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Topic:Mechanical Properties

Mechanical properties in horses refer to the physical characteristics of equine tissues and structures that determine their ability to withstand forces and perform functions. These properties are primarily studied in relation to bones, tendons, ligaments, and muscles, which are critical for movement and load-bearing activities. Key mechanical properties include elasticity, tensile strength, and stiffness, which influence the performance and health of horses in various activities, from racing to recreational riding. Research in this field often focuses on understanding how these properties affect injury risk and recovery, as well as the impact of factors like age, training, and nutrition. This page compiles peer-reviewed research studies and scholarly articles that investigate the mechanical properties of equine tissues and their implications for equine biomechanics and welfare.
A comparative study of different tissue materials for bioprosthetic aortic valves using experimental assays and finite element analysis.
Computer methods and programs in biomedicine    April 12, 2022   Volume 220 106813 doi: 10.1016/j.cmpb.2022.106813
Rassoli A, Fatouraee N, Guidoin R, Zhang Z, Ravaghi S.Extracting the mechanical behaviors of bioprosthetic aortic valve leaflets is necessary for the appropriate design and manufacture of the prosthetic valves. The goal of this study was to opt a proper tissue for the valve leaflets by comparing the mechanical properties of the equine, porcine, and donkey pericardia with those of the bovine pericardium and human aortic valve leaflets. Methods: After tissue fixation in glutaraldehyde, the mechanical behaviors of the pericardial tissues were experimentally evaluated through computational methods. The relaxation tests were performed along the tissue...
Comparative tribology II-Measurable biphasic tissue properties have predictable impacts on cartilage rehydration and lubricity.
Acta biomaterialia    October 30, 2021   Volume 138 375-389 doi: 10.1016/j.actbio.2021.10.049
Kupratis ME, Gure AE, Benson JM, Ortved KF, Burris DL, Price C.Healthy articular cartilage supports load bearing and frictional properties unmatched among biological tissues and man-made bearing materials. Balancing fluid exudation and recovery under loaded and articulated conditions is essential to the tissue's biological and mechanical longevity. Our prior tribological investigations, which leveraged the convergent stationary contact area (cSCA) configuration, revealed that sliding alone can modulate cartilage interstitial fluid pressurization and the recovery and maintenance of lubrication under load through a mechanism termed 'tribological rehydration...
Evaluation of Structural Anisotropy in a Porous Titanium Medium Mimicking Trabecular Bone Structure Using Mode-Converted Ultrasonic Scattering.
IEEE transactions on ultrasonics, ferroelectrics, and frequency control    January 10, 2020   Volume 67, Issue 5 1017-1024 doi: 10.1109/TUFFC.2019.2963162
Du H, Yousefian O, Horn T, Muller M.The mode-converted (longitudinal to transverse, L-T) ultrasonic scattering method was utilized to characterize the structural anisotropy of a phantom mimicking the structural properties of trabecular bone. The sample was fabricated using metal additive manufacturing from high-resolution computed tomography (CT) images of a sample of trabecular horse bone with strong anisotropy. Two focused transducers were used to perform the L-T ultrasonic measurements. A normal incidence transducer was used to transmit longitudinal ultrasonic waves into the sample, while the scattered transverse signals were...
Effects of in vivo fatigue-induced subchondral bone microdamage on the mechanical response of cartilage-bone under a single impact compression.
Journal of biomechanics    December 24, 2019   Volume 100 109594 doi: 10.1016/j.jbiomech.2019.109594
Malekipour F, Hitchens PL, Whitton RC, Lee PV.Subchondral bone (SCB) microdamage is prevalent in the joints of human athletes and animals subjected to high rate and magnitude cyclic loading of the articular surface. Quantifying the effect of such focal in vivo fatigue-induced microdamage on the mechanical response of the tissue is critical for the understanding of joint surface injury and the development of osteoarthritis. Thus, we aimed to quantify the mechanical properties of cartilage-bone from equine third metacarpal (MC3) condyles, which is a common area of accumulated microdamage due to repetitive impact loading. We chose a non-dest...
Donkey pericardium compares favorably with commercial xenopericardia used in the manufacture of transcatheter heart valves.
