CN103422364B - A kind of crystalline substance of copper ammonia fibre becomes method of modifying - Google Patents
A kind of crystalline substance of copper ammonia fibre becomes method of modifying Download PDFInfo
- Publication number
- CN103422364B CN103422364B CN201310318085.3A CN201310318085A CN103422364B CN 103422364 B CN103422364 B CN 103422364B CN 201310318085 A CN201310318085 A CN 201310318085A CN 103422364 B CN103422364 B CN 103422364B
- Authority
- CN
- China
- Prior art keywords
- copper ammonia
- ammonia fibre
- modification
- pressure
- crystalline substance
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Expired - Fee Related
Links
Landscapes
- Chemical Or Physical Treatment Of Fibers (AREA)
Abstract
The crystalline substance that the present invention relates to a kind of copper ammonia fibre becomes method of modifying, is that copper ammonia fibre is placed in closed container, is filled with modification medium, boosts to modifier pressure, then abrupt release pressure, removes modification medium, namely obtains brilliant change modification copper ammonia fibre.The present invention adopts the advantage of above technical scheme as follows: 1, reach modification object by changing lattice shape and infiltrating functional medium, modified fiber overcomes its native defect, and hole increases.2, adopt the method for abrupt release pressure, significantly improve Medium Diffusion coefficient, thus significantly improve the performance such as dye-uptake and COLOR FASTNESS.
Description
Technical field
The crystalline substance that the present invention relates to a kind of copper ammonia fibre becomes method of modifying, specifically a kind of by modification medium being pressurized to modifier pressure and the copper ammonia fibre of abrupt release pressure brilliant change method of modifying after pressurize a period of time.
Background technology
Copper ammonia fibre is a kind of regenerated celulose fibre, and its fabric made is soft, and gloss is soft, and hygroscopicity is better, has pendency sense.But its intensity and elastic recovery poor, dyeing energy consumption and pollute all comparatively large, dye-uptake and COLOR FASTNESS are not high yet.
In order to change above-mentioned present situation, existing a variety of method of modifying, as physical modification method, chemical modification method and biological modified method.Physical modification method mainly comprises discharge technology modification, high steam dodges quick-fried modification, ultrasonic cavitation and microwave irradiation modification, liquefied ammonia are processing modified etc.Chemical modification method mainly comprises cellulose esters modification, cellulose ethers modification, graft modification with cellulose and cellulose crosslinked modification etc.Biological modified method mainly utilizes the process such as biology enzyme comes unstuck to fiber, polishing.Above-mentioned method of modifying is mostly for natural fabric modification, and most method still rests on laboratory stage due to reasons such as cost, environmental pollution, technical feasibility reliabilities.
The domestic and international problem for synthetic dyeing difficulties such as copper ammonia fibre now, the main method adopted has: the compound copolymerization that (1) is huge with molecular volume; (2) with the compound spinning with plasticization effect; (3) to import and the good group of disperse dyes compatibility, as ehter bond etc.At present, Application comparison is wide in the industry in copolymerization process modification.The modified fibre fusing point adopting the method obtained is low, and degree of crystallinity is low, but damages significantly because the hot property of fiber and mechanical performance receive, and the method also receives restriction in the application in some field.
Summary of the invention
The crystalline substance that the object of this invention is to provide a kind of copper ammonia fibre becomes method of modifying, specifically a kind of by modification medium being pressurized to modifier pressure and the copper ammonia fibre of abrupt release pressure brilliant change method of modifying after pressurize a period of time.
The crystalline substance of a kind of copper ammonia fibre of the present invention becomes method of modifying, copper ammonia fibre is placed in closed container, is filled with modification medium, boost to modifier pressure, then abrupt release pressure, removes modification medium, namely obtains brilliant change modification copper ammonia fibre.Its principle is: copper ammonia fibre is placed in closed container, and this closed container can movable sealing under under high pressure movable sealing and negative pressure, and zero leakage.By pressure balance topping up and non-equilibrium speed governing topping up, adjustable be filled with modification medium in closed container flow, time and temperature, thus the rate of change of the regulation and control pressure of modification, two-phase interface and above-mentioned parameter, and then the running parameter such as the permeability of regulation and control liquid medium, infiltration rate and evaporation rate; Regulate the dwell time of modifier pressure simultaneously; Above-mentioned technique can make the diffusion coefficient of modification medium improve, modification medium penetrates in fibr tissue preferably, aggravation cellulose macromolecule sub-chain motion, make, between cellulosic molecule, swelling action occurs, change the microstructure of fiber, as hole is larger and rounded, so that the larger dyestuff of relative molecular mass can enter fibrous inside, thus improves dye-uptake and the COLOR FASTNESS of synthetic fiber.Finally adopt heating and vacuumize the parallel method of evaporating modification medium removed in copper ammonia fibre and namely complete described crystalline substance change method of modifying.For the synthetic fiber of different constituent, regulate above-mentioned relevant parameter, described crystalline substance can be realized and become modification.Crystalline substance described in employing becomes method of modifying, and can make the microcosmic lattice of brilliant change modification copper ammonia fibre compared with the microcosmic lattice of described copper ammonia fibre, hole increases 3% ~ 4%; Described crystalline substance becomes modification copper ammonia fibre dye-uptake compared with described copper ammonia fibre and improves 50% ~ 55%, and COLOR FASTNESS improves 30% ~ 35%.
