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Salix integra branch softening and peeling method capable of reducing damage

A technology of willow branches and willow willows, applied in reed/straw treatment, wood processing equipment, impregnated wood, etc., can solve the problems of unguaranteed color and complicated operation, so as to improve peeling efficiency, reduce operation process, and prevent water loss too much effect

Inactive Publication Date: 2020-05-15
GP TOPARTS MFR ANHUI +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] Aiming at the deficiencies of the prior art, the present invention provides a method for softening and peeling of willow branches with reduced damage, which solves the problems of complex operation and unguaranteed color in the process of peeling the existing willows

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0025] A method for softening and peeling bark willow branches to reduce damage, is characterized in that it comprises the following steps:

[0026] Step A——preparation of materials (proportioning by weight): 30 parts of sodium carbonate, 20 parts of potassium carbonate, 10 parts of white vinegar, 20 parts of white granulated sugar, 2 parts of yeast, 50 parts of water, the present invention can reduce environmental impact by step A Pollution, and can prevent willow willow from corrosion and discoloration affecting the beauty of woven products, and will not cause harm to the human body and the environment;

[0027] Step B - Mixing: Mix sodium carbonate, potassium carbonate, white vinegar, white sugar, yeast, and water evenly, heat to 50-75°C, and keep stirring the raw materials for 20 minutes to completely dissolve the raw materials;

[0028] Step C—Bundling of willows: Bundle 35 willows into a bundle, and pass step C: binding willows can reduce the damage of willows;

[0029]...

Embodiment 2

[0033] A method for softening and peeling bark willow branches that reduces damage, is characterized in that it comprises the following steps: Step A——preparing materials (proportioning by weight): 40 parts of sodium carbonate, 28 parts of potassium carbonate, 14 parts of white vinegar, and 25 parts of white granulated sugar 3 parts, 3 parts of yeast, 60 parts of water, the present invention can reduce the pollution to the environment through step A, and can prevent that willow willow is affected the attractive in appearance of weaving by corrosion discoloration, causes harm to human body and environment;

[0034] Step B - Mixing: Mix sodium carbonate, potassium carbonate, white vinegar, white sugar, yeast, and water evenly, heat to 50-75°C, and keep stirring the raw materials for 20 minutes to completely dissolve the raw materials;

[0035] Step C——Bundling of willow bark: every 35 willow bark will be tied into a bundle, and the damage of willow bark can be reduced through ste...

Embodiment 3

[0040] A method for softening and peeling bark willow branches that reduces damage, is characterized in that it comprises the following steps: Step A——preparing materials (proportions by weight): 50 parts of sodium carbonate, 36 parts of potassium carbonate, 18 parts of white vinegar, and 30 parts of white granulated sugar 4 parts, 4 parts of yeast, 70 parts of water, the present invention can reduce the pollution to the environment through step A, and can prevent the willow willow from affecting the attractive in appearance of braided goods due to corrosion and discoloration, causing harm to the human body and the environment;

[0041] Step B - Mixing: Mix sodium carbonate, potassium carbonate, white vinegar, white sugar, yeast, and water evenly, heat to 50-75°C, and keep stirring the raw materials for 20 minutes to completely dissolve the raw materials;

[0042] Step C——Bundling of willow bark: every 35 willow bark will be tied into a bundle, and the damage of willow bark can...

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PUM

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Abstract

The invention discloses a Salix integra branch softening and peeling method capable of reducing damage, and relates to the related technical field of Salix integra branch processing. The method comprises the following steps: A, preparing materials; B, mixing; C, bundling Salix integra; D, soaking; and E, drying. The material preparation in the step A avoids harm to the human body and the environment, reduces pollution to the environment and prevents the Salix integra from being corroded and discolored to influence the attractiveness of the surface of a woven product. The Salix integra bundlingin the step C reduces damage to the Salix integra. Through drying in the step E, the soaked Salix integra is wrapped by a preservative film, so that excessive water loss of the Salix integra can be prevented. Through the steps A to E, the operation process of Salix integra peeling can be reduced, so that the operation labor force is reduced, and the Salix integra peeling efficiency is improved.

Description

technical field [0001] The invention relates to the related technical field of wicker processing, in particular to a method for softening and peeling bark willow branches with reduced damage. Background technique [0002] Qiliu likes fertile water and is resistant to rain and waterlogging. It grows best in the upper deep sandy loam and ditch slopes, so it should be planted in fertile places such as sandy loam, river beaches, and ditch slopes near water. The fertilizer and water conditions are good, the branches grow vigorously, and can grow normally for 20-30 years. In dry and barren land conditions, the branches grow thin and short, and the life span is shortened. Under the unfavorable conditions of shallow water for 2 to 3 months, it can still grow normally. At present, the process of peeling willow willow requires repeated operations many times, which not only consumes a lot of manpower and material resources, but also has low work efficiency, and the softening treatmen...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B27K9/00B27K3/52
CPCB27K3/52B27K9/002
Inventor 殷辉兰伟周鸣杨大燕杨浩杨军
Owner GP TOPARTS MFR ANHUI
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