China robotic arm welding machine price 6-axis robot arm price large robot arm 6 axis 120kg gearbox and motor

Application: Industrial
Features: 6 axis
Condition: New
Warranty: 1year
Voltage: 220V
Applicable Industries: Building Material Shops, Manufacturing Plant, Machinery Repair Shops, Construction works , Other
Weight (KG): 230
Showroom Location: Indonesia, Thailand, Colombia, Algeria, Romania
Video outgoing-inspection: Provided
Machinery Test Report: Not Available
Marketing Type: New Product 2571
Warranty of core components: 1 Year
Core Components: Motor
Function: welding,cutting
Number of axis: 6 Axis 5axis 4 Axis
Payload: 6KG
Robot type: 6 Axis Articulated Robot
Color: Customers’ Requirements
Level: High Automatic
Advantage: Cost Save High Efficiency
Display: 8 Inch Real Color LCD
Structure: Articulated
Mounting type: A variety of ways, according to the needs of the plan
Packaging Details: Nude packages or wooden case
Port: HangZhou

Product Overview Industrial Robots Industrial robots are multi-joint manipulators or multi-degree-of-freedom robots oriented to the industrial field. An industrial robot is a machine device that automatically performs work. It is a machine that realizes various functions by its own power and control capabilities. It can be commanded by humans, and it can also be run in accordance with pre-arranged programs. Modern industrial robots can also act according to the principles and guidelines formulated by artificial intelligence technology. FEATURES AT A GLANCE Robot applicationIn industrial production, industrial robots can replace people to do certain monotonous, frequent and repetitive long-term operations, or operations in dangerous and harsh environments, such as stamping, pressure casting, heat treatment, welding, painting, plastic product forming, In processes such as mechanical processing and simple assembly, as well as in the atomic energy industry and other sectors, complete the handling or process operations of materials harmful to the human body. Right elevation Left elevation Front elevation PRODUCT SPECIFICATIONS

1Controlled axis6-DOF
2Max payload6kg,8kg, OEM Professional Industry Custom Die Casting Aluminum CZPT Maker Molds for Production CNC Machining Parts 10kg
3Max stroke 1.4m,1.8m,2m
4IP LevelJ1;J2-IP56;J3;J4’J5;J6-IP67
5Installation modeFloor type,ceiling type
6Robot mass200kg
Travel range
1J1 axis S± 160°
2J2 axis L+80° —-145°
3J3 axis U+145°—-75°
4J4 axis R± 190°
5J5 axis B±50°—-210°
6J6 axis T±360° Custom pc button intelligent touch switch enclosure injection plastic moulding
Travel speed
1J1 axis S199.5 ˚/s
2J2 axis L159.3˚/s
3J3 axis U199.5˚/s
4J4 axis R392˚/s
5J5 axis B272˚/s
6J6 axis T374˚/s
Electrical cabinet specifications
1Input power220VAC 50/60hz
2Cooling methodNatural cooling
PRODUCT CONFIGURATION working principle The robot control system is the brain of the robot, and it is the main factor that determines the function and performance of the robot. Industrial robot technology The main task of industrial robot control technology is to control the movement position, posture and trajectory, operation sequence and action time of the industrial robot in the working space. It has the characteristics of simple programming, software menu operation, friendly human-computer interaction interface, online operation prompts and convenient use. Key technologies include: (1) Open and modular control system architecture: adopts distributed CPU computer structure, divided into robot controller (RC), motion controller (MC), photoelectric isolation I/O control board, sensor processing board and programming display Teaching box and so on. The robot controller (RC) and the programming teaching box communicate through the serial port/CAN bus. The main computer of the robot controller (RC) completes the robot’s motion plHangZhou, interpolation and position servo, main control logic, digital I/O, sensor processing and other functions, while the programming teaching box completes the display of information and the input of keys. (2) Modular and hierarchical controller software system: The software system is built on the open source-based real-time multitasking operating system Linux, and adopts hierarchical and modular structure design to realize the openness of the software system. The entire controller software system is divided into 3 levels: hardware driver layer, core layer and application layer. The 3 levels face different functional requirements and correspond to different levels of development. Each level in the system is composed of several modules with opposite functions. These functional modules cooperate with each other to realize the functions provided by the level. (3) Robot fault diagnosis and safety maintenance technology: Diagnosing robot faults through various information and performing corresponding maintenance are the key technologies to ensure the safety of robots. Successful Project Gantry welding robot Fixed welding robot Multiple welding robots cooperate. Related machines FAQ 5Q1:What is the function of this manipulator?A1:Welding, cutting, handling.Q2.:Are you a manufacturer?A2:Yes, we have our factory in ZheJiang province.Q3: How to choose a robot arm?A3:Step 1: Select traverse stroke, crosswise stroke and vertical stroke according to the tonnage of your injection molding machine.Step 2: Select a single arm or double arms according to the plates of mold.Step 3: Select a single stage or telescopic type according to the height of your transporter crane.Q4: what’s your product lead time?A4:Within 15 days after received payments.Q5: What is the payment way?A5:T/T, Paypal, Two-colour Plastic injection CZPT parts custom processing service products ABS shell Double Injection Molding Western Union, L/C

