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Easy and Fun Student Projects Using Fusion 360, Tinkercad, and More

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说明

Educators! Have you been tasked with teaching digital modeling and/or 3D printing? In this session, learn step-by-step, tutorial projects for simple consumer items. You can take these fun, actionable projects back to your classes to help get students started. Projects will include: Finding sketches on the internet, turning them into SVG files with an online converter, and using Fusion 360 to turn them into a cookie cutter and business card; Using Recap Photo to turn smartphone snaps of a statue into a reality capture model, importing the model into TinkerCAD, and editing it into a candy jug.

主要学习内容

  • Learn how to convert a raster sketch into an SVG file.
  • Learn how to model an SVG file in Fusion 360.
  • Learn how to capture an object with a smartphone and ReCap Photo.
  • Learn how to import and edit a mesh file in Tinkercad.

讲师

  • Lydia Cline 的头像
    Lydia Cline
    Lydia Cline started adult life as an architect, but segued into Maker interests and hobbies, which she found more fun. She teaches 3D printing, Fusion 360 and Tinkercad at Johnson County Community College in Overland Park, KS. She creates video courses, holds software workshops, judges at competitive technology events, and loves all things technology. Watch tutorials of her books' subjects at youtube.com/profdrafting.
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Transcript

LYDIA CLINE: Hello, fellow educators. Thank you for coming to my session. I'm honored that you chose it. I'm Lydia Cline, and I'm a drafting teacher at Johnson County Community College in Overland Park, Kansas. I teach Fusion 360, AutoCAD, recap photo, Tinkercad, and then some other things, including 3D printing.

As far as the software goes, I am largely self-taught. I've had the great luxury of being able to pursue what interests me, and then I enjoy passing that knowledge on. I maintain a YouTube channel that has tutorials of the subjects I teach, and tutorials from the books that I write.

I write books on drafting. You may have seen them, they're used in a lot of schools. Some have gone into multiple editions and translated into multiple languages. And I'm working on a Tinkercad book right now that will be published next year.

So I got in to digital modeling when I was tasked to teach a 3D printing course at JCCC. And this was over 10 years ago. I had to design the course from scratch, choose the printers to buy, the slicing software to use, and then choose appropriate modeling software. This is because I didn't want my students to simply download models from Thingiverse and print them. I wanted them to be able to print their own designs up.

And if they printed downloads from Thingiverse, I wanted them to be able to edit them to their needs. The class had no prerequisites, and so my assumption was that the students would come in with no background in digital modeling. And that is indeed, the case for many of them. So I needed software that had a relatively short learning curve, so that the students could get up and running with digital modeling fast.

We all know that when something is hard, it produces discouragement. But when students see fast and early successes, that keeps them engaged and interested. And of course, that's my goal. I don't want them to drop the class.

So the programs that I currently use are Autodesk Fusion 360, recap photo, and Tinkercad. I also still use meshmixer, which is no longer supported, but is still great for analyzing files for 3D printing.

The goal of this session is to give you a taste of tinkercad in Fusion, and recap photo. And to show you via tutorials how to make three projects. These particular projects have been very successful for me at getting students up and running fast and keeping them engaged.

The bat cookie cutter and the business card are made by importing raster files. Well, should I say, finding a raster file, converting it to a vector file, specifically, an SVG, and importing the SVG file into Fusion. The reason I like this workflow, is because you're able to import a sketch that would otherwise probably take you a long time to do in Fusion.

And that is at odds with my goal of getting students up and running fast, early on. Later on, we do more sketching with Fusion. The candy jug was made by a really fun technique called reality capture. And we'll talk more about what that is later on.

And then I imported the capture into Tinkercad for editing. So if that's what you were expecting when you signed up for this session, that's what we're going to do now. And let's start with the bat cookie cutter.

Now before we get into it, if you haven't used Fusion 360, let me explain what it is. It's a cloud based app that you can also download and work on locally. So you can work on it locally or online. You can do solid modeling, surface modeling, t-spline, or organic modeling, and you can model parametrically or directly. So instead of using programs that specifically are for solid or surface or organic modeling, Fusion combines all of them.

I'm not going to get into the definitions of all those different types of modeling. Of course, I will invite you to read my book for a lot more detail. But we're going to do solid modeling here for these projects. And just so you know, Fusion can do a lot more than what I just described.

You can do sheet metal modeling. You can design generatively, that is it has artificial intelligence. It has an artificial intelligence component built in. You can do some rudimentary mesh editing, that is work on an STL file that you import.

