Introduction
Acrylic Glove Box with dimensions 900 × 600 × 700 mm, allows a wide workspace. The glove box is made from a 10 mm acrylic sheet, allowing better pressure endurance and visibility. Its design is wide and spacious to fit the necessary equipment, and it is also equipped with power sockets. Additionally, it has a foot paddle for pressure control in the chamber. Our glove box is used for pharmaceutical synthesis, nuclear, and membrane industries.
This glove box is designed to meet the rigorous requirements of modern laboratory operations, ensuring high precision, reliability, and ease of use for various experimental applications.Applications
Our Acrylic Glove Box mainly used for creating non-moisture and non oxygen environments for lithium battery materials and battery assembly experiments, etc. It’s Acrylic Glove Box forms an inert condition for research and productions and is ideal for special anaerobic functions.
Specifications
| Main Chamber Dimensions | 900 × 600 × 700 mm |
| Material Thickness | 10 mm |
| Vacuum Degree | Up to 1000 Pa |
| Side Door Dimention | 400 × 400 mm |
| Gross Weight | 75 kg |
Features
Desktop design
Side doors
Acrylic material for durability
Lightweight
User-friendly operation
FAQs
1. Does Acrylic Glove Box have Side door?
Yes, our Acrylic Glove box has side doors which are designed to insert laboratory equipment to work on and has a size that enables the user to insert the materials to work on and the design is unique and convenient for handling the materials to handle. Not only are the doors wide, it is also completely sealed when closed. It has a rubber seal to lock the inert atmosphere intact.
2. What types of gloves are used?
Acrylic Glove Box typically uses gloves made of butyl rubber or neoprene. Butyl rubber gloves are favored for their excellent resistance to chemicals, gases, and moisture, ensuring that even highly sensitive procedures can be conducted without any risk of contamination. The gloves are attached securely to ports on the front of the glove box, allowing for flexible and precise manipulation of objects inside without exposing the internal environment.
3. How is the internal atmosphere controlled?
The internal atmosphere of a Acrylic Glove Box is controlled by purging the chamber with an inert gas, such as nitrogen or argon, which displaces ambient air. Gas flow meters, valves, and optional sensors monitor and adjust the internal environment to maintain low oxygen and moisture levels. In more advanced models, automatic systems regulate pressure, humidity, and oxygen content continuously to maintain the desired environmental conditions for sensitive experiments.
4. What is the proper method for cleaning an Acrylic Glove Box?
To clean a Acrylic Glove Box, use lukewarm water and a clean, non-abrasive cloth. If needed, a mild, non-abrasive detergent can be applied. Avoid using alcohol or strong cleaning agents, as they can damage the acrylic material. After cleaning, dry the surface with a clean, dry cloth. For internal cleaning, ensure the surface is thoroughly dried before reintroducing moisture-sensitive materials, and consider purging the cabinet with nitrogen for several hours.
5. How do airlocks function in Acrylic Glove Boxes?
Airlocks, or transfer chambers, are designed to minimize nitrogen loss and prevent contamination when moving items in and out of the Acrylic Glove Box. They are typically mounted on the sides of the glove box and can be purged with inert gas to maintain the internal environment. Proper use of airlocks ensures that the glove box's atmosphere remains stable during transfers.
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