Paiting Series 1: Part 1

本文聚焦于各国油画风格的对比,探讨一种融合了欧洲技法与纯正中国心灵的艺术表现。深入解析著名画家阎文亮的当代油画作品,展现技术与情感的完美结合。

I now want to summarize my collection of paintings, to share these beauties and some of my thinkings. Hope you guys enjoyed in it.

This series 1 focuses on the different painting styles across nations, but the principle is eternal: Record Beauty.

1. Contemporary oil paintings from one of Chinese oil painting pioneer Yan Wenliang
There is an interesting comparison in these paintings, which is that the technique is European but the painter’s heart is completely Chinese, isn’t it?


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Reason for Variance Origin error cost reason no internal fc relevance Description A100 2 X New platform ramp up A101 2 X Tial run---copy line,upgrade A102 2 X 12 digit Sample production rel A103 2 X ECR A104 2 X Trial run after maintenance A105 2 X destructive testing of MSE A106 2 bosch plant A107 2 non bosch plant A108 2 process defect A109 2 Machine malfunction A110 2 Operating error A201 2 WBA Vertebra-damaged plastif. A202 2 WBA Dropped part - Vertebra A203 2 WBA Welded only one vertebra A204 2 WBA Not welded vertebrae A205 2 WBA Dropped part - Adapter A206 2 WBA Adapter- broken A207 2 WBA Adaper not assebmly properly A208 2 WBA Too much welding mat-adapter A209 2 WBA Dropped part - Rubber A210 2 WBA Gripper dropped the rubber A211 2 WBA Rubber cut distance NOK A212 2 WBA Dropped part-Holding spring A213 2 WBA Holding spring not assembled A214 2 WBA Holding Spring broken A215 2 WBA Beauty cover - broken A218 2 WBA End Cap damaged A219 2 WBA Vertebra out of IC end cap A220 2 WBA Vertebra out of OC end cap A221 2 WBA Missing ball A222 2 WBA Two balls A223 2 WBA NOK depth of the ball A224 2 WBA IC end cap not assy properly A225 2 WBA OC end cap not assy properly A226 2 WBA LAS-INS unreadable-adapter A227 2 WBA LAS-INS wrong PN-adapter A228 2 WBA LAS-INS NOK on adapter A229 2 WBA no LAS-INS on adapter A230 2 WBA wrong PN LAS-INS - spoiler A231 2 WBA LAS-INS unreadable-spoiler A232 2 WBA LAS-INS NOK on spoiler A233 2 WBA No LAS-INS on spoiler A234 2 WBA Wrong PN LAS-INS - rubber A235 2 WBA LAS-INS unreadable-rubber A236 2 WBA LAS-INS NOK on rubber A237 2 WBA No LAS-INS on rubber A238 2 WBA Rubber out of vertebra A239 2 WBA NOK ALK results A240 2 WBA NOK 0-series A241 2 WBA NOK Wipe Quality A242 2 WBA NOK Spray test A243 2 WBA Damage edges of pillowbox A244 2 WBA Damaged master box A245 2 WBA Blister unwelded A246 2 WBA NOK welded blister A247 2 WBA Backside CB damaged welding A248 2 WBA Plastic Sleeve deformed A249 2 WBA Plastic Sleeve broken A250 2 WBA NOK Euro hole punching A251 2 WBA 2 hole on euro hole punching A252 2 WBA No Euro hole punching A253 2 WBA Sorting activities-WBA A254 2 WBA NOK component from supplier A255 2 WBA Vertebra identification NOK A256 2 WBA Vertebra appearance defects A257 2 WBA Vertebra length NOK A258 2 WBA Vertebra bending NOK A259 2 WBA Vertebra cutout shape NOK A260 2 WBA Vertebra cutout burrs A261 2 WBA Vertebra straightness NOK A262 2 WBA Middle cutout halflength NOK A263 2 WBA Middle cutout burrs A264 2 WBA Middle cutout depth NOK A265 2 WBA Middle cutout width NOK A266 2 WAA Visual defects on WAA A267 2 WAA Dropped part - Wiper arm A268 2 WAA Dropped part - Armhead A269 2 WAA Dropped part - Retainer A270 2 WAA Dropped part - Rod A271 2 WAA Dropped part - Connector A272 2 WAA Dropped part - C-spring A273 2 WAA Dropped part - Spring A274 2 WAA Dropped part - Rivet A275 2 WAA Wrong part assembled on WAA A276 2 WAA NOK riveting process A277 2 WAA NOK crimping process A278 2 WAA NOK assembly force A279 2 WAA C-spring in NOK position A280 