ASTM F2129-2006 Standard Test Method for Conducting Cyclic Potentiodynamic Polarization Measurements to Determine the Corrosion Susceptibility of Small Implant Devices《进行循环动电位极化测量以.pdf
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1、Designation: F 2129 06Standard Test Method forConducting Cyclic Potentiodynamic PolarizationMeasurements to Determine the Corrosion Susceptibility ofSmall Implant Devices1This standard is issued under the fixed designation F 2129; the number immediately following the designation indicates the year o
2、foriginal adoption or, 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 assesses the corrosion susceptibility of
3、small, metallic, implant medical devices, or componentsthereof, using cyclic (forward and reverse) potentiodynamicpolarization. Examples of device types that may be evaluatedby this test method include, but are not limited to, vascularstents, ureteral stents (Specification F 1828), filters, supports
4、egments of endovascular grafts, cardiac occluders, aneurysmor ligation clips, staples, and so forth.1.2 This test method is used to assess a device in its finalform and finish, as it would be implanted. These small devicesshould be tested in their entirety. The upper limit on device sizeis dictated
5、by the electrical current delivery capability of thetest apparatus (see Section 6). It is assumed that test methods,such as Reference Test Method G5and Test Method G61havebeen used for material screening.1.3 Because of the variety of configurations and sizes ofimplants, this test method provides a v
6、ariety of specimenholder configurations.1.4 This test method is intended for use on implantabledevices made from metals with a relatively high resistance tocorrosion.1.5 This standard does not purport to address all of thesafety concerns, if any, associated with its use. It is theresponsibility of t
7、he user of this standard to establish appro-priate safety and health practices and determine the applica-bility of regulatory limitations prior to use.2. Referenced Documents2.1 ASTM Standards:2D 1193 Specification for Reagent WaterF 1828 Specification for Ureteral StentsG3 Practice for ConventionsA
8、pplicable to ElectrochemicalMeasurements in Corrosion TestingG5 Reference Test Method for Making Potentiostatic andPotentiodynamic Anodic Polarization MeasurementsG15 Terminology Relating to Corrosion and CorrosionTestingG61 Test Method for Conducting Cyclic PotentiodynamicPolarization Measurements
9、for Localized Corrosion Sus-ceptibility of Iron-, Nickel-, or Cobalt-Based Alloys3. Terminology3.1 Definitions:3.1.1 potentiostat, nan instrument for automatically main-taining an electrode in an electrolyte at a constant potential orcontrolled potentials with respect to a suitable referenceelectrod
10、e (see Terminology G15).3.1.2 potentiodynamic cyclic polarization (forward and re-verse polarization), na technique in which the potential ofthe test specimen is controlled and the corrosion currentmeasured by a potentiostat. The potential is scanned in thepositive or noble (forward) direction as de
11、fined in Practice G3.The potential scan is continued until a predetermined potentialor current density is reached. Typically, the scan is run until thetranspassive region is reached, and the specimen no longerdemonstrates passivity, as defined in Practice G3. The poten-tial scan direction then is re
12、versed until the specimen repassi-vates or the potential reaches a preset value.3.1.3 scan rate, nthe rate at which the controlling voltageis changed.3.2 Symbols:3.2.1 Eb= Breakdown or Critical Pitting Potentialtheleast noble potential at which pitting or crevice corrosion orboth will initiate and p
13、ropagate as defined in TerminologyG15. An increase in the resistance to pitting corrosion isassociated with an increase in Eb.3.2.2 Er= Rest Potentialthe potential of the workingelectrode relative to the reference electrode measured undervirtual open-circuit conditions (working electrode is not pola
14、r-ized).3.2.3 Ezc= Zero Current Potentialthe potential at whichthe current reaches a minimum during the forward scan.1This test method is under the jurisdiction of ASTM Committee F04 on Medicaland Surgical Materials and Devices and is the direct responsibility of SubcommitteeF04.15 on Material Test
15、Methods.Current edition approved May 15, 2006. Published May 2006. Originallyapproved in 2001. Last previous edition approved in 2004 as F 2129 04.2For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceastm.org. For Annual Book of ASTMStandard
16、s volume information, refer to the standards Document Summary page onthe ASTM website.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.3.2.4 Ef= Final Potentiala preset potential at which thescan is stopped.3.2.5 Ei= Initial Potential
17、the potential at which thepotentiostat begins the controlled potentiodynamic scan.3.2.6 Ep= Protection Potentialthe potential at which thereverse scan intersects the forward scan at a value that is lessnoble than Eb. Epcannot be determined if there is nobreakdown. Whereas, pitting will occur on a pi
18、t-free surfaceabove Eb, it will occur only in the range of potentials betweenEpand Ebif the surface is already pitted. The severity ofcrevice corrosion susceptibility increases with increasing hys-teresis of the polarization curve, the difference between EbandEp.3.2.7 Ev= Vertex Potentiala preset po
19、tential, at which thescan direction is reversed.3.2.8 it= Threshold Current Density (mA/cm2)a presetcurrent density, at which the scan direction is reversed.Typically, the scan is reversed when a current density twodecades higher than the current density at the breakdownpotential (Eb) is reached.4.
20、Summary of Test Method4.1 The device is placed in an appropriate deaerated simu-lated physiological solution, and the rest potential (Er)isrecorded for1hor,alternatively, until the rest potentialstabilizes to a rate of change less than 3 mV/min. Thepotentiodynamic scan is then started at Erand scann
21、ed in thepositive or noble (forward) direction. The scan is reversed aftereither the vertex potential is reached or the current density hasreached a value approximately two decades greater than thecurrent density measured at the breakdown potential. Thereverse scan is stopped after the current has b
22、ecome less thanthat in the forward direction or the potential reaches Er. Thedata is plotted with the current density in mA/cm2on the x axis(logarithmic axis) versus the potential in mV on the y axis(linear axis).5. Significance and Use5.1 Corrosion of implantable medical devices can havedeleterious
23、 effects on the device performance or may result inthe release of corrosion products with harmful biologicalconsequences; therefore, it is important to determine thegeneral corrosion behavior as well as the susceptibility of thedevices to localized corrosion.5.2 The forming and finishing steps used
24、to create animplantable device may have significant effects on the corro-sion resistance of the material out of which the device isfabricated. During the selection process of a material for use asan implantable device, testing the corrosion resistance of thematerial is an essential step; however, it
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