The core of robot automatic unpacking is based on automation technology
raw materialRefactoring the entire supply process to achieve a transition from manual operation to systematic collaboration. Under the traditional mode, employees carry 25 kilograms of raw materials more than a thousand times a day, and high-intensity repetitive labor leads to physical exhaustion. Affected by emotions and physical strength, the feeding efficiency fluctuates greatly, and there are systemic defects such as mixing risks, efficiency fluctuations, and data breakpoints, which directly affect the continuity of the production line and the quality of feeding. Automated feeding can fundamentally eliminate the bottleneck of manual operations, achieve stable, traceable, and uninterrupted raw material supply, and is an effective path to improve the reliability of the feeding system and reduce operational risks.
The unpacking robot system, with the core architecture of "unpacking robot+ground rail walking+3D visual guidance", constructs a multi-dimensional collaborative operation system that can simultaneously process automatic recognition, grasping, bag breaking, and feeding of three or more types of raw materials. 3D vision guided robots accurately recognize the position and posture of bagged raw materials, achieving intelligent grasping of raw materials. The scope of ground rail expansion operations can cover multiple feeding ports with one system. The system can seamlessly integrate with customer MES, receive production instructions, automatically schedule AGV to transport raw materials, and provide unmanned intervention throughout the entire process from storage to production line. This is not partial automation, but an overall restructuring of the feeding process. Optional scanning system, binding a unique traceability code for raw material storage, automatically scanning and comparing the code before unpacking, and moving quality control to the source to block sampling inspection.
The mission of technology is not to make people unemployed, but to liberate them from repetitive, dangerous, and low value physical labor, and shift them towards monitoring, decision-making, and continuous improvement.
Customer on-site application 1
Robot unpacking systemtworightfour
Location of use: Hebei
Types of raw materials: 4 types
Robots: 2 units
Supply demand: 3T/H
Note: Robot+3D vision, used in situations with fewer types of raw materials
Customer on-site application 2
Robot unpacking system one to three
Place of use
Raw material types: 3 types
Robot: 1 unit
Supply demand: 1.5T/H
Note: Robot+3D vision, used in situations where there are few types of raw materials (usually within 3 types)
Customer on-site application 3
Robot unpacking system, one to ten
Location of use: Jiangxi
Types of raw materials: 10
Robot: 1 unit
Supply demand: 1.6T/H
Note: Robot+ground rail+3D vision, used in situations with a wide variety of raw materials (usually 3 or more)
Customer on-site application 4
Robot unpacking system two to twenty
Location of use: Hebei
Raw material types: 20 types
Robots: 2 units
Supply demand: 4T/H
Note: Robot+ground rail+3D vision, used in situations with a wide variety of raw materials (usually 3 or more)
The SRP-3300 multi joint palletizing robot adopts FEM optimized motion principle, fully meeting the requirements of palletizing operations. It has the advantages of low maintenance cost, long service life, and the ability to palletize multiple production lines simultaneously. The robot is equipped with non-standard grippers at the end, which can achieve the grabbing, handling, and palletizing of various types of products; Paired with automatic pallet machines and roller conveyors, achieve integrated automation of pallet supply, robot palletizing, and conveying.
Stacking robot SRP-3300