ASHRAE LV-11-C022-2011 Experimental Investigation of a Machine Tool Cooler Using Hot-Gas By-Pass Valves for Temperature Control.pdf
《ASHRAE LV-11-C022-2011 Experimental Investigation of a Machine Tool Cooler Using Hot-Gas By-Pass Valves for Temperature Control.pdf》由会员分享,可在线阅读,更多相关《ASHRAE LV-11-C022-2011 Experimental Investigation of a Machine Tool Cooler Using Hot-Gas By-Pass Valves for Temperature Control.pdf(8页珍藏版)》请在麦多课文档分享上搜索。
1、 Fu-jen Wang is associate professor, Kuei-I Tsai is senior lecturer and Jian-Wei Kao is graduate student in the Department of Refrigeration, Air Conditioning and Energy Engineering, National Chin-Yi University of Technology, Taiwan. Hao-chung Lee is senior researcher in the Energy and environment Re
2、search Laboratories, Industrial Technology Research Institute, Taiwan. Experimental Investigation of a Machine Tool Cooler Using Hot-Gas By-Pass Valves for Temperature Control Fu-Jen Wang, PhD, PE Kuei-I Tasi Jian-Wei Kao Hao-Chung Lee Member ASHRAE Student Member ASHRAE ABSTRACT HEADING Machine too
3、l with more accurate, stable and higher precision for the machining components cannot be developed without the precise control of the temperature rise by appropriate cooling. The machine tool coolers are the best managers of oil (or water) temperature in avoiding the deviation of spindle centerline
4、for machine tools. However, the machine tool coolers are facing the control hunting of cooling temperature and the dramatic variation of heat load during high speed machining. In this study, the experimental investigation using hot-gas by-pass scheme were conducted to evaluate the temperature contro
5、l accuracy of process cooling water. Effects of delay time control use pulse width modulation (PWM) techniques for by-pass valve under variation of process cooling load and different throttling devices been have investigated. The accuracy of temperature control as well as the frequency of ON-OFF tim
6、es under different loading and different delay time has been compared comprehensively. The experimental results revealed that control accuracy within 0.2W (0.36 0F) of cooling water temperature can be achieved with 5 seconds delay time controlled by adjusting hot-gas by-pass valve. The proposed hot-
7、gas by-pass cooling system with PWM controlled time delay scheme is not only more cost-effective than inverter-driven system, but also can provide higher durability for by-pass solenoid valve and perform precise temperature control specific for high-accuracy process cooling application. INTRODUCTION
8、 The main spindle of a machine tool is warmed up during high-speed machining and the spindle deviates from the center of the column, which results in poor accuracy consequently. The machine coolers are essential accordingly to provide the best solution of coolant (oil or water) temperature in avoidi
9、ng the deviation of spindle centerline in high accuracy machining. However the cooling load may vary over a wide range due to occupancy, machining loading or unloading and ambient weather variations. Some control schemes for system cooling capacity control are vital for the accuracy of coolant tempe
10、rature. Capacity modulation with hot-gas by-pass scheme can reduce compressor cycling, decrease the starting load, provide good oil return, and avoid temperature fluctuations if properly designed. Therefore, the machine coolers with proper capacity control scheme and better durability of solenoid va
11、lves are desirable for high precision machining. Hot-gas by-pass approach is widely accepted for capacity control in small refrigeration system. Different types of hot-gas by-pass methods as well as the fundamental of application were demonstrated in ASHRAE Refrigeration Handbook (ASHRAE, 2006). Yaq
12、ub et al. (2000) investigated the capacity control of a vapor compression refrigeration system by injecting hot-gas refrigerant into the suction line of the compressor to regulate the loading of the evaporator. A comparative LV-11-C022178 ASHRAE Transactions2011. American Society of Heating, Refrige
