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Erschienen in: Journal of Failure Analysis and Prevention 6/2014

01.12.2014 | Technical Article---Peer-Reviewed

Failure Analysis of the Wire Fixation Bolts of an Ilizarov External Fixator

verfasst von: P. C. Ortega, W. B. Medeiros Jr., E. Rosa, R. Amorim, G. Cardoso, L. N. Matos, C. R. M. Roesler

Erschienen in: Journal of Failure Analysis and Prevention | Ausgabe 6/2014

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Abstract

The Ilizarov method is a treatment used to recover the functionality of the upper and lower limbs of patients who have lost bone tissues due to fractures or/and infections caused by accidents or congenital problems. This technique consists of assembling a device on the patient’s limb through which the bone is manipulated gradually. The device consists of external rings connected to each other by threaded rods and fixed to the bone by small diameter steel wires. These wires fasten the bone in an axial cross through a central axis perpendicular to the plane of the bone end and they are tightened to the rings by fixation bolts to provide assembly stability. The proper operation of the device depends mainly on the wire tension, which, in turn, depends on the torque applied to the bolts that hold the wires in place. The failure of these wire fixation bolts may compromise the Ilizarov frame function. In this study, four slotted bolts from a series of slotted bolts fractured during the assembly of Ilizarov fixator in clinical practice were analyzed and the upper limit for tightening these bolts was investigated. The results show that the failures occurred through a combination of mechanical and microstructural factors, including stress concentrators at the upper region of the screw, a high level of microstructural inclusions, and poor surface finish. The mechanical behavior of the bolts under loads was analyzed using the finite element method with the purpose of correlating it with the failure of the bolts.

