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Coin Cell Encapsulation in a glovebox: What’s Your Biggest Challenge?

Coin Cell Encapsulation in a glovebox: What’s Your Biggest Challenge?

2026-09-23

Leakage, short circuits, stuck cells that are hard to remove — any one of these problems can waste an entire batch of experimental data. And if pressure control is unstable and damages the cell or the die, the losses are just as significant.

 

The TICO coin cell pneumatic crimping machine operates purely pneumatically — no electricity required.

Its core design is focused on around stable encapsulation:

 

● Extended die life: made of corrosion-resistant tungsten steel, reducing replacement frequency.


● No more stuck cells: simply turn the top screw to push the cell out easily — no need to disassemble the machine.


● Prevents excessive pressure: the lower die features a high-precision positioning ring that controls crimping height, preventing damage to the cell and die from excessive pressure.


● Glovebox compatible: leak-free gas line, supports compressed air or inert gas, and external exhaust prevents disruption of the glovebox environment.


● Anti-short-circuit function: protects the cell during crimping, reducing operational risk.

 

This machine is compatible with CR2032, CR2450, and other CR20XX series coin cells. CR20XX crimping dies are included as standard, with other specifications and disassembly dies available as options.

 

For battery R&D laboratories, this means: better encapsulation consistency, safer glovebox operation, and improved experimental reproducibility.

 

What problems does your lab most often encounter during coin cell encapsulation? Feel free to share in the comments or send us a message.

баннер
Blog Details
Created with Pixso. Домой Created with Pixso. блог Created with Pixso.

Coin Cell Encapsulation in a glovebox: What’s Your Biggest Challenge?

Coin Cell Encapsulation in a glovebox: What’s Your Biggest Challenge?

Leakage, short circuits, stuck cells that are hard to remove — any one of these problems can waste an entire batch of experimental data. And if pressure control is unstable and damages the cell or the die, the losses are just as significant.

 

The TICO coin cell pneumatic crimping machine operates purely pneumatically — no electricity required.

Its core design is focused on around stable encapsulation:

 

● Extended die life: made of corrosion-resistant tungsten steel, reducing replacement frequency.


● No more stuck cells: simply turn the top screw to push the cell out easily — no need to disassemble the machine.


● Prevents excessive pressure: the lower die features a high-precision positioning ring that controls crimping height, preventing damage to the cell and die from excessive pressure.


● Glovebox compatible: leak-free gas line, supports compressed air or inert gas, and external exhaust prevents disruption of the glovebox environment.


● Anti-short-circuit function: protects the cell during crimping, reducing operational risk.

 

This machine is compatible with CR2032, CR2450, and other CR20XX series coin cells. CR20XX crimping dies are included as standard, with other specifications and disassembly dies available as options.

 

For battery R&D laboratories, this means: better encapsulation consistency, safer glovebox operation, and improved experimental reproducibility.

 

What problems does your lab most often encounter during coin cell encapsulation? Feel free to share in the comments or send us a message.