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一种低成本制动踏板感觉优化方案分析 被引量:1
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作者 李晓东 宋杰 +4 位作者 孙宁 麻广旻 王柏成 李春良 许雨亭 《汽车实用技术》 2025年第5期58-63,共6页
制动踏板感觉是整车制动性能的重要组成部分,直接影响到用户的舒适性。目前制动踏板感评价体系已相对成熟,但是对于踏板感觉问题的优化主要侧重于更改基础制动系统的结构设计,虽然能够优化制动踏板感觉,但是这也意味着零件成本的上涨和... 制动踏板感觉是整车制动性能的重要组成部分,直接影响到用户的舒适性。目前制动踏板感评价体系已相对成熟,但是对于踏板感觉问题的优化主要侧重于更改基础制动系统的结构设计,虽然能够优化制动踏板感觉,但是这也意味着零件成本的上涨和新的匹配开发费用。为了实现踏板感快速优化及减少研发变更投入成本,文章对制动踏板感觉的影响因素进行分析,针对常见的制动力不足的问题,从制动盘、摩擦片工艺优化方向提升制动力,从而提供一种低成本踏板感觉优化方案,并针对优化前后的摩擦系数和制动力进行了试验验证,证明了所提低成本方案的有效性。 展开更多
关键词 制动踏板感觉 制动力 摩擦系数 制动盘 摩擦片
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整车VOC的挥发规律研究
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作者 张俊 余双平 +1 位作者 李芳萍 蔡泽鹏 《广州化工》 CAS 2024年第16期106-108,共3页
主要研究整车VOC的挥发规律,即对于同一台车,不同的下线放置时间对整车醛类、苯系物结果的影响。实验结果表明随着下线时间的增加,甲醛、乙苯和苯乙烯的浓度随着下线时间的增加而升高,苯、甲苯、二甲苯、乙醛随着下线时间的增加而降低。... 主要研究整车VOC的挥发规律,即对于同一台车,不同的下线放置时间对整车醛类、苯系物结果的影响。实验结果表明随着下线时间的增加,甲醛、乙苯和苯乙烯的浓度随着下线时间的增加而升高,苯、甲苯、二甲苯、乙醛随着下线时间的增加而降低。各VOC浓度变化速率和初始浓度呈线性正相关。 展开更多
关键词 整车VOC 下线时间 挥发规律
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Quantification of Ride Comfort Using Musculoskeletal Mathematical Model Considering Vehicle Behavior
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作者 Junya Tanehashi Szuchi Chang +4 位作者 Takahiro Hirosei Masaki Izawa Aman Goyal Ayumi Takahashi Kazuhito Misaji 《Computer Modeling in Engineering & Sciences》 SCIE EI 2023年第6期2287-2306,共20页
This research aims to quantify driver ride comfort due to changes in damper characteristics between comfort mode and sport mode,considering the vehicle’s inertial behavior.The comfort of riding in an automobile has b... This research aims to quantify driver ride comfort due to changes in damper characteristics between comfort mode and sport mode,considering the vehicle’s inertial behavior.The comfort of riding in an automobile has been evaluated in recent years on the basis of a subjective sensory evaluation given by the driver.However,reflecting driving sensations in design work to improve ride comfort is abstract in nature and difficult to express theoretically.Therefore,we evaluated the human body’s effects while driving scientifically by quantifying the driver’s behavior while operating the steering wheel and the behavior of the automobile while in motion using physical quantities.To this end,we collected driver and vehicle data using amotion capture system and vehicle CAN and IMU sensors.We also constructed a three-dimensional musculoskeletal mathematical model to simulate driver movements and calculate the power and amount of energy per unit of time used for driving the joints and muscles of the human body.Here,we used comfort mode and sport mode to compare damper characteristics in terms of hardness.In comfort mode,damper characteristics are soft and steering stability is mild,but vibration from the road is not easily transmitted to the driver making for a lighter load on the driver.In sport mode,on the other hand,damper characteristics are hard and steering stability is comparatively better.Still,vibration from the road is easily transmitted to the driver,whichmakes it easy for a load to be placed on the driver.As a result of this comparison,it was found that a load was most likely to be applied to the driver’s neck.This result in relation to the neck joint can therefore be treated as an objective measure for quantifying ride comfort. 展开更多
关键词 Human engineering BIOMECHANICS driver’s sense of fatigue double lane change musculoskeletal mathematical model
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