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Literatur
1.
Zurück zum Zitat M.M. Mullins, A.W. Davidson, D. Goodier, M. Barry, The biomechanics of wire fixation in the Ilizarov system. Injury 34(2), 155–157 (2003)CrossRef M.M. Mullins, A.W. Davidson, D. Goodier, M. Barry, The biomechanics of wire fixation in the Ilizarov system. Injury 34(2), 155–157 (2003)CrossRef
2.
Zurück zum Zitat J. Aronson, J.H. Harp, Mechanical considerations in using tensioned wires in a transosseous external fixation system. Clin. Orthop. Relat. Res. 280, 23–29 (1992) J. Aronson, J.H. Harp, Mechanical considerations in using tensioned wires in a transosseous external fixation system. Clin. Orthop. Relat. Res. 280, 23–29 (1992)
3.
Zurück zum Zitat B. Fleming, D. Paley, T. Kristiansen, M. Pope, A biomechanical analysis of the Ilizarov external fixator. Clin. Orthop. Relat. Res. 241, 95–105 (1989) B. Fleming, D. Paley, T. Kristiansen, M. Pope, A biomechanical analysis of the Ilizarov external fixator. Clin. Orthop. Relat. Res. 241, 95–105 (1989)
4.
Zurück zum Zitat A.E. Goodship, J. Kenwright, The influence of induced micromovement upon the healing of experimental tibial fractures. J. Bone Joint Surg. Br. 67, 650–655 (1985) A.E. Goodship, J. Kenwright, The influence of induced micromovement upon the healing of experimental tibial fractures. J. Bone Joint Surg. Br. 67, 650–655 (1985)
5.
Zurück zum Zitat A.W. Davidson, M. Mullins, D. Goodier, M. Barry, Ilizarov wire tensioning and holding methods: a biomechanical study. Injury 34, 151–154 (2003)CrossRef A.W. Davidson, M. Mullins, D. Goodier, M. Barry, Ilizarov wire tensioning and holding methods: a biomechanical study. Injury 34, 151–154 (2003)CrossRef
7.
Zurück zum Zitat J. Gessmann, B. Jettkant, M. Königshausen, T.A. Schildhauer, D. Seybold, Improved wire stiffness with modified connection bolts in Ilizarov external frames: a biomechanical study. Acta Bioeng. Biomech. 14(4), 15–21 (2012) J. Gessmann, B. Jettkant, M. Königshausen, T.A. Schildhauer, D. Seybold, Improved wire stiffness with modified connection bolts in Ilizarov external frames: a biomechanical study. Acta Bioeng. Biomech. 14(4), 15–21 (2012)
8.
Zurück zum Zitat D.G. Bronson, M.L. Samchukov, R.B. Ashman, J.G. Birch, R.H. Browne, Stability of external circular fixation: a multi-variable biomechanical analysis. Clin. Biomech. 13, 441–448 (1998)CrossRef D.G. Bronson, M.L. Samchukov, R.B. Ashman, J.G. Birch, R.H. Browne, Stability of external circular fixation: a multi-variable biomechanical analysis. Clin. Biomech. 13, 441–448 (1998)CrossRef
9.
Zurück zum Zitat M.A. Catagni, F. Guerreschi, L. Lovisetti, Distraction osteogenesis for bone repair in the 21st century: lessons learned. Injury 42, 580–586 (2011)CrossRef M.A. Catagni, F. Guerreschi, L. Lovisetti, Distraction osteogenesis for bone repair in the 21st century: lessons learned. Injury 42, 580–586 (2011)CrossRef
10.
Zurück zum Zitat N.A. Osei, B.M. Bradley, P. Culpan, J.B. Mitchell, M. Barry, K.E. Tanner, Relationship between locking-bolt torque and load pre-tension in the Ilizarov frame. Injury 37(10), 941–945 (2006)CrossRef N.A. Osei, B.M. Bradley, P. Culpan, J.B. Mitchell, M. Barry, K.E. Tanner, Relationship between locking-bolt torque and load pre-tension in the Ilizarov frame. Injury 37(10), 941–945 (2006)CrossRef
11.
Zurück zum Zitat J.H. Calhoun, F. Li, B.R. Ledbetter, C.A. Gill, Biomechanics of the Ilizarov fixator for fracture fixation. Clin. Orthop. Relat. Res. 280, 15–22 (1992) J.H. Calhoun, F. Li, B.R. Ledbetter, C.A. Gill, Biomechanics of the Ilizarov fixator for fracture fixation. Clin. Orthop. Relat. Res. 280, 15–22 (1992)
12.
Zurück zum Zitat P.J. Hillard, A.J. Harrison, R.M. Atkins, The yielding of tensioned fine wires in the Ilizarov frame. Proc. Inst. Mech. Eng. H. 212, 37–47 (1998)CrossRef P.J. Hillard, A.J. Harrison, R.M. Atkins, The yielding of tensioned fine wires in the Ilizarov frame. Proc. Inst. Mech. Eng. H. 212, 37–47 (1998)CrossRef
