专业英语项目作业.doc
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1、第一章 概 述根据全自动洗衣机的工作原理,利用可编程控制器PLC实现控制,说明了PLC控制的原理方法,特点与控制洗衣机的特色。全自动洗衣机控制系统利用了西门子S7-200系列PLC的特点,对按鈕,电磁阀,开关等其他一些输入/输出点进行控制,实现了洗衣机洗衣过程的自动化。由于每遍的洗涤,排水,脱水的时间由PLC计数器控制,所以只要改变计数器参数就可以改变时间。可以把上面设定的程序时间定下来,作为固定程序使用,也可以根据衣物的质地,数量与油污的程度来编程。只要稍作改变,就可以设计出诸如要多洗多甩的牛仔类衣物,轻洗轻甩的羊毛类衣物以与通用的标准洗涤程序,充分表现现代家电品的实用性。在洗衣机控制方面,
2、在PLC问世之前,工业控制领域中是继电器占主导地位。但继电器控制领域有着十分明显的缺点:体积大、耗电多、可靠性、寿命短、运行速度慢、适应性差、尤其当生产工艺发生变化时,就必须重新设计、重新安装,造成时间和资金的严重浪费。为了改变这一现状,PLC控制系统产生了。继1969年美国数字设备公司研制出世界第一台PLC,并在通用汽车公司自动装配线上试用,获得了成功,从而开创了工业控制新时期,从此,可编程控制器这一新的控制技术迅速发展起来了。在许多领域都有广泛的应用。PLC的 优点是:可靠性高,耗电少,适应性强,运行速度快,寿命长等,为了进一步提高全自动洗衣机的功能和性能,避免传统控制的一些弊端,就提出了
3、用PLC来控制全自动洗衣机这个课题。第二章 课题任务分析2.1整体功能介绍洗衣机的工作流程由开始,进水,洗衣,排水,和脱水,完毕6个过程组成。在半自动洗衣机中,这四个过程分别用相应的按扭开关来控制。全自动洗衣机中,这四个过程可做到全自动依次运行,直至洗衣完毕。2.2设备控制要求 全自动洗衣机控制要能实现正常运行和强制停止两种控制要求。按下启动按扭,开始进水直到水满(即水位达到高水位)时停止进水开始洗涤正转洗涤时,正转30秒,停两秒,然后反转30秒,停2秒如此循环5次,总共320秒开始排水水位下降到低水位时开始脱水并继续排水,脱水30秒开始清洗,重复(1)到(4),清洗两遍 清洗完成,报警3秒并
4、自动停机若按下排水按扭可以实现手动排水若按下停车按扭,可实现手动停止进水,排水 脱水与报警第三章 控制系统的设计3.1控制系统框图3.2控制系统对应设备与实现功能对应的外部设备启动按扭停止按扭水位选择开关(高水位)水位选择开关(中水位)水位选择开关(低水位)手动排水开关手动脱水开关高水位浮球开关中水位浮球开关低水位浮球开关水排空浮球开关 对应的输出设备进水电磁阀排水电磁阀洗涤电动机正转继电器洗涤电动机反转继电器脱水桶报警器 3.3控制系统原理自动洗衣机的进水,洗衣,排水,脱水是通过水位开关,电磁进水阀和电磁排水阀配合进行控制,从而实现自动控制的,水位开关用来控制进水到洗衣机高中低水位,电磁进水
5、阀起着通断水源的作用。进水时,电磁进水阀打开,将水注入,排水时,电磁排水阀打开,将水排出,洗衣时,洗涤电动机启动。第四章 硬件电路的设计4.1系统的选型(1)IO点数统计:I/O点数是PL定时器/计数器:2B/个 模拟量:100-150B/个通信接口:一个接口一般需要300B以上根据上面算出的总字节数再考虑增加25%左右的备用量,就可估算出用户程序所需的存容量,从而选择适宜的PLC存。该系统有11个数字输入点6个数字输出点,需存280B,有定时器6个,计时器2个,需存16B,考虑余量后需要存370B。(2)CPU功能与结构的选择PLC的功能日益强大,一般PLC都具有开关量逻辑运算、定时、计数、
6、数据处理等基本功能,有些PLC还可扩展各种特殊功能模块,如通信模块、位置控制模块等,选型时可考虑以下几点:功能与任务相适应,PLC的处理速度应满足实时控制的要求、PLC结构合理、机型统一、在线编程和离线编程的选择。全自动洗衣机控制所要求的控制功能简单,小型PLC就能满足要求了。Fully automatic washing machine design译文:一、The first chapter is aboveAccording to the working principle of automatic washing machine, the use of programmable con
7、troller PLC control, and explains the principle of PLC control methods, characteristics and control characteristics of the washing machine. Fully automatic washing machine control system using the Siemens S7-200 series PLC characteristics, button, electromagnetic valve, switch and other some input/o
8、utput point control, realized the washing machines wash process automation. Because every time washing, drainage, dehydration time by PLC in counter control, so as long as change counter parameters can time change. Can set above the program time decided, as fixed program use, also can according to c
9、lothing quality of a material, quantity and the degree of oil pollution to programming. As long as make a change a bit, you can design a more more, such as washing jilt cowboy kind of clothing, light wash light jilt of wool kind of clothing and universal standard washing procedure, fully show the mo
10、dern electrical appliances product practicability.In the washing machine control, in before the advent of PLC, industrial control field is relay dominant. But the relay control field is very obvious disadvantages: large volume, power consumption and reliability, short life, slow, adaptability differ
