汽车座椅的皮革种类主要包括以下几种:真皮,PVC皮革,PU皮,以及流行比较热门的有XPO(POE)、有机硅皮革等。

真皮:由动物皮制成,质感柔软,耐用且透气。但是不环保。

合成皮革(人造革):用合成材料(如聚氨酯或PVC)制成,外观接近真皮,价格较低,易于清洁和维护,且提供多种颜色和样式选择。

PVC皮革优点:易加工、耐磨、价廉,缺点:透气性差,易老化,低温变硬,产生龟裂,防滑性差,大量使用塑化剂伤害人体且污染严重,异味大。

PU皮革优点:使用范围广、手感舒适;缺点:不耐磨,不透气,易水解、容易脱层气泡,高低温易烈面,生产污染严重

POE轻量化环保皮革是由聚烯烃弹性体材料经过特殊加工工艺制成,其生产过程对环境和人体健康无害。在汽车应用领域,XPO轻量化环保皮革材料的使用不仅对汽车轻量化做出了贡献同时又满足高品质、环保和健康的需求。XPO轻量化环保皮革既满足了市场对高品质皮革材料的需求,又为环境保护和可持续发展做出了贡献,是一种具有良好前景前景和市场潜力的新型材料。

POE轻量化环保皮革具有柔软、舒适、环保、耐脏污、高耐候性、等多项卓越的特性,同时,POE轻量化环保皮革的柔软度和舒适性能优于传统的PU皮革和PVC皮革,其独特的弹性和触感媲美真皮的品质和舒适感,同时更具有环保性和可持续性,成为时尚和环保的完美结合,能够满足消费者对高品质皮革材料的需求。

汽车座椅皮革材料介绍

POE材质的座椅

有机硅皮革拥有真皮触感,柔软,弹性好,强度高。有机硅皮革产品特点:即使在零下40度的极端低温环境中,也能保持其柔软性不变形。其防水防污特性使得笔迹和污渍易于清理。此外,该材料还具有优异的抗紫外线性能,能有效防止因长时间曝光于阳光下而导致的老化。硅胶的阻燃性能极强,轻松达到V0级阻燃标准。

汽车座椅皮革材料介绍

在高温环境下,该材料也能保持稳定,不会缩水或变形。长期使用中,该座椅不会变黄、褪色、发霉或掉皮屑,且具有良好的耐磨性和滑爽的手感。更重要的是,这种材料环保无毒,采用与婴儿奶嘴相同的材料制成,无毒无味,抗过敏,为用户提供了安全和舒适的使用体验。

汽车座椅皮革材料介绍

有机硅皮革涂布压延生产工艺流程(其一)

汽车座椅皮革材料介绍

来源 东福来

从仪表盘,座椅,汽年门把扶手,汽年內饰,很多方面都可以用仿真皮有机革 ,因为仿真皮有机革材料与生俱来的环保无气味 ,耐水解 ,防污 ,抗过敏 ,高耐磨性能增加产品的附加价值,全面满足高档汽年客户的要求。

最后值得一提的是,有机硅和POE皮革两者性能不同,针对的市场也不同。有机硅的针对的是高端市场,真皮的取代。POE针对的是PVC或PU。

一个专注于汽车皮革材料与工艺的微信交流群,旨在汇聚业内专家、爱好者以及汽车制造商,共同探讨和分享关于汽车皮革的最新材料、技术进展和市场趋势。无论是传统的真皮、合成皮革如PU和PVC,还是新兴的环保材料如POE和有机硅皮革,本群都将提供一个全面的平台,讨论各种皮革的性能、环保属性、应用案例及其未来的发展潜力。加入我们,深入了解汽车皮革的创新解决方案,推动行业的可持续发展,并提升产品的市场竞争力。欢迎您的加入,一起推动汽车皮革行业的创新与进步!

