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A kind of electrolytic solution for aluminum electrolytic capacitor with high conductance and high flash fire and preparation method thereof

An aluminum electrolytic capacitor, high conductivity technology, applied in the field of electrolyte, can solve the problems of high product impedance, high cost, easy to generate heat solvent, etc., and achieve the effect of improving safety performance and service life, good electrochemical characteristics, and convenient operation and control

Active Publication Date: 2018-08-21
DONGGUAN JIUZHI ELECTRONICS CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The working electrolyte prepared in this way has the problem of low conductivity, and boric acid and its salts are easy to undergo esterification reaction with ethylene glycol at high temperature to generate a large amount of condensed water, which causes the moisture content inside the electrolyte to increase, and the electrolyte's The vapor pressure increases, and the internal pressure of the capacitor increases, causing the capacitor to open the valve and fail; 2. Using ethylene glycol as the main solvent, using direct-linked hydrocarbon saturated dicarboxylic acids such as azelaic acid, sebacic acid or dodecanedioic acid and their Salt is the electrolyte of the electrolyte. Although this type of electrolyte avoids a part of the esterification reaction, due to the low solubility of this type of straight-chain alkanes in ethylene glycol, the impedance of the product is large and the ripple is large. It is easy to generate heat under high temperature and make the solvent volatilize, thus creating a vicious cycle, causing the capacitor to dry out and fail. At the same time, linear alkanes are prone to amidation side reactions at high temperatures to generate water, which is also easy to cause early failure of the capacitor; 3. Use some branched chains Acids or their salts, such as reported 1,6-DDA and its salts and 2-butylsuberic acid and its salts, such branched carboxylic acids and their salts have improved solubility in solvents compared to straight-chain alkanes , thus producing effects to a certain extent, but at the same time, this kind of acid or its salt mainly relies on imports, so the cost is high and there are many constraints

Method used

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  • A kind of electrolytic solution for aluminum electrolytic capacitor with high conductance and high flash fire and preparation method thereof
  • A kind of electrolytic solution for aluminum electrolytic capacitor with high conductance and high flash fire and preparation method thereof
  • A kind of electrolytic solution for aluminum electrolytic capacitor with high conductance and high flash fire and preparation method thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0084] An electrolyte for high-conductivity and high-flash-fire aluminum electrolytic capacitors is composed of the following raw materials by weight:

[0085] Ammonium Sebacate 4.5 parts

[0086] Ammonium Hydrogen Azelaate 1.5 parts

[0087] Ammonium pentaborate 1.5 parts

[0088] Flashfire booster 13 servings

[0089] Ammonium dodecanoate 1.5 parts

[0090] Ammonium hypophosphite 0.2 part

[0091] 0.3 part of p-nitrobenzyl alcohol

[0092] 60 parts of ethylene glycol.

[0093] The flash fire enhancer is a colloidal compound with a three-dimensional structure prepared by the reaction of PVA and boric acid in a weight ratio of 1:1.8.

[0094] An electrolyte for high-conductivity and high-flash-fire aluminum electrolytic capacitors, comprising the following steps:

[0095] (1) Weigh out ammonium sebacate, ammonium hydrogen azelaate, ammonium pentaborate, flash-fire enhancer, ammonium dodecanedioate, ammonium hypophosphite, p-nitrobenzyl alcohol and ethylene glycol accord...

Embodiment 2

[0099] An electrolyte for high-conductivity and high-flash-fire aluminum electrolytic capacitors is composed of the following raw materials by weight:

[0100] Ammonium Sebacate 5 parts

[0101] Ammonium Hydrogen Azelaate 1.8 parts

[0102] Ammonium pentaborate 1.8 parts

[0103] Flashfire booster 14 servings

[0104] Ammonium dodecanoate 1.8 parts

[0105] Ammonium hypophosphite 0.22 parts

[0106] 0.4 part of p-nitrobenzyl alcohol

[0107] 65 parts of ethylene glycol.

[0108] The flash fire enhancer is a colloidal compound with a three-dimensional structure prepared by the reaction of PVA and boric acid in a weight ratio of 1:1.9.

[0109] An electrolyte for high-conductivity and high-flash-fire aluminum electrolytic capacitors, comprising the following steps:

[0110] (1) Weigh out ammonium sebacate, ammonium hydrogen azelaate, ammonium pentaborate, flash-fire enhancer, ammonium dodecanedioate, ammonium hypophosphite, p-nitrobenzyl alcohol and ethylene glycol accord...

Embodiment 3

[0114] An electrolyte for high-conductivity and high-flash-fire aluminum electrolytic capacitors is composed of the following raw materials by weight:

[0115] Ammonium Sebacate 5.5 parts

[0116] Ammonium Hydrogen Azelaate 2 parts

[0117] Ammonium pentaborate 2 parts

[0118] Flashfire booster 15 servings

[0119] Ammonium dodecanoate 2 parts

[0120] Ammonium hypophosphite 0.25 part

[0121] 0.5 part p-nitrobenzyl alcohol

[0122] Ethylene glycol 72.8 parts.

[0123] The flash fire enhancer is a colloidal compound with a three-dimensional structure prepared by reacting PVA and boric acid in a weight ratio of 1:2.

[0124] An electrolyte for high-conductivity and high-flash-fire aluminum electrolytic capacitors, comprising the following steps:

[0125] (1) Weigh out ammonium sebacate, ammonium hydrogen azelaate, ammonium pentaborate, flash-fire enhancer, ammonium dodecanedioate, ammonium hypophosphite, p-nitrobenzyl alcohol and ethylene glycol according to the weight ...

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Abstract

The present invention relates to the technical field of electrolytes, in particular to a high-conductivity and high-sparking electrolyte for an aluminum electrolytic capacitor and a preparation method therefor. The electrolyte comprises the following raw materials in parts by weight: 4.5-6.5 parts of ammonium sebacate, 1.5-2.5 parts of ammonium hydrogen azelate, 1.5-2.5 parts of ammonium pentaborate, 13-17 parts of a sparking boosting agent, 1.5-2.5 parts of ammonium dodecanedioate, 0.2-0.3 part of ammonium hypophosphite, 0.3-0.7 part of p-nitrobenzyl alcohol and 60-85 parts of glycol. The electrolyte is prepared by means of interaction among the raw materials and by strictly controlling a weight proportion of the raw materials; the sparking voltage of the prepared electrolyte can reach 490 V and the conductivity rate of the prepared electrolyte can reach 2.4 ms / cm; and the electrolyte has good electrochemical properties, has the advantages of high conductivity and high sparking voltage, and can be applied to manufacturing of the aluminum electrolytic capacitors.

Description

technical field [0001] The invention relates to the technical field of electrolytes, in particular to an electrolyte for high-conductivity and high-flash-fire aluminum electrolytic capacitors and a preparation method thereof. Background technique [0002] Aluminum electrolytic capacitors are one of the basic components of electronic products. With the continuous improvement of the quality of electronic products and the expansion of the application range of aluminum electrolytic capacitors, higher requirements are put forward for their performance. Electronic products such as switching power supplies and energy-saving lamps have high requirements on the safety performance of high-voltage electrolytic capacitors. In the filter circuit, the capacitor is subjected to high voltage and high ripple current. If the power supply is unstable or overvoltage is applied, it can cause damage, fire, burning and other accidents of the capacitor. The electrolyte of aluminum electrolytic ca...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H01G9/00H01G9/035
CPCH01G9/00H01G9/0029H01G9/035
Inventor 程家伟平新娥唐善青
Owner DONGGUAN JIUZHI ELECTRONICS CO LTD
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