Preparation method of bridge structure plant fiber artificial partition wall, partition board and door core board
A plant fiber and bridge structure technology, applied in the direction of solid waste management, sustainable waste treatment, climate sustainability, etc., can solve the problems of low installation flexibility, insufficient toughness, low strength, etc., and achieve high structural strength and wide application range Wide, flexible installation effect
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
specific Embodiment approach
[0026] The specific embodiment: the present invention will be further described below in conjunction with accompanying drawing:
[0027] The invention provides a method for preparing a bridge structure plant fiber artificial partition wall, partition board and door core board, which is characterized in that: the steps of the method are as follows:
[0028] (1) Preparation of inorganic gelling materials:
[0029] Inorganic gelling materials made of MgO, MgSO4, MgCO3, active silicon and ALSiO4, the method is as follows: 100 parts of MgO, 30-65 parts of MgSO4, 30-40 parts of MgCO3, 2-10 parts of active silicon additives and 3-10 parts of active ALSiO4 Parts, the above raw materials are added into warm water at 25-40°C according to parts by mass and fully stirred to make an inorganic gelling material;
[0030] (2) Preparation of organic gelling materials:
[0031] Soybean meal and soybean powder are processed by alkalization, acidified and separated to make bean gum, and bean gu...
Embodiment 1
[0044] (1) Preparation of inorganic gelling materials:
[0045] Make inorganic gelling material with MgO, MgSO4, MgCO3, active silicon and ALSiO4, the method is as follows: 100 parts of MgO, 30 parts of MgSO4, 30 parts of MgCO3, 3 parts of active silicon additives and 5 parts of active ALSiO4, the above raw materials are mixed by mass parts Add in warm water at 35°C and stir well to make an inorganic gelling material;
[0046] (2) Preparation of organic gelling materials:
[0047] Soybean pulp and soybean powder are processed by alkalization, acidification and separation to make bean gum, and bean gum and modified TDI or bean gum and modified MDI are added into deionized water according to the mass ratio of 100:1 and fully stirred to make organic gel Material;
[0048] (3) Preparation of mixed glue:
[0049] Fully mixing the inorganic gelling material in step (1) and the organic gelling material in step (2) according to the mass ratio of 4:1;
[0050] (4): Glue and materia...
Embodiment 2
[0056] (1) Preparation of inorganic gelling materials:
[0057] Make inorganic gelling material with MgO, MgSO4, MgCO3, active silicon and ALSiO4, the method is as follows: 100 parts of MgO, 65 parts of MgSO4, 40 parts of MgCO3, 2 parts of active silicon additives and 3 parts of active ALSiO4, the above raw materials are divided by mass parts Add in warm water at 30°C and stir well to make an inorganic gelling material;
[0058] (2) Preparation of organic gelling materials:
[0059] Soybean pulp and soybean powder are processed by alkalization, acidification and separation to make bean gum, and bean gum and modified TDI or bean gum and modified MDI are added into deionized water according to the mass ratio of 100:10 and fully stirred to make organic gum Concrete material;
[0060] (3) Preparation of mixed glue:
[0061] Fully mix the inorganic gelling material in step (1) and the organic gelling material in step (2) according to the ratio of 1:9;
[0062] (4): Glue and mater...
PUM
| Property | Measurement | Unit |
|---|---|---|
| thickness | aaaaa | aaaaa |
| width | aaaaa | aaaaa |
| thickness | aaaaa | aaaaa |
Abstract
Description
Claims
Application Information
Login to View More 


