robotic blow

It combines the automatic feeder with the automatically moving electric screwdriver to realize the complementary supply of screws and the locking, which greatly improves the production efficiency and saves manpower. Once the screwdriver is lifted after locking the screw, the automatic feeder will send the other screw to the Escape of the automatic feeder. The screwdriver head absorbs the screw and the robot can automatically move according to the coordinate point and tighten it. This is particularly suitable for multi-station workpieces of the same specification. 
The Robotic SUBTA systems have also created unexpected improvements in the manufacturing process. The company noted a net reduction of 1/2 percent of scrap, adding 500,000 bottles per year to its output simply by virtue of not dropping the bottles. Since fewer products need to be reground, the company also saves money considering the cost to run the regrind machines has gone up greatly as the cost of oil increases. In addition, this reliable process has cut the employee bending movements by 50 percent.
The company contacted Motion Controls Robotics to ask them to help develop a solution that would automate its bottle take out process and alleviate its safety and ergonomic issues due to repetitive stress injuries. They also wanted to create a solution that would reduce scrap, which ultimately would help increase sales without having to produce more product than it did in the past.
The Motion Controls Robotic SUBTA has received a positive reception from the employees because of the ease of use and nearly flawless performance of these robots. To ward off any concerns from employees about potential layoffs within the plant, the company presented the new system as an opportunity to ramp up its technology and that new business was waiting for the company if the technology was added.
About the Author: Robert Lamb spent his childhood reading books and staring into the woods — first in Newfoundland, Canada and then in rural Tennessee. There was also a long stretch in which he was terrified of alien abduction. He earned a degree in creative writing. He taught high school and then attended journalism school. He wrote for the smallest of small-town newspapers before finally becoming a full-time science writer and podcaster. He’s currently a senior writer at HowStuffWorks and has co-hosted the science podcast Stuff to Blow Your Mind since its inception in 2010. In his spare time, he enjoys traveling with his wife Bonnie, discussing dinosaurs with his son Bastian and crafting the occasional work of fiction.

The plastics manufacturer had used its manual take out system for its entire history for nearly 20 years. This manual system had several pitfalls including a large amount of scrap, which in turn meant money down the drain in throwaway products. The manual system also lacked reliability and increased chances for injuries. The company brought technology into its facility to help increase the production of quality products while making the plant safer for its employees. The company also hoped to increase its sales by improving the manufacturing process efficiencies through automation. Prior to automation, the company had to turn away opportunities to increase its business due to capacity limitations.


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Compared to a different take out system, six axis robots give us an option to even pack the bottle or bring it to a leak detection machine. Now we have dwell time at the robot,” said the plant manager. “Six axis robots give us the ability to look at secondary operations and an opportunity to potentially add some value to our customer’s process. We can present it to our customers as a benefit. Efficiency at the facility has been greatly affected by the addition of Robotic SUBTA units.


The plastics manufacturer also considered a vendor with a fixed automation system that included a simple slide but decided that system wasn’t reliable enough for its needs. In addition, every time the mold tooling changed, the slide also had to be changed to accommodate the new product. This created a higher cost to change tooling that was not acceptable. The facility included one machine with a manufacturers fixed automation system, but they wanted to find a more flexible and reliable solution.

About the Author: Robert Lamb spent his childhood reading books and staring into the woods — first in Newfoundland, Canada and then in rural Tennessee. There was also a long stretch in which he was terrified of alien abduction. He earned a degree in creative writing. He taught high school and then attended journalism school. He wrote for the smallest of small-town newspapers before finally becoming a full-time science writer and podcaster. He’s currently a senior writer at HowStuffWorks and has co-hosted the science podcast Stuff to Blow Your Mind since its inception in 2010. In his spare time, he enjoys traveling with his wife Bonnie, discussing dinosaurs with his son Bastian and crafting the occasional work of fiction.


The Robotic SUBTA system is also flexible and precise since it handles any mold configuration (single or double row) and provides quick changeover using quick change tooling. This programmable built-in operator pendant has stored recipes and menu selection for patterns and allows for on-the-fly adjustments. The 20-part recipe keeps part data such as part description pick, place locations, and vacuum pattern.
The Motion Controls Robotic SUBTA has received a positive reception from the employees because of the ease of use and nearly flawless performance of these robots. To ward off any concerns from employees about potential layoffs within the plant, the company presented the new system as an opportunity to ramp up its technology and that new business was waiting for the company if the technology was added.
It combines the automatic feeder with the automatically moving electric screwdriver to realize the complementary supply of screws and the locking, which greatly improves the production efficiency and saves manpower. Once the screwdriver is lifted after locking the screw, the automatic feeder will send the other screw to the Escape of the automatic feeder. The screwdriver head absorbs the screw and the robot can automatically move according to the coordinate point and tighten it. This is particularly suitable for multi-station workpieces of the same specification. 

So what are Julie and I up to this week? Well, in addition to recording episodes on personhood, milk and mermaids, we also published two exciting episodes that should expand your mind on the topics of human creativity, machine intelligence and the processing power of the human infant. So here are the breakdowns as well as the embedded feeds for each episode.

Screw Locking Machine, Screw Locking Robot, Screw Locking Equipment manufacturer / supplier in China, offering Desktop Robotic Screwdriver/Desktop 4-Axis Blow-Type Double Head Double Y Screw Locking Robot/Automatic Fastening Machine/Automatic Locking System, Desktop 4-Axis Blow-Type Double Head Double Y Automatic Fastening System, Desktop 4-Axis Blow-Type Double Head Double Y Automatic Fastening Machine and so on.
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