NAVY MIL-STD-740-2-1986 STRUCTUREBORNE VIBRATORY ACCELERATION MEASUREMENTS AND ACCEPTANCE CRITERIA OF SHIPBOARD EQUIPMENT《组织震动加速测量和船舷装置验收标准》.pdf
《NAVY MIL-STD-740-2-1986 STRUCTUREBORNE VIBRATORY ACCELERATION MEASUREMENTS AND ACCEPTANCE CRITERIA OF SHIPBOARD EQUIPMENT《组织震动加速测量和船舷装置验收标准》.pdf》由会员分享,可在线阅读,更多相关《NAVY MIL-STD-740-2-1986 STRUCTUREBORNE VIBRATORY ACCELERATION MEASUREMENTS AND ACCEPTANCE CRITERIA OF SHIPBOARD EQUIPMENT《组织震动加速测量和船舷装置验收标准》.pdf(30页珍藏版)》请在麦多课文档分享上搜索。
1、 flIL-STD-7LIO -2 HF W 7797711 0035233 3 MIL-STD-740-2(SH) 30 December 1986 SUPERSEDING MIL-STD-i40B(SHIPS)(IN PART) 13 January 1965 (See 6.6) MILITARY STANDA?ZJ 5V3JCTUREBOR.NE VIBRATORY ACCELERATION MEASUREMENTS AND ACCEPTANCE CRITERIA OF SHIPBOARD EQUIPMENT AMSC N4009 AREA HFAC DISTRIBUTION STATE
2、MENT _I_ A Approved for public release; distribution unlimited 7 THIS DOCUMENT CONTAINS ,3 General Specifications and Tests for (Shipboard Application). MIL-“17508 - Mounts, Resilient; Types 6E2000, 6E900, 6E900BB, 7E450, 7E450BB, 6E150, and 6E100. MIL-“19379 - Mounts, Resilient, Mare Island Types l
3、lM15, llM25, and 1OM50. MIL-“19863 - Mounts, Resilient: Type 5B5000H. MIL-“21649 - Mount, Resilient, Type 5M10,OOO-H. STANDARD MILITARY MIL-STD-1621 - Acoustical and Vibrational Standard Reference Quantities. (Copies of specifications and standards required by contractors in connection with specific
4、 acquisition functions should be obtained from the contracting activity or as directed by.the contracting officer.) 2.2 Other publications. The following documents form a part of this standard to the extent specified herein. Unless otherwise specified, the issues of the documents which are DoD adopt
5、ed shall be those listed in the issue of the DoDISS specified in the solicitation. The issues of documents which have not been adopted shall be those in effect on the date of the cited DoDISS. AMERICAN NATIONAL STANDARDS INSTITUTE (ANSI) S1.6 - Preferred Frequencies and Band Numbers for Acoustical S
6、1.ll - Octave, Half-Octave, and- Third-Octave Band Filter Sets. S2.2 - Calibration of Shock and Vibration Pickups; Methods for. Measurements. (Application for copies should be addressed to Publication Sales, Dept. STD, American Institute of Physics, 335 East 45th Street, New York, NY 10017.) (Nongov
7、ernment standards are generally available for reference from libra- ries. They are also distributed among nongovernment standards bodies and using Federal agencies.) 2.3 Order of precedence. In the event of a conflict between the text of this standard and the references cited herein, the text of thi
8、s standard shall take precedence. 2 Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-MIL-STD-740 -2 HF W 77779LL 0035238 4 M MIL-STD-740-2(SH) 30 December 1986 3. DEFINITIONS 3.1 Symbols. Symbols used herein are as follows: ao = Reference vibratory ac
9、celeration (see 3.2.3) FFT = Fast Fourier Transform fc = Band-center frequency (see 3.2.8) fl = Lower band-edge frequency (see 3.2.7) f2 = Upper band-edge frequency (see 3.2.7) gn = International standard acceleration of free fall (see 3.2.3) La = Structureborne vibratory acceleration level (see 3.2
10、.4) DIM = Distributed isolation material (see 3.14.2) 3.2 Terminology. 3.2.1 Frequency. The frequency of a function periodic in time is the reciprocal of the period. The unit of frequency is the hertz (Hz). One Hz is equa-l to one cycle per second. 3.2.2 Level. The level of a vibratory quantity is t
11、he logarithm of the ratio of that quantity to a reference quantity of the same kind. The base of the logarithm, the reference quantity, and the kind of level shall be indicated. 3.2.3 Reference vibratory acceleration (ao)-. The reference quantity is 10 micrometers per second squared (pm/sz) root mea
