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61.
目前大多数铜冶炼渣选矿厂采用半自磨机—球磨机流程(SAB流程)进行粉磨作业,由于铜冶炼渣硬度大、性脆、易碎难磨,磨机衬板及磨矿介质消耗较大。针对某铜冶炼渣选矿厂开展了SAB流程衬板和钢球的优化研究。结果表明:①半自磨机用压条型铬钼钢衬板替代整体式锰钢衬板,使用寿命提高106.67%;球磨机用橡胶衬板替代锰钢衬板,使用寿命提高30%以上;检修强度大幅度降低,设备运转率明显提高。②半自磨机和球磨机由添加铸造钢球变更为锻造钢球,失圆率大幅降低;半自磨机补加球球径由120 mm调整为140 mm,增强了冲击破碎效果;球磨机补加钢球球径由60 mm调整为50 mm,磨矿浓度从75%提高到80%,研磨效果得到改善。③在磨矿细度保持不变的情况下,系统台时处理能力提高15.55%,钢球消耗降低26.32%,电力单耗降低26.67%,单位磨矿成本降低29.07%。企业经济效益和社会效益得到显著提高,对同行业具有一定的参考价值。  相似文献   
62.
A facile and effective method was proposed to prepare the molecularly imprinted fluorescence sensor with carbon quantum dots, which were modified vinyl groups by acrylic acid on the surface. The obtained fluorescence composite material was investigated by transmission electron microscope and Fourier transform infrared spectra. After the experimental conditions were optimized, a linear range of 1.0–60 μmol L−1 was obtained and the detection limit was 0.17 μmol L−1. The novel fluorescence sensor can be successfully used to detect tetracycline in real samples. This study provides a convenient strategy for selective recognition and rapid detection of tetracycline in the complex environment.  相似文献   
63.
In this study, yttrium iron garnet co-doped with Zn and Zr atoms with a chemical formula Y3ZnxZrxFe(5−2x)O12 (x = 0.0-0.3) has been successfully prepared by the solid-state reaction method. The effects of doping concentration on the microstructure, crystal structure, magnetic properties, and dielectric properties of Y3ZnxZrxFe(5−2x)O12 were investigated. The microstructure analysis indicates that co-doping of YIG with Zn and Zr can effectively reduce the grain size of the ceramic. The crystal structure results reveal that the doping concentration of Zn–Zr has substantial influence on the lattice parameters of YIG, such as, increases the lattice constant, crystal cell size, and interplanar spacing. However, the second phase of ZrO2 appears once ≥ 0.15. Additionally, the dielectric properties of YIG ferrite can be regulated using this Zn–Zr co-doping method. Zn–Zr co-doping can improve the dielectric stability and reduce the dielectric loss at high temperature. The magnetization measurement shows that the saturation magnetization is stabilized at x < 0.15, and the magnetic loss is decreased with the increase in the doping concentration. Overall, the findings show that the ceramic with x = 0.1 exhibits better properties included high saturation magnetization (24.607 emu/g), low magnetic loss (0.0025 @ 1 MHz), and relatively low dielectric loss (496 @ 400°C).  相似文献   
64.
Three kinds of ethylene-octene copolymers (POE) were melt-blended with high-density polyethylene (PE-HD) in different proportions. Detailed characterizations were conducted to analyze their structural differences of POE and its effects in toughening PE-HD. The higher molecular weight POE can improve the toughness of PE-HD. 60:40 PE-HD/POE is elongated to break up to 700% while impact strength is 84.7 kJ/m2 at −30°C, which is 21-fold of PE-HD. In the brittle to ductile transition (BDT) during impact, the fracture mechanism changes from the crazing mode to the shear yield-plastic deformation mode. The BDT temperature decreases as the POE molecular weight and its content increase. The interface strength in tension is estimated to access their effects. The Boltzmann-type models were successfully extended to describe the typical S-shaped curves in BDT of notched impact strength vs POE content or temperature. The supplementary decay model is suggested for the attenuation in toughening. Transition map in impact is proposed to select the use range of composition (c ) and temperature (T ) for high toughness. The curves are converted into 3D graph of T -c -impact strength for illustrating their coupling-separate effects, and further into the contour map of impact strength in T -c space for finding their partial equivalence.  相似文献   
65.