11、ence, especially when the production process change, it is necessary to redesign, reinstall, causing serious waste of time and money. In order to change this situation, PLC control system produced. After in 1969 the United States digital equipment company developed the world the first PLC, and in ge
12、neral motors automatic assembly line trial and succeeded, thus created the industrial control new period, from now on, PLC (programmable logic controller) this new control technology developed rapidly. In many areas are widely used. The advantage of PLC is: high reliability, less consumption, strong
13、 adaptability, fast operation, long life and so on, in order to further improve the automatic washing machine function and performance, to avoid the traditional control some drawbacks, has put forward the use PLC to control the fully automatic washing machine of this subject.二、The second chapter sub
14、ject task analysis2.1 the whole function is introducedThe working process of the washing machine by water, laundry, drainage, and dehydration of four process. In the semi-automatic washing machine, the four process respectively with the corresponding button switch to control. Fully automatic washing
15、 machine, and the four process can be done in fully automatic operation, until the end of laundry.2.2 equipment control requirementsFully automatic washing machine control requirements are can realize normal operation and forced to stop two control requirements.(1) press the start button, and began
16、to fill with water until (i.e. the water reaches a high water level) to stop water to start washing are turning(2) when catharsis, are turning 30 seconds, stop two seconds, then reverse 30 seconds, stop for 2 seconds(3) so cycle 5 times, a total of 320 seconds began to drainage(4) drop in the water
17、level to the low water level at the start of dehydration and continue to drainage, dehydration 30 seconds5 start cleaning, repeat (1) to (4), cleaning twice6 clean finish, alarm 3 seconds and automatic stopIf the meantime press drainage button can realize manual drainageIf stuff press the stop butto
18、n, can realize manual stop water, dewatering and alarm三、The third chapter, the design of control system3.1 control system block diagramFigure 1 system block diagram3.2 control system corresponding equipment and realization functionThe corresponding external equipment start button to stop button wate
19、r selector switch (high level) water selector switch (water) water selector switch (low water level) manual drainage switch manual dehydration switch high water level ball float switch in water level ball float switch low water ball float switch water emptying ball float switchThe corresponding outp
20、ut equipment intake solenoid valve discharge solenoid valve washing motor are turning relay washing motor reversal relay to take off the bucket alarm。3.3 control system principleAutomatic washing machine water, laundry, drainage, dehydration is through the water level switch, electromagnetic inlet v
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