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Designing Custom Components for Classic Cars and Hot Rods in Autodesk Fusion 360

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说明

Custom classic car and hot rod builds often require many custom parts that are bespoke to the vehicle. In this session, we'll use several custom components created for the Iron Maven vehicle—built by Girl Gang Garage and featured at SEMA and in MotorTrend—to demonstrate workflows for designing and fabricating the components from the ground up. The workflow demonstrations will focus on cosmetic and mechanical components, with an example of a 3D-scanning-to-freeform-modeling workflow for cosmetic components and a measurement-and-fit-check-to-parametric-modeling workflow for mechanical components (and mechanical features). Finally, examples of finishing 3D-printed parts with production-quality finishes will show workflows for fabrication.

主要学习内容

  • Learn how to integrate 3D-scanned meshes into Fusion 360 for both cosmetic and mechanical feature matching.
  • Learn about implementing component design workflows suited for designing custom aftermarket components.
  • Learn how to use freeform modeling in Fusion 360 for component surfacing.
  • Learn how to fabricate components using additive manufacturing processes and finish to production-quality appearance.

讲师

  • Anne Pauley 的头像
    Anne Pauley
    Anne Pauley is a Technical Program Manager who supports design for manufacturing for Google Pixel. Her passion for prototyping and additive manufacturing began with building RepRap printers and has taken her on a journey including startups, Autodesk, Disney, Fathom, and Meta. She received her bachelors and masters in mechanical engineering from Penn State, focusing on additive manufacturing and mechanical design.
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Transcript

ANNE PAULEY: Hi, everyone. My name is Anne. And welcome to my session at Autodesk University 2023. This is designing components for classic cars and hot rods in Fusion 360. Today we'll be talking about integrating 3D scan meshes into Fusion 360, design workflows, freeform modeling, and fabricating components using additive manufacturing.

Some background on me, my name is Anne Pauley. I'm a mechanical engineer. I worked on the Girl Gang Garage Iron Maven build, as well as worked for several top automotive companies on design and engineering work.

Currently I'm a technical program manager at Google on the Pixel program. And I work on design for manufacturing and operations. My interest in added manufacturing really started early on in college. I started with open source 3D printing and then moved on into the industry and worked in industrial 3D printing.

So a little bit of background on this build and the group that did it. We'll be talking, really, about a lot of the different components on the Girl Gang Garage Iron Maven build. So Girl Gang Garage is an organization based in Phoenix, Arizona started by Bogi Lateiner. So Bogi has been in the automotive industry for a long, long time. And like many women in the automotive industry, found that there weren't a lot of people that looked like her. And a lot of the people that really wanted to get into the industry had a hard time finding a sense of belonging and really a place where they can learn or start from scratch.

So this build is the third of the major classic car restorations that Girl Gang Garage has completed. This is really an ambitious build. So the 1961 Volvo PV544 was taken off of a farm outside of Phoenix, Arizona.

And the reason that this car was chosen and is so unique is it has that really, really classic '40s styling. It has lots of curved surfaces. And it's just a really unique build.

So we wanted something that would stand out from the crowd and really, really showcase both this unique car as well as this really unique group. So on top of the 1961 body being extremely unique, the entire build is extremely unique. So the classic car body was combined with the chassis drivetrain and electronics from a 2019 Volvo S60 hybrid electric vehicle.

So these are two completely different vehicles. They are not the same size. They are not the same vintage. Everything about them is different. But this build managed to combine them both into a completely custom, unique build. So basically, if you think about squeezing everything from a new Volvo, a much bigger vehicle into a classic Volkswagen Beetle, that's basically what this build did.

[VIDEO PLAYBACK]

[MUSIC PLAYING]

- There's this connection and this magic that happens when women walk through these doors. We've always been a really big believer here that if you can dream it, you can build it. You can make it.

- Girl Gang Garage is a teaching and learning space. We are focused on changing perceptions in terms of allowing more females into the automotive space and acknowledging the women who are already working within that space.

- Girl Gang Garage came around kind of organically. It really started out originally as my desire to connect with other women in the industry and to push my skill set and learn new things. We're, like, less than 2.5% of the industry. But there are tons of amazing women out there. So I wanted to create a project that would bring a bunch of women together and create opportunities for more women to explore the trade.

