Press tending systems.

A press tending cell presents blanks, loads a defined forming operation, removes formed parts, and hands work to the next step. Uru Robotics plans the cell around blank condition, die access, press interface, changeovers, and the people who run the process.

What a press tending system does

The system moves a presented blank to the defined press location, follows the planned machine sequence, removes the formed part, and returns it to the next hand-off point. The cell is scoped around the full blank-to-outfeed workflow, not only the robot movement.

Presents and loads blanks

The cell receives blanks in a planned condition and orientation before the robot moves them to the required press location.

Removes formed parts

The robot removes the formed part through the access that the die, press, and cell layout allow.

Hands work to the next step

The material-flow plan defines infeed, outfeed, checks, changeovers, and how finished parts leave the cell.

What is included in a press tending system

The equipment is chosen as one system around the press, blanks, formed parts, and material flow. Uru Robotics does not publish a fixed cell configuration because the required components vary by task.

Robot and handling tooling

The robot and tooling are selected around the blank, formed part, required orientation, and access to the planned press locations.

Blank presentation

The presentation method is planned around blank condition, separation, orientation, replenishment, and the operator workflow.

Press interface and cell layout

The system includes the required machine and robot sequence together with cell access, changeover, and part hand-off.

How the press tending system is specified

There is no fixed press tending cell specification. The system is selected from the press, parts, access, and workflow conditions that determine whether a repeatable sequence is practical.

Blank and formed part handling
The material, dimensions, condition, orientation, grip locations, and differences between the incoming blank and formed part.
Die access and operation
The required approach, available working area, press sequence, and features that affect the planned robot path.
Blank presentation
The method for presenting, separating, orienting, and replenishing blanks for the planned handling sequence.
Press interface and changeover
The machine states needed for the planned sequence, together with the method for planned die and part-family changes.
Quality checks and hand-off
The checks, downstream handling, rework path, and exception steps around a formed part.

When press tending is a good fit

The best starting point is a repeat forming operation with reliable blank presentation, practical die access, a defined press interface, and a clear operator and quality workflow.

Repeat blank workflow

Blanks arrive in a consistent enough condition and orientation for the planned cell sequence.

Practical die access

The required process locations can be reached with a cell layout that remains practical for the operation and planned changes.

Defined part hand-off

Formed parts, checks, exceptions, and changeovers have a clear place in the operating workflow.

When to address the process first

Some press work needs process improvement before it can be scoped as a robot cell.

Variable blank condition

If blanks cannot yet be presented and separated in a consistent way, define that handling method before selecting cell equipment.

Unclear press sequence

If the required press states or access sequence cannot yet be defined, establish the operating sequence before planning a robot path.

Unplanned changeovers

If die and part changes have no defined method or cell route, resolve the changeover workflow before automation is assessed.

What to include in the return calculation

A press tending assessment should compare the full forming workflow—not just robot cost. Start with the repeat operation, then consider blank presentation, tooling, machine interfaces, changeovers, quality checks, and the work that remains manual.

Repeated forming work

Identify the parts and operating time that have a stable enough process to move into a planned cell workflow.

Cell work around the press

Include blank presentation, the press interface, loading, unloading, quality checks, changeover, and exception handling in the assessment.

Use project figures

Use actual production figures for a project review. Do not treat a generic payback figure as a promise.

FAQs

These questions help manufacturing teams decide whether press tending is worth a closer technical review.

What is press tending?

Press tending is the blank presentation, press loading, formed-part removal, and hand-off work around a defined forming operation. A robot system can perform those repeat steps when blank condition, die access, press interface, and the operating workflow are practical.

What determines the press tending cell specification?

The system is selected from the blank and formed part, handling tooling, blank presentation, die access, press interface, changeover needs, workspace, quality checks, and operator workflow.

Can a press tending cell handle die changes?

A cell can be assessed for planned die changes when the robot, blank presentation, cell layout, and operator route can be arranged around the changeover method. The practical arrangement depends on the press and the die workflow.

How are blanks presented to a press tending system?

The presentation method is selected from the blank condition, material, stack behaviour, required orientation, part flow, and the way an operator replenishes the cell. A closer review establishes what is practical for the job.

What happens after I contact Uru Robotics?

The first conversation focuses on the press operation you want to improve. Uru Robotics can then decide whether a closer review of the blanks, die access, material flow, and system options is useful.

Return on investment

Use your production figures to explore a simple planning estimate.

Open the ROI calculator

Contact Uru Robotics.

Find out whether press tending is right for your factory.

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