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嵌入式系统智能键盘的软件设计 被引量:6
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作者 刘海成 《单片机与嵌入式系统应用》 2010年第1期21-23,共3页
良好的人机操作界面是电子仪器和设备必备的。然而在实时应用的嵌入式系统中键盘软件设计有3个方面的问题,包括软件去抖动、等待按键抬起和连击处理。这3个问题都需要大延时,而直接的延时会大大破坏系统的实时性。本文针对上述问题给出... 良好的人机操作界面是电子仪器和设备必备的。然而在实时应用的嵌入式系统中键盘软件设计有3个方面的问题,包括软件去抖动、等待按键抬起和连击处理。这3个问题都需要大延时,而直接的延时会大大破坏系统的实时性。本文针对上述问题给出具体解决方案,并以AVR单片机为例给出例程。 展开更多
关键词 键盘 软件去抖动 等待按键抬起 连击处理
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Influences of gap size and cyclic-thermal-shock treatment on mechanical properties of TLP bonded IN-738LC superalloy 被引量:3
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作者 Vahid MALEKI Hamid OMIDVAR Mohammad-Reza RAHIMIPOUR 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2018年第5期920-930,共11页
Influences of gap size and cyclic-thermal-shock treatment on the mechanical properties of transient liquid phase(TLP) bonded IN-738 LC superalloy were investigated. For this purpose, TLP bonding of IN-738 LC superal... Influences of gap size and cyclic-thermal-shock treatment on the mechanical properties of transient liquid phase(TLP) bonded IN-738 LC superalloy were investigated. For this purpose, TLP bonding of IN-738 LC superalloy was carried out in a vacuum furnace using powdered AMS 4777 as the filler metal. The results showed that isothermal solidified zone(ISZ) consisted of Ni solid-solution and the distribution of alloying elements was homogeneous. High hardness of HV 409 and high shear strength of 506 MPa were observed in 40 μm gap sample. Alloying elements formed γ′ precipitates and the solid-solution in the ISZ. Hardness and shear strength of bonds were reduced with increasing the gap size(in range of 40-120 μm). The fractured surfaces of complete isothermal solidified bonds showed dimpled rupture, but athermal solidified bonds showed cleavage fracture surface. 10, 20, 30 and 40 thermal-shock cycles were applied to 80 μm gap samples, respectively. The shear strength of the bond was measured to be 268 MPa after the 40 th thermal-shock cycle. The sample with gap size of 80 μm was failed due to crack nucleation on faying surface at 45 th thermal-shock cycle. The amount of the produced brittleness due to quenching the samples in water bath was attributed to the number of thermal-shock cycles. 展开更多
关键词 IN-738 superalloy TLP bonding mechanical properties cyclic-thermal-shock treatment shear strength
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