矿山设备工具热处理用扭扭式换热器计算方法

A. Korobkov, M. Kulik, M. Maslakov
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The purpose of the research is to develop a methodology for calculating heat exchangers used as cold sources for cryogenic surface treatment of mining equipment tools in order to harden it. Research methods. The analysis of the current state of development of technical and technological solutions in the field of development and construction of heat exchangers was carried out through the use of such informal methods as: expert, morphological and factographic. To optimize the modeling calculations of the a priori selected configuration of the heat exchange surface, the method of uniform (blind) search was used. Research results and discussion: 1. In the course of the conducted research, the results of the analysis of the current state of development of technical and technological solutions in the field of development and construction of heat exchangers were obtained. 2. A method for calculating twisted heat exchangers has been developed. 3. It is determined that the presented method of calculating heat exchangers used as cold sources for cryogenic surface treatment of mining equipment tools in order to harden them allows optimization of modeling calculations a priori of the selected configuration of the heat exchange surface. 4. It is established that: heat exchangers with finned pipes should be used when the ratio of the heat transfer coefficient of the flow inside the pipes to the corresponding coefficient in the inter–tube space is 3 ...5 times greater. 5. The use of finned pipes in heat exchangers makes it possible to increase the area of the outer surface of the pipes due to finning, thereby improving the thermal characteristics of heat exchangers, while reducing its weight and size characteristics. 6. It has been revealed that heat exchangers with dense winding are less efficient compared to devices with sparse winding, and heat exchangers with smooth pipes should be used in cases of proximity of the values of the heat transfer coefficient of flows in the tube and inter-tube space. Resume: 1. The analysis of the current state of development of technical and technological solutions in the field of development and construction of heat exchangers was carried out. 2. A method has been developed for calculating heat exchangers used as cold sources for cryogenic surface treatment of mining equipment tools in order to harden them. 3. The developed method of calculating heat exchangers can be used to design heat exchangers consisting of pipes with different surface geometries that are wound onto the core in a spiral, used both in the extractive industries and in the engineering, chemical, oil and gas, rocket and space industries. 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引用次数: 0