13.
Zurück zum Zitat F.E. Donaldson, P. Pankaj, A.H.R.W. Simpson, Investigation of factors affecting loosening of Ilizarov ring–wire external fixator systems at the bone–wire interface. J. Orthop. Res. 30(5), 726–732 (2012)CrossRef F.E. Donaldson, P. Pankaj, A.H.R.W. Simpson, Investigation of factors affecting loosening of Ilizarov ring–wire external fixator systems at the bone–wire interface. J. Orthop. Res. 30(5), 726–732 (2012)CrossRef
14.
Zurück zum Zitat G.L. Orbay, V.H. Frankel, F.J. Kummer, The effect of wire configuration on the stability of the Ilizarov external fixator. Clin. Orthop. Relat. Res. 279, 299–302 (1992) G.L. Orbay, V.H. Frankel, F.J. Kummer, The effect of wire configuration on the stability of the Ilizarov external fixator. Clin. Orthop. Relat. Res. 279, 299–302 (1992)
15.
Zurück zum Zitat G.F.V. Voort, E.P. Manilova, Metallography and Microstructures of Stainless Steels and Maraging Steels, Metallography and Microstructures, vol. 9 (ASM Handbook, Metal Park, 2004), pp. 670–700 G.F.V. Voort, E.P. Manilova, Metallography and Microstructures of Stainless Steels and Maraging Steels, Metallography and Microstructures, vol. 9 (ASM Handbook, Metal Park, 2004), pp. 670–700
16.
Zurück zum Zitat T. Kosa, R.P. Ney, Machining of Stainless Steels, vol. 16, 9th edn. (ASM Handbook, Metal Park, 1989), pp. 681–707 T. Kosa, R.P. Ney, Machining of Stainless Steels, vol. 16, 9th edn. (ASM Handbook, Metal Park, 1989), pp. 681–707
17.
Zurück zum Zitat E.M. Pohler, Failures of Metallic Orthopedic Implantants, Failure Analysis and Prevention, vol. 11 (ASM Handbook, Metal Park, 1986), pp. 2759–2767 E.M. Pohler, Failures of Metallic Orthopedic Implantants, Failure Analysis and Prevention, vol. 11 (ASM Handbook, Metal Park, 1986), pp. 2759–2767
18.
Zurück zum Zitat ASTM F138-Standard Specification for Wrought 18Chromium–14Nickel–2.5Molybdenum Stainless Steel Bar and Wire for Surgical Implants, (2014) ASTM F138-Standard Specification for Wrought 18Chromium–14Nickel–2.5Molybdenum Stainless Steel Bar and Wire for Surgical Implants, (2014)
19.
Zurück zum Zitat J. Brnic, G. Turkalj, M. Canadija, D. Lanc, S. Krsanski, Responses of austenitic stainless steel American, Iron and Steel Institute (AISI) 303 (1.4305) subjected to different environmentalconditions. J. Test. Eval. 40(2), 256–264. http://www.astm.org J. Brnic, G. Turkalj, M. Canadija, D. Lanc, S. Krsanski, Responses of austenitic stainless steel American, Iron and Steel Institute (AISI) 303 (1.4305) subjected to different environmentalconditions. J. Test. Eval. 40(2), 256–264. http://​www.​astm.​org
20.
Zurück zum Zitat A.R. Rosenfield, Fracture Mechanics in Failure Analysis, Fatigue and Fracture, vol. 19 (ASM Handbook, Materials Park, 1996), pp. 1099–1108 A.R. Rosenfield, Fracture Mechanics in Failure Analysis, Fatigue and Fracture, vol. 19 (ASM Handbook, Materials Park, 1996), pp. 1099–1108
21.
Zurück zum Zitat K.H. Brown,C. Morrow, S. Durbin, A. Bac, Guideline for bolted joint design and analysis: version 1.0,a SAND2008-0371, (2008) K.H. Brown,C. Morrow, S. Durbin, A. Bac, Guideline for bolted joint design and analysis: version 1.0,a SAND2008-0371, (2008)
22.
Zurück zum Zitat J.E. Shigley, Mechanical Engineering Design (Portuguese Translation), 3rd edn. (McGraw-Hill Book, New York, 1984) J.E. Shigley, Mechanical Engineering Design (Portuguese Translation), 3rd edn. (McGraw-Hill Book, New York, 1984)
Metadaten
Titel
Failure Analysis of the Wire Fixation Bolts of an Ilizarov External Fixator
verfasst von
P. C. Ortega
W. B. Medeiros Jr.
E. Rosa
R. Amorim
G. Cardoso
L. N. Matos
C. R. M. Roesler
Publikationsdatum
01.12.2014
Verlag
Springer US
Erschienen in
Journal of Failure Analysis and Prevention / Ausgabe 6/2014
Print ISSN: 1547-7029
Elektronische ISSN: 1864-1245
DOI
https://doi.org/10.1007/s11668-014-9897-0

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