Aims: The goal of this study was to determine the mechanical properties of different esthetic and conventional orthodontic wires in three-point and four-point bending tests, and in a biomechanical test employing three bracket systems.
Methods: The behavior of round wires with a diameter of 0.46 mm (0.018″) were investigated: uncoated nickel titanium (NiTi) wires, surface modified NiTi wires; FLI Orthonol Wire and glass fiber reinforced plastic wires. The biomechanical bending test was performed using the following bracket types: metal brackets (Discovery, Dentaurum), ceramic brackets (Fascination, Dentaurum), and plastic brackets (Elegance, Dentaurum). All bending tests were performed in the orthodontic measurement and simulation system (OMSS) at a temperature of 37 °C. The classical three-point bending test was performed according to an ISO standard (DIN EN ISO 15841:2007) using the appropriate thrust die and supports with a predefined span of 10 mm. In the other tests the supports or interbracket distances were chosen such that the free wire length was also 10 mm (5 mm between adjacent brackets). All wires were loaded centrally to a maximum of 3.1 and 3.3 mm in the biomechanical test, respectively. The force was measured upon unloading with a loading velocity of 1 mm/min. Each specimen was loaded twice and a total of 10 specimens tested for each product. Weighted means and the error of the weighted mean were calculated for each product.
Results: Fiber reinforced wires displayed lowest forces in three-point bending with values of 0.4 N at a displacement of 1 mm and 0.7 N at a 2 mm displacement. In four-point bending the forces were 0.9 N and 1.4 N, respectively, at the same displacements. Almost all of the translucent wires showed fracture upon bending at displacements greater than 3 mm, independent of the bending test and bracket type. The different investigated NiTi wires, surface modified or conventional, only showed minor variation, e.g., 2.2 N for rematitan Lite White and 2.0 N for rematitan, 2.1 N for FLI Coated Orthonol and 1.7 N for Orthonol in four-point bending. The rhodinized wire generated forces between these values (2.1 N).
Conclusion: The translucent wires had the lowest forces in all three bending tests; however, displacements above 3 mm resulted in increased risk of fracture. Forces of investigated NiTi wires were very high and in part above clinically recommended values.
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http://dx.doi.org/10.1007/s00056-016-0078-5 | DOI Listing |
Sci Rep
January 2025
College of Mechanical and Electrical Engineering, Shihezi University, Shihezi, 832003, China.
In response to the rotary ploughing equipment in the stubble land to implement protective operations, the stubble is large in number and strong in toughness, not easy to crush, resulting in rotary ploughing equipment to produce entanglement and increased resistance to rotary ploughing and other issues. In this study, researchers designed a bionic rotary tillage blade (B-RTB) based on the bionic structural equations of the Marmota claw. A straw-soil complex shear performance test was conducted to investigate the effect of straw on soil shear strength.
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January 2025
School of Naval Architecture Ocean & Civil Engineering, Shanghai Jiao Tong University, Shanghai, 200240, China.
When long-span beams undergo large, the strength of the beam material cannot be fully utilized. To solve this problem, a prestressed unequal-walled rectangular concrete-filled steel box (PURCFSB) beam is proposed in this paper. The prestressing is added to the concrete-filled steel tubular (CFST) beam and the section is designed.
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October 2024
Department of Family Medicine, West Virginia University, Morgantown, West Virginia, USA.
Objective: Stiff person syndrome (SPS) is a rare neurological disorder. Treatments are limited, and non-pharmacologic therapies are recommended based on symptomatology. A G2P2002 post-menopausal 60-year-old female with hypertension, obesity, and type II diabetes, and SPS secondary to a paraneoplastic process cause by endometrioid ovarian adenocarcinoma who presented to acupuncture clinic seeking treatment for SPS and its sequela.
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December 2024
Key Laboratory of Transportation Tunnel Engineering, School of Civil Engineering, Ministry of Education, Southwest Jiaotong University, Chengdu, 610031, China.
Open Vet J
November 2024
Orthopedics Unit, "Dr. Victor Popescu" Emergency Military Hospital, Timisoara, România.
Background: Cancellous bone mechanical properties are directly linked to structural integrity, which is a result of bone quantity, the quality of its bone matrix, and its microarchitecture. Several studies highlighted the bone behavior under specific loads, contributing to understanding risk factors and developing more effective therapeutic strategies. The anatomy and stability of iliac bone fractures, providing insight into pelvic trauma management.
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