3dsjs

Tinker-Friendly LACK Enclosure

2023-03-26 20:06:33

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This text describes a DIY 3D printer built around a Raspberry Pi. Here's a breakdown of the information: **Hardware:** * **Raspberry Pi:** The brain of the operation, controlling all aspects of the printer. No cooling solution is currently used. * **PiCam:** A camera module attached to the Pi for monitoring the printing process. * **Custom Case:** A case made from various parts held together with tape (the author plans on designing a better one). * **Manual Focus Adjustment:** A tool used to fine-tune the focus of the PiCam. * **Long Camera Cable:** A longer cable than standard is used to connect the PiCam to the Raspberry Pi. * **Power Supply:** A 12V power supply is used, as it's more convenient for wiring. The author encountered issues with voltage drops when using a display connected to the Pi. **Software:** * **OctoPrint:** Likely running on the Raspberry Pi, this open-source software allows for control and monitoring of the printer remotely via a web interface. * **Relay Board/Switch(es):** Used to control power to the printer's components, including safety features like shutdown in case of overheating or smoke detection. **Future Improvements:** * **Safety Features:** Adding a 110V relay box and smoke detector for automatic power shutoff in case of emergencies. * **Enclosure Temperature Monitoring:** Installing a sensor to monitor the temperature inside the printer enclosure and controlling fans accordingly. * **Upgrading the Frame:** The author might consider using 20x20 aluminum extrusion instead of what they currently use. **Overall, this text provides a glimpse into the process of building a DIY 3D printer with a focus on customization, safety, and automation.** The author highlights challenges faced during construction, like finding a suitable power solution, and outlines future plans for improvement.Tinker-Friendly LACK Enclosure
朋友,你觉得上面这个模型,属于下面的哪个分类?
必须全中文,且长度不超过15