As preferred technical scheme:
The crystalline substance of a kind of copper ammonia fibre as above becomes method of modifying, and the length of described copper ammonia fibre is 5 ~ 80mm, and fineness is 0.04 ~ 0.2tex.
The crystalline substance of a kind of copper ammonia fibre as above becomes method of modifying, and modification medium is liquefied ammonia or carbon dioxide.Modification medium need possess following three point patterns: 1) have excellent diffusivity; 2) lattice shape of synthetic fiber can be made to change, improve the swelling behavior of fiber; 3) be easy to phase transformation evaporation and reclaim.Liquefied ammonia has that molecular weight is little, viscosity is little, surface tension is little, be easy to the special physical property such as phase transformation, and these character make it have excellent diffusivity; Amino molecule infiltrates in synthetic fiber, fiber hole can be made to increase, produce good expansion effect.In temperature higher than critical-temperature (Tc=31.26 DEG C), pressure is higher than critical pressure (P
0=7.39MPa) state under, carbon dioxide had both had low-viscosity and the high diffusivity coefficient of gas, had again the high density of liquid, thus had good mass transfer, heat transfer and permeance property; Its good permeance property makes it to penetrate in cellulose rapidly, and cellulosic hole is increased; Dye molecule large for soluble relative molecular mass can be transferred on fiber as medium with supercritical carbon dioxide, fiber is dyeed.Meanwhile, liquefied ammonia and carbon dioxide are all easy to phase transformation evaporation and reclaim.
The crystalline substance of a kind of copper ammonia fibre as above becomes method of modifying, and for copper ammonia fibre, obtain good modified effect, modifier pressure should be more than or equal to 7.4MPa, and modifier pressure can reach 9MPa, and therefore described modifier pressure should be 7.4 ~ 9MPa.Reach good swelling effect, should require that pressure drops to less than 1% of modifier pressure instantaneously.
The crystalline substance of a kind of copper ammonia fibre as above becomes method of modifying, and described pressure is absolute pressure.
The crystalline substance of a kind of copper ammonia fibre as above becomes method of modifying, obtain excellent swelling effect, require that the time that pressure drops to 1% of modifier pressure from modifier pressure is less than or equal to 8.0 seconds, be advisable at 5 seconds ~ 8 seconds, therefore the moment of described release pressure is 5 seconds ~ 8 seconds, and the rate of pressure reduction of corresponding described release pressure is 1MPa/s ~ 5MPa/s.
The crystalline substance of a kind of copper ammonia fibre as above becomes method of modifying, for obtaining the good diffusivity of modification medium and best modified effect, and modifying process energy ezpenditure is minimum, need to regulate and control the flow of ammoniacal liquor in filling process, time and temperature, reach the object of regulation and control pressure, and then regulation and control medium permeability, infiltration rate, evaporation rate, evaporation rate and phase transition process.And boost process is one of most important influence factor, different boost process need be adopted to different fibers, a large number of experiments show that: the applicable constant speed of copper ammonia fibre is boosted, rate of pressure rise is not less than 0.1MPa/min, can reach 0.5MPa/min, therefore described constant speed rate of pressure rise is 0.1MPa/min ~ 0.5MPa/min.
The crystalline substance of a kind of copper ammonia fibre as above becomes method of modifying, and in modifying process, after boosting, pressurize a period of time is to make modification medium penetrate in structure of fibrous tissue more fully, better making generation cellulose swelling action.It is all necessary that this process becomes modification to the crystalline substance of all fibres.To copper ammonia fibre, after boosting, the dwell time need be greater than 1min, and can reach 10min, therefore after described boosting, the dwell time is 1 ~ 10min.
The crystalline substance of a kind of copper ammonia fibre as above becomes method of modifying, remove modification medium to be absolutely necessary technical process, this process does not affect the lattice structure of fiber, but how high efficiency, low energy consumption, this process that completes that is pollution-free, zero-emission are the key factors realizing large-scale industrial production, this directly will affect the brilliant vitality becoming method of modifying, high efficiency, low energy consumption, the completing this process and separate case will write series of patents statement again of pollution-free, zero-emission about how.Removing modification medium described in this case is the modification medium adopting heating and vacuumize in parallel method of evaporating removal copper ammonia fibre.
