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10 results for “Tensile Strength”
root tensile strength
<p>datasets containing information on the root tensile strength for the following plant species: </p> <p>- Ash</p> <p>- Goat willow</p> <p>- Basket willow</p> <p>- Sycamore/maple</p> <p>- Silene dioica</p> <p>- Erigeron acris</p> <p>Root tensile strength was measured with a universal testing machine. Root tensile strength is a useful variable for estimating the degree of soil reinforcement provided by plant roots </p>
Cotton Strip Decomposition - Tensile Strength on Hog Island, VA 1991
Data represent tensile strength loss in cotton strip fibers over these time periods across teh Hog Island Chronosequence. This is an assay for decomposition rates that controls for substrate quality. The assay was also conducted in plots fertilized with nitrogen.
Tensile strength of Ganoderma pure mycelium - raw data
<p>The dataset consists of tensile strength values of pure mycelium of <em>Ganoderma lingzhi</em> and <em>Ganoderma sessile</em> produced using liquid state fermentation. The substrate for liquid state fermentation was supplemented with 0,5% of lignin and 2% of lignin (reference was 0% lignin). Raw data from universal testing machine are also provided. Another variant is a modification of obtained mycelium leather with glycerol treatment (immersion of samples in 20% glycerol solution for 24 hours).</p>
Tensile strength data of Euplectella aspergillum basalia spicules.
<p>Tensile strength data of <em>Euplectella aspergillum</em> basalia spicules. The data is presented and discussed in detail in the following arXiv preprint: <em>Non-classical scaling of strength with size in marine biological fibers</em>. </p>
A Comparison Study of the Tensile Strength of Sutures Used in Dermatologic Surgery on the Day of Suture Removal, Following Wound Care With Two Different Products
ClinicalTrials.gov study NCT01533675. IPD Sharing: Not stated. Countries: 1. Publications: 2.
Effect of Aging on Micro-tensile Bond Strength and Color Stability of Self-adhesive Resin Composite
ClinicalTrials.gov study NCT06463574. IPD Sharing: YES. Countries: 1. Publications: 6.
Data from: Origin of tensile strength of a woven sample cut in bias directions
Textile fabrics are highly anisotropic, so that their mechanical properties including strengths are a function of direction. An extreme case is when a woven fabric sample is cut in such a way where the bias angle and hence the tension loading direction is around 45° relative to the principal directions. Then, once loaded, no yarn in the sample is held at both ends, so the yarns have to build up their internal tension entirely via yarn–yarn friction at the interlacing points. The overall fabric strength in such a sample is a result of contributions from the yarns being pulled out and those broken during the process, and thus becomes a function of the bias direction angle θ, sample width W and length L, along with other factors known to affect fabric strength tested in principal directions. Furthermore, in such a bias sample when the major parameters, e.g. the sample width W, change, not only the resultant strengths differ, but also the strength generating mechanisms (or failure types) vary. This is an interesting problem and is analysed in this study. More specifically, the issues examined in this paper include the exact mechanisms and details of how each interlacing point imparts the frictional constraint for a yarn to acquire tension to the level of its strength when both yarn ends were not actively held by the testing grips; the theoretical expression of the critical yarn length for a yarn to be able to break rather than be pulled out, as a function of the related factors; and the general relations between the tensile strength of such a bias sample and its structural properties. At the end, theoretical predictions are compared with our experimental data.
Data from: Origin of tensile strength of a woven sample cut in bias directions
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Clinical Performance and Remineralization Potential of Self- Assembling Peptide P11-4 Containing Fluoride Versus Er, Cr: YSGG Laser Treatment and Micro Tensile Bond Strength of Giomer Restoration in C
ClinicalTrials.gov study NCT07065305. IPD Sharing: Not stated. Countries: 0. Publications: 0.
Raw results of all tests (tensile strength in bending, compression, modified Chapelle and consistency index).
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