In this work, we report the tuning effect of the Si substitution on the magnetic and high frequency electromagnetic properties of R2Fe17 compounds and their paraffin composites. It is found that the introduction of Si can remarkably improve the magnetic and electromagnetic properties of the R2Fe17 compounds, making the R2Fe17–xSix-paraffin composites excellent microwave absorption materials (MAMs). By introducing the Si element, their saturation magnetizations decrease slightly, while much higher Curie temperatures are obtained. Furthermore, better impedance match is reached due to the decrease of the high-frequency permittivity ε′ by about 40%–50%, which finally enhances the performance of the microwave absorption. The peak frequency (fRL) of the reflection loss (RL) curve moves toward high frequency domain and the qualified bandwidth (QB, RL ≤ ?10 dB) increases remarkably. The maximum QB of 3.3 GHz (12.0–15.3 GHz) is obtained for the Sm1.5Y0.5Fe15Si2-paraffin composite (d = 1.0 mm) and the maximum RL of ?53.6 dB is achieved for Nd2Fe15Si2-paraffin composite (d = 2.2 mm), both surpassing most of the reported MAMs. Additionally, a distinguished dielectric microwave absorption peak is observed, which further increases the QB in these composites.  相似文献   
66.
梁佰战  郑力宁  肖波 《特殊钢》2019,40(2):28-30
淮钢采用90 t顶底复吹转炉-LF-RH-200 mm×200 mm连铸-连轧工艺流程试生产了2炉Φ60 mm链轨节用钢15B36Cr(/%:0.30~0.37C、0.15~0.30Si、1.20~1.50Mn、≤0.040P、≤0.0505、0.20~0.40Cr、≤0.25Ni、≤0.35Cu、≤0.06Mo、0.0005~0. 0030B)。通过加严影响淬透性化学成分,控制出钢碳≥0.08%,转炉有效挡渣和下渣检测系统控制下渣,LF炉铝粒和电石渣面脱氧,RH最低真空度处理20~30 min,结晶器电磁搅拌、末端电磁搅拌和连铸低过热度保护浇铸等工艺措施,15B36Cr钢的化学成分稳定控制在内控范围内,除了B粗以外,其他类型非金属夹杂物级别全部控制在1.0以内,淬透性控制在较窄的范围内,试制钢种关键技术指标达到客户和预期设计要求。  相似文献   
67.
68.
基于吴庄铁矿盘间柱宽度不确定性、两侧均为充填体且高度大的现状,为安全高效回采盘区间柱,制定了盘区间柱两侧采场充填体取芯设计方案,并对充填体进行制样,进行了实验室试块抗压强度试验。试验结果表明:一步骤采场(矿柱)充填体强度整体符合设计强度要求,二步采场充填体强度整体偏低,盘区间柱宽度较设计变化较大,宽度极其不规整,整体呈上窄下宽的规律。鉴于盘区间柱宽度不规则、二步骤采场充填体强度低于预期、采场高度大和盘区间柱回采时不能大面积暴露的特点,采用留设一定厚度间柱和采用较小采场长度的措施进行回采方案制定,制定了小采场分段空场嗣后充填法回采方案。该方案的制定和实施,对于其他类似地下矿山三步骤间柱回采工程具有借鉴意义。  相似文献   
69.
通过分析热转印性能的影响因素合成了不同结构的聚酯树脂,研究了树脂酸值对热转印性能的影响,同时研究了部分单体对聚酯树脂热转印性能的影响。采用 DSC热分析法研究了固化促进剂对粉末涂料固化行为的影响,结果表明:选择合适的固化促进剂对涂层转印性能的提高有至关重要的作用。  相似文献   
70.
The corrosion behavior of synthetic Cu–Sn bronze alloys with six different Sn contents was examined through an electrochemical test and a synthetic test in a simulated corrosive medium. The mechanism of corrosion and the morphology of the corroded surfaces were characterized through field emission scanning electron microscopy equipped with energy-dispersive spectroscopy. At the corrosion potential, the corrosion behavior appears to be determined by the charge transfer step and the diffusion process. It was found that the bronze-IV (Cu–26.8Sn) specimen exhibited the best corrosion resistance, as evidenced by a low corrosion current density and a high impedance. This improvement resulted from an increase in the content of the Cu–Sn solid solution in the alloy, which was conducive to forming a relatively more protective passive film on the surface of the bronze alloy. This finding would be valuable in the anticorrosion protection of archeological artefacts after their excavation.  相似文献   
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