Low-temperature-fired antique glazed tile and its preparation method

A low-temperature firing and glazed tile technology, which is applied in the field of building materials, can solve the problems of high firing temperature, low product density, and poor mechanical properties of antique glazed tiles, and achieve the goal of lowering temperature, reducing energy consumption, and reducing firing time. Effect

Inactive Publication Date: 2017-12-01
YUHUAN DEGU NEW MATERIAL TECH CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] The technical problem to be solved by the present invention: Aiming at the disadvantages of high firing temperature and long firing time for the preparation of antique glazed tiles by traditional methods, resulting in high energy consumption, low product density, and poor mechanical properties, a low-temperature firing antique glazed tile is provided. Glazed tile and preparation method thereof

Method used

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  • Low-temperature-fired antique glazed tile and its preparation method

Examples

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Effect test

example 1

[0028]Put the rice husk in an oven, dry it to a constant weight at 105°C, transfer the dried rice husk to a pulverizer, pass through a 100-mesh sieve after pulverization, and obtain rice husk powder, and grind the obtained rice husk The powder is transferred to the carbonization furnace, and nitrogen gas is introduced into the furnace at a rate of 30mL / min. Under the nitrogen protection state, the carbonization is carried out at a temperature of 600°C for 2 hours, cooled to room temperature with the furnace, and discharged to obtain carbonized rice husks; Place the blast furnace slag in a pulverizer, pass through a 100-mesh sieve after crushing, and obtain blast furnace slag powder; in parts by weight, add 40 parts of electrolytic aluminum ash, 10 parts of carbonized rice husk, and 40 parts of blast furnace slag to the mixer in sequence Powder, 8 parts of magnesium aluminum hydrotalcite, 3 parts of reinforcing agent, 40 parts of water, at a temperature of 45 ° C and a speed of ...

example 2

[0030] Put the rice husk in an oven, dry it to a constant weight at 108°C, transfer the dried rice husk to a pulverizer, and pass it through a 110-mesh sieve after crushing to obtain rice husk powder. The powder is transferred to the carbonization furnace, and nitrogen gas is introduced into the furnace at a rate of 40mL / min. Under the nitrogen protection state, the temperature is 650°C for 3 hours, and then cooled to room temperature with the furnace, and the material is discharged, and the carbonized rice husk is obtained; Place the blast furnace slag in a pulverizer, and pass through a 150-mesh sieve after crushing to obtain blast furnace slag powder; in parts by weight, add 50 parts of electrolytic aluminum ash, 13 parts of carbonized rice husk, and 45 parts of blast furnace slag to the mixer in sequence Powder, 9 parts of magnesium aluminum hydrotalcite, 4 parts of reinforcing agent, 45 parts of water, at a temperature of 50 ° C and a speed of 500 r / min, stir and mix at a ...

example 3

[0032] Put the rice husk in an oven, dry it to a constant weight at a temperature of 110°C, then transfer the dried rice husk to a pulverizer, pass through a 120-mesh sieve after crushing, and obtain rice husk powder, and grind the obtained rice husk The powder is transferred to the carbonization furnace, and nitrogen gas is introduced into the furnace at a rate of 50 mL / min. Under the nitrogen protection state, the carbonization is carried out at a temperature of 700 ° C for 4 hours, cooled to room temperature with the furnace, and the material is discharged to obtain carbonized rice husks; Place the blast furnace slag in a pulverizer, pass through a 200-mesh sieve after crushing, and obtain blast furnace slag powder; in parts by weight, add 60 parts of electrolytic aluminum ash, 15 parts of carbonized rice husk, and 50 parts of blast furnace slag into the mixer in sequence Powder, 10 parts of magnesium aluminum hydrotalcite, 5 parts of reinforcing agent, 50 parts of water, at...

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Abstract

The invention discloses a low-temperature-fired antique glazed tile and a preparation method thereof, belonging to the field of building materials. The method comprises the following steps: weighing the raw materials of the low-temperature-fired antique glazed tile, adding water for batch mixing and carrying out aging so as to obtain an aged mixture; compacting the aged mixture to form a blank and carrying out demolding so as to obtain a tile blank; subjecting the tile blank to drying and pre-firing so as to obtain a pre-fired tile blank; then carrying out fumigation, cooling and drying so as to obtain a fumigated tile blank; weighing raw materials for a glaze of the low-temperature-fired antique glazed tile and carrying out batch mixing so as to obtain the glaze; coating the surface of the fumigated tile blank with the obtained glaze and carrying out drying so as to obtain a glazed tile blank; and carrying out heating and heat preservation twice and then carrying out natural cooling to room temperature so as to obtain the low-temperature-fired antique glazed tile. The invention has the beneficial effects that the low-temperature-fired antique glazed tile is low in firing temperature, short in firing time, low in energy consumption, high in product density and good in mechanical properties, has excellent application prospects, and is worthy of promotion and application.

Description

technical field [0001] The invention relates to a low-temperature firing antique glazed tile and a preparation method thereof, belonging to the field of building materials. Background technique [0002] Antique glazed tiles are made of high-quality ore raw materials, which are screened and crushed, high-pressure formed, and fired at high temperature. They have good flatness, low water absorption, acid resistance, alkali resistance, and never fade. They are widely used in factories, houses, and hotels. , villas and other industrial and civil buildings. Antique glazed tiles can be made of soft and hard materials such as Daqing, Erqing, cylinder soil, alkaline earth, and purple sand, as well as waste sagger powder and porcelain powder. In addition, coal gangue, coal ash and other mineral waste residues and industrial by-products can also be used to reduce production costs. The preparation of antique glazed tiles is generally to accurately weigh the raw materials according to ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C04B33/132C04B33/138C03C8/14C04B33/34C04B41/86C04B111/54
CPCC03C8/14C04B33/132C04B33/138C04B33/34C04B41/009C04B41/5022C04B41/86C04B2111/547C04B2235/3217C04B2235/349C04B2235/422Y02P40/60
Inventor 徐啸飞方晓俊许蘅
Owner YUHUAN DEGU NEW MATERIAL TECH CO LTD
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