Artificial organs    July 3, 2019   Volume 43, Issue 10 976-987 doi: 10.1111/aor.13503
Mao J, Rassoli A, Tong Y, Rouse EN, Le-Bel G, How D, Germain L, Fatouraee N, Zhang Z, Reed RR, Guidoin R.Transcatheter aortic valve implantation (TAVI) has gained considerable acceptance in the past decade due to its lower risks than conventional open-heart surgery. However, the deformation and delamination of the leaflets during the crimping procedure have raised questions about the durability and long-term serviceability of the pericardium tissue from which the leaflets are made. The collagen architecture, wall thickness and mechanical properties of donkey pericardium were investigated to assess its suitability as an alternative material for the manufacture of heart valves. Coupons sampled from...
In vitro evaluation of the knot-holding capacity and security, weight, and volume of forwarder knots tied with size-3 polyglactin 910 suture exposed to air, balanced electrolyte solution, or equine abdominal fat.
American journal of veterinary research    June 28, 2019   Volume 80, Issue 7 709-716 doi: 10.2460/ajvr.80.7.709
McGlinchey L, Boone LH, Munsterman AS, Coleridge MOD, Rosanowski SM, Farag R, Hanson RR.To evaluate the effect of exposure to a balanced electrolyte solution (BES), or equine abdominal fat on the knot-holding capacity (KHC), relative knot security (RKS), weight, and volume of forwarder knots versus surgeon's knots. Methods: 315 knots tied and tested in vitro. Methods: United States Pharmacopeia size-3 polyglactin 910 suture exposed to air (dry [control]), equine abdominal fat (fat-exposed), or BES (BES-exposed) was used to tie forwarder knots with 2, 3, and 4 throws and surgeon's knots with 5, 6, 7, and 8 throws. A universal materials testing machine was used to test the tensile ...
Effect of fluid media on the mechanical properties of continuous pattern-ending surgeon’s, square, and Aberdeen knots in vitro.
Veterinary surgery : VS    February 2, 2017   Volume 46, Issue 2 306-315 doi: 10.1111/vsu.12627
Coleridge M, Gillen AM, Farag R, Hanson RR, Munsterman AS.To investigate the knot holding capacity (KHC) of pattern-ending square, surgeon's and Aberdeen knots each tied in 4 throw combinations using large gauge suture after exposure to media commonly found in equine abdominal surgery. Methods: In vitro mechanical study. Methods: Knotted suture strands (n = 10/group). Methods: Strands of 2 polydioxanone or 3 polyglactin 910 were exposed to 1 of 4 media for 15 minutes. Control suture strands remained dry. Media used included balanced electrolyte solution, 1% sodium carboxymethylcellulose, equine serum, or equine fat. Pattern-ending knots for the 3...
Fascicles and the interfascicular matrix show adaptation for fatigue resistance in energy storing tendons.
Acta biomaterialia    June 7, 2016   Volume 42 308-315 doi: 10.1016/j.actbio.2016.06.012
Thorpe CT, Riley GP, Birch HL, Clegg PD, Screen HRC.Tendon is composed of rope-like fascicles, bound together by interfascicular matrix (IFM). Our previous work shows that the IFM is critical for tendon function, facilitating sliding between fascicles to allow tendons to stretch. This function is particularly important in energy storing tendons, which experience extremely high strains during exercise, and therefore require the capacity for considerable inter-fascicular sliding and recoil. This capacity is not required in positional tendons. Whilst we have previously described the quasi-static properties of the IFM, the fatigue resistance of the...
Ex Vivo Mechanical Evaluation of a Sternal ZipFix(®) Implant for Prosthetic Laryngoplasty in Horses.
Veterinary surgery : VS    March 24, 2016   Volume 45, Issue 4 450-455 doi: 10.1111/vsu.12466
Markwell HJ, Mueller PO.To evaluate the properties of a ZipFix(®) (ZipFix) implant in equine laryngeal cartilages. Methods: Ex vivo biomechanical study. Methods: Equine arytenoid (n=36) and cricoid cartilages (n=18). Methods: Suture bites were placed in arytenoid or cricoid cartilages using a ZipFix(®) implant or a single strand of USP 5 braided polyester (TiCron™), and arytenoid and cricoid cartilages were separately subjected to single load to failure (25 N preload) or cyclic loading for 1,000 cycles, followed by single load to failure. Load, distraction, and stiffness were recorded. Results: Four arytenoid-Zip...
