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How do robots make handmade cartons?

The method for manually manufacture that carton by the robot is as follows:

I. Material preparation

The robot body is the core part of the production task, and it should have multi-joints and maneuverability. Cutting tools are used to cut cardboard into appropriate sizes, and robots need to be equipped with high-precision tools.

Adhesive is used to stick the edges of cardboard together to ensure the tightness of the carton. Cardboard is the main material for making cartons, and measuring tools are used to ensure the accuracy of carton size and need assistance.

Second, the production steps

1, set the size

Use measuring tools to determine the length, width and height of the required carton, and input these dimensions into the control system of the robot as the benchmark for making cartons.

2, cutting cardboard

According to the size data in the control system, the robot will operate the cutting tool to cut the cardboard. In order to obtain accurate cutting, it may be necessary to position and fix the cardboard in advance.

Step 3 Paste the edges

The robot uses adhesive to stick the edges of the cut cardboard together. This step needs to ensure that the adhesive is evenly coated and the alignment of the cardboard is controlled to ensure the compactness of the carton.

4, molding and decoration

After the carton is initially formed, the robot may perform some additional operations, such as indentation and corner folding, to enhance the structural strength and aesthetics of the carton, which may require special tools or equipment to assist.

5. Quality inspection

At every step, especially at the key handover point, quality inspection should be carried out, including but not limited to the size, appearance, structural integrity and sealing of the carton.

6. Storage and transportation

Finished cartons can be stored in specific locations, such as warehouses or specific areas on production lines. According to needs, the cartons can be further processed or directly transported to the destination.

The frontier of robot manual technology

1, flexible robot production

Traditional robot manufacturing methods are usually based on hard materials, but with the progress of flexible electronics and robotics, it is possible to manufacture robots with flexible materials such as plastic, rubber and fabric. This technology can be applied to medical care, wearable devices and other occasions that need high adaptability and flexibility.

2. Make a biocompatible robot

In the field of biomedical engineering, it is a new direction to produce biocompatible robots. This robot can be integrated with human tissues and organs to assist or replace some body functions, such as rehabilitation, prosthesis and organ transplantation.

3, micro-robot production

The manufacture of micro-robot involves the design and manufacture of nano-scale or micro-scale mechanical systems. These robots perform tasks at the micro level, such as medical diagnosis and treatment, environmental monitoring and industrial automation.