Manufacturing method of shock-resistant lead-acid storage battery plastic case

A technology of lead-acid battery and production method, which is applied in the direction of household components, applications, household appliances, etc., can solve the problems of difficult resin matrix mixing uniformity, poor material mixing uniformity, poor impact resistance, etc., and achieve compatibility and adhesion Good knot strength, good molding quality and good impact resistance

Inactive Publication Date: 2017-11-10
长兴吉兴塑业有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The flame-retardant ABS material mainly improves the flame-retardant performance of the lead-acid battery shell, but still does not solve the problem that the ABS material has poor impact resistance and is easily broken when a collision occurs; in addition, the preparation method of the material is to combine each component Add to the high-speed mixer according to the proportion and mix evenly, and then use the twin-screw extruder to granulate
The preparation method starts with high-speed mixing, which is just a simple physical mixing. In the subsequent extrusion, the components, especially the fine inorganic particles, are still not uniformly dispersed, and it is difficult to mix evenly with the resin matrix, and the mixing uniformity of the material is poor.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0030] (1) Weighing: by 400gABS resin, 200gPVC resin, 150g polyamide, 100g surface modified talcum powder, 50g modified glass fiber, 20gCPE impact modifier, 15g dioctyl phthalate, 10g lubricant ( stearic acid and polyethylene wax), the weight ratio of 15g stabilizer (organotin stabilizer) measures each component, stand-by, wherein the surface modified talcum powder is made by the following method: add particle diameter in high-speed mixer After preheating the 10μm talc powder to 90°C, keep the temperature and mix and disperse for 40 minutes under the condition of 1000r / min, spray the surface treatment agent evenly on the surface of the talc powder in the form of mist and continue stirring for at least 30min under the condition of 1200r / min, The surface treatment agent is made by mixing ethanol and coupling agent KH-550 at a mass ratio of 1:1, and the addition amount of silane coupling agent is 1% of the mass of talcum powder; the modified glass fiber is obtained by the followin...

Embodiment 2

[0036] (1) Weighing: by 350gABS resin, 180gPVC resin, 120g polyamide, 90g surface modified talcum powder, 40g modified glass fiber, 18gCPE impact modifier, 12g dioctyl phthalate, 7g lubricant ( Polyethylene wax), the weight ratio of 12g stabilizer (organotin stabilizer) measures each component, stand-by, wherein the surface modified talcum powder is made by following method: in high-speed mixer, add the talcum that particle diameter is 8 μm After the powder is preheated to 82°C, keep the temperature and mix and disperse at 900r / min for 35 minutes, spray the surface treatment agent evenly on the surface of the talcum powder in the form of mist and continue to stir for at least 30 minutes at 1100r / min. Ethanol and coupling agent KH-550 are mixed at a mass ratio of 1:1, and the amount of silane coupling agent added is 0.8% of the mass of talcum powder; the modified glass fiber is prepared by the following method: glass fiber with a length of 2mm Put it in acetone to fully dispers...

Embodiment 3

[0042] (1) Weighing: by 300gABS resin, 150gPVC resin, 100g polyamide, 80g surface modified talcum powder, 30g modified glass fiber, 15gCPE impact modifier, 10g dioctyl phthalate, 5g lubricant ( Stearic acid), 10~15g stabilizer (organotin stabilizer) weight ratio metering each component, stand-by, wherein the surface modified talcum powder is made by the following method: add particle diameter to be 5 μm in high-speed mixer After the talc powder is preheated to 80°C, keep the temperature and mix and disperse at 800r / min for 30min, spray the surface treatment agent evenly on the surface of the talc powder in the form of mist and continue stirring at 1000r / min for at least 30min, surface treatment The silane coupling agent is mixed with ethanol and coupling agent KH-550 at a mass ratio of 1:1, and the addition amount of the silane coupling agent is 0.5% of the mass of talcum powder; the modified glass fiber is prepared by the following method: the length is 1mm The glass fiber is...

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Abstract

The invention discloses a manufacturing method of a shock-resistant lead-acid storage battery plastic case. The manufacturing method is characterized by comprising the following steps of 1, material weighing; 2, material mixing and pelletizing; 3, injection molding and mold filling; 4, pressure maintaining; 5, sizing demolding. According to the manufacturing method of the shock-resistant lead-acid storage battery plastic case, the manufacturing method of the shock-resistant lead-acid storage battery plastic case is optimized and improved, through reasonable selection of and control over technological conditions, the technological steps are simple, the operability is high, the forming quality is good, the generation of plastic case defects can be greatly reduced, the shock resistance of the obtained plastic case is good, and the service life is prolonged.

Description

technical field [0001] The invention relates to the technical field of lead-acid batteries, in particular to a method for producing impact-resistant lead-acid battery plastic cases. Background technique [0002] Today's international energy competition is becoming increasingly fierce, and the adjustment of the world's energy structure is accelerating. On the basis of clean and efficient use of traditional energy, the development of clean energy, mainly renewable energy and bio-energy, to promote green economic growth has become the only way and a common choice. While maintaining rapid economic development, the Chinese government has successively issued a series of policies and regulations for the rational development, utilization and protection of green energy and new energy. As a new type of green energy, batteries are widely used in various industries because of their safety, reliability, high cost performance, and strong environmental adaptability. [0003] For storage b...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C08L55/02C08L27/06C08L77/00C08L23/28C08K13/06C08K9/06C08K3/34C08K9/04C08K7/14C08K3/36B29B7/00B29B9/06B29C45/77B29C45/78B29L31/00
CPCC08L55/02B29B7/005B29B9/06B29C45/77B29C45/78B29C2945/76498B29C2945/76531B29C2945/76551B29L2031/7146C08K2201/003C08K2201/004C08K2201/011C08L2203/20C08L2205/035C08L27/06C08L77/00C08L23/286C08K13/06C08K9/06C08K3/34C08K9/08C08K7/14C08K3/36
Inventor 汪爱莲
Owner 长兴吉兴塑业有限公司
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