ASTM F2362-2003 Standard Specification for Temperature Monitoring Equipment《温度监测设备的标准规范》.pdf
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1、Designation: F 2362 03An American National StandardStandard Specification forTemperature Monitoring Equipment1This standard is issued under the fixed designation F 2362; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the year of l
2、ast 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 specification covers the requirements for equip-ment intended to provide control input and monitoring oftemperatu
3、res in general applications. Equipment described inthis specification includes temperature indicators, signal con-ditioners and power supplies, and temperature sensors such asthermocouples and resistance temperature element assemblies.1.2 Special requirements for Naval shipboard applicationsare incl
4、uded in the Supplementary Requirements section.1.3 The values stated in SI units are to be regarded as thestandard. The values given in parentheses are for informationonly.2. Referenced Documents2.1 ASTM Standards:2D 3951 Practice for Commercial PackagingE 344 Terminology Relating to Thermometry and
5、 Hydrom-etry3. Terminology3.1 DefinitionsDefinitions of terminology shall be in ac-cordance with Terminology E 344.4. Classification4.1 GeneralTemperature measuring devices are generallyclassified as either temperature sensors or thermometers. Ther-mometers are not covered by this specification. Tem
6、peraturesensors are classified by design and construction. Sensors mayalso be classified by the manner of response, basically me-chanical or electrical, to a change in temperature. Mechanicalresponse is characterized by some mechanical action as tem-perature changes. Electrical response is character
7、ized by theproduction or change of an electrical signal or property astemperature changes. The following describes the most com-mon types of sensors:4.2 ThermocouplesThermocouples are constructed in avariety of designs to provide measurement of direct or differ-ential temperature. Thermocouples are
8、commonly installedusing a thermowell which protects the thermocouple but alsodelays the rapid response time characteristic of thermocouples.4.2.1 Principle of OperationMost thermocouples utilizetwo wires fabricated from dissimilar metals joined at one endto form a measuring junction that is exposed
9、to the processmedium being measured. The other ends of the wires areusually terminated at a measuring instrument which forms areference junction. When the two junctions are exposed todifferent temperatures, electrical current will flow through thecircuit (Seebeck Effect). The measurement of millivol
10、tageresulting from the current is proportional to the temperaturebeing sensed.4.2.2 Types of ThermocouplesThermocouples can be di-vided into functional classes by materials and therefore,temperature ranges. The three classes are base metal, noblemetal, and refractory metal. Although many types are c
11、om-monly used in industrial applications, the Instrument Society ofAmerica (ISA) has assigned letter designations to seven types.By convention, the practice of using a slash mark to separatethe materials of each thermocouple wire is widely accepted.Likewise, the order in which the materials appear a
12、lso denotespolarity of the wires; positive/negative when the measuringjunction is at a higher temperature than the reference junction.The following are examples of typical thermocouples:Class Type Materials Temperature (max)Base metal J Iron/constantan 1000C (1832F)Base metal T Copper/constantan 100
13、0C (1832F)Base metal K Chromel/Alumel 1000C (1832F)Base metal E Chromel/constantan 1000C (1832F)Base metal - Alloys of copper, nickel, iron, chromium,manganese, aluminum, and other metals1000C (1832F)Noble metal - Various noble metals 2000C (3632F)Refractorymetal- Tungsten-rhenium, tantalum, molybde
14、num,and their alloys2600C (4712F)4.3 Resistance Temperature Measuring DevicesResistance thermometers measure changes in temperaturebased on changes in resistance of the sensor element exposedto the temperature. Two common types are resistance tempera-ture detectors which have metal sensor elements a
15、nd ther-mistors which have semiconductor sensor elements.1This specification is under the jurisdiction of ASTM Committee F25 on Shipsand Marine Technology and is the direct responsibility of Subcommittee F25.10 onElectrical.Current edition approved Dec. 1, 2003. Published January 2004.2For reference
16、d ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceastm.org. For Annual Book of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM website.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Con
17、shohocken, PA 19428-2959, United States.4.3.1 Resistance Temperature Detectors (RTDs)An RTDconsists of sensor which uses a metal wire or fiber whichresponds to changes in temperature by changing its resistance.The sensor is connected to a readout via a bridge circuit orother means of translating the
18、 resistance to a temperaturevalue.4.3.1.1 Types of RTDsRTD designs include averagingRTDs, annular RTDs, and combination RTD-thermocouples.Averaging RTDs are characterized by a long resistance ele-ment. Annular RTDs have sensors that are designed to providea tight fit within the inner walls of thermo
19、wells. CombinationRTD-thermocouples have both an RTD and a thermocouplehoused in the same sheath.4.3.2 ThermistorsThermistors are made of solid semicon-ductor materials, usually complex metal oxides, that have ahigh coefficient of resistance. Thermistors are available withpositive and negative tempe
20、rature coefficients of resistance andare usually designated PTC and NTC thermistors, respectively.The temperature range for typical thermistors is 100 to 300C(212 to 572F).4.3.2.1 Types of ThermistorsThermistors are classed bythe configuration of the semiconductor material. Commontypes are the bead,
21、 disc, washer, and rod thermistors. Leads areattached to semiconductor materials, except where metal platedfaces are used for contact to complete the circuit.5. Ordering Information5.1 The purchaser should provide the manufacturer with allof the pertinent application data outlined in the acquisition
22、requirements.5.2 Acquisition RequirementsAcquisition documentsshould specify the following:5.2.1 Title, number and date of this specification,5.2.2 Classification required,5.2.3 Quantity of units required,5.2.4 Type of enclosure mounting,5.2.5 Power requirements,5.2.6 Equipment temperature ranges,5.
23、2.7 Size or weight limitations,5.2.8 Disposition of qualification test samples,5.2.9 Product marking requirements, and5.2.10 Special preservation, packaging, packing and mark-ing requirements.6. Materials and Manufacture6.1 Temperature SensorsThe materials for all wetted partsshall be selected for l
24、ong term compatibility with the processmedium.7. Physical Properties7.1 DescriptionThe equipment specified herein in con-junction with the thermocouples or resistance temperaturemeasuring elements comprise a temperature instrument. Thetemperature monitoring equipment may consist of the follow-ing un
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