You can render, meaning you can add color and texture and material properties to the model, which is useful for the simulation studies that you can also do. That is, you can apply stresses to your model and see how it reacts under them. You can create animations and generate g-code for CNC cutters, such as laser cutters and 3D printers.

So let's get to creating the bat cookie cutter now. First, find an image. I just do a web search looking for raster images, because of course, they're the most plentiful and easiest to find. Your raster image can be filled or it can be open. And this is what I mean by filled or open. And it can be high resolution or low resolution. But you need to have an eye out for ones that will convert successfully.

And the ones that convert the best from raster to vector are simple, are black and white, have a lot of contrast between parts, and have continuous connected lines. That's not to say that you can't get a good conversion without connected lines, or with little contrast, but that's the way to best.

If you have a raster image that you really want to use but it's not converting well, you can import it into Photoshop or whatever digital imaging app you like, and do things like ramp up the contrast or convert a color raster image to black and white. Or sharpen it. And sometimes that can make all the difference in getting a successful conversion.

So I used this JPEG that I screenshot. And then I imported it into an online converter. There are several converters out there, I happen to like this one. It's easy to use. You upload your image. You choose what kind of image it is, what kind of image you want to turn it into. Or what kind of file to turn it into.

And then you click Start. And soon enough, a download button will appear and you can download the image. And here's a video now of the process of importing that SVG file, the converted raster, and modeling it into Fusion. Let's import an SVG file and model it in Fusion. Click Insert. Insert SVG. And then navigate to that SVG.

Now, click on the plane to model on. I clicked on the horizontal. The SVG will come in. And then rotate it as needed. Then click OK. We have a clean import here with a solid face. Click Modify, offset. Click on the perimeter. And then either type a number or just drag the offset.

And once again, we have a clean break between the perimeter and the face inside it. Right click on the perimeter, click press pull. Either type a number or drag it up, then click OK. Now, with the inspect tool, we can click on opposite ends to see how large it is. It's 5.5 inches. Click Modify, scale. And then click a scale factor to get the exact size you want.

Inspect it again to see if it is indeed that size. And it is. Finally, go to File Export. Name it, and then click the type of file you want to export it as. I'm clicking STL. And then finally, click Export. And here is the Printed cookie cutter.

Now, let's take a look at how to model a business card. We're going to import a bit more complex file in, and then do some sketching around it. This is the file that I found online. And I used it as is, that is, I brought it to the online converter without finessing it in a digital imaging program. This is the conversion. Overall, it looks good, but when you blow it up, you see that there are rough edges.

And edges like that can be problematic when it imports into Fusion. And let's import it now and model it. I converted this JPEG to an SVG with an online converter. It converted OK. It's missing the top part. And if you look at this arc, it's composed of a lot of small lines that you can't do a lot with. I'm going to just erase this by using the Trim command under modify and holding down the left mouse button. And when I'm done trimming as much as I can that way, I'll just select and hit Delete.

Now, I'm going to draw a circle to serve as the face. And all these individual parts came in pretty well. They all extrude up separately. So I'm going to right click, choose press pull, and bring the sunglasses up. And click OK. I need to turn the sketches back on, because they automatically turn off. I'm going to repeat for the mouth, and then I'll repeat for the circle.

Next, I'll draw a business card to go under this emoji. Click on sketch, click on the plane to sketch on. Click on the rectangle. And I'm drawing it around the emoji. I'm going to round off the corners with the three point arc. Instead of drawing the arc three more times, I'm going to mirror it. And I need a mirror line, so I'm running the mouse over that horizontal line until the midpoint shows up so I can draw a line to mirror the arc around. And I'm drawing another mirror line.

Now, I'll click mirror. Click Select the mirror line. Select the mirror line. And there I have a mirrored arc. Now, I want to mirror both these arcs. So I select them both with the Shift key, and then select mirror line, and then select the mirror line itself. Click OK. And there are the other two arcs.

And with the Trim command, I'll remove the corners. Now, I'm going to draw a spline, because I'm going to draw a text along it. Click on text, text on path. Click the spline. And there is my text on path. I'll type what I want. And I've got all kinds of options here. For example, fit to path. That makes the text the entire length of the spline. I can choose a font. And I can choose the placement of the text. Click OK.

Finish the sketch. And now, let's right click on the text and press pull it up. Let's delete these mirror lines by selecting and hitting the Delete key. And now we just need to press pull the face of the card. I'm going to press pull it downwards, just to make it a bit easier. And there's the card. I'll turn off the sketches now to see it better. Click File. Export. Scroll down to STL file and export it. There is the card in meshmixer, showing that it exported with all pieces intact and looks good for 3D printing.