- First all-female build was what we call the Chevy montage. And it involved about 90 women from all across the country, about 23 different states. And they ranged in experience level from 20, 30 years of experience to I don't know what a ratchet is.

- There were a ton of gaps. So immediately we were thinking about how are we going to do any of these things. Obviously, 3D printing is a good technology to use. So I was, like, that may be a good opportunity for us. But the skills gap is always the CAD software. That's the limiter, right?

- Autodesk is tackling that by creating tools like Fusion 360, which is making the world of additive manufacturing and CAD design accessible and removing those barriers of entry.

- How do we unblock things for people? How do we help them move faster, learn faster? Part of the thing that sets Girl Gang Garage apart from so many other amazing organizations out there is that they're not only building skills in their local community here in Phoenix, but they're building skills nationally.

- Once this showed up, I'm, like, yes, I'm in. I'm in. Because I want to learn more about how to model parts that I can't get anymore.

- I thought, man, I always wish that I could learn something like this. But I never went a career path where it would have been available to me. And so this was something that they were offering. I was really kind of surprised. So I just had to jump on it.

- I was a little bit intimidated. But then I started looking at the software a little bit more. And it's incredibly user friendly.

- And as they become more and more confident in the workflow, they're going to feel like they're able to design anything.

- I'm hoping that they will be able to be empowered through these tools to make more ambitious builds.

- It's been really cool to see multiple different groups of Autodesk come together to support this organization at Girl Gang Garage.

- We're excited to see where it goes.

- I think anything that you can do to step outside of your comfort zone and take a chance on learning something new is the best thing that you can do.

[END PLAYBACK]

ANNE PAULEY: So at the end of this entire process, we did a huge reveal of our vehicle build at SEMA, which is a huge car show that happens every year in Las Vegas. And not only did we have the opportunity to show everyone the vehicle, but we had an opportunity to bring everyone together in one place and meet all of the people that worked on the build.

So where we started to where we finished, we started out with a great condition body, but it did not have any of the modern components that the final build did, and took it to the finished, amazing looking vehicle that you see on the right. So the way that we started out the process on making these custom components is we did a lot of 3D scanning. So we worked with a local engineering company, PADT, which is not only a Stratasys reseller, but does a lot of engineering services, including 3D scanning. And so Pam Waterman, who you see in the picture, came into the shop and scanned not only the entire body, but lots of subsections where we were planning on adding these components.

So using those 3D scans, the scan data was converted into 3D models. So you'll see in that middle picture that the scans that we get off of scanning an entire car body, they're not really something that we can just immediately go and put on a 3D printer. So there is a lot of design work that happens in Fusion 360 between this point and when we get our final parts.

So to make these parts, we worked with Stratasys who were able to bring a printer into the shop so that we could make parts really quickly and iterate fast. And we also were able to work with them on printing some resin parts to get final aesthetic, watertight parts for the finished components. So some of the aesthetic parts that I'm going to be focusing on here are the custom door handles, shark fin antenna, and the rear camera.

So one thing to note about the shark fin antenna and the rear camera is those are parts that you would never see in a 1961 vehicle. That's all modern electronics being integrated into this 1961 body. And then some more functional mechanical parts are this cabin air duct, as well as a suspension adapter that we needed to integrate these aftermarket components into the vehicle build.

So starting out with the door handles, the challenge here is if you look in the upper right photo, the handles that came on the S60, which is the 29 donor vehicle, were huge compared to the '61 handles. And so we had to completely redesign these to not only fit the form factor of the vehicle, but fit the styling of the vehicle. So the '61 door did not have any of the mechanical assembly of a modern vehicle. So when you open and close the door, there's none of that nice, smooth, damper feel that you're used to on a newer vehicle.

So the door had to be completely rebuilt with all of these modern mechanical assemblies. So the design process that we went through here, we started out with those 3D scans of that part of the vehicle, as well as a separate 3D scan of the component in isolation. So basically, that the component that holds the aesthetic door handle as well as all of the electronics completely disassembled off of the main assembly.

