School of Mechanical and Vehicle Engineering, Linyi University, Linyi 276000, China
| Abstract: | To solve the safety problems of the plug and row caused by touching the water and mistakenly touching, which leads to the hidden danger of electricity for high-power electric heating equipment, charging type electric equipment and the life of the socket itself is reduced and the electricity is wasted, this paper proposes a design based on the orbital plug and row pressed to eject the plug and STC89C52 as the core of the wireless control smart socket, wireless communication control using NRF24L01 chip. Among them, this design mainly designs and analyzes the mechanical structure of the plug and combines the static theory to optimize the structure of the plug and realize its feasibility. Solid Works software is used to model the plug and row in three dimensions, and its mechanical components are analyzed statically to obtain a cloud diagram of the force and deformation of the cam structure of the plug and row under the load condition. Finally, the deformation cloud diagram of the socket under various working conditions is used to verify the rationality and feasibility of the wheel system structure in the socket. The design mainly uses the cam structure to press the pop-up and orbital disc socket, and the biggest features of this socket are safety, reliability, and economy. |
| Keywords: | Safety Plug and Socket; Cam Structure; Press on/off Power; Rail Type Socket; Statics Analysis |
| DOI: | 10.57237/j.mse.2023.01.001 |
| 1. | 临沂大学大学生创新创业训练计划项目资助 (No. S202210452087), (No. X202210452428), (No. X202210452442) |
| [1] | 张新星. 基于Android手机的智能插座设计 [D]. 浙江大学, 2014. |
| [2] | 殷振凯, 王中训, 刘培学. 基于单片机和云平台的模块化智能插座设计 [J]. 单片机与嵌入式系统应用, 2022, 22 (11): 62-64. |
| [3] | 张本裕, 李昌奇. 基于无线网络的智能插座设计 [J]. 2022 (9): 133-134. |
| [4] | 张余明, 郭振军. 基于STM32的智能插座系统设计 [J]. 物联网技术, 2021, 11 (5): 42-44. |
| [5] | 梁李柳元. 基于STM32的无线红外智能插座系统设计 [J]. 现代电子技术, 2015, 38 (19): 156-158. |
| [6] | 谭一柳, 江淘, 王轩. 智能插座控制系统的设计 [J]. 电子测试, 2022, 36 (22): 30-32. |
| [7] | Tsai K L, Leu F Y, You I. Residence Energy Control System Based on Wireless Smart Socket and IoT [J]. IEEE Access, 2017, 4: 2885-2894. |
| [8] | 刘继中. 一种基于WiFi的智能插座控制系统设计与实现[D]. 大连海事大学, 2016. |
| [9] | Marco S, Francesco G. A SMART SOCKET AND MONITORING AND CONTROL SYSTEM USING SAID SOCKET:, EP3549227B1 [P]. 2021. |
| [10] | 王志愿. 按压式安全电插排 [J]. 包装工程, 2019, 40 (10): 1. |
| [11] | Greenwald R M, Dean R C, Board W J. Volume Management: Smart Variable Geometry Socket (SVGS) Technology for Lower-Limb Prostheses [J]. JPO Journal of Prosthetics and Orthotics, 2003, 15 (3): 107–112. |
| [12] | 王乾丞, 吴俊宏, 邓永烈, 等. 一种防脱落弹出式的插头插座结构:, CN209119469U [P]. 2019. |
| [13] | 唐春兵. 一种防水防尘式电动自行车插头及插座:, CN113823947A [P]. 2021. |
| [14] | 窦建博, 吴清玉. 一种防触电防脱落插座:, CN113078495A [P]. 2021. |
| [15] | 张宗芳. 一种可视化智能防触电安全保护电子围栏设计与研究 [J]. 微计算机信息, 2022 (003): 000. |
| [16] | 林璐, 戴飞杰. 一种安全插座模块、嵌入式插座及移动插排:, CN207542444U [P]. |
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