Robot Components and Parts

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Everything for repairing & expanding robot functions
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2 EMHART TUCKER Studs Welding Machines
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EXPERT-TÜNKERS Rotary Turntable
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Germany, 42719 Solingen
EXPERT-TÜNKERS Rotary Turntable
EXPERT-TÜNKERS E32 / 1112 /flex Turning table
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EXPERT-TÜNKERS E32 / 1112 / Flex Turning Table
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TOX PRESSOTECHNIK Clinching Tong 52 KN
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TOX PRESSOTECHNIK Clinching Tong 17 kN
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EXPERT-TÜNKERS Rotary Turntable
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Germany, 42719 Solingen
EXPERT-TÜNKERS Rotary Turntable
TOX PRESSOTECHNIK Clinching Tong 52 kN
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TOX PRESSOTECHNIK Clinching Tong 17 kN
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TOX PRESSOTECHNIK Clinching Tong 17 kN
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TOX PRESSOTECHNIK Clinching Tong 52 kN
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DEPRAG B10 Robot cell
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Germany, 78089 Unterkirnach
DEPRAG B10 Robot cell
ABB DR 2000 A Robot cell
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Germany, 78089 Unterkirnach
ABB DR 2000 A Robot cell
EMHART TUCKER Stud welding machine
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Germany, 42719 Solingen
EMHART TUCKER Stud welding machine
SCA 2-Component Pump Station
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Germany, 42719 Solingen
SCA 2-Component Pump Station
2 Pieces EMHART TUCKER ETF Stud Feed Unit / Terminal
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WEISS TC0120G Rotary Indexing Table
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Switzerland, 2502 Biel/Bienne
WEISS TC0120G Rotary Indexing Table
SONTEC automatic tester with sound test
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Play
SCHALTAG Railroad Station Cage Basket Packaging System
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SONTEC Automatic Tester with Sound Test
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Play
Industrial robots can no longer be imagined away from modern production because their advantages at so extensive. Critics certainly complain at the loss of jobs through automation, but one must take account which jobs are being lost. Robots can carry out monotonous, dangerous, and very heavy tasks which would sooner or later cause health damage to a human worker.
  • Broader scope of functionality and security
  • Optional expandability of axels
 Quality   Great offers   Personalized Robots are a labour source which themselves require care, maintenance, and development. This means that robotics is a field which in itself will create many new jobs in the future.

There are many different varieties of industrial robots, but the basic concept remains the same. It consists of a stable supporting frame, ensuring the secure stance of the robot. Housing contains the drive and operating technology. Robots use the same drive technology that common in industry. There are pneumatic, electric and hydraulically driven robots, which rely on the same supply engineering as the other machinery. The majority of industrial robots are electrically driven. Pulling cables or specialised kinematics (e.g., SCARA robots) compensate for the speed disadvantage of electrically driven robots. The actual gripping and moving unit of the robot is called the manipulator, referred to informally as the "robot arm". This is the main differentiation between the different types of robots; robots are defined by their movable axels. Though axels are theoretically customizable, the 5-axel-robot is the common manipulator for industrial use.

One difficulty presented by industrial robots is the requirement of an exclusive operating room. It can be very dangerous to be in the room with an industrial robot, as their pivoting and swivelling movements can be very fast and powerful. It is therefore common for industrial robots to be enclosed. A stable cage ensures that no one accidentally walks into the operating zone of the robot. If this is unavoidable, the complete stoppage of the robot's movement is guaranteed by a safety switch installed in the door of the cage. Systems are also available in which the robot detects when a foreign body enters its operating zone and stops automatically. The security system around a robot should be planned with redundancies. Depending on the work area, further specialised protective measures for robots are available. These serve to prevent premature wear and tear of the robot. In environments where lacquering or welding takes place other specialised protection for the robots may be sensible.

Recommendable sources of robotic technology include IPR, SCHUNK and FIBRO.