Beneficial effect:
The present invention adopts the advantage of above technical scheme as follows:
1, reach modification object by changing lattice shape and infiltrating functional medium, modified fiber overcomes its native defect, and hole increases.
2, adopt the method for abrupt release pressure, significantly improve Medium Diffusion coefficient, thus significantly improve the performance such as dye-uptake and COLOR FASTNESS.
Detailed description of the invention
Below in conjunction with detailed description of the invention, set forth the present invention further.Should be understood that these embodiments are only not used in for illustration of the present invention to limit the scope of the invention.In addition should be understood that those skilled in the art can make various changes or modifications the present invention, and these equivalent form of values fall within the application's appended claims limited range equally after the content of having read the present invention's instruction.
Embodiment 1
A kind of crystalline substance of copper ammonia fibre becomes method of modifying, be 5mm by length, fineness is that the copper ammonia fibre of 0.04tex is placed in closed container, be filled with liquefied ammonia, boost by the mode of constant speed boosting, rate of pressure rise is 0.1MPa/min, to modifier pressure 7.4MPa, pressurize 1min, then in 8 seconds with the rate of pressure reduction abrupt release of 1MPa/s to 0.0074MPa, then the heating method of evaporating parallel with vacuum pump evacuation is adopted to remove modification medium, until pressure reduces to 133Pa in closed container, now namely obtain the brilliant copper ammonia fibre becoming modification.Described crystalline substance becomes the microcosmic lattice of the copper ammonia fibre of modification compared with the microcosmic lattice of described copper ammonia fibre, and hole increases 3%; Described crystalline substance becomes modification copper ammonia fibre compared with described copper ammonia fibre, and dye-uptake improves 50%, and COLOR FASTNESS improves 30%.
Embodiment 2
A kind of crystalline substance of copper ammonia fibre becomes method of modifying, be 38mm by length, fineness is that the copper ammonia fibre of 0.1tex is placed in closed container, be filled with liquefied ammonia, boost by the mode of constant speed boosting, rate of pressure rise is 0.2MPa/min, to modifier pressure 8MPa, pressurize 5min, then in 6 seconds with the rate of pressure reduction abrupt release of 2MPa/s to 0.008MPa, then the heating method of evaporating parallel with vacuum pump evacuation is adopted to remove modification medium, until pressure reduces to 133Pa in closed container, now namely obtain the brilliant copper ammonia fibre becoming modification.Described crystalline substance becomes the microcosmic lattice of the copper ammonia fibre of modification compared with the microcosmic lattice of described copper ammonia fibre, and hole increases 3.5%; Described crystalline substance becomes modification copper ammonia fibre compared with described copper ammonia fibre, and dye-uptake improves 52%, and COLOR FASTNESS improves 32%.
Embodiment 3
A kind of crystalline substance of copper ammonia fibre becomes method of modifying, be 50mm by length, fineness is that the copper ammonia fibre of 0.15tex is placed in closed container, be filled with liquefied ammonia, boost by the mode of constant speed boosting, rate of pressure rise is 0.3MPa/min, to modifier pressure 8.5MPa, pressurize 5min, then in 5 seconds with the rate of pressure reduction abrupt release of 3MPa/s to 0.0085MPa, then the heating method of evaporating parallel with vacuum pump evacuation is adopted to remove modification medium, until pressure reduces to 133Pa in closed container, now namely obtain the brilliant copper ammonia fibre becoming modification.Described crystalline substance becomes the microcosmic lattice of the copper ammonia fibre of modification compared with the microcosmic lattice of described copper ammonia fibre, and hole increases 3%; Described crystalline substance becomes modification copper ammonia fibre compared with described copper ammonia fibre, and dye-uptake improves 54%, and COLOR FASTNESS improves 34%.
Embodiment 4
A kind of crystalline substance of copper ammonia fibre becomes method of modifying, be 80mm by length, fineness is that the copper ammonia fibre of 0.2tex is placed in closed container, be filled with carbon dioxide, boost by the mode of constant speed boosting, rate of pressure rise is 0.5MPa/min, to modifier pressure 9MPa, pressurize 10min, then in 5 seconds with the rate of pressure reduction abrupt release of 5MPa/s to 0.009MPa, then the heating method of evaporating parallel with vacuum pump evacuation is adopted to remove modification medium, until pressure reduces to 133Pa in closed container, now namely obtain the brilliant copper ammonia fibre becoming modification.Described crystalline substance becomes the microcosmic lattice of the copper ammonia fibre of modification compared with the microcosmic lattice of described copper ammonia fibre, and hole increases 4%; Described crystalline substance becomes modification copper ammonia fibre compared with described copper ammonia fibre, and dye-uptake improves 55%, and COLOR FASTNESS improves 35%.