So did you get all that? If you want to add color, go to the Modify menu, click on appearance, click on faces. And then a paint folder will appear while you scroll down to the paint folder, and just slide colors onto the model. This is obviously, if you only want to use the card digitally. That is, you aren't going to print it. Because if you print it, then you don't need color, because the card will be whatever color your filament or resin is.

Now let's make a candy jug. And we're going to use a technique called reality capture to make it. This is a lot of fun. First, what is reality capture? It's the technique for making a model from photos or scans. So if you have an existing object that you would like to repurpose as something else, that is you want to edit it. In this case, I want to take this glass head and put a hole in the top to hold candy. I don't have to model it all from scratch.

I can simply take photos of it and get a model from that. So there's two kinds of photogram- there's two kinds of reality capture. One is photogrammetry, and that's done with a smartphone or a DSL camera. You send your photos to stitching software, and that software extracts data from multiple overlapping photos. It finds common features in the photos, and then recreates the subject. And you get a mesh model.

So this is a mesh model that was created from photos of this. The other kind of RealityCapture is done with LiDAR, that is light detection and ranging. Also called laser scanning or 3D scanning. And it's most commonly done with a laser scanner, although later model iPhones also have LiDAR capability. And the result is point clouds.

I use meshes in my class, because they're easier to work with. And I think more useful for small consumer items. Whereas, point clouds tend to be used for large scale projects. RealityCapture is used for a lot of great purposes. As I discussed, you can create a base for editing with it. It's useful for the arts. You can scan or take a whole bunch of pictures of a leaf, and look at that dense mesh. How long would it take you to model that from scratch?

You can, the entertainment industry uses it a lot to create video game assets and stage sets. Or they'll do a capture of someone's head and then edit it into whatever fantasy creature they want. The medical industry uses it to personalize prosthetics and other accessories. vs You can use RealityCapture to verify the accuracy of 3D printed objects, which is very important when printing replacement parts.

And then what's really cool, is its uses in the science and heritage space. For example, were you aware that the Smithsonian and Nasa have made reality captures of hundreds of items in their collections? And you can explore them. Click on these addresses, and you can download them for free and 3D print them yourself.

Recap photo is Autodesk's stitching software. It's cloud based software that processes the photos and it creates polygonal mesh models for you to download. You need to install ReCap Pro first. And that is LiDAR software. When you install it, there's a box to check to ask if you also want recap photo, which is an add on.

You click the box, and then you've got recap photo, which installs as a separate program with its own icon. So let's watch this video now on how I captured this glass head. In this video, we'll make a mesh model with photogrammetry. That is, by taking pictures of it. Here, we have a glass head. It's very shiny, and shiny objects don't photograph well. So they need to be covered. And you can use tape or water-based paint. Or as what I've done, cover it with flour. You also need to put it on a contrasting background. I've used birthday party wrapping paper here.

Take photographs of the object by walking 360 degrees around it at two different levels. Take the photographs every 30 degrees. You can use your smartphone or a DSL camera. The higher quality the camera, the better the photos, and the better the resulting capture. Once you get the photo set, you need to examine all the photos to make sure that they are consistently lit and crisp and clear. Discard any fuzzy, overexposed or underexposed pictures. Then open recap photo and upload the photo set.

Click Create. And then name the file. And click Start. In the lower left hand corner, you can see that the model is processing. This may take 20 to 30 minutes. Now click that graphic in the lower right of the larger graphic to go into the editing space. You can see the head was brought in with a lot of background that was on the photos. To remove the background, click on Edit and slice.

Make sure that fill is chosen, and then find a slice location where you can remove most of the background. Notice how the bottom of the head has been filled that is closed. So let's select, I'm clicking on window selection here. Let's select it and then hit the Delete key to get rid of the remaining background.

The model is textured, and we want to see the mesh. So click on visualization and then the mesh icon. And you can see, it's very dense. So we need to reduce it to make this importable into another program. It can take some trial and error to pick a number that works for you. But make sure that you do check best geometry, and that will help preserve the shape.

Now click decimate all. And there's the decimated model. And if that works for you, it looks good to me, click on Export. And then choose Export as STL. And click Export. Now we can import this into another program.

So you have to admit, that's pretty cool, isn't it? Because that's all that's involved in getting you a fabulous accurate model, whereas, you might need to spend hours trying to model that from scratch. And now that we've got this fabulous model, and note that we decimated it to make it easy to import, we are going to import it into Tinkercad and turn it into a candy jug.