What Is a Gearbox?

There are several factors to consider when choosing a gearbox. Backlash, for example, is a consideration, as it is the angle at which the output shaft can rotate without the input shaft moving. While this isn’t necessary in applications without load reversals, it is important for precision applications involving load reversals. Examples of these applications include automation and robotics. If backlash is a concern, you may want to look at other factors, such as the number of teeth in each gear.

Function of a gearbox

A gearbox is a mechanical unit that consists of a chain or set of gears. The gears are mounted on a shaft and are supported by rolling element bearings. These devices alter the speed or torque of the machine they are used in. Gearboxes can be used for a wide variety of applications. Here are some examples of how gearboxes function. Read on to discover more about the gears that make up a gearbox.
Regardless of the type of transmission, most gearboxes are equipped with a secondary gear and a primary one. While the gear ratios are the same for both the primary and secondary transmission, the gearboxes may differ in size and efficiency. High-performance racing cars typically employ a gearbox with two green and one blue gear. Gearboxes are often mounted in the front or rear of the engine.
The primary function of a gearbox is to transfer torque from one shaft to another. The ratio of the driving gear’s teeth to the receiving member determines how much torque is transmitted. A large gear ratio will cause the main shaft to revolve at a slower speed and have a high torque compared to its counter shaft. Conversely, a low gear ratio will allow the vehicle to turn at a lower speed and produce a lower torque.
A conventional gearbox has input and output gears. The countershaft is connected to a universal shaft. The input and output gears are arranged to match the speed and torque of each other. The gear ratio determines how fast a car can go and how much torque it can generate. Most conventional transmissions use four gear ratios, with one reverse gear. Some have two shafts and three inputs. However, if the gear ratios are high, the engine will experience a loss of torque.
In the study of gearbox performance, a large amount of data has been collected. A highly ambitious segmentation process has yielded nearly 20,000 feature vectors. These results are the most detailed and comprehensive of all the available data. This research has a dual curse – the first is the large volume of data collected for the purpose of characterization, while the second is the high dimensionality. The latter is a complication that arises when the experimental gearbox is not designed to perform well.


The main function of a gearhead is to multiply a moment of force and create a mechanical advantage. However, backlash can cause a variety of issues for the system, including impaired positioning accuracy and lowered overall performance. A zero backlash gearbox can eliminate motion losses caused by backlash and improve overall system performance. Here are some common problems associated with backlash in gearheads and how to fix them. After you understand how to fix gearbox backlash, you’ll be able to design a machine that meets your requirements.
To reduce gearbox backlash, many designers try to decrease the center distance of the gears. This eliminates space for lubrication and promotes excessive tooth mesh, which leads to premature mesh failure. To minimize gearbox backlash, a gear manufacturer may separate the two parts of the gear and adjust the mesh center distance between them. To do this, rotate one gear with respect to the fixed gear, while adjusting the other gear’s effective tooth thickness.
Several manufacturing processes may introduce errors, and reducing tooth thickness will minimize this error. Gears with bevel teeth are a prime example of this. This type of gear features a small number of teeth in comparison to its mating gear. In addition to reducing tooth thickness, bevel gears also reduce backlash. While bevel gears have fewer teeth than their mating gear, all of their backlash allowance is applied to the larger gear.
A gear’s backlash can affect the efficiency of a gearbox. In an ideal gear, the backlash is zero. But if there is too much, backlash can cause damage to the gears and cause it to malfunction. Therefore, the goal of gearbox backlash is to minimize this problem. However, this may require the use of a micrometer. To determine how much gearbox backlash you need, you can use a dial gauge or feeler gauge.
If you’ve been looking for a way to reduce backlash, a gearbox’s backlash may be the answer. However, backlash is not a revolt against the manufacturer. It is an error in motion that occurs naturally in gear systems that change direction. If it is left unaccounted for, it can lead to major gear degradation and even compromise the entire system. In this article, we’ll explain how backlash affects gears and how it affects the performance of a gearbox.