Mechanical properties and structure-function relationships in articular cartilage repaired using IGF-I gene-enhanced chondrocytes.
Journal of orthopaedic research : official publication of the Orthopaedic Research Society    September 8, 2015   Volume 34, Issue 1 149-153 doi: 10.1002/jor.23038
Griffin DJ, Ortved KF, Nixon AJ, Bonassar LJ.Several studies have demonstrated the benefits of IGF-I gene therapy in enhancing the histologic and biochemical content of cartilage repaired by chondrocyte transplantation. However, there is little to no data on the mechanical performance of IGF-I augmented cartilage grafts. This study evaluated the compressive properties of full-thickness chondral defects in the equine femur repaired with and without IGF-I gene therapy. Animals were randomly assigned to one of three study cohorts based on chondrocyte treatment provided in each defect: (i) IGF-I gene delivered by recombinant adeno-associated...
Estimation of articular cartilage properties using multivariate analysis of optical coherence tomography signal.
Osteoarthritis and cartilage    June 6, 2015   Volume 23, Issue 12 2206-2213 doi: 10.1016/j.joca.2015.05.034
Puhakka PH, Te Moller NCR, Afara IO, Mäkelä JTA, Tiitu V, Korhonen RK, Brommer H, Virén T, Jurvelin JS, Töyräs J.The aim was to investigate the applicability of multivariate analysis of optical coherence tomography (OCT) information for determining structural integrity, composition and mechanical properties of articular cartilage. Methods: Equine osteochondral samples (N = 65) were imaged with OCT, and their total attenuation and backscattering coefficients (μt and μb) were measured. Subsequently, the Mankin score, optical density (OD) describing the fixed charge density, light absorbance in amide I region (Aamide), collagen orientation, permeability, fibril network modulus (Ef) and non-fibrillar mat...
In vitro mechanical evaluation of equine laryngeal tie-forward constructs prepared with different suture materials and placement patterns.
American journal of veterinary research    March 31, 2015   Volume 76, Issue 4 373-383 doi: 10.2460/ajvr.76.4.373
Santos MP, Gutierrez-Nibeyro SD, Horn GP, Hicke JD, Stewart MC, Schaeffer DJ.To compare the mechanical properties of laryngeal tie-forward (LTF) constructs prepared with different suture materials and suture placement patterns during single load to failure testing. Methods: Larynges harvested from 50 horse cadavers and 5 intact horse cadavers. Methods: In vitro LTF constructs were created by a standard technique with polyester sutures, a standard technique with polyethylene sutures, a modified technique with metallic implants and polyester sutures, a modified technique with metallic implants and polyethylene sutures, or a modified tie-off technique with polyester sutur...
Mechanical comparison of 3 anchoring techniques in the muscular process for laryngoplasty in the equine larynx.
Veterinary surgery : VS    July 28, 2014   Volume 44, Issue 3 333-340 doi: 10.1111/j.1532-950X.2014.12248.x
Lechartier A, Rossignol F, Brandenberger O, Vitte A, Mespoulhès-Rivière C, Rossignol A, Boening KJ.To compare mechanical properties of 2 techniques with a conventional technique for anchoring the muscular process in a laryngoplasty procedure. Methods: Experimental ex vivo study. Methods: Equine larynges (n = 60). Methods: A single loop (SL), a screw (SC), and a double loop technique (DL) were compared. Constructs were subjected to cyclic loading, oscillating from 5 to 50 N for 3000 cycles, followed by a single cycle to failure test. Mean distraction, load at failure, stiffness, and failure mode were compared between groups. Results: Mean ± SD distraction in cyclic loading was greater for D...
Mechanical properties of various suture materials and placement patterns tested with surrogate in vitro model constructs simulating laryngeal advancement tie-forward procedures in horses.
American journal of veterinary research    April 26, 2014   Volume 75, Issue 5 500-506 doi: 10.2460/ajvr.75.5.500
Santos MP, Gutierrez-Nibeyro SD, Horn GP, Johnson AJ, Stewart MC, Schaeffer DJ.To compare the mechanical properties of laryngeal tie-forward (LTF) surrogate constructs prepared with steel fixtures and No. 5 braided polyester or braided polyethylene by use of a standard or a modified suture placement technique. Methods: 32 LTF surrogate constructs. Methods: Surrogate constructs were prepared with steel fixtures and sutures (polyester or polyethylene) by use of a standard or modified suture placement technique. Constructs underwent single-load-to-failure testing. Maximal load at failure, elongation at failure, stiffness, and suture breakage sites were compared among constr...
