求人工翻译,机器翻译盖不接受。

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CONCLUSION
1. A wireless system was developed for cutting
tool temperature measurement. The system was
designed for miniaturization in order to fit into a
standard indexable end-mill system (Figure 3).
2. Temperatures were measured on the backside
of the indexable inserts during full-slot end-milling.
Resistive Temperature Detectors (RTDs) – one of
which is arrowed in Figure 3 – were the key sensor
devices. Within the tool-shank itself, RTDs
were connected to small internal platforms that
could then transmit the temperature data to a
nearby receiver for data acquisition and analysis.
3. A previous analysis by Wright et al [17,18] was
used to calculate the rake face temperature from
the backside temperature.
4. Results were obtained for 3 workmaterials: a
12L14 free machining steel; AISI 1020; and AISI
1045 plain carbon steels. Temperatures, as expected,
increased with speed for a given feed and
with the carbon content of the workmaterials.
5. The wireless temperature system was integrated
into the Open Architecture Controller
(OAC) built in previous work [16]. The closed loop
control of the OAC was employed to run the milling
operation at a desired “temperature-set-point.”

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千问 | 2011-3-24 21:39:41 | 显示全部楼层
没事干,看看工业英语,不足之处见谅1无线系统的发展先由给温度测量提供必要工具开始,这一设计为了适应小型化类型的可转位立铣刀系统。2温度的测量在背部可插入的可转位立铣刀全槽里,抗温度探测器-详见释义第三部分-是最重要的敏感设备之一,内部有一个长柄工具,抗温度感受器由内部小型操作平台链接,能把温度资料传送到邻近的接收设备里,进行分析。3先前分析结果是制造者所做(et al [17,18])用以由背部温度计算耙面的温度4结果包括3种工作材料:12L14易切削钢,AISI1020 和AISI碳素钢,所期望的温度跟材料的给料情况和碳含量有关5,无线温度系统集成于开放式建构控制器中,OAC系统,先前程序制作完成[16],OAC系统的闭环控制
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