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PRODUCT PARAMETERS
Description
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Other Names | battery separator, PVC battery separator |
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(Micro-porous PVC-SiO2 Separator for Gelled Lead-acid Batteries)
Overview of Micro-porous PVC-SiO2 Separator for Gelled Lead-acid Batteries
The micro-porous PVC-SiO2 separator for gelled lead-acid batteries represents a significant advancement in battery technology. This separator, made from a combination of polyvinyl chloride (PVC) and silica dioxide (SiO2), offers unique features that enhance battery performance and reliability. It is specifically designed to address the challenges associated with traditional battery separators, such as limited electrolyte absorption, poor ion conductivity, and reduced battery lifespan. The micro-porous structure of the separator ensures efficient ion transport and electrolyte distribution within the battery, leading to improved battery performance and longer runtime.
Characteristics of Micro-porous PVC-SiO2 Separator
Enhanced Electrolyte Absorption: The micro-porous structure of the PVC-SiO2 separator allows for increased absorption of the gelled electrolyte, ensuring uniform distribution and efficient utilization.
Improved Ion Conductivity: The separator's porosity and material composition enhance ion conductivity, resulting in faster charge and discharge rates.
High Mechanical Strength: The PVC-SiO2 combination provides superior mechanical strength, ensuring durability and resistance to deformation during battery operation.
Excellent Chemical Stability: The separator exhibits excellent chemical stability, resisting corrosion and degradation in the presence of electrolytes and battery chemicals.
Easy Processing and Integration: The PVC-SiO2 separator is easy to process and integrate into battery manufacturing processes, facilitating scalable production.
Application of Micro-porous PVC-SiO2 Separator
Gelled Lead-acid Batteries: The separator is ideal for use in gelled lead-acid batteries, where its micro-porous structure promotes efficient electrolyte distribution and ion transport.
Gelled Lead-acid Batteries
Energy Storage Systems: Its enhanced performance characteristics make it suitable for use in energy storage systems, including renewable energy applications and grid-scale storage.
Energy Storage Systems
Automotive Applications: The separator's durability and chemical stability make it suitable for use in automotive batteries, ensuring reliable performance under varying conditions.
Automotive Applications
UPS and Telecommunication Systems: Its ability to provide consistent power output makes it suitable for use in uninterrupted power supplies (UPS) and telecommunication systems, where reliable power is crucial.
UPS and Telecommunication Systems
Industrial Applications: The PVC-SiO2 separator finds applications in various industrial batteries, including those used in heavy-duty equipment and machinery.
Industrial Applications
Company Profile
NANOTRUN(www.rboschco.com) is a trusted global chemical material supplier & manufacturer with over 12-year-experience in providing super high-quality chemicals and nanomaterials, including boride powder, nitride powder, graphite powder, sulfide powder, 3D printing powder, etc.
The company has a professional technical department and Quality Supervision Department, a well-equipped laboratory, and equipped with advanced testing equipment and after-sales customer service center.
If you are looking for high-quality Micro-porous PVC-SiO2 Separator, please feel free to contact us or click on the needed products to send an inquiry.
Payment Term
L/C, T/T, Western Union, Paypal, Credit Card etc.
Shipment Term
By sea, by air, by express, as customers request.
FAQ
Q1:
What are the key benefits of using a micro-porous PVC-SiO2 separator in gelled lead-acid batteries?
Re: The key benefits of using a micro-porous PVC-SiO2 separator in gelled lead-acid batteries include improved electrolyte absorption and distribution, enhanced ion conductivity, and increased battery lifespan. The separator's micro-porous structure promotes efficient ion transport, leading to faster charge and discharge rates. Additionally, its chemical stability and mechanical strength contribute to the battery's overall reliability and durability.
Q2:
How does the micro-porous structure of the separator affect battery performance?
Re: The micro-porous structure of the PVC-SiO2 separator significantly impacts battery performance. The pores within the separator act as channels for ion transport, allowing for efficient electrolyte distribution and faster charge and discharge rates. This enhanced ion conductivity leads to improved battery performance, including higher energy density, longer runtime, and faster charging capabilities.
Q3:
Is the PVC-SiO2 separator compatible with all types of gelled lead-acid batteries?
Re: The PVC-SiO2 separator is designed to be compatible with most types of gelled lead-acid batteries. However, it is always recommended to consult the battery manufacturer's specifications and recommendations to ensure compatibility and optimal performance.
Q4:
How does the PVC-SiO2 separator compare to traditional battery separators?
Re: The PVC-SiO2 separator offers several advantages compared to traditional battery separators. Its micro-porous structure promotes more efficient electrolyte absorption and ion conductivity, leading to improved battery performance. Additionally, its superior chemical stability and mechanical strength make it more durable and resistant to deformation during battery operation. These features translate into longer battery lifespan and better overall performance.
Q5:
Is the PVC-SiO2 separator environmentally friendly?
Re: Yes, the PVC-SiO2 separator is considered environmentally friendly. It is made from non-toxic materials and does not release harmful substances during its lifecycle. Additionally, the separator is recyclable, contributing to sustainable battery waste management practices.