So like I mentioned before, if you look at that 3D scan, it's not a perfect watertight body. And so we used that scan to find all of the reference geometry. And it was really, really critical that we build this off of a 3D scan. Because these are really complex surfaces and complex geometries that we're trying to snap onto and match.

And so starting out with that 3D scan, we found all of those geometries that we needed to snap to, modeled those, and then moved on to prototyping. So for prototyping, if you see in the lower two pictures, we did a lot of fit checks to make sure that we had that snap geometry perfect before we moved on to all of the aesthetic design. And then, once we had the aesthetic design completed, we moved on to the final part finishing.

So one note on the prototyping. We went through a lot of prototypes to get the look of this perfect and make sure that it was the best design that we could have and the smallest, while fitting all of the electronics that we needed to in. So the final part here was printed on the F370 Stratasys FDM printer and then was completely finished by professional automotive finishers that were working on the project so that it looks like it was a part made for this vehicle, even though it was completely custom.

So the shark fin antenna and the camera, like I mentioned, these are parts that you would never see on a 1961 vehicle. And so the challenge here was not only getting the mechanical assembly right, but it was getting the styling to match this classic car. And so the process we went through here was kind of similar, 3D scanning and reference dimensions followed by prototyping, followed by finishing.

So you'll see here, I actually use kind of a combination of images as well as the 3D scanning. So the way that I started out here was making fit check models to test just the interior geometry of the part, before even starting all of the aesthetics of it. So we had to not only match the electronics and make sure the part was fitting as tight as possible, but we had to match all of the curvature of the vehicle. So in addition to the parts that you see in the middle, there were a lot of parts that came before this to not only make that interior geometry, but also do a lot of fit checking to find that outer curvature of the roof and the rear trunk that the camera is attached to. And then the final printed parts for these components were made on in resin on the origin printer.

So you can kind of see what's going on in the model here. I used an overlay of the image and the 3D scan. And that really helped me work on matching the curvature of that roof.

So yeah, you'll see that this 3D scan was scanning the antenna component. So a lot of this antenna component was actually built into the underside of the roof. So it was kind of two fit check processes, both matching the electronics component and matching the roof curvature.

So the cabin air ducting and the suspension adapter, the S60 cabin air assembly was much bigger than the volume of the PV544 engine bay. And so we had to do some creative engineering here to shrink down some of the parts, which meant that we had to make some of these things completely custom, so taking assemblies and just shrinking them down and rerouting a lot of the ducting. So the assembly that you see in the top, that is an entirely 3D-printed assembly of those black parts. The original assembly, basically, it would take up the entire volume of not only that black ducting that you see, but also that coolant tank that we had to build in there and build custom brackets for.

And in order to make that part and make it fit, on this one, 3D scanning didn't really make as much sense as it did on some of the electronics components. Because we were working with a much more fluid assembly, that tank could move around to adjust for our entire design. And so on this one, we used XYZ reference photos, as well as reference dimensions, and built the assembly off of that. And we were able to reroute a lot of the ducting to a different part of the vehicle, which is not only, like I said, necessary because of the different volume around the engine, but it was also necessary because the intake for the vehicle engine was in a completely different location on the S60 compared to the PV544.

And then the custom suspension adapter, kind of speaking to the video that we watched before about bringing in the Autodesk Fusion 360 team to do learning days in the shop, this part was made by Bogi herself. It was the first part that she's ever CADed in Fusion. We needed the suspension adapter to bring in a new aftermarket suspension because the S60 suspension was much, much taller than what would actually fit in.

And so we had to purchase an aftermarket one that was much more compact, but had a completely different base on it. And that base, there was no adapter available on the market that you can buy for this. It had to be completely custom.

And so Bogi was able to learn Fusion 360 from scratch, do all of the measurements, learn 3D printing from scratch, and learn how to run the printer, and made that component and prototyped it and got it really quickly tuned in. So our initial build that you see in the picture is a plastic component printed on the printer in the shop. And we're working on replacing it with a machine component.

So like I said, the overall process on these components is we went from reference dimensions and then iterated and prototyped on those assemblies. And then we finished those parts to look like they came right out of a factory.