13、rating and Air-Conditioning Engineers, Inc. (www.ashrae.org). Published in ASHRAE Transactions, Volume 117, Part 1. For personal use only. Additional reproduction, distribution, or transmission in either print or digital form is not permitted without ASHRAES prior written permission.study was also p
14、resented through different by-pass schemes in terms of the system coefficient of performance and operating temperatures. Besides, Cho et al. (2005) presented the performance of showcase refrigeration system during on-off cycling and hot-gas defrosting. It also revealed that the hot-gas by-pass metho
15、d presented higher refrigeration capacity and less temperature fluctuation than on-off cycling. Furthermore, a comparison of hot-gas by-pass and suction modulation for capacity control in the refrigerated shipping container were investigated by Tso et al. (2001). The results displayed that both meth
16、ods proved to be energy-efficient especially under lower evaporator load condition. Byund et al. (2008) investigated the feasibility and performance of the hot-gas by-pass method to retard the formation of frost in a heat pump system. Experimental results showed that the hot-gas by-pass method is us
17、eful not only for retarding the formation of frost but also for improving COP and capacity. Besides, the hot-gas by-pass defrosting method was investigated through an air-to-water heat pump by Huang et al. (2009). The results showed that hot-gas by-pass scheme could provide smaller indoor temperatur
18、e fluctuation and deserve further investigation. The cooling process of the machine tool cooler is a rather nonlinear and time-varying dynamic behavior. Although many existing control schemes such as inverter driven and PID control have been proposed for temperature control, there still exists the c
19、ost-effective concern for controller development in industrial application. The pulse width modulation (PWM) controller which produces a serious of discontinuous pulses with a fixed amplitude and variable width, has become popular in industrial application for ON-OFF control power converter and step
20、per motors (Lu et al.,2010). Besides, Taghizadeh et al. (2009) investigated the modeling and identification of a solenoid valve for PWM control applications. A PWM-driven pneumatic fast switching valve was presented as well. Furthermore, Shih et al. (1998) demonstrated the application of fuzzy contr
21、ol and modified PWM control method to control the position of a pneumatic cylinder. The experiment results showed that system has the advantage of both good performance and low cost with the proposed PWM controller. Some PWM ICs (such as TL 494) are commercial available with cost-effective considera
22、tion in the application of PWM controller. Selection and sizing for cost-effective throttling device is essential for control of refrigeration system. A capillary tube has been widely used as a throttling device in small refrigeration and air-conditioning systems due to the advantages of simplicity,
23、 low cost, and low starting torque for a compressor. An empirical correlation and rating charts for the performance of adiabatic capillary tubes with alternative refrigerants has been developed by Chio et al. (2004). Furthermore Ding et al. (2005) presented the performance improvement of the air-to-
24、water chiller by using an auxiliary capillary tube parallel to thermostatic expansion valve (TEV) in the application of a wide ambient temperature range. Besides, the study of using TEV to regulate the refrigerating system to operate efficiently was conducted by Yu et al. (2006).The strategy of impr
- 1.请仔细阅读文档,确保文档完整性,对于不预览、不比对内容而直接下载带来的问题本站不予受理。
- 2.下载的文档,不会出现我们的网址水印。
- 3、该文档所得收入(下载+内容+预览)归上传者、原创作者;如果您是本文档原作者,请点此认领!既往收益都归您。
下载文档到电脑,查找使用更方便
10000 积分 0人已下载
下载 | 加入VIP,交流精品资源 |
- 配套讲稿:
如PPT文件的首页显示word图标,表示该PPT已包含配套word讲稿。双击word图标可打开word文档。
- 特殊限制:
部分文档作品中含有的国旗、国徽等图片,仅作为作品整体效果示例展示,禁止商用。设计者仅对作品中独创性部分享有著作权。
- 关 键 词:
- ASHRAELV11C0222011EXPERIMENTALINVESTIGATIONOFAMACHINETOOLCOOLERUSINGHOTGASBYPASSVALVESFORTEMPERATURECONTROLPDF

链接地址:http://www.mydoc123.com/p-455425.html