REG NASA-LLIS-0808--2000 Lessons Learned Magnetic Particle Testing of Aerospace Materials.pdf
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1、Best Practices Entry: Best Practice Info:a71 Committee Approval Date: 2000-04-17a71 Center Point of Contact: MSFCa71 Submitted by: Wil HarkinsSubject: Magnetic Particle Testing of Aerospace Materials Practice: Magnetic Particle Testing can be used on all ferromagnetic materials to locate surface and
2、 subsurface discontinuities such as cracks, laps, seams, and inclusions.Programs that Certify Usage: This practice has been used on Saturn I, IB, V, Apollo, Skylab, Space Shuttle Solid Rocket Booster (SRB), Space Shuttle Main Engine (SSME), and other MSFC projects.Center to Contact for Information:
3、MSFCImplementation Method: This Lesson Learned is based on Reliability Practice number PT-TE-1425 from NASA Technical Memorandum 4322A, NASA Reliability Preferred Practices for Design and Test.Benefit:Magnetic particle testing is a cost effective and expedient nondestructive Testing (NDT) method for
4、 determining discontinuities in ferromagnetic material. This NDT method can be performed in both the longitudinal and transverse directions.Implementation Method:Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-Magnetic particle testing (MPT) is a non
5、destructive method for locating cracks, laps, seams, inclusions and other discontinuities on or near the surface of ferromagnetic materials. MPT is based on the principle that the magnetic flux near the surface of a magnetized material is distorted locally by the presence of discontinuities. This di
6、stortion of the field pattern, or “flux leakage,“ as illustrated in Figure 1, is capable of attracting and holding an inspection medium of finely divided magnetic particles. Depending upon the type particles used, they will be visible under the proper lighting condition.refer to D descriptionD Figur
7、e 1. Leakage Field at a Crack in a Bar Magnet Direct current (DC) and alternating current are both suitable for magnetizing parts for MPT. The primary difference between the two currents is: the fields generated by DC penetrate the cross section of the part, and the field generated by the AC are con
8、fined to the metal at or near the surface of the part. Therefore, AC should not be used for subsurface discontinuities.The most common magnetization processes are circular and longitudinal. Circular magnetization is when electric current is passed through a straight conductor creating a circular mag
9、netic field around the conductor (see Figure 2a). Longitudinal magnetization is when electric current is passed through a coil of one or more turns a magnetic field is established within the coil (see Figure 2b). To form an indication, the magnetic field must approach a discontinuity at an angle gre
10、at enough to cause the magnetic field to leave the part and return after bridging the discontinuity. Best results occur when the intersection is 45 degrees to 90 degrees to the magnetic field lines.refer to D descriptionD Figure 2. Magnetized bars showing directions of magnetic field: (a) circular a
11、nd (b) longitudinal Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-Magnetic particles may be applied to surfaces in a dry form or they may be suspended in a water or oil carriers. The particles are usually coated with a fluorescent material for easy
12、 visualization using a black light.When using MPT make sure the induced current is strong enough to produce the magnetic field required to show the flaws being tested for. One fast method to insure adequate current is the use of a “field indicator.“ The field indicator consist of a metal disk with c
13、ross hatch lines with a thin metal cover attached over the cross hatch disk mounted on a yoke handle. This field indicator is placed in the magnetic field and the current increased while adding magnetic particles until the magnetic particles form a well-distinguished cross on the metal cover. There
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