Preparation method of high-strength composite oxford fabric
A high-strength, mixed liquid technology, applied in chemical instruments and methods, synthetic resin layered products, textiles, etc., can solve the problems of poor processability and water resistance to be improved, so as to achieve high processability and improve processability The effect of production range and ease of preparation of raw materials
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Publication Date
- 2022-04-12
Abstract
Description
technical field
[0001] The invention relates to the technical field of preparation of Oxford cloth, in particular to a preparation method of high-strength composite Oxford cloth. Background technique
[0002] The so-called composite Oxford cloth is to bond one or more layers of Oxford cloth with corresponding glue to form a double or multi-layer fabric; the composite Oxford cloth has waterproof, moisture-permeable, windproof and cold-resistant, radiation-resistant, antibacterial, wear-resistant, durable The preparation process of common Oxford cloth is simple, and the yarn types for preparing Oxford cloth are single, which makes the Oxford cloth feel hard and has poor thermal performance. After repeated washing, the fabric becomes thinner and thinner; therefore, the patent "CN110920181A" "A high-strength composite Oxford cloth and its preparation method" is proposed in the paper. In this scheme, by setting the interconnected Oxford cloth layer and the bottom woven layer, the...
Examples
Embodiment 1
[0026] A method for preparing a high-strength composite Oxford cloth proposed by the present invention comprises a wear-resistant and waterproof layer, an Oxford cloth layer, an adhesive layer and a bottom woven cloth layer arranged sequentially from top to bottom;
[0027]The preparation of the wear-resistant and waterproof layer includes the following steps: (1), obtain the following raw materials in parts by mass: 13 parts of silica gel, 12 parts of diacetone alcohol, 9 parts of iron oxide red and 1 part of butyl acetate (2) Weigh the mass fractions of butyl acetate and silica gel and heat and stir in the reaction vessel, the heating temperature is 145°C, and the heating time is 20min to obtain the mixed solution A; (3) Add the mass fraction to the mixed solution A Proportional diacetone alcohol and iron oxide red, stirring while feeding, after the feeding is completed, the size is stirred and heated to mix, the heating time is 30min, and the heating temperature is 100°C to ...
Embodiment 2
[0033] A method for preparing a high-strength composite Oxford cloth proposed by the present invention, compared with the first embodiment, this embodiment also includes a wear-resistant and waterproof layer, an Oxford cloth layer, an adhesive layer and a bottom woven cloth layer arranged sequentially from top to bottom ;
[0034] The preparation of the wear-resistant waterproof layer includes the following steps: (1), obtaining the following raw materials in parts by mass: 24 parts of silica gel, 18 parts of diacetone alcohol, 13 parts of iron oxide red and 11 parts of butyl acetate; (2) mixing butyl acetate and Weigh the mass parts of silica gel and heat and stir in the reaction vessel. The heating temperature is 145°C and the heating time is 20 minutes to obtain the mixed solution A; Stir while feeding, after the feeding is completed, the size is stirred and heated to mix, the heating time is 30min, and the heating temperature is 100°C to obtain a wear-resistant and waterpr...
Embodiment 3
[0040] A method for preparing a high-strength composite Oxford cloth proposed by the present invention, compared with Embodiment 1 or Embodiment 2, this embodiment also includes a wear-resistant and waterproof layer, an Oxford cloth layer, an adhesive layer and Bottom fabric layer;
[0041] The preparation of the wear-resistant waterproof layer includes the following steps: (1), obtaining the following raw materials in parts by mass: 20 parts of silica gel, 15 parts of diacetone alcohol, 11 parts of iron oxide red and 7 parts of butyl acetate; (2) mixing butyl acetate and Weigh the mass parts of silica gel and heat and stir in the reaction vessel. The heating temperature is 145°C and the heating time is 20 minutes to obtain the mixed solution A; Stir while feeding, after the feeding is completed, the size is stirred and heated to mix, the heating time is 30min, and the heating temperature is 100°C to obtain a wear-resistant and waterproof coating material;
[0042] The Oxford...