The design of gearboxes consists of a variety of factors, including the type of material used, power requirements, speed and reduction ratio, and the application for which the unit is intended. The process of designing a gearbox usually begins with a description of the machine or gearbox and its intended use. Other key parameters to consider during gearbox design include the size and weight of the gear, its overall gear ratio and number of reductions, as well as the lubrication methods used.
During the design process, the customer and supplier will participate in various design reviews. These include concept or initial design review, manufacturing design validation, critical design review, and final design review. The customer may also initiate the process by initiating a DFMEA. After receiving the initial design approval, the design will go through several iterations before the finalized design is frozen. In some cases, the customer will require a DFMEA of the gearbox.
The speed increaser gearboxes also require special design considerations. These gearboxes typically operate at high speeds, causing problems with gear dynamics. Furthermore, the high speeds of the unit increase frictional and drag forces. A proper design of this component should minimize the effect of these forces. To solve these problems, a gearbox should incorporate a brake system. In some cases, an external force may also increase frictional forces.
Various types of gear arrangements are used in gearboxes. The design of the teeth of the gears plays a significant role in defining the type of gear arrangement in the gearbox. Spur gear is an example of a gear arrangement, which has teeth that run parallel to the axis of rotation. These gears offer high gear ratios and are often used in multiple stages. So, it is possible to create a gearbox that meets the needs of your application.
The design of gearboxes is the most complex process in the engineering process. These complex devices are made of multiple types of gears and are mounted on shafts. They are supported by rolling element bearings and are used for a variety of applications. In general, a gearbox is used to reduce speed and torque and change direction. Gearboxes are commonly used in motor vehicles, but can also be found in pedal bicycles and fixed machines.


There are several major segments in the gearbox market, including industrial, mining, and automotive. Gearbox manufacturers are required to understand the application and user industries to design a gearbox that meets their specific requirements. Basic knowledge of metallurgy is necessary. Multinational companies also provide gearbox solutions for the power generation industry, shipping industry, and automotive industries. To make their products more competitive, they need to focus on product innovation, geographical expansion, and customer retention.
The CZPT Group started as a small company in 1976. Since then, it has become a global reference in mechanical transmissions. Its production range includes gears, reduction gearboxes, and geared motors. The company was the first in Italy to achieve ISO certification, and it continues to grow into one of the world’s leading manufacturers of production gearboxes. As the industry evolves, CZPT focuses on research and development to create better products.
The agriculture industry uses gearboxes to implement a variety of processes. They are used in tractors, pumps, and agricultural machinery. The automotive industry uses gears in automobiles, but they are also found in mining and tea processing machinery. Industrial gearboxes also play an important role in feed and speed drives. The gearbox industry has a diverse portfolio of manufacturers and suppliers. Here are some examples of gearboxes:
Gearboxes are complex pieces of equipment. They must be used properly to optimize efficiency and extend their lifespan. Manufacturers employ advanced technology and strict quality control processes to ensure their products meet the highest standards. In addition to manufacturing precision and reliability, gearbox manufacturers ensure that their products are safe for use in the production of industrial machinery. They are also used in office machines and medical equipment. However, the automotive gearbox market is becoming increasingly competitive.

China robotic arm welding machine price 6-axis robot arm price large robot arm 6 axis 120kg     gearbox and motor	China robotic arm welding machine price 6-axis robot arm price large robot arm 6 axis 120kg     gearbox and motor
editor by czh2023-02-18