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Agricultural robot 3D Models

Find the best Agricultural robot 3D Models, free download in STL, FBX, GLB, OBJ, 3MF, USDZ for 3D modeling and creation in Blender, 3D printing, game developing, animation, eCommerce, AR/VR and etc. Generated by Tripo AI 3D Generator.

生成一个大疆植保无人机模型
Anonymous1776929026
Anonymous1775316402
Anonymous1775316402
HelioFarm Bot is an autonomous agricultural robot that improves farming efficiency using AI, robotics, and solar energy. Powered by integrated solar panels and batteries, it operates sustainably in fields with minimal human intervention. It uses computer vision and deep learning to detect weeds, crop diseases, and insect pests. The robot performs precise mechanical weeding, reducing chemical use, and alerts farmers to plant health issues in real time. With RTK GPS and sensors, it navigates fields autonomously and avoids obstacles. It can be supported by drone mapping for better field analysis. A digital platform lets farmers monitor crops, receive alerts, and access data insights. Modular and scalable, HelioFarm Bot provides a smart, eco-friendly solution for precision agriculture. can you make the camera and ultrasonic sensors visible.
Anonymous1776702369
Anonymous1775593873
Anonymous1774462028
Anonymous1774036476
Anonymous1773902591
帮我根据这个图生成一款智能化自动化科技化现代化的全自动果园防草薄膜铺设器,4轮结构(前后各两轮),完整保留放膜辊、压膜轮、后置覆土铲结构,极简工业风,哑光黑+银灰+荧光青配色,一体化流线外壳,科技感农机,高清产品,注意所有的结构要符合原理
Anonymous1765240350
Generate a high-detail 3D CAD-style model of an advanced autonomous agricultural robot prototype designed for plant disease detection, crop monitoring, and targeted treatment. The design should emphasize an industrial engineering prototype aesthetic with clean modular construction, exposed components, brushed aluminum structure, steel-grey materials, and realistic agricultural robotics engineering details.

1. Chassis & Locomotion

The robot should feature a rugged four-wheel rover chassis with an exposed brushed aluminum structural frame.

Include:

Four large treaded rubber tires designed for soil and uneven farm terrain

Independent hub-mounted electric motors for each wheel

Visible motor casings, wiring conduits, and protective motor housings

Reinforced suspension brackets for rough agricultural fields

A slightly elevated ground clearance suitable for crop rows

2. Central Systems – Fluid Treatment Module

Mounted on top of the chassis should be two semi-transparent HDPE liquid tanks.

Tank 1:

Larger
Anonymous1773739638
A compact agricultural robot designed for field operations, realistic 3D model, high detail. The robot has a rugged rectangular chassis mounted on four large all-terrain rubber wheels with deep tread patterns. On top of the chassis sits a modular tool mount with a multi-axis robotic arm ending in a interchangeable end-effector (seeding nozzle / soil probe). The body features solar panel strips along the upper flat surface, ventilation grilles on the sides, and a front-facing sensor array with LIDAR dome, stereo cameras, and LED indicator lights. The color scheme is matte olive green and brushed aluminum with yellow safety markings. The robot has a low center of gravity, utilitarian industrial design aesthetic. Visible bolts, cable management channels, and weatherproof casing details. Suitable for a virtual simulation environment, clean geometry, physically based rendering (PBR) materials, neutral studio lighting.
Anonymous1729409793
genera un boceto para un proyecto de electronica, el cual trata de un carro con dos ruedas traseras y una delantera, que las ruedas traseras tengan una suspension que les haga acoplarse al terreno agricola. tambien tiene una palca chasis que sirve como union con las ruedas y un envudo arriba que sirve para depositar las semillas. el proyecto trata de un robot agricola que esparza semillas cada cierta distancia, y que incluya un sistema de perforación vertical en direccion al suelo, que puedan desarrollar estudiantes universitarios con bajo conocimiento de programación, y un sistema de de tapado en dlnde la semilla puesta sea enterrada después de depositarla en la tierra
Anonymous1773428907
Anonymous1718628952
Small Improvements I Recommend
To make it look more like a mechanical engineering project, adjust these features:
1️⃣ Make the Arm Simpler
Instead of a complex industrial arm, use:
2 or 3 joints only
Example joints:
Base rotation
Arm lift
Gripper movement
This makes the design easier to explain in viva.
2️⃣ Improve Weeding Tool
The front tool should look like a rotary weeder.
Example concept:
Rotating shaft
Small blades
Driven by motor
Purpose: remove weeds between crops.
3️⃣ Add Spray Tank
Add a small tank behind the robot.
Components:
Tank (5–10 L)
Pump
Spray nozzle
Purpose: pesticide spraying.
4️⃣ Add Crop Storage Box
Behind the robotic arm you can add a basket/container.
Purpose: store harvested crops.
Suggested Robot Structure
Your final robot should have 5 main parts:
1️⃣ Chassis frame
2️⃣ Wheel drive system
3️⃣ Robotic arm with gripper
4️⃣ Weeding mechanism
5️⃣ Spraying system
Anonymous1772646508
A miniature smart agriculture line-following robot with tracked wheels (tank tracks). Compact and functional design.
The robot has two thin robotic arm grippers designed like precise lever mechanisms, capable of lifting harvested items and placing them into a rear storage container using a smooth articulated motion.
It also features a grain suction system with a small intake nozzle connected to a tube channel directing crops into the same rear container.
The robot includes side signal indicator lights.
Infrared sensors are mounted underneath for line detection, and an ultrasonic sensor is positioned at the front for obstacle detection.
Clean mechanical structure, realistic proportions, detailed but not overly complex, designed as a practical agricultural prototype.
3D model, product design style, high detail, realistic materials, studio lighting.
Anonymous1772023042
Anonymous1771758348
Anonymous1771758348
A realistic photo of a budget-friendly, DIY agricultural rice-farming machine in a muddy Philippine rice paddy. The machine features a simple, square-shaped transparent acrylic waterproof housing that clearly shows an Arduino Mega, wires, and internal motors. It has a lightweight metal frame with four green lugged wheels designed for deep mud
Anonymous1771330753
Enter invite code to get credits!