Effects of mineral content on the fracture properties of equine cortical bone in double-notched beams.
Bone    February 25, 2012   Volume 50, Issue 6 1275-1280 doi: 10.1016/j.bone.2012.02.018
McCormack J, Stover SM, Gibeling JC, Fyhrie DP.We recently developed a method to measure cortical bone fracture initiation toughness using a double-notched beam in four-point bending. This method was used to test the hypothesis that mineralization around the two notch roots is correlated with fracture toughness and crack extension (physical damage). Total energy absorbed to failure negatively correlated with average mineralization of the beam (r(2)=0.62), but not with notch root mineralization. Fracture initiation toughness was positively correlated to mineralization at the broken notch root (r(2)=0.34). Crack length extension at the unbro...
Effect of diet on mechanical properties of horse’s hair.
Acta of bioengineering and biomechanics    February 6, 2010   Volume 11, Issue 3 53-57 
Kania M, Mikołajewska D, Marycz K, Kobielarz M.The aim of this research was to assess the effect of diet supplementation with zinc and copper, in different chemical forms (organic and inorganic), on the mechanical properties of the hair of healthy English thoroughbred horses. Hairs were taken from 18 horses which had been fed with oats and hay for a period of 110 days. Twelve of the horses had been additionally given a daily dose of 700 g of highquality 44-ingredients Fohlengold St-Hippolyt muesli made by Muhle Ebert Dilheim. Six of them had received the muesli-containing organic zinc and copper (OS), while the other six horses had receive...
Correlation of mechanical properties within the equine third metacarpal with trabecular bending and multi-density micro-computed tomography data.
Bone    January 14, 2010   Volume 46, Issue 4 1108-1113 doi: 10.1016/j.bone.2010.01.366
Leahy PD, Smith BS, Easton KL, Kawcak CE, Eickhoff JC, Shetye SS, Puttlitz CM.Computed tomography (CT) data can be employed with respect to determining mechanical properties and has been used to predict parameters such as elastic modulus, yield strength, and ultimate strength of intact bone. Micro-computed tomography (muCT) possesses the resolution capable of detecting apparent bone density in extremely local regions and can characterize the trabecular structure. It has been asserted that this micro-structure is susceptible to micro-buckling and bending, which has a controversial role in predicting the global mechanical properties of bone. The current study measured the...
Effect of track maintenance on mechanical properties of a dirt racetrack: a preliminary study.
Equine veterinary journal    November 26, 2008   Volume 40, Issue 6 602-605 doi: 10.2746/042516408x330347
Peterson ML, McIlwraith CW.When Thoroughbred racehorses experience catastrophic injuries, the track surface is often discussed as a factor. The present study investigated the mechanical properties of the surface and found that significant changes in a track occur during routine maintenance. Questions regarding the relative importance of track variability and hardness require further investigation.
Mechanical properties of subchondral bone in the distal aspect of third metacarpal bones from Thoroughbred racehorses.
American journal of veterinary research    November 5, 2008   Volume 69, Issue 11 1423-1433 doi: 10.2460/ajvr.69.11.1423
Rubio-Martínez LM, Cruz AM, Gordon K, Hurtig MB.To characterize the mechanical properties of subchondral bone (SCB) of the distopalmar aspect of the condyles of the third metacarpal bone (MC3) and their correlations with structural aspects of MC3s in Thoroughbred racehorses. Methods: 12 pairs of MC3s from Thoroughbred racehorses euthanized for various reasons. Methods: MC3s were collected from horses with mild (n = 6) and with severe (6) SCB changes, as determined by micro-computed tomography (CT). Specimens of SCB plate and trabecular bone were cut from the distopalmar aspect of condyles and sagittal ridge and examined with 3-dimensional m...
Comparative in vitro biomechanical evaluation of two soft tissue defect products.
