushima, S., Nezu, Y. and Ooiwa, A. and Ishii, Y., "Application of an Acoustic Volumeter to Standard Weights", Proceedings of 15 IMEKO World Congress (1999)

[24]

Bettin, H., Spieweck, F., "Die Dichte des Wassers als Funktioner Temperaturnach infuhrung der Internationalen Temperaturskala von 1990", PTB-Mitt. 1003/90, pp.195-196

[25]

Tanaka, M., Girard, G., Davis, R., Peuto, Bignell, N., [NMIJ, BIPM, IMGC, NML], "Recommended table for the density of water between 0°C and 40°C based on recent experimental reports", Metrologia, 2001, 38, n°4, pp.301-309

[26]

Gorski, W., Toth, H.G., "Destilliertes Wasser als Dichtereferenzmaterial - Die elektrische als Kriterium seiner " - PTB-Mitt. 98 5/88, pp.324-325

[27]

Lau, P., "Weight Volume and Centre of Gravity", SP-AR to be published. (Secretariat is updating this reference (9/6/02))

[28]

Croarkin, С., "An Extended Error Model for Comparison Calibration", Metrologia 26, 107 (1989)

[29]

Schwartz, R. "Guide to mass determination with high accuracy" PTB-Bericht MA-40, Braunschweig (1995). See also Kochsiek, M., , M., "Comprehensive Mass Metrology", Wiley, New York, Sec.3.4, "Mass determination with balances" (Roman Schwartz) (2000)

[30]

Chapman, G.D., "Orthogonal designs for calibrating kilogram submultiples", NRCC25819. 27 April 1995, National Research Council Canada, Canada

[31]

Morris, E.C., "Decade Design for Weighing of Non-uniform Variance", Metrologia 29, 373 (1992)

[32]

Cameron, J.M., Croarkin, M.C., Raybold, R. С.R., "Designs for the calibration of standards of mass", NBS TN 952 (1977)

[33]

, M., "Cycles of comparison measurements, uncertainties and efficiencies", Meas. Sci. Technol 11 (2000), pp.20-24

[34]

Sutton, C.M. and Clarkson, M.T., "A general approach to comparisons in the presence of drift", Metrologia 30, 487 (1993/94)

[35]

Expression of Uncertainty of Measurement in Calibration, EA-4/02 (1999)

[36]

Bich, W., Cox, M.G., and Harris, P.M., "Uncertainty modeling in mass comparisons", Metrologia 30, 495 (1993/4)

[37]

Bich, W., "Covariances and restraints in mass metrology", Metrologia 27, 111 (1990)

[38]

, M., "Covariances in the determination of conventional mass", Metrologia 37, 249-251 (2000)

[39]

Davis, R.S., "Equation for the determination of the density of moist air" (1981/91), Metrologia 29, 67 (1992). Giacomo, P., "Equation for the determination of the density of moist air" (1981), Metrologia 18, 33 (1982)

[40]

Chung, J.W., Ryu, K.S., Davis, R.S. "Uncertainty analysis of the BIPM susceptometer", Metrologia 38 (2001), pp.553-541