12、n square (rms) (10 pm/s2 = centimeters per second squared (cm/s2) = 393.7 x inches per second squared (in/s2). Units of the International System (SI) as specified in MIL-STD-1621 are prescribed for the measurement of vibrational quantities. The-acceleration of 10 pm/s2 is nearly one millionth of the
13、 in ernational standard acceleration of free fall gn = 9.80665 m/s2 = 386.089 in/s . Therefore, for reporting in accordance with this standard, the reference vibratory acceleration may be described as ao = 1 1.18, (rms). For calibration purposes use 1 gn (rms) = 120 dB re ao. I 3.2.4 Structureborne
14、vibratory acceleration level (La). La, in decibels (dB) is 20 times the logarithm to base 10 of the ratio of the measured structure- borne vibratory acceleration to ao; that is, measured acceleration in pm/s2 (rms) 10 pm/2 (ms) La in dB = 20 log 10 3.2.5 Band. A band is a continuous spread of freque
15、ncies. 3.2.6 Band level. Band level is the vibratory level in a particular band. 3.2.7 Band-edge frequencies. The upper (f2) and lower (fl) band-edge frequencies are those frequencies above and below the frequency of maximum response of a filter at which the response to a sinusoidal signal is 3 dB b
16、elow the maximum response. 3 Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-MIL-STD-740-2(SH) 30 December 1986 3.2.8 Nominal band-center frequency ( f r). The nominal band center fre- quency may be either the arithmetic or geometric mean between the
17、 band-edge frequencies of a band, the arithmetic mean being fc = (fl 3- f2)/2 and the geometric mean being fc = (fl x f2) /. The arithmetic mean is normally used when constgnt bandwidth filters, such as 50 Hz are specified. The geometric mean is normally used for filters of constant percentage bandw
18、idth, such as one-third octave band filters. 3.2.9 Bandwidth. The bandwidth of a filter is the difference between fl and f2. This difference may be expressed in Hz, as a percentage of the band- center frequency, or as the interval between the band-edge frequencies, in terms of octaves or parts there
19、of, such as one-third, one-fifteenth, etc. 3.2.10 One-third octave band. The one-third octave bands designated in this standard are those whose band-center frequencies are preferred one-third octave bands specified in ANSI S1.6. The width of a one-third octave band is approximately 23 percent of its
20、 band-center frequency. 3.2.11 Narrowband. Narrowband, when used in this specification, refers to that measurement bandwidth obtained with the use of a 400 line fast fourier transform. The preferred increments are zero Hz to 400 Hz, 400 Hz to 2000 Hz, and 2000 Hz to approximately 10,000 Hz. Other ba
21、ndwidths, not to exceed 10 percent of the center frequency, may be used if approved by the contracting activity. 3.2.12 Equipment. The term “equipment“, when used in this standard, refers to any equipment such as a system, subsystem, or part thereof which is being measured to determine compliance wi
22、th the structureborne acceptance criteria. 3.2.13 _I_ Type. The term “type“ is used to divide equipment into groups for the purpose of specifying structureborne noise criteria. 3.2.13.1 Type I. Type I designates reciprocating compressors and internal combustion engines. 3.2.13.2 Type II. Type II des
23、ignates pumps, valves, and life support equipment. 3.2.13.3 Type III. Type III designates equipment not covered by types I, II and IV. 3.2.13.4 Type IV. Type IV designates vaneaxial fans. 3.2.14 Mounting. 3.2.14.1 Resiliently mounted equipment. Resiliently mounted equipment is equipment which is iso
24、lated from a support structure by Navy approved resilient mounts. For equipment which is not isolated by Navy approved resilient mounts, the criteria for solidly mounted equipment shall apply. Approved resilient mounts are mounts in accordance with MIL-M-17185, MIL-M-17508, MIL-M-19379, MIL-“19863,
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