Journal of biomedical materials research. Part B, Applied biomaterials    April 5, 2007   doi: 10.1002/jbm.b.30816
Johnson W, Inamasu J, Yantzer B, Papangelou C, Guiot B.A soft tissue defect is often an unavoidable consequence of various surgical procedures or a result of trauma. Recently, intraoperative use of xenograft as a patch to the soft tissue defect has become popular with various products available in the market. In this study, mechanical properties of the OrthADAPTtrade mark Bioimplants (Pegasus Biologics, Irvine, CA), new xenograft products composed of collagen from equine pericardium, were evaluated individually and against an existing bioimplant product. The OrthADAPTtrade mark Bioimplants have three subtypes which differ in the degree of crosslin...
The influence of collagen fiber orientation and other histocompositional characteristics on the mechanical properties of equine cortical bone.
The Journal of experimental biology    July 22, 2006   Volume 209, Issue Pt 15 3025-3042 doi: 10.1242/jeb.02304
Skedros JG, Dayton MR, Sybrowsky CL, Bloebaum RD, Bachus KN.This study examined relative influences of predominant collagen fiber orientation (CFO), mineralization (% ash), and other microstructural characteristics on the mechanical properties of equine cortical bone. Using strain-mode-specific (S-M-S) testing (compression testing of bone habitually loaded in compression; tension testing of bone habitually loaded in tension), the relative mechanical importance of CFO and other material characteristics were examined in equine third metacarpals (MC3s). This model was chosen since it had a consistent non-uniform strain distribution estimated by finite ele...
Determination of the stiffness of the equine spine.
Equine veterinary journal    January 20, 2005   Volume 36, Issue 8 699-702 doi: 10.2746/0425164044848055
Schlacher C, Peham C, Licka T, Schobesberger H.Mechanical properties of the equine back are the bases for realistic modelling of the back, which is recognised as an important step towards improved understanding of the pathogenesis of equine back conditions. Objective: The stiffness of the equine back depends on the direction of the applied force and on the position of the spine. Methods: Fourteen dissected spines were tested in a tensile testing machine. In 3 different positions, simulating dorsoventral, laterolateral and dorsoventral-30 degree rotated movement, force was applied on the dorsal spinous process of T12 to reach an excursion o...
Stiff and strong compressive properties are associated with brittle post-yield behavior in equine compact bone material.
Journal of orthopaedic research : official publication of the Orthopaedic Research Society    June 1, 2002   Volume 20, Issue 3 607-614 doi: 10.1016/S0736-0266(01)00138-3
Les CM, Stover SM, Keyak JH, Taylor KT, Kaneps AJ.Our hypothesis was that post-yield mechanical behavior of compact bone material in compression, defined as the stress, strain, or energy absorbed between 0.2% strain-offset and the point of maximum stress, is correlated with material density, modulus, strength, histomorphometric evidence of remodeling, and post-failure gross specimen morphology. Post-yield behavior of compact bone material from the third metacarpal bone of 10 horses, ages 5 months to 20 years, was investigated using single-load compression-to-failure. The post-yield stress, strain, and absorbed energy were compared with the co...
Comparison of bending modulus and yield strength between outer stratum medium and stratum medium zona alba in equine hooves.
American journal of veterinary research    May 9, 2001   Volume 62, Issue 5 745-751 doi: 10.2460/ajvr.2001.62.745
Wagner IP, Hood DM, Hogan HA.To determine whether the bending modulus and yield strength of the outer stratum medium (SM) differed from those of the SM zona alba (SMZA) and to what degree they differed. In addition, a comparison was made among our values and values reported elsewhere. Methods: 10 normal equine feet. Methods: A 3-point bending technique was used to determine the bending modulus and yield strength of the outer SM and SMZA. Efforts were made to minimize biological and technical factors that could influence the bending modulus. Results: Bending modulus of the outer SM was (mean +/- SD) 187.6 +/- 41.3 MPa, whe...
Exercise affects the mechanical properties and histological appearance of equine articular cartilage.
Journal of orthopaedic research : official publication of the Orthopaedic Research Society    November 24, 1999   Volume 17, Issue 5 725-731 doi: 10.1002/jor.1100170516
Murray RC, Zhu CF, Goodship AE, Lakhani KH, Agrawal CM, Athanasiou KA.Dorsal carpal osteochondral injury is a major cause of reduced performance in horses undergoing high-intensity training. It was hypothesised that the mechanical behaviour and histology of cartilage are influenced by the intensity of exercise and by location within a joint. Relationships between histology and mechanical behaviour were identified in 2-year-old horses undergoing 19 weeks of high-intensity treadmill training or low-intensity exercise and then compared between groups. Dorsal and palmar test sites were identified on radial, intermediate, and third carpal articular surfaces after eut...
