Showing posts with label robotics automation products. Show all posts
Showing posts with label robotics automation products. Show all posts

Sunday, 8 February 2015

Premium Testing for Premium Automobile


High-Performance Imaging System with 26 Digital Cameras puts SUV instrument panel carrier to the ultimate test.

At the BMW factory in Landshut, Germany, an on-site testing facility using digital cameras from Allied Vision Technologies tests instrument panel carrier frames for the MINI Countryman. This component, unnoticed by the average person, plays an important role in the safety and quality look and feel of the vehicle: the dashboard is mounted to this structural element. Important components such as the steering column as well as knee airbag modules belong to this assembly. Furthermore, the panel’s geometry must fit perfectly with the car’s interior, allowing for custom-fit assembly and delivering an high perceived quality. 



The Challenge: 3D measurement from different angles

Ziemann & Urban, a testing and automation specialist located in Moosinning (Bavaria), was contracted by the BMW Group to develop and build a self-contained test chamber for inspection of the carrier’s geometry. Over the past 20 years, Ziemann & Urban has evolved into an established purveyor of turnkey solutions for automation testing and quality assurance. Their 35-member team designs test and measurement systems for many application fields, most notably for the automotive, plastics, semiconductor and medical technology industries.

The testing system for BMW must provide a 100% measurement of the frame’s dimensional accuracy during production and within the production environment. The position of attachment points – such as those for airbags and steering columns – must be measured three-dimensionally. Moreover, the presence and absence of burr on bore holes and openings for the assembly of interiors and other components must be monitored. The entire measurement should occur automatically within 5 seconds, and the installation must be able to inspect two product varieties – left- und right-hand drive models.

One additional technical challenge is that, due to the element’s angular form, not all test points can be detected from the same angle of view. For this reason, a mechanical rotation of the support frame was considered, to allow the cameras to visualize hidden points requiring inspection.


"Mirror, mirror, on the wall..."

Utilizing a particularly shrewd adjustment of both the test object and the cameras as well as the clever use of background illumination and tilted mirrors, Ziemann & Urban was able to forgo such an elaborate manipulation of the support frame. "Mechanically moving the object, no matter how well technically executed, brings about tolerance challenges and has a negative effect on the precision of the three-dimensional measurement," explained Markus Urban, Project Manager at Ziemann & Urban. "Doing away with it makes the measurement process simpler and faster."

The instrument panel carrier is positioned and clamped in a customized apparatus. Doing so excludes the possibility that the measurement will be corrupted by an incorrect position in the cabinet. For 3D measurements, 2 sets of 8 FireWire cameras with VGA resolution are used — 8 each for the left- and right-hand drive versions. With the aid of several laser line projectors, the object’s geometry is highlighted in the image. Measurement points are illuminated with LED spotlights as well as by surface background lighting. 


For presence detection of bore holes and openings, 6 FireWire cameras with 1.25 to 5 megapixel resolution are installed that then inspect the component from top to bottom – with tilted mirrors where applicable. Bore holes are highlighted by the light box integrated into the fixture, that illuminates the frame from below. Four more cameras with VGA resolution inspect angular test points that are undetectable from above.

In that all cameras, laser emitters and lighting units are permanently mounted and the test object is not moved, Ziemann & Urban fulfills all of the BMW Group’s precision requirements. Even deviations caused by temperature are compensated for by special decoupling devices on the cameras as well as continuous monitoring of the temperatures of the component, the measurement device, and the environment. The result is a measurement precision of approximately 25 µm, which normally is only achieved in air-conditioned inspection rooms. Measurement precision is ensured by cyclical analyses, performed in regular intervals, of the measurement equipment’s capability.

Measurement results are stored in a database and can be assigned to each individual part. For this function, the system reads out the data matrix code of each component and stores it with the measured values. 




Read More About Machine Vision Cameras for Industrial Inspection by Allied Vision

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To Know More About Machine Vision Cameras with FireWire and Gigabit Ethernet (GigE) interface by Allied Vision Technologies Contact us now @ 
(+91) 22 67993158 OR Email us info@mvrpl.com

Tuesday, 29 October 2013

Adept Robotic-Automation Products Specifically Designed for Food Packaging Applications


As an innovator of industrial automation products, Menzel has consistently led the industry in the development of innovative and powerful industrial automation products for manufacturing, packaging, material handling and factory automation. We pioneered Direct-drive robots, Flexible feeding, Database-driven applications software, Integrated vision and Conveyor tracking, Digital servo control networks, and other products and technologies critical to the flexible automation industry.


Systems Help Food and Beverage Companies Meet New Government Safety and Sanitation Mandates, Lower Labor Costs and Future-Proof Packaging Lines

Adept Technology, Inc. (Nasdaq:ADEP), a leading provider of intelligent robots and autonomous mobile solutions and services, today announced the availability of primary and secondary food packaging robots and peripherals that are designed specifically to help food processing companies to meet new government safety and sanitation mandates, lower plant operating costs, decrease waste and future-proof packaging lines.

Robotic automation is a proven solution for both primary and secondary food-packaging lines, which typically require rapid, repetitive, labor-intensive product handling. A primary or secondary packaging line that combines Adept's robotic components, application software, and game-changing SoftPIC gripper/grasper technology can yield significant productivity gains while improving safety and sanitary conditions.

"Food processors are looking to robotic automation with integrated vision and conveyor control to provide the speed and efficiency of hard automation but with flexibility for quick changeover between products," states Glenn Hewson, Adept Senior Vice President of Marketing. Our game-changing SoftPIC grippers are designed specifically for primary packaging of raw protein and fruits and vegetables, and when combined with Adept's industry-leading vision guidance and conveyor-tracking enable a variety of products to be packaged on the same line."

Hewson further adds "Robotic automation can also help processors dramatically lower distribution labor costs by packing mixed-product cases for specific store orders on the secondary packaging line and eliminating repacking at distribution warehouses."

Adept's differentiating food packaging innovations include the Adept Quattro™ s650HS, the world's only USDA-approved robot; PackXpert™ a powerful software solution for the rapid development of robotic packaging applications; SoftPIC™ advanced gripping/grasping technology that supports handling different products in a variety of packaging patterns from a single production line; and industry-leading integrated vision and conveyor tracking, for applications where robots must package products that are presented randomly on a moving conveyor belt.


Know More About Adept Robotic-Automation Products