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Rotational moulding process for automobile body

A rotomolding and auto body technology, applied in coating and other directions, can solve the problems of heavy weight, increased cost, and long production cycle of FRP body, and achieve the goal of simplifying body structure and production process, reducing the number of molds, and reducing production costs. Effect

Inactive Publication Date: 2009-09-16
应革
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The disadvantages of this manufacturing method are: A. The process is complicated and the production is cumbersome, which not only affects the work efficiency of the workers, but also causes the cost to increase greatly; 15MPA and 10MPA; C. The FRP body does not have the ability to recover from deformation. Once the body is deformed by collision, it usually needs to be replaced or repaired by external force; D. Since the parts in the body shell are formed separately and then glued As a whole, on the one hand, many sub-molds are needed, the cost is high, and on the other hand, the production cycle is also long; E. The weight of the FRP body is heavy, which cannot meet people's needs for lightweight vehicles, and also increases energy consumption.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment Construction

[0022] According to the rotomolding process of automobile body provided by the present invention, comprise the steps: (1) charging: first evenly coat release agent in the mould, then add the powdery plastic raw material in the mould, close the mould; (2) Heating: Put the mold into the heating chamber and make it continuously rotate and heat along the main axis and auxiliary axis perpendicular to each other. Under the action of gravity and heat energy, the plastic raw materials in the mold are gradually and evenly distributed and melted and adhered to the cavity of the mold cavity. On the entire surface, the heating conditions are: wind heat, temperature 310-350 ° C, the best temperature is 320 ° C, time 25-30 minutes, the best time is 30 minutes; (3) cooling: transfer the mold into the cooling room Carry out cooling, keep main shaft and auxiliary shaft to rotate during cooling, the condition during cooling is: air flow cooling, time 50~60 minutes, the best time is 60 minutes; (...

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PUM

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Abstract

A rotational moulding process for automobile body includes steps of material addition: adding powdery plastic raw material into a die, and closing the die; heating: rotating the die in a heating chamber along a main axis and an auxiliary axis which are mutually perpendicular, heating, making the plastic raw material in the die to uniformly coat, melt and adhere to whole surface of the die chamber under gravity and heat energy action, wherein heating conditions are: wind heating, temperature of 310 DEG C to 350 DEG C, and time of 25-30 minutes; cooling: cooling the die in a cooling chamber, and keeping the die to rotate along the main axis and the auxiliary axis, wherein cooling conditions are: air flow cooling, and time of 50-60 minutes; and demoulding: taking the product out of the die. The invention not only can simplify automobile body structure and production process, and increase automobile body product strength and impact resistance, but also can reduce die quantity, shorten production period, reduce automobile body weight, and lighten automobile weight.

Description

Technical field: [0001] The invention relates to a manufacturing method of auto parts, in particular to a rotational molding process of an auto body. Background technique: [0002] Existing car bodies are mostly made of glass fiber reinforced plastics or iron sheets, and the body body and chassis are designed separately, and more than 20 inner and outer covering parts are also independently processed and formed. For example, the Chinese utility model patent 98110559.9 discloses a method for manufacturing a car body made of glass fiber reinforced plastics, which is realized through the following steps: (1) the outer shell of the car body is glued into shape; (2) the inner shell of the car body is glued into shape; 3) Make the body inner shell and the interior decoration parts into a whole; (4) Install the body inner shell in the body outer shell and insert the stabilizing nails, and at the same time pressurize the frame edges of the body outer shell and the body inner shell ...

Claims

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Application Information

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IPC IPC(8): B29C41/06B29C41/52B29C33/58
Inventor 应革
Owner 应革
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