Exercise of young thoroughbred horses increases impact strength of the third metacarpal bone.
Journal of orthopaedic research : official publication of the Orthopaedic Research Society    March 14, 1998   Volume 15, Issue 6 862-868 doi: 10.1002/jor.1100150611
Reilly GC, Currey JD, Goodship AE.Exercise can have a profound effect on bone mass, but little is known of its effect on bone's material properties. In this experiment, our hypothesis was that a large difference in the training regimen of young thoroughbreds would produce a measurable difference in the mechanical properties of their bone material. When they were about 19 months old, eight thoroughbred racehorses were given one of two exercise regimens that lasted for 19 weeks: four horses (controls) were walked for 40 minutes a day but had no other exercise, and the remaining four (exercised) were additionally trotted for 20 m...
Mechanical properties of pathological equine superficial digital flexor tendons.
Equine veterinary journal. Supplement    May 1, 1997   Issue 23 23-26 doi: 10.1111/j.2042-3306.1997.tb05046.x
Crevier-Denoix N, Collobert C, Pourcelot P, Denoix JM, Sanaa M, Geiger D, Bernard N, Ribot X, Bortolussi C, Bousseau B.The objective of this study was to mechanically characterise superficial digital flexor tendon (SDFT) lesions. Eight pathological SDFTs, isolated from 6 adult horses, were tested in traction until rupture (at 1 mm/s). The stresses and strains simultaneously undergone by each of the 7 segments of a tendon were determined throughout the test, and the modulus of elasticity of each segment was evaluated from the segmental stress-strain curve thus obtained. These mechanical data were compared to those obtained on 10 normal SDFTs. After the test, the tendinous segments were submitted to a histologic...
An in vitro biomechanical investigation of the mechanical properties of dynamic compression plated osteotomized adult equine tibiae.
Veterinary surgery : VS    March 1, 1997   Volume 26, Issue 2 126-136 doi: 10.1111/j.1532-950x.1997.tb01475.x
McD○ LA, Stover SM, Taylor KT.To determine the monotonic mechanical properties of osteotomized adult equine tibiae stabilized with two dynamic compression plates (DCP) and to compare the mechanical properties with those of intact tibiae and in vivo loads. Methods: The compressive, bending, and torsional mechanical properties of plated and intact tibiae were assessed in vitro. Methods: Twelve pairs of adult equine tibiae. Methods: Tibiae were loaded in axial compression, craniocaudal 3-point bending, or torsion in external rotation in a single cycle to failure. Mechanical properties were determined from load-displacement da...
The effect of hole diameter on the torsional mechanical properties of the equine third metacarpal bone.
Veterinary surgery : VS    September 1, 1996   Volume 25, Issue 5 371-375 doi: 10.1111/j.1532-950x.1996.tb01429.x
Seltzer KL, Stover SM, Taylor KT, Willits NH.The torsional monotonic structural material properties of equine metacarpi with or without, either a 5/16 inch or 3/8 inch diameter bicortical lateromedial middiaphyseal hole were assessed to determine the effect of a hole on metacarpal strength. Torsional stiffness was not significantly effected by the presence of a bicortical hole, whereas yield and failure angles, torques and energies of metacarpi with a hole were 51% to 97% of those of intact bones. Significant differences were not apparent for yield and failure mechanical properties between metacarpi with a 5/16 inch diameter hole and met...
Strain-rate-dependent mechanical properties of the equine hoof wall.
The Journal of experimental biology    May 1, 1996   Volume 199, Issue Pt 5 1133-1146 doi: 10.1242/jeb.199.5.1133
Kasapi MA, Gosline JM.The mechanical properties of fully hydrated equine hoof wall were examined at various loading rates in compact tension (CT) fracture, tensile and three-point bending dynamic tests to determine possible effects of hoof wall viscoelasticity on fracture toughness and tensile parameters. Four cross-head rates were used in CT tests: 1.7 x 10(-5), 1.7 x 10 (-3), 1.7 x 10(-2) and 2.5ms-1; four strain rates were used in tensile tests: 1.6 x 10(-3), 3.2 x 10(-2), 0.33 and 70s(-1). Speeds for the highest test rates were achieved using a large, custom-built impact pendulum. Bending test frequencies range...