ASTM F2188-2002 Standard Test Method for Determining the Effect of Variable Frequency Vibration on a Membrane Switch or Membrane Switch Assembly《在薄膜开关或薄膜开关组合上检测可变频振动影响的标准试验方法》.pdf
《ASTM F2188-2002 Standard Test Method for Determining the Effect of Variable Frequency Vibration on a Membrane Switch or Membrane Switch Assembly《在薄膜开关或薄膜开关组合上检测可变频振动影响的标准试验方法》.pdf》由会员分享,可在线阅读,更多相关《ASTM F2188-2002 Standard Test Method for Determining the Effect of Variable Frequency Vibration on a Membrane Switch or Membrane Switch Assembly《在薄膜开关或薄膜开关组合上检测可变频振动影响的标准试验方法》.pdf(2页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: F 2188 02Standard Test Method forDetermining the Effect of Variable Frequency Vibration on aMembrane Switch or Membrane Switch Assembly1This standard is issued under the fixed designation F 2188; the number immediately following the designation indicates the year oforiginal adoption or,
2、 in the case of revision, the year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon (e) indicates an editorial change since the last revision or reapproval.1. Scope1.1 This test method establishes procedures for determiningthe effect of sinusoidal
3、 vibration, within the specified fre-quency range, on switch contacts, mounting hardware, adheredcomponent parts, solder or heat stakes, tactile devices, andcable or ribbon interconnects associated with a membraneswitch or membrane switch assembly.2. Terminology2.1 Definitions:2.1.1 contact closuret
4、he event at which a specified resis-tance is achieved on a membrane switch.2.1.2 critical resonance frequencyany point on the speci-men that is observed to have maximum amplitude or more thantwice that of the base input amplitude or support points.2.1.3 membrane switcha momentary switching device in
5、which at least one contact is on, or made of, a flexiblesubstrate.2.1.4 specified resistancemaximum allowable circuit re-sistance as measured between two test points whose internalcontacts, when held closed, complete a circuit.2.1.5 test pointstwo pre-selected conductive points in acircuit loop, pos
6、sibly including a switch.3. Significance and Use3.1 Vibration encountered in the field is not usually simpleharmonic.3.2 This test can be used to determine relative motionbetween parts, critical frequencies, adhesion strengths, loosen-ing of parts or other physical effects that can cause fatigue orf
7、ailure.3.3 Experience has shown that this test will expose potentialfailures associated with the electronic components of a mem-brane switch, where tests of lower levels will not.3.4 This practice can be used to qualify a membrane switchfor aerospace, medical and other applications.3.5 This test is
8、potentially destructive, intended for devicequalification.3.6 Either Test Condition A or B can be chosen, based uponthe intent of the test determined by the qualified engineer.4. Apparatus4.1 Vibration Fixture, capable of holding the unit under testand subjecting it to the specified random frequency
9、 andduration as described in the In-Process Test.4.2 Contact Closure Detection Device, (if test is performedunder load conditions), instrumentation capable of resolving aswitch opening time of greater than or equal to 1.0 ms.4.3 Resonant Detecting Instrumentation, (if determinationof critical resona
10、nce frequency is desired), capable of deter-mining the critical resonance frequency.5. ProcedureTest Condition A, 10 g5.1 Pre-Test Setup:5.1.1 Secure membrane switch on vibration test surfacewith appropriate fixturing.5.1.2 Connect switch detection leads to test points on themembrane switch (if cont
11、act closure is being monitored duringthe test).5.1.3 Function testing to be specified and performed againafter test completion for comparison.5.2 In-Process Test:5.2.1 Subject test unit to sinusoidal vibration varied infrequency from 10 to 500 Hz at a logarithmic rate of 0.5 octaveper minute for a d
12、uration of 18 cycles per each orthogonal axis(total of 56 times). The amplitude of the vibration shall beeither 0.06-in. double inch amplitude or 10 gravities (g-peak),whichever is less. The tolerance for the vibration profile is63dB.5.2.2 Visual inspection shall be conducted after each axis ofvibra
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