Awesome. Well, here's our entire team. If you have any questions, please feel free to contact me.

______
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我们通过 ClickTale 更好地了解您可能会在站点的哪些方面遇到困难。我们通过会话记录来帮助了解您与站点的交互方式,包括页面上的各种元素。将隐藏可能会识别个人身份的信息,而不会收集此信息。. ClickTale 隐私政策
OneSignal
我们通过 OneSignal 在 OneSignal 提供支持的站点上投放数字广告。根据 OneSignal 数据以及我们收集的与您在站点中的活动相关的数据,有针对性地提供广告。我们收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。可能会将此信息与 OneSignal 收集的与您相关的数据相整合。我们利用发送给 OneSignal 的数据为您提供更具个性化的数字广告体验并向您展现相关性更强的广告。. OneSignal 隐私政策
Optimizely
我们通过 Optimizely 测试站点上的新功能并自定义您对这些功能的体验。为此,我们将收集与您在站点中的活动相关的数据。此数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID、您的 Autodesk ID 等。根据功能测试,您可能会体验不同版本的站点;或者,根据访问者属性,您可能会查看个性化内容。. Optimizely 隐私政策
Amplitude
我们通过 Amplitude 测试站点上的新功能并自定义您对这些功能的体验。为此,我们将收集与您在站点中的活动相关的数据。此数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID、您的 Autodesk ID 等。根据功能测试,您可能会体验不同版本的站点;或者,根据访问者属性,您可能会查看个性化内容。. Amplitude 隐私政策
Snowplow
我们通过 Snowplow 收集与您在我们站点中的活动相关的数据。这可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID、您的 Autodesk ID。我们使用此数据来衡量我们站点的性能并评估联机体验的难易程度,以便我们改进相关功能。此外,我们还将使用高级分析方法来优化电子邮件体验、客户支持体验和销售体验。. Snowplow 隐私政策
UserVoice
我们通过 UserVoice 收集与您在我们站点中的活动相关的数据。这可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID、您的 Autodesk ID。我们使用此数据来衡量我们站点的性能并评估联机体验的难易程度,以便我们改进相关功能。此外,我们还将使用高级分析方法来优化电子邮件体验、客户支持体验和销售体验。. UserVoice 隐私政策
Clearbit
Clearbit 允许实时数据扩充,为客户提供个性化且相关的体验。我们收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。Clearbit 隐私政策
YouTube
YouTube 是一个视频共享平台,允许用户在我们的网站上查看和共享嵌入视频。YouTube 提供关于视频性能的观看指标。 YouTube 隐私政策

