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In engineering construction, rock slopes often require stabilization due to the exposure of rock during excavation. External soil spray seeding (ESSS) is a widely used method for this purpose, but the shear performance at the interface between soil and rock can lead to external soil slippage. This study investigates the effects of polymer content and rock surface undulation angle on the shear strength of the soil-rock interface. Hydroxypropyl high-molecular polymer is used as a soil-strengthening agent, and various undulation angles of simulated rock surfaces (0°-50°) are tested using indoor direct shear tests. The results show that increasing the polymer content significantly enhances the shear strength. Under consistent undulation angle, the addition of 2 % polymer can lead to an increase in shear strength of up to approximately two times. The polymer primarily improves shear strength by increasing cohesion, although its effect on the internal friction angle is minimal. Increasing the undulation angle of the rock surface further improves shear strength, with a 50° angle providing a 0.9-fold increase in shear strength. Both polymer content and surface undulation angle improve the shear performance by increasing cohesion and internal friction. Mechanistically, the polymer formed hydrogen bonds and spatial networks to stabilize clay particles, while undulated interfaces promoted mechanical interlocking and soil-concrete contact area. These findings provide insight into the mechanisms by which polymer content and surface undulation angle enhance the shear strength of the soil-rock interface, contributing to more effective slope stabilization in ecological restoration projects.
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http://dx.doi.org/10.1016/j.jenvman.2025.126302 | DOI Listing |
Phys Chem Chem Phys
September 2025
School of Physics, Changchun University of Science and Technology, Changchun 130022, China.
The design of carbon allotropes that simultaneously exhibit mechanical robustness and quantum functionalities remains a longstanding challenge. Here, we report a comprehensive first-principles study of cT16, a three-dimensional sp-hybridized carbon network with topologically interlinked graphene-like sheets. The structure features high ideal tensile and shear strengths, with pronounced anisotropy arising from strain-induced bond rehybridization and interlayer slipping mechanisms.
View Article and Find Full Text PDFAdv Sci (Weinh)
September 2025
School of Stomatology, Xuzhou Medical University, Affiliated Stomatological Hospital of Xuzhou Medical University, Xuzhou, 221004, China.
Musculoskeletal disorders, including bone fractures, osteoarthritis, and muscle injuries, represent a leading cause of global disability, revealing the urgency for advanced therapeutic solutions. However, current therapies face limitations including donor-site morbidity, immune rejection, and inadequate mimicry of dynamic tissue repair processes. DNA-based hydrogels emerge as transformative platforms for musculoskeletal reconstruction, with their sequence programmability, dynamic adaptability, and biocompatibility to balance structural support and biological functions.
View Article and Find Full Text PDFRSC Adv
September 2025
Molecular Chemistry, Materials and Catalysis Laboratory, Faculty of Sciences and Techniques (FST-BM), University of Sultan Moulay Slimane (USMS) Béni-Mellal 23000 Morocco
Biopolymers derived from natural sources are sustainable, non-toxic, and biodegradable, making them attractive alternatives to fossil-based polymers. Among these, lignin has garnered significant attention due to its potential in adhesive applications. In this study, lignin was extracted from redwood ( L.
View Article and Find Full Text PDFClin Exp Dent Res
October 2025
Department of Dental Hygiene, Konyang University, Daejeon, Republic of Korea.
Objectives: This study aimed to evaluate the whitening effect, shear bond strength (SBS), microhardness, and microstructure of discolored resin brackets following whitening treatment with various concentrations of hydrogen peroxide (HP).
Material And Methods: Resin brackets were bonded to the enamel surface and discolored with a curry solution. Control (distilled water; DW) and experimental solutions of 8.
Soft Matter
September 2025
Nestlé Product Technology Centre, York, YO31 8FY, UK.
Particles with some degree of hydrophilicity are known to aggregate when directly dispersed in non-aqueous media. Proteins are generally insoluble in oil and have complex surface properties, but they may form networks in oil like more simple colloidal particles, depending on particle size and surface hydrophilicity. Here, the particle size of pea protein isolate (PPI) particles in oil was reduced to submicron sizes by stirred media milling.
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