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1.
This study evaluated the direct effect of a phytochemical, hesperidin, on pre-osteoblast cell function as well as osteogenesis and collagen matrix quality, as there is little known about hesperidin’s influence in mineralized tissue formation and regeneration. Hesperidin was added to a culture of MC3T3-E1 cells at various concentrations. Cell proliferation, viability, osteogenic gene expression and deposited collagen matrix analyses were performed. Treatment with hesperidin showed significant upregulation of osteogenic markers, particularly with lower doses. Mature and compact collagen fibrils in hesperidin-treated cultures were observed by picrosirius red staining (PSR), although a thinner matrix layer was present for the higher dose of hesperidin compared to osteogenic media alone. Fourier-transform infrared spectroscopy indicated a better mineral-to-matrix ratio and matrix distribution in cultures exposed to hesperidin and confirmed less collagen deposited with the 100-µM dose of hesperidin. In vivo, hesperidin combined with a suboptimal dose of bone morphogenetic protein 2 (BMP2) (dose unable to promote healing of a rat mandible critical-sized bone defect) in a collagenous scaffold promoted a well-controlled (not ectopic) pattern of bone formation as compared to a large dose of BMP2 (previously defined as optimal in healing the critical-sized defect, although of ectopic nature). PSR staining of newly formed bone demonstrated that hesperidin can promote maturation of bone organic matrix. Our findings show, for the first time, that hesperidin has a modulatory role in mineralized tissue formation via not only osteoblast cell differentiation but also matrix organization and matrix-to-mineral ratio and could be a potential adjunct in regenerative bone therapies.  相似文献   
2.
This paper focuses on the configuration design of flexure hinges with a prescribed compliance matrix and preset rotational center position. A new method for the topology optimization of flexure hinges is proposed based on the adaptive spring model and stress constraint. The hinge optimization model is formulated by maximizing the bending displacement with a spring while optimizing the compliance matrix to a prescribed value. To avoid numerical instability, an artificial spring is used as an auxiliary calculation, and a new strategy is developed for adaptively adjusting the spring stiffness according to the prescribed compliance matrix. The maximum stress of flexure hinge is limited by using a normalized P-norm of the effective von Mises stress, and a position constraint of rotational center is proposed to predetermine the position of the rotational center. In addition, to reduce the error of the stress measurement, a simple but effective filtering method is presented to obtain a complete black-and-white design. Numerical examples are used to verify the proposed method. Topology results show that the obtained flexure hinges have the prescribed compliance matrix and preset rotational center position while also meeting the stress requirements.  相似文献   
3.
硅橡胶复合绝缘子因其优异的憎水性及憎水迁移性而具备较好的防污闪能力,往往作为应对污闪事故的首选方案。但在部分特殊工业粉尘地区,复合绝缘子在短时间运行后会出现爬电及蚀损现象,并发展为绝缘失效。为研究特殊工业粉尘地区复合绝缘子的腐蚀失效过程,测试了某特殊工业园区内运行的复合绝缘子的表面污秽度及污秽成分、污闪电压梯度、憎水性能及微观性能,并分析了其腐蚀失效过程。主要结论如下:绝缘子表面等值盐密为0.1~0.2 mg/cm2,其污秽成分与化工污源类似;存在自然污秽时绝缘子表面憎水性良好,但其憎水性的减弱、恢复及迁移特性均不能满足运行要求;绝缘失效的起因是电晕放电导致憎水性降低,进而导致伞裙电蚀损,最后发展为绝缘失效。  相似文献   
4.
Due to the growing energy requirements, the proportion of external thermal insulation composite systems (ETICS) installed has increased significantly during the past 50 years. Due to the longevity of these systems, ETICS waste is currently accumulating. Owing to the complex construction as well as a multitude of differently installed materials and substances of the past generations, there are many uncertainties and problems with the clean and low-pollutant processing of such systems. In the frame of this work, the ETICS were processed and sorted before being screened for ingredients or pollutants as well as for the purity of the recovered material fractions.  相似文献   
5.
The direct-synthesis of conductive PbS quantum dot (QD) ink is facile, scalable, and low-cost, boosting the future commercialization of optoelectronics based on colloidal QDs. However, manipulating the QD matrix structures still is a challenge, which limits the corresponding QD solar cell performance. Here, for the first time a coordination-engineering strategy to finely adjust the matrix thickness around the QDs is presented, in which halogen salts are introduced into the reaction to convert the excessive insulating lead iodide into soluble iodoplumbate species. As a result, the obtained QD film exhibits shrunk insulating shells, leading to higher charge carrier transport and superior surface passivation compared to the control devices. A significantly improved power-conversion efficiency from 10.52% to 12.12% can be achieved after the matrix engineering. Therefore, the work shows high significance in promoting the practical application of directly synthesized PbS QD inks in large-area low-cost optoelectronic devices.  相似文献   
6.
