Nickel cadmium sintered low rate GN50 1.2V50Ah emergency power supply alkaline battery engine
Nickel cadmium sintered low rate GN50 1.2V50Ah emergency power supply alkaline battery engine
Nickel cadmium sintered low rate GN50 1.2V50Ah emergency power supply alkaline battery engine
Nickel cadmium sintered low rate GN50 1.2V50Ah emergency power supply alkaline battery engine
Nickel cadmium sintered low rate GN50 1.2V50Ah emergency power supply alkaline battery engine

Nickel cadmium sintered low rate GN50 1.2V50Ah emergency power supply alkaline battery engine

CNY 441 - 450 /Bag

Min.Order:1 Bag

Supply Ability:
168 Bag / Bags per Month
Port:
Qingdao
Payment Terms:
T/T L/C D/P D/A Credit Card PayPal Cash Escrow Other
Delivery Detail:
7 days

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Brand Name:
VMF-battery
Place of Origin:
China
Model Number:
GN50 1.2V50Ah
Size:
142*67*229
Weight:
3.20kg
Voltage:
Other, 1.2V

Silverfir battery (shandong) co., Ltd

Business license
Business Type: Manufacturer
Main Products: storage battery ,lithium battery ,charger ,inverter

Product Details

The positive electrode material of nickel cadmium batteries is a mixture of nickel and graphite powder, while the negative electrode material consists of sponge mesh like cadmium powder and cadmium oxide powder. The electrolyte is usually hydrogen. When the ambient temperature is high, use a sodium chloride solution with a density of 1.17-1.19 (at 15 ℃). When the ambient temperature is low, use a potassium solution with a density of 1.19-1.21 (at 15 ℃). When the temperature is below -15 ℃, use a potassium solution with a density of 1.25~1.27 (at 15 ℃). To balance low-temperature performance and charge retention capability, sealed nickel cadmium batteries use potassium solution with a density of 1.40 (at 15 ℃). In order to increase the capacity and cycle life of the battery, a small amount of lithium hydroxide is usually added to the electrolyte (approximately 15-20 g per liter of electrolyte).

After charging a nickel cadmium battery, the active material on the positive electrode plate becomes nickel [NiOOH], and the active material on the negative electrode plate becomes metallic cadmium; After discharging a nickel cadmium battery, the active material on the positive electrode plate becomes nickel oxide, and the active material on the negative electrode plate becomes cadmium oxide.

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