汽车座椅皮革材料介绍

Recommended activity one:第六届智能车灯创新技术及供应链论坛(11月29日 广州)


汽车座椅皮革材料介绍

论坛议题

Including but not limited to the following topics

number

Topic

Guests to be invited

1

The development trend of automobile lamp design aesthetics in the new four modernizations

Universities, design companies

2

Human-computer interaction design of car lights in the era of smart cars

Smart car light supplier

3

Development technology path of electronic smart car lights

Smart headlight supplier

4

Analysis of vehicle lighting technical standards and laws and regulations in the autonomous driving era

Car light standard unit

5

Technology and applications of DLP car light modules

DLP Technology Provider

6

Introduction to programmable smart headlight solutions

Smart headlight supplier

7

Application trends of OLED light sources in automobile taillights

OLED car lighting solution provider

8

Application cases of LSR silicone optical materials in car lights

Silicone Material Supplier

9

Case sharing of through-type car light design

Through-type car light supplier

10

Introduction to the application of laser welding technology in car lighting products

Welding technology solution provider

11

Analysis and research on the application of integrated black technology in automotive lamp design

Integrated black technology supplier

12

Introduction to the application of LBS laser projection technology in automotive lighting products

LBS car lighting solution supplier

13

Application scenarios of MLA micro-projection technology in car lights

Micro-projection technology solution provider

14

Application of high impact resistance and special visual materials in automotive lighting products

material supplier

15

Practical application cases of optical aspheric lens technology

Spherical mirror parts supplier

16

Automotive lighting intelligent manufacturing production line solution

Intelligent manufacturing equipment manufacturer

17

High power and high heat dissipation product solutions for car lights

Thermal substrate supplier

18

Lamp modeling and rapid prototyping processing technology for optical prototypes

Hand prototype supplier

19

Application cases of flexible optical fiber technology based on laser light source/LED light source in car lights

Fiber optic technology supplier

20

Technical introduction of automotive-grade MicroLED applied to high-pixel smart headlights

Micro LED Suppliers

21

The development and application of laser engraving/hot stamping/laser stripping technology in car lamp manufacturing

Laser engraving/hot stamping supplier

22

Technical analysis and development trend research on high-performance ultra-thin lenses/ultra-small size lenses for headlights

lens supplier

23

Defect analysis and lessons learned case explanation of automotive lighting technology quality control

laboratory


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意向演讲联系人: 张小姐

联系方式: 13418617872 (同微信)


报名方式

Registration method one:
微信报名
艾米:13163717564
邮箱:ab012@aibang.com
汽车座椅皮革材料介绍

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Registration method two:

汽车座椅皮革材料介绍

Scan the QR code to register online

阅读原文报名!


Activity recommendation two:汽车智能座舱暨微电机控制系统产业论坛(10月24日 上海)


汽车座椅皮革材料介绍

Recommended activities three:第五届汽车智能座舱创新表面技术产业论坛(10月25日 上海)

汽车座椅皮革材料介绍

The original article was posted on the WeChat official account "Smart Car Club."汽车座椅皮革材料介绍

With the continuous enrichment of smart cockpit scenarios, passengers spend more and more time in the cockpit, putting forward higher and higher requirements for riding experience and comfort experience. When the journey is no longer a short period of time, how to optimize and improve seat comfort? Sex has become an important issue at the moment, and smart car seats have emerged. As a device that directly contacts the driver and passengers, seats play an important role in user experience and are also one of the factors that distinguish the level of automobile manufacturers. Today's high-end seats incorporate a wide range of applications for seat adjustment or seat movement, seat comfort (dynamic cushions, lumbar support, massage, heating, cooling and/or ventilation, seating assistance and personalized adjustment memory function), seat safety function, seat occupant perception (multiple built-in sensors can provide feedback information to the system). Due to the additional functions, modern seat modules have become as complex as body control modules and face similar challenges in terms of power supply, communication, sensing, activation and control, and quiescent current. In order to minimize the space requirements, power consumption and quiescent current of the management seat control module, functional integration becomes one of the important design factors. Therefore, smart car seats contain numerous motor drives and control units, and fabric selection and ergonomic design also need to be considered. The technical threshold is comparable to that of robots. In order to strengthen industry chain exchanges, jointly promote industry development, and learn about the latest product trends, Abant has established an automotive smart seat industry chain exchange group for everyone. Everyone is welcome to join the group for exchanges and discussions.
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