刘璐  庞杰 《粮油食品科技》2021,29(2):129-134
凝胶是一种性质介于固体和液体之间的特殊分散体系,魔芋葡甘聚糖(KGM)凝胶稳定性差、强度低,物理共混能方便、快捷地改善其凝胶性质。主要综述KGM复合凝胶的网络结构变化,并介绍不同复合凝胶在食品、医药、材料工程等领域的应用。分析表明,KGM复合凝胶网络能通过氢键、席夫碱反应、形成多重网络结构和填充的方式改善其凝胶特性。  相似文献   
7.
针对传统的压电能量采集装置固有频率高、工作频率范围窄及能量转换率低的问题,基于Timoshenko梁理论提出耦合弯曲-剪切载荷的L型压电振子,研究基于L型压电振子的复合压电结构的能量采集特性. 根据无线传感器的作业环境特点,研究L型悬臂梁的长度、宽度及延伸段长等因素对压电能量采集频率、输出电压峰值及能量转换效率的影响规律. 组合不同尺寸L型压电悬臂梁,研究设计回字形布局的阵列式复合振子. 经仿真分析与实验验证结果可知,在0~250 Hz低频环境下,能量采集频率为28~36 Hz、61~68 Hz、92~99 Hz以及103~111 Hz,较等尺寸传统阵列式压电复合振子覆盖频率平均提升了260%.  相似文献   
8.
为探索干寒地区新型波形钢腹板组合箱梁桥的温度场分布特征和温度效应,弥补现行规范中缺乏其温度梯度模式定义的不足。本文以西北干寒地区某新型波形钢腹板组合箱梁桥为研究对象,基于现场温度观测数据,分析该新型组合结构在日照作用下的温度分布规律,并运用最小二乘法拟合提出其二维温度梯度模式;建立新型波形钢腹板组合箱梁全桥精细化有限元模型,并通过实测温度梯度函数计算该桥的温度响应;探析压型钢板对新型波形钢腹板组合箱梁温度应力的影响规律。研究结果表明:基于现场实测数据拟合的竖向分段多项式和横向指数函数组成的新型波形钢腹板组合箱梁二维温度梯度,与实测温度场计算值吻合良好,可为该地区类似工程温度荷载计算提供参考;日照温度作用下,新型波形钢腹板组合箱梁顶板与腹板交界面存在明显的温度梯度;翼缘板上缘、顶板-腹板交界面和各箱室中轴线处出现的最大横向拉应力分别为2.42 MPa、1.83 MPa和1.26 MPa,可能引起桥面板开裂,在设计中应给予重视;实测温度梯度下,闭口型压型钢板可使各箱室顶板中轴线上缘横向拉应力降低0.5 MPa以上,对桥面板抗裂有利,而开口型压型钢板可使各箱室翼缘板上缘横向拉应力提高15%~18%,对桥面板抗裂不利。  相似文献   
9.
制备了晶须增韧乙烯-乙酸乙烯酯共聚物/低密度聚乙烯/氢氧化铝(EVA/PE-LD/ATH)复合材料,通过扫描电子显微镜(SEM)、热重分析仪(TG)、氧指数仪、锥形量热仪(CCT)、万能拉力机和高阻计等对添加不同晶须的EVA/PE-LD/ATH复合材料的微观结构、阻燃性能、力学性能和电学性能进行了表征。结果表明,ATH颗粒在复合材料中未出现明显团聚,复合材料中晶须呈交错分布并与基体界面结合致密;晶须对复合材料阻燃性能的提高源于晶须热解产物网络状骨架对炭层的增强作用;碱式硫酸镁晶须(MHSH)、硼酸铝晶须(ABW)和硫酸钙晶须(CSW)添加质量比为13.5∶6.75∶6.75的复合材料的800 ℃质量保留率为32.7 %,极限氧指数为26.8 %,热释放速率峰值为364.4 kW/m2,总热释放量为20.8 MJ/m2,总烟释放量为187.2 m2/m2,阻燃性能相对最优;MHSH具有降低复合材料热释放速率峰值、总烟释放量和增强复合材料拉伸强度的作用,而CSW能够延迟点燃时间,减弱出现轰燃的趋势,但增大了总烟释放量,同时,CSW还具有提高复合材料断裂伸长率的增韧作用;混合晶须对复合材料拉伸强度、邵氏硬度和电绝缘性能的影响有限。  相似文献   
10.
Diamond-like carbon (DLC) possesses brilliant and excellent properties, including excellent corrosion resistance as well as outstanding wear resistance. Ni and B co-doped DLC films were deposited on AZ91D magnesium alloy by electrodeposition under mild conditions (300 V and 25°C). Uniform and dense morphology of co-doped DLC films were observed, and Ni and B were uniformly incorporated into the carbon-based films. Among all the electrodeposits, the appearance of D and G peaks near 1330 and 1570 cm−1 revealed that the as-deposited films were typical DLC films. As the addition of Ni was increased to 0.05 g, the highest microindentation hardness, the lowest friction coefficient, and wear loss were achieved to be 164.5 HV, 0.3, and 0.6 × 10−5 kg/m, respectively. The amorphous carbon films fabricated at 0.05 g Ni had the lowest corrosion current density and the most positive corrosion potential, which was mainly due to the small and dense granular structure effectively hindering the penetration of corrosion media.  相似文献   
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