ASTM F2606-2008 Standard Guide for Three-Point Bending of Balloon Expandable Vascular Stents and Stent Systems《三点弯曲血管球囊膨胀型支架和支架装置的标准指南》.pdf
《ASTM F2606-2008 Standard Guide for Three-Point Bending of Balloon Expandable Vascular Stents and Stent Systems《三点弯曲血管球囊膨胀型支架和支架装置的标准指南》.pdf》由会员分享,可在线阅读,更多相关《ASTM F2606-2008 Standard Guide for Three-Point Bending of Balloon Expandable Vascular Stents and Stent Systems《三点弯曲血管球囊膨胀型支架和支架装置的标准指南》.pdf(6页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: F 2606 08Standard Guide forThree-Point Bending of Balloon Expandable Vascular Stentsand Stent Systems1This standard is issued under the fixed designation F 2606; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the year
2、 of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.1. Scope1.1 This guide provides guidelines for quantitatively char-acterizing balloon-expandable stent and stent system flexib
3、ilityusing three-point bending procedures. Guidelines are providedfor characterizing deployed stent flexibility, and for character-izing pre-deployment stent system flexibility in the region ofthe stent and balloon.1.2 This guide is not recommended for test articles thatcannot be appropriately evalu
4、ated using a span length to stentouter diameter (as tested) ratio of at least 4:1. Test articles thatdo not meet this requirement are likely to exhibit appreciabledeformation by modes other than bending.1.3 This guide does not provide procedures for characteriz-ing the bending flexibility of self-ex
5、panding stents, self-expanding stent systems, endoprostheses (stent-grafts), or en-doprostheses systems. However, some aspects of this guidemay be useful for developing appropriate three-point bendingcharacterization procedures for these devices. While this guidewas developed with vascular stents an
6、d stent systems in mind,it may be useful for characterizing the bending flexibility ofballoon-expandable stents and stent systems used in non-vascular applications.1.4 The values stated in SI units are to be regarded as thestandard. The values given in parentheses are mathematicalconversions to inch
7、-pound units that are provided for informa-tion only and are not considered standard.2. Terminology2.1 Definitions:2.1.1 bending flexibility, na measure of the ability of a testspecimen to bend.2.1.2 bending stiffness, na measure of the ability of a testspecimen to resist bending.2.1.3 conformabilit
8、y, nthe degree to which a stent or stentsystem matches the native curvature of the vasculature.2.1.4 deflection, ndisplacement of the dynamic support(loading anvil) at any point in the test.2.1.5 delivery system, ncatheter that is used to deliver anddeploy a stent at the target site. A delivery syst
9、em forballoon-expandable stents may be similar to a balloon-dilatation (angioplasty) catheter.2.1.6 midspan bending moment, na linear estimate of thebending moment at the center of the span. See 8.5.2.1.7 midspan curvature, na linear estimate of the curva-ture of the center of the span. See 8.5.2.1.
10、8 span length, ndistance between the centers of thesupports.2.1.9 stent system, ndelivery system with a pre-mountedstent.2.1.10 stent, vascular, nsynthetic structure that is perma-nently implanted in the native or grafted vasculature and that isintended to provide mechanical radial support to enhanc
11、evessel patency.3. Significance and Use3.1 This guide can be used to obtain force versus deflectionor midspan bending moment versus midspan curvature curvesfor stents and stent systems subjected to three-point bendingconditions. Bending flexibility of a stent system may be afactor in its ability to
12、track through the vascular anatomy, andmay be a factor in vascular trauma along the delivery pathwaydistal to the guide catheter. Bending flexibility of a deployedstent may be one measure of its ability to flex with a vessel, orto conform to the natural curvature of a vessel. Bendingflexibility of a
13、 delivery system may also be of interest if it isdesired to assess the separate contributions of the deliverysystem and the mounted stent to the overall flexibility of thestent system.3.2 This guide is not intended to determine material prop-erties, stent system trackability (ability of a stent syst
14、em tofollow a guide wire and/or guide catheter through vasculartortuosity), or stent system deliverability (ability of a stentsystem to deliver a stent to the implantation site(s) or throughparticular level(s) of vascular tortuosity). While this guide doesnot determine stent system trackability or d
15、eliverability, it canprovide quantitative insight into how stent system bending1This guide is under the jurisdiction of ASTM Committee F04 on Medical andSurgical Materials and Devices and is the direct responsibility of SubcommitteeF04.30 on Cardiovascular Standards.Current edition approved Oct. 1,
16、2008. Published October 2008.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.flexibility affects trackability and deliverability. Similarly,while this guide does not determine conformability of adeployed stent, it can provide quantit
17、ative insight into howstent and/or stent system bending flexibility affects deployedstent conformability. Since this guide quantifies bending flex-ibility, it may be useful in determining the magnitude ofbending flexibility effects on bending-related performancedifferences between the test article a
18、nd control devices.3.3 The three-point bending procedures provided in thisguide are intended to be used to characterize balloon-expandable stent and stent system flexibility during productdevelopment. They may not necessarily satisfy any particularrequirements of national or international regulatory
19、 bodies.4. Summary of Guide4.1 The specimen is loaded onto a three-point bend fixture.The specimen is supported from below by two static supportsseparated by a known span and bent by a force applied on thetop and midway between the lower supports. The bendingflexibility of the stent is obtained from
20、 force-versus-deflectionplots and/or midspan bending moment versus midspan curva-ture plots. Bending flexibility evaluations may be made onballoon-expandable stent systems, and/or on deployed balloon-expandable stents. Bending flexibility of a delivery system mayalso be evaluated if it is desired to
21、 assess the separatecontributions of the delivery system and the mounted stent tothe overall flexibility of the stent system.4.2 Bending flexibility assessments may be made using afixed span between the lower supports or by using a span thatincreases with the specimen length.4.2.1 The fixed span len
22、gth method permits force versusdeflection comparisons that are independent of stent length.This method may be useful when comparing the flexibility ofstents with different diameters or structural designs, and it maypermit bending flexibility to be evaluated at multiple longitu-dinal positions along
23、longer test articles.4.2.2 The variable span length method allows the bendingmoment arm length to be maximized for any given stent lengthin order to minimize the potential for non-bending deformationat a given applied load and/or deflection. Bending flexibilitycomparisons may be made at different sp
24、an lengths by com-paring midspan bending moments at given midspan bendingcurvatures. The variable span length approach also permits thestudy of bending load variation with span length, but thebending loads are not solely dependent on the inherent bendingstiffness of the test article.4.2.3 Both the f
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