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定制您的广告 – 允许我们为您提供针对性的广告

Adobe Analytics
我们通过 Adobe Analytics 收集与您在我们站点中的活动相关的数据。这可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID、您的 Autodesk ID。我们使用此数据来衡量我们站点的性能并评估联机体验的难易程度,以便我们改进相关功能。此外,我们还将使用高级分析方法来优化电子邮件体验、客户支持体验和销售体验。. Adobe Analytics 隐私政策
Google Analytics (Web Analytics)
我们通过 Google Analytics (Web Analytics) 收集与您在我们站点中的活动相关的数据。这可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。我们使用此数据来衡量我们站点的性能并评估联机体验的难易程度,以便我们改进相关功能。此外,我们还将使用高级分析方法来优化电子邮件体验、客户支持体验和销售体验。. Google Analytics (Web Analytics) 隐私政策
AdWords
我们通过 AdWords 在 AdWords 提供支持的站点上投放数字广告。根据 AdWords 数据以及我们收集的与您在站点中的活动相关的数据,有针对性地提供广告。我们收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。可能会将此信息与 AdWords 收集的与您相关的数据相整合。我们利用发送给 AdWords 的数据为您提供更具个性化的数字广告体验并向您展现相关性更强的广告。. AdWords 隐私政策
Marketo
我们通过 Marketo 更及时地向您发送相关电子邮件内容。为此,我们收集与以下各项相关的数据:您的网络活动,您对我们所发送电子邮件的响应。收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID、电子邮件打开率、单击的链接等。我们可能会将此数据与从其他信息源收集的数据相整合,以根据高级分析处理方法向您提供改进的销售体验或客户服务体验以及更相关的内容。. Marketo 隐私政策
Doubleclick
我们通过 Doubleclick 在 Doubleclick 提供支持的站点上投放数字广告。根据 Doubleclick 数据以及我们收集的与您在站点中的活动相关的数据,有针对性地提供广告。我们收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。可能会将此信息与 Doubleclick 收集的与您相关的数据相整合。我们利用发送给 Doubleclick 的数据为您提供更具个性化的数字广告体验并向您展现相关性更强的广告。. Doubleclick 隐私政策
HubSpot
我们通过 HubSpot 更及时地向您发送相关电子邮件内容。为此,我们收集与以下各项相关的数据:您的网络活动,您对我们所发送电子邮件的响应。收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID、电子邮件打开率、单击的链接等。. HubSpot 隐私政策
Twitter
我们通过 Twitter 在 Twitter 提供支持的站点上投放数字广告。根据 Twitter 数据以及我们收集的与您在站点中的活动相关的数据,有针对性地提供广告。我们收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。可能会将此信息与 Twitter 收集的与您相关的数据相整合。我们利用发送给 Twitter 的数据为您提供更具个性化的数字广告体验并向您展现相关性更强的广告。. Twitter 隐私政策
Facebook
我们通过 Facebook 在 Facebook 提供支持的站点上投放数字广告。根据 Facebook 数据以及我们收集的与您在站点中的活动相关的数据,有针对性地提供广告。我们收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。可能会将此信息与 Facebook 收集的与您相关的数据相整合。我们利用发送给 Facebook 的数据为您提供更具个性化的数字广告体验并向您展现相关性更强的广告。. Facebook 隐私政策
LinkedIn
我们通过 LinkedIn 在 LinkedIn 提供支持的站点上投放数字广告。根据 LinkedIn 数据以及我们收集的与您在站点中的活动相关的数据,有针对性地提供广告。我们收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。可能会将此信息与 LinkedIn 收集的与您相关的数据相整合。我们利用发送给 LinkedIn 的数据为您提供更具个性化的数字广告体验并向您展现相关性更强的广告。. LinkedIn 隐私政策
Yahoo! Japan
我们通过 Yahoo! Japan 在 Yahoo! Japan 提供支持的站点上投放数字广告。根据 Yahoo! Japan 数据以及我们收集的与您在站点中的活动相关的数据,有针对性地提供广告。我们收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。可能会将此信息与 Yahoo! Japan 收集的与您相关的数据相整合。我们利用发送给 Yahoo! Japan 的数据为您提供更具个性化的数字广告体验并向您展现相关性更强的广告。. Yahoo! Japan 隐私政策
Naver
我们通过 Naver 在 Naver 提供支持的站点上投放数字广告。根据 Naver 数据以及我们收集的与您在站点中的活动相关的数据,有针对性地提供广告。我们收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。可能会将此信息与 Naver 收集的与您相关的数据相整合。我们利用发送给 Naver 的数据为您提供更具个性化的数字广告体验并向您展现相关性更强的广告。. Naver 隐私政策