2 WAA JW damaged by the tool A281 2 WAA Hose holder NOK assembly A282 2 WAA Broken hose holder A283 2 WAA Nozzle NOK assembly A284 2 WAA Broken nozzle A285 2 WAA Wrong part assembled on JW A286 2 WAA Painting failures A287 2 WAA WAA sorting activities A288 2 WAA WSH sorting activities A289 2 WAA JW sorting activities A290 2 WAA NOK component from supplier A291 2 WAA JW NOK component from supplier M138 3 WAA Broken nozle after syst conf A301 2 WSA Broken crimp A302 2 WSA Dimension out of tolerance A303 2 WSA NOK Motor bracket screwing A304 2 WSA NOK Motor krank screwing A305 2 WSA Scrathed WSM screening cover A306 2 WSA Burst motor cover A307 2 WSA NOK wiping angle- left A308 2 WSA Rubber washer is burst A309 2 WSA Burst motor screening cover A310 2 WSA NOK wiping angle-right A311 2 WSA Rubber washer is pinched A312 2 WSA Mising sleeve on WSL housing A313 2 WSA Missing C clip on WSL A314 2 WSA ECU plastic cover damaged A315 2 WSA NOK WSA component from supplier A316 2 WSA WSA sorting activities A317 2 WSA NOK motor from WSM A115 2 CPN quality issue M300 3 X New platform ramp up M301 3 X Tial run---copy line,upgrade M302 3 X 12 digit Sample production rel M303 3 X ECR M304 3 X Trial run after maintenance M305 3 X destructive testing of MSE M211 3 WSA Broken crimp M212 3 WSA dimesion out of tolerance M213 3 WSA NOK Motor bracket screwing M214 3 WSA NOK Motor krank screwing M215 3 WSA Scrathed WSM screening cover M216 3 WSA Burst motor cover M217 3 WSA NOK wiping angle-left M218 3 WSA Rubber washer is burst M219 3 WSA Burst motor screening cover M220 3 WSA NOK wiping angle-right M221 3 WSA Rubber washer is pinched M222 3 WSA Mising sleeve on WSL housing M223 3 WSA Missing C clip on WSL M224 3 WSA ECU plastic cover damaged M225 3 WSA NOK WSA component from supplier M226 3 WSA WSA sorting activities M227 3 WSA NOK motor from WSM M306 3 bosch plant M307 3 non bosch plant M308 3 process defect M309 3 Machine malfunction M310 3 Operating error M312 3 X left mat not used-WScold strip M313 3 X left mat not used-copperwire M314 3 Trial run for replace tool M315 3 CPN quality issue M320 3 X Replacement:decrease M420 3 X Replacement:Increase MLO1 3 Additional expenses Logistics N203 1 X Changes (techn.) N204 1 X QMM testing (destructive testi N205 1 X production test N206 1 X CKD Vendor error /production l N207 1 X LC Vendor error /production li N208 1 X Bad material quality - interna N209 1 X Machine malfunction N210 1 X Operating error
06-19
内容概要:本文设计了一种基于PLC的全自动洗衣机控制系统内容概要:本文设计了一种,采用三菱FX基于PLC的全自动洗衣机控制系统,采用3U-32MT型PLC作为三菱FX3U核心控制器,替代传统继-32MT电器控制方式,提升了型PLC作为系统的稳定性与自动化核心控制器,替代水平。系统具备传统继电器控制方式高/低水,实现洗衣机工作位选择、柔和过程的自动化控制/标准洗衣模式切换。系统具备高、暂停加衣、低水位选择、手动脱水及和柔和、标准两种蜂鸣提示等功能洗衣模式,支持,通过GX Works2软件编写梯形图程序,实现进洗衣过程中暂停添加水、洗涤、排水衣物,并增加了手动脱水功能和、脱水等工序蜂鸣器提示的自动循环控制功能,提升了使用的,并引入MCGS组便捷性与灵活性态软件实现人机交互界面监控。控制系统通过GX。硬件设计包括 Works2软件进行主电路、PLC接梯形图编程线与关键元,完成了启动、进水器件选型,软件、正反转洗涤部分完成I/O分配、排水、脱、逻辑流程规划水等工序的逻辑及各功能模块梯设计,并实现了大形图编程。循环与小循环的嵌; 适合人群:自动化套控制流程。此外、电气工程及相关,还利用MCGS组态软件构建专业本科学生,具备PL了人机交互C基础知识和梯界面,实现对洗衣机形图编程能力的运行状态的监控与操作。整体设计涵盖了初级工程技术人员。硬件选型、; 使用场景及目标:I/O分配、电路接线、程序逻辑设计及组①掌握PLC在态监控等多个方面家电自动化控制中的应用方法;②学习,体现了PLC在工业自动化控制中的高效全自动洗衣机控制系统的性与可靠性。;软硬件设计流程 适合人群:电气;③实践工程、自动化及相关MCGS组态软件与PLC的专业的本科生、初级通信与联调工程技术人员以及从事;④完成PLC控制系统开发毕业设计或工业的学习者;具备控制类项目开发参考一定PLC基础知识。; 阅读和梯形图建议:建议结合三菱编程能力的人员GX Works2仿真更为适宜。; 使用场景及目标:①应用于环境与MCGS组态平台进行程序高校毕业设计或调试与运行验证课程项目,帮助学生掌握PLC控制系统的设计,重点关注I/O分配逻辑、梯形图与实现方法;②为工业自动化领域互锁机制及循环控制结构的设计中类似家电控制系统的开发提供参考方案;③思路,深入理解PL通过实际案例理解C在实际工程项目PLC在电机中的应用全过程。控制、时间循环、互锁保护、手动干预等方面的应用逻辑。; 阅读建议:建议结合三菱GX Works2编程软件和MCGS组态软件同步实践,重点理解梯形图程序中各环节的时序逻辑与互锁机制,关注I/O分配与硬件接线的对应关系,并尝试在仿真环境中调试程序以加深对全自动洗衣机控制流程的理解。
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