Gorbel® to Showcase Overhead Lifting Solutions at International Manufacturing Technology Show

Crane Technology and Ergonomic Lifting Solutions help customers protect their people, productivity, and profits

Crane Technology and Ergonomic Lifting Solutions help customers protect their people, productivity, and profits


Fishers, NY: Gorbel® announces that they will showcase their industry leading overhead cranes and lifting systems at the International Technology Manufacturing Show at Booth # 237280 from September 12-17, 2022 at McCormick Place in Chicago, IL. Attendees will learn how Gorbel's cranes and lifting devices transform material handling by enhancing productivity, profitability, and safety.

Gorbel's booth will feature a free standing work station crane, a G-Force® Intelligent Lifting Device, a GS Series Electric Chain Hoist, an Easy Arm® Intelligent Lifting Arm, and their new tractor drive. Visitors to the booth will be able to have a hands-on demonstration of different Gorbel® lifting devices to see which one might be the best fit for their application.

"We're excited to be back at IMTS. Manufacturing has evolved so much these past few years and the challenges our customers are facing today are different from what they were at the last IMTS show, " says Rob Beightol, Director of Marketing. "We're looking forward to talking with the folks that come to our booth, and listening and learning so we can help them find solutions to what's slowing them down today."

Featured Product

ResinDek® TRIGARD® ESD ULTRA FOR HIGH-TRAFFIC ROBOTIC APPLICATIONS

ResinDek® TRIGARD® ESD ULTRA FOR HIGH-TRAFFIC ROBOTIC APPLICATIONS

To maximize the productivity of an autonomous mobile robot (AMR) or automatic guided vehicle (AGV) deployment, it's critical to create the optimal environment that allows the vehicles to perform at their peak. For that reason, Cornerstone Specialty Wood Products, LLC® (www.resindek.com) created the TriGard® ESD Ultra finish for its ResinDek® engineered flooring panels. The TriGard ESD Ultra finish is ideal for high-traffic robotic applications characterized by highly repetitive movement patterns and defined travel paths.