无卡轴旋切机原木轴向检测复位装置的结构设计
Structural Design of Log Axial Detecting and Resetting Device for Spindle-Less Rotary Lathe
- 2021年35卷第3期 页码:71-76
DOI: 10.12326/j.2096-9694.2020099
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1.青岛理工大学机械与汽车工程学院,山东青岛 266520
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高志阳,孟广耀,宋钰等.无卡轴旋切机原木轴向检测复位装置的结构设计[J].木材科学与技术,2021,35(03):71-76.
GAO Zhi-yang,MENG Guang-yao,SONG Yu,et al.Structural Design of Log Axial Detecting and Resetting Device for Spindle-Less Rotary Lathe[J].Chinese Journal of Wood Science and Technology,2021,35(03):71-76.
针对单板旋切时,原木轴向移动造成的刀具阻塞、原木拧劈或设备损坏的问题,对现有无卡轴旋切机进行改进设计:在原有结构上增加检测和复位装置。将检测及时性、旋切位置、复位机构误动作作为考虑因素,确定检测装置安装位置、最佳复位导程;设计检测、复位装置与旋切机互锁,确保旋切过程中复位机构不误动作。运用极限原理进行数据分析与对比,验证改进装置的可行性,检测和复位装置可在3 s内实现自动化检测与复位,提升单板旋切生产线安全性能与工作效率。
There have been a number of issues caused by the log axial displacement during the veneering peeling, such as blade jamming, log splitting, and/or equipment damage. The existing shaftless lathe machine was improved by installing the detecting and resetting devices. Considering the factors such as detecting efficiency, the rotary cutting position, and the resetting mechanism error, the installation position of the detecting device and the optimum resetting guide were determined; the detecting and resetting devices were designed to be interlocked with the rotary cutting machine to ensure that the reset mechanism is correct during the rotary cutting process. Data analysis and comparison were performed using the limit theory to verify the feasibility of the improved device. The log axial detection and reset were conducted by the new designed devices automatically within 3 s; the safety performance and work efficiency were improved significantly in the veneer peeling production line.
无卡轴旋切机轴向移动电容式接近开关半嵌入式安装法液压推杆
spindle-less rotary latheaxial movementcapacitive proximity switchsemi-embedded installation methodhydraulic push rod
白化奎. 结构胶合板性能要求及生产工艺特点[J]. 黑龙江生态工程职业学院学报, 2008, 21(1): 39-40.
王进峰. 旋切机工作原理及技术特点[J]. 吉林农业, 2016(14): 68-69.
齐自成. 智能数控无卡轴旋切机的开发与应用[J]. 木材加工机械, 2011, 22(2): 52-54, 51.
QI Z C. Development and application on CNC log-core veneer lathe[J]. Wood Processing Machinery, 2011, 22(2): 52-54, 51.
白日. 原木旋切机常见故障排除方法[J]. 林业机械与木工设备, 2015, 43(9): 42-43.
BAI R. The common troubleshooting methods of rotary cutting machine[J]. Forestry Machinery & Woodworking Equipment, 2015, 43(9): 42-43.
沈彦武. 无卡轴旋切机和特种旋切机概述[J]. 中国人造板, 2014, 21(6): 17-20.
孙义刚. 浅议高速智能无卡轴旋切单板生产线[J]. 中国人造板, 2017, 24(6): 16-20.
SUN Y G. A brief introduction of intelligent and high-speed veneer peeling line without spindle[J]. China Wood-Based Panels, 2017, 24(6): 16-20.
李树云. 接近开关在连铸机火切车上的应用[J]. 设备管理与维修, 2020(14): 142-143.
吴晓娜. 接近开关的正确选用[J]. 中国科技信息, 2008(14): 162-163.
王敬然. 无卡轴旋切机液压控制系统设计与仿真分析[D]. 秦皇岛: 燕山大学, 2013.
史跃, 姚晓飞, 刘志远. 基于互锁真空开关的一种新型串联补偿型限流器[J]. 宁夏电力, 2019(4): 1-6, 31.
SHI Y, YAO X F, LIU Z Y. A new series compensation type current limiter based on interlocking vacuum switch[J]. Ningxia Electric Power, 2019(4): 1-6, 31.
孙宏洁, 孟广耀, 王振华, 等. 旋切线原木输送机金属探测装置的设计分析[J]. 木材工业, 2020, 34(3): 56-58.
SUN H J, MENG G Y, WANG Z H, et al. Design of metal detection devices in log conveyors for rotary veneer production line[J]. China Wood Industry, 2020, 34(3): 56-58.
郝春玲. 液压差动回路分析与应用[J]. 工业技术创新, 2016, 3(4): 715-717.
HAO C L. Analysis and applications on hydraulic pressure differential circuit[J]. Industrial Technology Innovation, 2016, 3(4): 715-717.
邓重一. 接近开关原理及其应用[J]. 自动化博览, 2003(5): 31-34.
DENG C Y. The principle of near-switch and their applications[J]. Automation Panorama, 2003, 20(5): 31-34.
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