1. Air-spraying robot
The air-spraying robot is also known as low-pressure air-spraying, the spraying machine relies on low-pressure air to make the paint form an atomized airflow after spraying out the muzzle and acts on the surface of the object (wall or wood surface), the air-spraying has no brush marks compared to the hand brush, and the plane is relatively uniform, the unit operation time is short, and the construction period can be effectively shortened. However, there is a splash phenomenon in the air spraying, and there is a waste of paint, and when viewed up close, very fine particles can be seen. Generally, air spraying is a general air compressor in the decoration industry, which is relatively multi-purpose and has low investment cost, and there are special machinery such as extraction air spraying machine and self-falling air spraying machine on the market.
2. Airless spraying robot
Airless spraying robots can be used for the application of high-viscosity paints with clear edges, and can even be used for some spraying projects with gap requirements. Depending on the type of machinery, it can be divided into pneumatic airless sprayers, electric airless sprayers, internal combustion airless sprayers, automatic sprayers, and so on. It should also be noted that if the metal surface is sprayed, it is best to use metallic paint (magnetic paint).
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Yamaha Robotics PLC programming algorithm
The control of pulse quantity is mostly used for viewpoint control, interval control, position control and so on of stepper motors and servo motors. The following is an example of a stepper motor to illustrate each control method.
1. Viewpoint control of stepper motor. The first thing to do is to be clear ...
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Key points for industrial robot application maintenance - Yamaha
Before operating the industrial robot, we must pay attention to check whether there is water and oil entering the electrical control box, if the electrical appliance is wet, do not turn it on, and check whether the power supply voltage is compliant, and whether the front and rear safety door switches are normal. Verify that the direction of rotation of the motor is consistent. Then turn on the power; ...
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Four-axis robot with Siemens S7-300PLC
The Siemens PLC is used to control the control strategy of the Yamaha robot, and the command word is set using the external IO port to make the PLC communicate with the robot and instruct the robot to complete the corresponding action.
Siemens S7-300PLC is a widely used large and medium-sized PLC in China.
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Advantages of Yamaha palletizing robot lithium battery production
In the production process of lithium batteries, the products should be automatically removed from the production line, sent to the testing place for visual inspection by the intelligent image processing system, and then the qualified products are sent to a specific packaging container, and the unqualified products are sent to another container. This is the largest battery in Europe ...
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Industrial Robot Preventive Maintenance – Yamaha Robot
Each robot requires preventive maintenance to ensure optimal performance and consistency on the production line. When the robot is not regularly inspected for preventive maintenance, it can lead to damage or malfunction of parts, which can lead to production sluggishness or even downtime. To the robot ...
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How to Test a Servo Motor – Yamaha Robot
1. First of all, test the motor first, no circuit need to be connected, any two of the three wires of the motor are short-circuited together, and the motor shaft is rotated by hand, and it feels like there is resistance, then OK.
2. Connect the servo drive to the power supply according to the drawings (for example, if a voltage regulator is used, adjust it from 100V to 2 ...
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Yamaha is a robot that can drive a motorcycle in a fancy way
It's not that a robot is on it, it's really driving!
According to tech website Engadget, Yamaha recently released a robot called MotoBot that can ride superbikes like a human. Maybe you don't have to ...
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Siemens PLC controls Yamaha robots
This article introduces the control strategy of using Siemens PLC to control Yamaha robots, using an external IO port to set command words, so that the PLC can communicate with the robot and instruct the robot to complete the corresponding actions.
Siemens S7-300PLC is ...
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SCARA robot composition and working principle
Composition of the SCARA robot
The SCARA robot is a curved multi-articulated robot, which is generally composed of four joints. The structure of this robot resembles a human arm, but it is capable of carrying things on the end, such as a gripper, suction cup, or laser head. The joints of the SCARA robot are made of electricity...
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The difference between an industrial robot and a robotic arm
A robotic arm is a mechanical structure made up of multiple joints connected together, similar to a human arm. It generally has rotatable or elastic joints that allow it to perform accurate positioning and manipulation in space. A robotic arm is generally composed of a motor, a sensor, a control system and a fulfillment.
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Welding robots use the advantages of TIG welding – Yamaha robots
Most of the arc welding robots use gas shielded welding methods (MAG, MIG, TIG), and general thyristors, frequency converters, waveform control, pulse or non-pulse welding power supplies can be installed on the robot for argon arc welding. Advantages of TIG welding in welding robot automation system:
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Yamaha Robot 14.501 Alarm Handling Method
14.501 Data Reception Fault 14.502 Framing Fault 14.503 Odd and Even Fault Handling Method, why put these three alarms together, because these three alarms are basically not much different.
1. The first ...
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Industrial robots deal with error programming methods
Anatomy of a Fault Routine 1
Let's start with a snippet of code:
*AA:
MOVE P,P101,Z=0.0
WAIT ARM
FOR I=1 TO 1000
MOVE P,P102,Z=0.0
WAIT ARM
DO2(0)=1
GOTO *TSA // Fault ...
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Yamaha Robotics Application Industry – Yamaha
Yamaha robots are commonly used in a variety of industrial sectors, including:
Car manufacturing: used in welding, painting, testing and other processes on the car production line.
Medical devices: used in the production of medical devices and instruments, such as surgical instruments and nursing products.
Food & Drink: ...
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The weakness of industrial robots – Yamaha robots
1. The operation is slightly inferior to people
Because of the complexity of managing the structure of robots, employees who use industrial robots require professional training. If not done correctly, even a simple operation can lead to serious safety incidents. On the other hand, it's easier to do some of the curiosity processes manually ...
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Introduction to Welding Robots – Yamaha Robots
Welding robot is a modern and automated equipment that integrates knowledge of machinery, computers, electronics, sensors, artificial intelligence and other aspects. Welding robots are mainly composed of two parts: robots and welding equipment. The robot consists of the robot itself and the control system. Welding Equipment ...
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Performance evaluation index of industrial robots
The working space refers to the set of directions that a specific part of the robot arm can reach under certain conditions. The nature and size of the workspace reflect the size of the robot's working capacity. When understanding the robot's working space, pay attention to the following:
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The reason for the lack of precision of the robot - Yamaha
Many industrial applications require accurate robots for critical tasks, such as aerospace fabrication and metrology viewing. However, industrial robots generally do not provide high accuracy. The bot's inaccuracies are attributed to several sources of fault. These sources of fault fall into three broad categories: automatic joint faults, kinematic faults, etc.
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Advantages and disadvantages in the number of axes of the Yamaha robot
Industrial robots have been widely used in all walks of life, but we have also found that industrial robots not only have different shapes, but also have different axes. The so-called axis of the industrial robot can be explained by the professional term degrees of freedom, if the robot has three degrees of freedom, then it can be along ...
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Welding Robot Application Environment Requirements – Yamaha
The welding robot is different from the general industrial robot in the particularity of the use environment, and the particularity of the use environment is different from the general general industrial robot.
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