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951.
Turkey has a great number of hazelnut trees that possess nutritious components. However, only the inside part of the hazelnut is used as a nutrient, while the rest of it is waste. This study suggests that the waste parts of the Turkish hazelnut could be used as a natural dye for dyeing textile fabrics. The dyeing properties of the leaves, coat, shell and dice of the hazelnut were studied on wool, cotton and viscose fabric by using three different mordants: copper sulphate, iron sulphate and aluminium sulphate. The selected dyed fibre sample surfaces were observed using a scanning electron microscope. The colour strength (K/S), light, washing, rubbing, and perspiration fastness levels of the dyed fabrics were investigated. The experimental natural dyeing results indicate that waste hazelnut‐based products can be used as a natural dye for textile coloration. 相似文献
952.
The macroscopic mechanical properties of colloidal particle gels strongly depend on the local arrangement of the powder particles. Experiments have shown that more heterogeneous microstructures exhibit up to one order of magnitude higher elastic properties than their more homogeneous counterparts at equal volume fraction. In this paper, packings of spherical particles are used as model structures to computationally investigate the elastic properties of coagulated particle gels as a function of their degree of heterogeneity. The discrete element model comprises a linear elastic contact law, particle bonding and damping. The simulation parameters were calibrated using a homogeneous and a heterogeneous microstructure originating from earlier Brownian dynamics simulations. A systematic study of the elastic properties as a function of the degree of heterogeneity was performed using two sets of microstructures obtained from Brownian dynamics simulation and from the void expansion method. Both sets cover a broad and to a large extent overlapping range of degrees of heterogeneity. The simulations have shown that the elastic properties as a function of the degree of heterogeneity are independent of the structure generation algorithm and that the relation between the shear modulus and the degree of heterogeneity can be well described by a power law. This suggests the presence of a critical degree of heterogeneity and, therefore, a phase transition between a phase with finite and one with zero elastic properties. 相似文献
953.
Tim Huber Jörg Müssig Owen Curnow Shusheng Pang Simon Bickerton Mark P. Staiger 《Journal of Materials Science》2012,47(3):1171-1186
Cellulose is a fascinating biopolymer of almost inexhaustible quantity. While being a lightweight material, it shows outstanding
values of strength and stiffness when present in its native form. Unsurprisingly, cellulose fibre has been rigorously investigated
as a reinforcing component in biocomposites. In recent years, however, a new class of monocomponent composites based on cellulosic
materials, so-called all-cellulose composites (ACCs) have emerged. These new materials promise to overcome the critical problem
of fibre–matrix adhesion in biocomposites by using chemically similar or identical cellulosic materials for both matrix and
reinforcement. A number of papers scattered throughout the polymer, composites and biomolecular science literature have been
published describing non-derivatized and derivatized ACCs. Exceptional mechanical properties of ACCs have been reported that
easily exceed those of traditional biocomposites. Several different processing routes have been applied to the manufacture
of ACCs using a broad range of different solvent systems and raw materials. This article aims to provide a comprehensive review
of the background chemistry and various cellulosic sources investigated, various synthesis routes, phase transformations of
the cellulose, and mechanical, viscoelastic and optical properties of ACCs. The current difficulties and challenges of ACCs
are clearly outlined, pointing the way forward for further exploration of this interesting subcategory of biocomposites. 相似文献
954.
Johann Füller Katja Hutter Niclas Kröger 《International Journal of Project Management》2021,39(2):183-195
While crowdsourcing may strengthen a company's innovation performance, it is only rarely embedded in organizations as an innovation practice. Our action research shows that organizations often struggle with crowdsourcing projects as they represent a different form of innovation projects and require additional capabilities and skills e.g., to frame a crowd challenge, deal with IP rights, manage the crowd, or integrate the vast input into innovation projects. To overcome these problems, organizations have to invest in project-led learning to establish easy-to-use templates and routines e.g., to handle offered incentives or the applied winner selection processes. They further need to enable business-led learning as the established innovation structures, processes, and management practices do not cope with crowdsourcing projects and present some rigidities causing high coordination efforts. Organizations that are willing to run a number of consecutive crowdsourcing projects may rapidly improve their capabilities and even come up with scalable crowdsourcing services. Our findings further suggest that crowdsourcing, digital platforms, artificial intelligence, and as-a-service approaches may also add to general project capability building. 相似文献
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E. Altunsaray G. Neser C. Erbil K. T. Gürsel D. Ünsalan 《Materialwissenschaft und Werkstofftechnik》2012,43(12):1053-1058
This study is aimed to find the fatigue behavior of Glass Reinforced Plastics, a material which is a widely preferred material for small marine crafts, as well as several other applications. The type of composite tested is hand‐laid E‐glass non‐crimp reinforcements with an polyester resin matrix. The specimens were produced in two standard thicknesses and with these material directions and were tested both under atmospheric and simulated seawater environments for fatigue. It was seen that the results of fatigue lifetime obtained by testing the material in seawater is much lower than the results obtained from testing similar specimens under atmospheric conditions. However, the stress curves indicate the same slope, suggesting that the fatigue failure mechanism of both testing conditions is the same and the fiber‐related factors dominate. It was found that the thickness and material direction did not have a significant effect on the fatigue behavior of the material. 相似文献
959.
H. Engelhardt B. Hallstedt M. Drüe A. Löffler M. Schick M. Rettenmayr 《Advanced Engineering Materials》2012,14(5):319-323
An experimental approach employing temperature and concentration gradients is presented that is suitable for determining a sequence of solvus concentrations in a single experimental cycle. The Al–Mg–Si system is used as an example. Al solid solutions (“(Al)”) with different compositions and Mg2Si precipitates were equilibrated in the temperature range between 350 and 550 °C. The equilibrium compositions of (Al) were measured by energy dispersive X‐ray spectroscopy in the transmission electron microscope. The coupled temperature‐concentration values represent a path on the ternary solvus surface. Calphad calculations using different thermodynamic data sets were carried out to relate the experimental results to phase diagram evaluations. The measured solvus path agrees well with solvus data calculated with most recent thermodynamic parameter sets. The experimental approach can be applied to multicomponent alloys irrespective of their number of components with the same experimental effort. The efficiently generated solubility data are suitable to support phase diagram evaluations of multicomponent systems by the Calphad method. 相似文献
960.