Dense models don't import well into Tinkercad. And they don't import well into Fusion, either. So decimating a RealityCapture is always needed if you plan to workflow it with other programs. So what is Tinkercad? My guess is that most of you have probably already used it. But for anyone who hasn't, Tinkercad is a cloud based app, there's nothing to download. And it was originally created to teach digital modeling to kids.

It's very popular for 3D printing and for making Minecraft game assets. And while it's seemingly simple, it does have powerful features, like shape generators and code blocks, and a circuits workspace for electronics making. Now you can import your own STL files into Tinkercad. And another great feature of Tinkercad, is that it examines and fixes them on Import for 3D printability.

For instance, if you have faces or holes or overlapping polygons, these are all flaws that keep a file from being water tight. Water tightness, that is, if it were a water jug, you could pour water into it without any leaking out. Water tightness is essential for a successful 3D print. In my experience, Tinkercad also does a good job of maintaining the design intent while fixing flaws. Because a lot of software programs that repair meshes, they repair them for 3D printability, which Tinkercad does. But the end result may not look like what you wanted it to look like, so it's useless.

Now, Tinkercad can't fix very damaged STL files. If I send, if I import a file that it can't fix, it will send up warning labels saying there are issues with it. And then I'm best served by going back to the original application or the original file and trying to fix it manually. But the head file came in beautifully.

And now what I want to do, is cut a hole in the top so that I can put candy in it. So here's a video on how I did that. We'll import a mesh model into Tinkercad and edit it. Once you're in the dashboard, click on designs, create, 3D designs. And that takes you into the 3D design workspace. Click on Import. Drag the model in. I'm clicking on inches, and then I'm typing six. And then the other numbers will adjust proportionately. And then click Import. There's the model.

And if I click on a grip, the size will show up. You can see, it's 152mm, which is about six inches. I want to put a hole at the top to make this a candy jug, so I'll click on the bottom of the viewcube, and then click on that icon to see it in orthographic.

Drag the cylinder over, and I'm going to eyeball centering it. Now, click on it and drag the arrow up to move it up to the top of the head. To resize it and scale it around the center, hold the Shift and Alt keys down. And then drag a grip and it will rescale around the center.

Now push the cylinder down into the Click on the hole tool, select the hole and the mesh, and click group. Then click off it and there you have it. And here is the printed head and my attempts to paint it. I'm sure you could do a better job.

A lot of makers are content with just using Tinkercad because of the shape generators in the LEGO blocks and the other features it has that are enough for them. But for other makers, they want to graduate to something a bit more complex. Or maybe they want to edit a model they made in Tinkercad with features that Tinkercad doesn't have.

So you can export your Tinkercad model directly to Fusion. Know that you can only export basic shapes. That is, you couldn't export the glass head we just saw. You can't export meshes. But you can make a lot of great complex models in Tinkercad with just basic shapes. And then you can export them directly to Fusion.

And a fun thing is that even the colors will export. So if your model is red in Tinkercad, it will export red into Fusion. Well I hope you enjoyed that presentation. I invite you to visit my YouTube channel and connect with me there. Thank you.

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我们通过 Upsellit 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。. Upsellit 隐私政策
CJ Affiliates
我们通过 CJ Affiliates 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。. CJ Affiliates 隐私政策
Commission Factory
我们通过 Commission Factory 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。. Commission Factory 隐私政策
Google Analytics (Strictly Necessary)
我们通过 Google Analytics (Strictly Necessary) 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。. Google Analytics (Strictly Necessary) 隐私政策
Typepad Stats
我们通过 Typepad Stats 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。. Typepad Stats 隐私政策
Geo Targetly
我们使用 Geo Targetly 将网站访问者引导至最合适的网页并/或根据他们的位置提供量身定制的内容。 Geo Targetly 使用网站访问者的 IP 地址确定访问者设备的大致位置。 这有助于确保访问者以其(最有可能的)本地语言浏览内容。Geo Targetly 隐私政策
SpeedCurve
我们使用 SpeedCurve 来监控和衡量您的网站体验的性能,具体因素为网页加载时间以及后续元素(如图像、脚本和文本)的响应能力。SpeedCurve 隐私政策
Qualified
Qualified is the Autodesk Live Chat agent platform. This platform provides services to allow our customers to communicate in real-time with Autodesk support. We may collect unique ID for specific browser sessions during a chat. Qualified Privacy Policy

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改善您的体验 – 使我们能够为您展示与您相关的内容

Google Optimize
我们通过 Google Optimize 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。. Google Optimize 隐私政策
ClickTale
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。