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Optimization of Finishing Process and Energy Savings in Denim Textile Facility
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作者 Md. Enamul Haque Kaisul Kabir +5 位作者 Md. Asib Khan Mohammad Abu Syed Nizami Rajib Kabiraj Mohammed Fakhruddin Md. Golam Arif Md. Abu Hanif 《Journal of Textile Science and Technology》 2023年第3期151-164,共14页
Denim is widely accepted among exported textile products due to its aesthetics, appearance, and fashion. Practitioners employed several physical or chemical treatments to improve denim qualities in denim finishing ope... Denim is widely accepted among exported textile products due to its aesthetics, appearance, and fashion. Practitioners employed several physical or chemical treatments to improve denim qualities in denim finishing operations. So, several treatment processes, including enzymatic, bleaching, singeing, heat set, and ozone finish, are used, which made this processing more energy consumption and time-consuming. Therefore, it is significant to investigate how changing the chemicals and raw ingredients could improve the finishing process, which is environmentally and economically beneficial for sustainable production practices in the denim finishing process. This study’s research design comprises an experimental investigation in a denim plant in Bangladesh. Two different fabrics were chosen to analyze, determining the potential savings of finishing on the denim fabrics’ performance characteristics. By deducting singeing and heat-set processes, the researchers ran an experimental process by maintaining the same length of fabric. Then, the impacts of finishing process optimization on the mechanical, thermal, and comfort parameters of drape, stiffness, and tear strength were examined. The study’s findings demonstrated that this experiment increased productivity and reduced the finishing unit’s energy consumption without compromising the denim fabrics’ quality. This study significantly impacts environmental sustainability by preserving limited energy resources and manufacturing denim finishing processes. 展开更多
关键词 finishing process Energy Savings Denim Fabrics Potential Savings process Optimization Cotton-Elastane Fabric
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Amending Research on the Expression of the Contact Force of the Spindle Barrel Finishing Based on EDEM Simulation 被引量:1
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作者 Na Wang Shengqiang Yang +2 位作者 Tingting Zhao Bo Cao Chengwei Wang 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2020年第6期105-117,共13页
The spindle barrel finishing is commonly used to improve the surface integrity of the important parts of the high-end equipment while it is difficult to provide enough test artifacts for the traditional trial and erro... The spindle barrel finishing is commonly used to improve the surface integrity of the important parts of the high-end equipment while it is difficult to provide enough test artifacts for the traditional trial and error experiment to obtain the desirable processing technology.The EDEM simulation of the spindle barrel finishing can provide effective help for the process design,however,the difference between the simulation and experiment is closely related to the selection of the contact model during simulation.In this paper,simulations and experiments are conducted based on the identical apparatus and conditions to facilitate the comparison and validation between each other.Based on the Hertz contact theory,the effect of the material properties of contact objects and the relative position of the workpiece on the contact force is qualified.The expression of the correlation coefficient of the contact model is deduced.Then the formula for calculating the contact force between the barrel finishing abrasive and the workpiece that includes influence coefficient of the material properties and the relative positions is established.Finally,the contact force calculation formula is verified by changing the rotating speed.The result shows that the material correction coefficient ranges from 1.41 to 2.38,which is inversely related to the equivalent modulus E.The position correction coefficient ranges from 2.0 to 2.3.The relative error value between the calculation result and the experimental test result is from 0.58%to 14.07%.This research lay a theoretical foundation for the correction theory of the core elements of the spindle barrel finishing process. 展开更多
关键词 Spindle barrel finishing processing EDEM simulation Hertz-Mindlin(no slip)contact model Average contact force Modified coefficient
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Mutagenicity and Genotoxicity of Organic Extracts from Finished Water with Different Treatment Process
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作者 FANG Dao Kui ZHOU Guo Hong +1 位作者 YU Shu Yuan FENG Jin Shu 《Biomedical and Environmental Sciences》 SCIE CAS CSCD 2018年第8期632-636,共5页
Purification of surface water is widely practiced with conventional water treatment processes like coagulation-flocculation, sedimentation, filtration,and disinfection. Some reports have specified that conventional wa... Purification of surface water is widely practiced with conventional water treatment processes like coagulation-flocculation, sedimentation, filtration,and disinfection. Some reports have specified that conventional wastewater purification processes do not effectively remove many chemical contaminants, 展开更多
关键词 Mutagenicity and Genotoxicity of Organic Extracts from Finished Water with Different Treatment process
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纱线落水缩率与毛织物染整缩率的关系
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作者 廖添益 陈文湘 《中国纺织大学学报》 CSCD 1989年第3期8-12,共5页
本文主要研究了在不同染整工序、不同松弛条件、不同经纬密度条件下,毛纱落水松弛缩率与织物染整缩率的关系。用数量化理论建立了它们的回归方程。方程复相关系数极高,可直接应用于生产。最后计算了各因素与毛织物染整缩率的偏相关系数。
关键词 染整 缩率 纱线 毛织物
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Optimal interface surface determination for multi-axis freeform surface machining with both roughing and finishing 被引量:3
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作者 Lufeng CHEN Pengcheng HU +1 位作者 Ming LUO Kai TANG 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2018年第2期370-384,共15页
In the current practice of multi-axis machining of freeform surfaces, the interface surface between the roughing and finishing process is simply an offset surface of the nominal surface. While there have already been ... In the current practice of multi-axis machining of freeform surfaces, the interface surface between the roughing and finishing process is simply an offset surface of the nominal surface. While there have already been attempts at minimizing the machining time by considering the kinematic capacities of the machine tool and/or the physical constraints such as the cutting force, they all target independently at either the finishing or the roughing process alone and are based on the simple premise of an offset interface surface. Conceivably, since the total machining time should count that of both roughing and finishing process and both of them crucially depend on the interface surface, it is natural to ask if, under the same kinematic capacities and the same physical constraints, there is a nontrivial interface surface whose corresponding total machining time will be the minimum among all the possible(infinite) choices of interface surfaces, and this is the motivation behind the work of this paper. Specifically, with respect to the specific type of iso-planar milling for both roughing and finishing, we present a practical algorithm for determining such an optimal interface surface for an arbitrary freeform surface. While the algorithm is proposed for iso-planar milling, it can be easily adapted to other types of milling strategy such as contour milling. Both computer simulation and physical cutting experiments of the proposed method have convincingly demonstrated its advantages over the traditional simple offset method. 展开更多
关键词 Feed rate finishing and roughing process Interface surface lso-planar tool path Physical constraints
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