Quantcast
我们通过 Quantcast 在 Quantcast 提供支持的站点上投放数字广告。根据 Quantcast 数据以及我们收集的与您在站点中的活动相关的数据,有针对性地提供广告。我们收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。可能会将此信息与 Quantcast 收集的与您相关的数据相整合。我们利用发送给 Quantcast 的数据为您提供更具个性化的数字广告体验并向您展现相关性更强的广告。. Quantcast 隐私政策
Call Tracking
我们通过 Call Tracking 为推广活动提供专属的电话号码。从而,使您可以更快地联系我们的支持人员并帮助我们更精确地评估我们的表现。我们可能会通过提供的电话号码收集与您在站点中的活动相关的数据。. Call Tracking 隐私政策
Wunderkind
我们通过 Wunderkind 在 Wunderkind 提供支持的站点上投放数字广告。根据 Wunderkind 数据以及我们收集的与您在站点中的活动相关的数据,有针对性地提供广告。我们收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。可能会将此信息与 Wunderkind 收集的与您相关的数据相整合。我们利用发送给 Wunderkind 的数据为您提供更具个性化的数字广告体验并向您展现相关性更强的广告。. Wunderkind 隐私政策
ADC Media
我们通过 ADC Media 在 ADC Media 提供支持的站点上投放数字广告。根据 ADC Media 数据以及我们收集的与您在站点中的活动相关的数据,有针对性地提供广告。我们收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。可能会将此信息与 ADC Media 收集的与您相关的数据相整合。我们利用发送给 ADC Media 的数据为您提供更具个性化的数字广告体验并向您展现相关性更强的广告。. ADC Media 隐私政策
AgrantSEM
我们通过 AgrantSEM 在 AgrantSEM 提供支持的站点上投放数字广告。根据 AgrantSEM 数据以及我们收集的与您在站点中的活动相关的数据,有针对性地提供广告。我们收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。可能会将此信息与 AgrantSEM 收集的与您相关的数据相整合。我们利用发送给 AgrantSEM 的数据为您提供更具个性化的数字广告体验并向您展现相关性更强的广告。. AgrantSEM 隐私政策
Bidtellect
我们通过 Bidtellect 在 Bidtellect 提供支持的站点上投放数字广告。根据 Bidtellect 数据以及我们收集的与您在站点中的活动相关的数据,有针对性地提供广告。我们收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。可能会将此信息与 Bidtellect 收集的与您相关的数据相整合。我们利用发送给 Bidtellect 的数据为您提供更具个性化的数字广告体验并向您展现相关性更强的广告。. Bidtellect 隐私政策
Bing
我们通过 Bing 在 Bing 提供支持的站点上投放数字广告。根据 Bing 数据以及我们收集的与您在站点中的活动相关的数据,有针对性地提供广告。我们收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。可能会将此信息与 Bing 收集的与您相关的数据相整合。我们利用发送给 Bing 的数据为您提供更具个性化的数字广告体验并向您展现相关性更强的广告。. Bing 隐私政策
G2Crowd
我们通过 G2Crowd 在 G2Crowd 提供支持的站点上投放数字广告。根据 G2Crowd 数据以及我们收集的与您在站点中的活动相关的数据,有针对性地提供广告。我们收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。可能会将此信息与 G2Crowd 收集的与您相关的数据相整合。我们利用发送给 G2Crowd 的数据为您提供更具个性化的数字广告体验并向您展现相关性更强的广告。. G2Crowd 隐私政策
NMPI Display
我们通过 NMPI Display 在 NMPI Display 提供支持的站点上投放数字广告。根据 NMPI Display 数据以及我们收集的与您在站点中的活动相关的数据,有针对性地提供广告。我们收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。可能会将此信息与 NMPI Display 收集的与您相关的数据相整合。我们利用发送给 NMPI Display 的数据为您提供更具个性化的数字广告体验并向您展现相关性更强的广告。. NMPI Display 隐私政策
VK
我们通过 VK 在 VK 提供支持的站点上投放数字广告。根据 VK 数据以及我们收集的与您在站点中的活动相关的数据,有针对性地提供广告。我们收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。可能会将此信息与 VK 收集的与您相关的数据相整合。我们利用发送给 VK 的数据为您提供更具个性化的数字广告体验并向您展现相关性更强的广告。. VK 隐私政策
Adobe Target
我们通过 Adobe Target 测试站点上的新功能并自定义您对这些功能的体验。为此,我们将收集与您在站点中的活动相关的数据。此数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID、您的 Autodesk ID 等。根据功能测试,您可能会体验不同版本的站点;或者,根据访问者属性,您可能会查看个性化内容。. Adobe Target 隐私政策
Google Analytics (Advertising)