摘要

介绍在现代条件下(矿床枯竭、开发条件复杂、对进口设备实施制裁等),通过增加采矿业使用的设备资源,包括加工钻孔冲击旋转工具,发挥了特殊作用。其中一种方法是对加工工具进行深冷处理,其结果是切削工具的硬度和耐磨性提高数倍。对于液态氮、氧、甲烷等低温物质的生产,提出了一种基于吸附低温技术的方法,该技术通过使用换热器来实现,其计算方法的发展是本文的主题。本研究的目的是开发一种计算用于采矿设备工具低温表面处理的冷源换热器的方法,以使其硬化。研究方法。通过使用专家、形态和事实等非正式方法,分析了换热器开发和建设领域技术和技术解决方案的发展现状。为了优化热交换表面先验选择配置的建模计算,使用了均匀(盲)搜索方法。研究结果与讨论:1。在所进行的研究过程中,获得了对换热器开发和建设领域技术和技术解决方案发展现状的分析结果。2.提出了一种计算扭曲换热器的方法。3.已经确定,所提出的计算用作采矿设备工具的低温表面处理的冷源以使其硬化的热交换器的方法允许优化热交换表面的所选配置的建模计算。4.确定:当管内流动的传热系数与管间空间的相应系数之比为3时,应使用带翅片管的换热器。。。5倍以上。5.在换热器中使用翅片管可以增加管道外表面的面积,从而改善换热器的热特性,同时降低其重量和尺寸特性。6.已经发现,与具有稀疏绕组的装置相比,具有密集绕组的热交换器效率较低,并且在管和管间空间中的流动的传热系数值接近的情况下,应使用具有光滑管道的热交换器。简历:1。分析了换热器开发和建设领域技术和技术解决方案的发展现状。2.提出了一种计算用作采矿设备工具低温表面处理冷源以使其硬化的换热器的方法。3.所开发的计算换热器的方法可用于设计换热器,换热器由不同表面几何形状的管道组成,这些管道以螺旋形式缠绕在堆芯上,用于采掘业和工程、化学、石油和天然气、火箭和航天工业。研究课题的进一步发展是根据能效标准对换热器的运行参数进行优化。
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Calculation method for twisted heat exchangers used for heat treatment of mining equipment tools
Introduction. In modern conditions (depletion of deposits, complication of development conditions, the application of sanctions on the import of equipment, etc.), a special role is played by increasing the resource of equipment used in the mining industry, including processing drilling impact-rotary tools. One of these methods is cryogenic processing of machining tools, as a result of which the hardness and wear resistance of the cutting tool increase several times. For the production of cryogenic substances such as nitrogen, oxygen, methane, etc. in the liquid state, a method is proposed based on the use of adsorption-cryogenic technology implemented through the use of heat exchangers, the development of calculation methods of which is the subject of this article. The purpose of the research is to develop a methodology for calculating heat exchangers used as cold sources for cryogenic surface treatment of mining equipment tools in order to harden it. Research methods. The analysis of the current state of development of technical and technological solutions in the field of development and construction of heat exchangers was carried out through the use of such informal methods as: expert, morphological and factographic. To optimize the modeling calculations of the a priori selected configuration of the heat exchange surface, the method of uniform (blind) search was used. Research results and discussion: 1. In the course of the conducted research, the results of the analysis of the current state of development of technical and technological solutions in the field of development and construction of heat exchangers were obtained. 2. A method for calculating twisted heat exchangers has been developed. 3. It is determined that the presented method of calculating heat exchangers used as cold sources for cryogenic surface treatment of mining equipment tools in order to harden them allows optimization of modeling calculations a priori of the selected configuration of the heat exchange surface. 4. It is established that: heat exchangers with finned pipes should be used when the ratio of the heat transfer coefficient of the flow inside the pipes to the corresponding coefficient in the inter–tube space is 3 ...5 times greater. 5. The use of finned pipes in heat exchangers makes it possible to increase the area of the outer surface of the pipes due to finning, thereby improving the thermal characteristics of heat exchangers, while reducing its weight and size characteristics. 6. It has been revealed that heat exchangers with dense winding are less efficient compared to devices with sparse winding, and heat exchangers with smooth pipes should be used in cases of proximity of the values of the heat transfer coefficient of flows in the tube and inter-tube space. Resume: 1. The analysis of the current state of development of technical and technological solutions in the field of development and construction of heat exchangers was carried out. 2. A method has been developed for calculating heat exchangers used as cold sources for cryogenic surface treatment of mining equipment tools in order to harden them. 3. The developed method of calculating heat exchangers can be used to design heat exchangers consisting of pipes with different surface geometries that are wound onto the core in a spiral, used both in the extractive industries and in the engineering, chemical, oil and gas, rocket and space industries. The further development of the research topic is the optimization of the operating parameters of the heat exchanger according to the criterion of energy efficiency.
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来源期刊
Sustainable Development of Mountain Territories
Sustainable Development of Mountain Territories Social Sciences-Sociology and Political Science
CiteScore
2.40
自引率
0.00%
发文量
36
期刊介绍: International scientific journal "Sustainable development of mountain territories" covers fundamental and applied regional, national and international research and provides a platform to publish original full papers and related reviews in the following areas: engineering science and Earth science in the field of sustainable development of mountain territories. Main objectives of international scientific journal "Sustainable development of mountain territories" are: raising the level of professional scientific workers, teachers of higher educational institutions and scientific organizations; presentation of research results in the field of sustainable development of mountain areas on the technical aspects and Earth sciences, informing readers about the results of Russian and international scientific forums; improved review and editing of the articles submitted for publication; ensuring wide dissemination for the published articles in the international academic environment; encouraging dissemination and indexing of scientific works in various foreign key citation databases.
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