我们通过 Google Analytics (Advertising) 在 Google Analytics (Advertising) 提供支持的站点上投放数字广告。根据 Google Analytics (Advertising) 数据以及我们收集的与您在站点中的活动相关的数据,有针对性地提供广告。我们收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。可能会将此信息与 Google Analytics (Advertising) 收集的与您相关的数据相整合。我们利用发送给 Google Analytics (Advertising) 的数据为您提供更具个性化的数字广告体验并向您展现相关性更强的广告。. Google Analytics (Advertising) 隐私政策
Trendkite
我们通过 Trendkite 在 Trendkite 提供支持的站点上投放数字广告。根据 Trendkite 数据以及我们收集的与您在站点中的活动相关的数据,有针对性地提供广告。我们收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。可能会将此信息与 Trendkite 收集的与您相关的数据相整合。我们利用发送给 Trendkite 的数据为您提供更具个性化的数字广告体验并向您展现相关性更强的广告。. Trendkite 隐私政策
Hotjar
我们通过 Hotjar 在 Hotjar 提供支持的站点上投放数字广告。根据 Hotjar 数据以及我们收集的与您在站点中的活动相关的数据,有针对性地提供广告。我们收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。可能会将此信息与 Hotjar 收集的与您相关的数据相整合。我们利用发送给 Hotjar 的数据为您提供更具个性化的数字广告体验并向您展现相关性更强的广告。. Hotjar 隐私政策
6 Sense
我们通过 6 Sense 在 6 Sense 提供支持的站点上投放数字广告。根据 6 Sense 数据以及我们收集的与您在站点中的活动相关的数据,有针对性地提供广告。我们收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。可能会将此信息与 6 Sense 收集的与您相关的数据相整合。我们利用发送给 6 Sense 的数据为您提供更具个性化的数字广告体验并向您展现相关性更强的广告。. 6 Sense 隐私政策
Terminus
我们通过 Terminus 在 Terminus 提供支持的站点上投放数字广告。根据 Terminus 数据以及我们收集的与您在站点中的活动相关的数据,有针对性地提供广告。我们收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。可能会将此信息与 Terminus 收集的与您相关的数据相整合。我们利用发送给 Terminus 的数据为您提供更具个性化的数字广告体验并向您展现相关性更强的广告。. Terminus 隐私政策
StackAdapt
我们通过 StackAdapt 在 StackAdapt 提供支持的站点上投放数字广告。根据 StackAdapt 数据以及我们收集的与您在站点中的活动相关的数据,有针对性地提供广告。我们收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。可能会将此信息与 StackAdapt 收集的与您相关的数据相整合。我们利用发送给 StackAdapt 的数据为您提供更具个性化的数字广告体验并向您展现相关性更强的广告。. StackAdapt 隐私政策
The Trade Desk
我们通过 The Trade Desk 在 The Trade Desk 提供支持的站点上投放数字广告。根据 The Trade Desk 数据以及我们收集的与您在站点中的活动相关的数据,有针对性地提供广告。我们收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。可能会将此信息与 The Trade Desk 收集的与您相关的数据相整合。我们利用发送给 The Trade Desk 的数据为您提供更具个性化的数字广告体验并向您展现相关性更强的广告。. The Trade Desk 隐私政策
RollWorks
We use RollWorks to deploy digital advertising on sites supported by RollWorks. Ads are based on both RollWorks data and behavioral data that we collect while you’re on our sites. The data we collect may include pages you’ve visited, trials you’ve initiated, videos you’ve played, purchases you’ve made, and your IP address or device ID. This information may be combined with data that RollWorks has collected from you. We use the data that we provide to RollWorks to better customize your digital advertising experience and present you with more relevant ads. RollWorks Privacy Policy

是否确定要简化联机体验?

我们希望您能够从我们这里获得良好体验。对于上一屏幕中的类别,如果选择“是”,我们将收集并使用您的数据以自定义您的体验并为您构建更好的应用程序。您可以访问我们的“隐私声明”,根据需要更改您的设置。

个性化您的体验,选择由您来做。

我们重视隐私权。我们收集的数据可以帮助我们了解您对我们产品的使用情况、您可能感兴趣的信息以及我们可以在哪些方面做出改善以使您与 Autodesk 的沟通更为顺畅。

我们是否可以收集并使用您的数据,从而为您打造个性化的体验?

通过管理您在此站点的隐私设置来了解个性化体验的好处,或访问我们的隐私声明详细了解您的可用选项。