Claims (6)
1. the crystalline substance of copper ammonia fibre becomes a method of modifying, it is characterized in that: copper ammonia fibre is placed in closed container, is filled with modification medium, boost to modifier pressure, then abrupt release pressure, removes modification medium, namely obtains brilliant change modification copper ammonia fibre; Described modification medium is liquefied ammonia or carbon dioxide; Described modifier pressure is 7.4 ~ 9MPa; Described abrupt release pressure is that finger pressure drops to less than 1% of described modifier pressure instantaneously; Describedly refer to 5 seconds ~ 8 seconds instantaneously, the rate of pressure reduction of described release pressure is 1MPa/s ~ 5MPa/s; 1min ~ 10min is kept after boosting.
2. the crystalline substance of a kind of copper ammonia fibre according to claim 1 becomes method of modifying, and it is characterized in that, the length of described copper ammonia fibre is 5 ~ 80mm, and fineness is 0.04 ~ 0.2tex.
3. the crystalline substance of a kind of copper ammonia fibre according to claim 1 becomes method of modifying, it is characterized in that, described crystalline substance becomes the microcosmic lattice of modification copper ammonia fibre compared with the microcosmic lattice of described copper ammonia fibre, and hole becomes circle, and increases 3% ~ 4%; Described crystalline substance becomes modification copper ammonia fibre compared with described copper ammonia fibre, and dye-uptake improves 50% ~ 55%, and COLOR FASTNESS improves 30% ~ 35%.
4. the crystalline substance of a kind of copper ammonia fibre according to claim 1 becomes method of modifying, and it is characterized in that, described pressure is absolute pressure.
5. the crystalline substance of a kind of copper ammonia fibre according to claim 1 becomes method of modifying, it is characterized in that, described boosting is constant speed boosting, and rate of pressure rise is 0.1MPa/min ~ 0.5MPa/min.
6. the crystalline substance of a kind of copper ammonia fibre according to claim 1 becomes method of modifying, it is characterized in that, described removal modification medium is adopt the modification medium heating and vacuumize in parallel method of evaporating removal copper ammonia fibre.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201310318085.3A CN103422364B (en) | 2013-07-26 | 2013-07-26 | A kind of crystalline substance of copper ammonia fibre becomes method of modifying |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201310318085.3A CN103422364B (en) | 2013-07-26 | 2013-07-26 | A kind of crystalline substance of copper ammonia fibre becomes method of modifying |
Publications (2)
Publication Number | Publication Date |
---|---|
CN103422364A CN103422364A (en) | 2013-12-04 |
CN103422364B true CN103422364B (en) | 2015-11-18 |
Family
ID=49647720
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN201310318085.3A Expired - Fee Related CN103422364B (en) | 2013-07-26 | 2013-07-26 | A kind of crystalline substance of copper ammonia fibre becomes method of modifying |
Country Status (1)
Country | Link |
---|---|
CN (1) | CN103422364B (en) |
Citations (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN101413213A (en) * | 2007-10-19 | 2009-04-22 | 上海业安纺织科技有限责任公司 | Liquid ammonia modified method of cotton fibriia and yarn |
CN102839508A (en) * | 2012-09-06 | 2012-12-26 | 东华大学 | High-grade flax fabric weaving method based on crystallized and modified flax yarns |
-
2013
- 2013-07-26 CN CN201310318085.3A patent/CN103422364B/en not_active Expired - Fee Related
Patent Citations (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN101413213A (en) * | 2007-10-19 | 2009-04-22 | 上海业安纺织科技有限责任公司 | Liquid ammonia modified method of cotton fibriia and yarn |
CN102839508A (en) * | 2012-09-06 | 2012-12-26 | 东华大学 | High-grade flax fabric weaving method based on crystallized and modified flax yarns |
Non-Patent Citations (1)
Title |
---|
闪爆处理对大麻纤维结构与性能的影响;吴君南等;《纺织学报》;20080430;第29卷(第4期);第14-17页 * |
Also Published As
Publication number | Publication date |
---|---|
CN103422364A (en) | 2013-12-04 |
Similar Documents
Publication | Publication Date | Title |
---|---|---|
CN103422365B (en) | A kind of composite fibre materials crystalline substance becomes method of modifying | |
CN103422367B (en) | A kind of crystalline substance of acrylic fiber becomes method of modifying | |
CN103422366B (en) | A kind of crystalline substance of polyster fibre becomes method of modifying | |
CN103437096B (en) | A kind of crystalline substance of cotton fiber becomes method of modifying | |
CN103422364B (en) | A kind of crystalline substance of copper ammonia fibre becomes method of modifying | |
CN103437220B (en) | A kind of crystalline substance of polypropylene fiber becomes method of modifying | |
CN103437219B (en) | A kind of crystalline substance of spun polyester thread becomes method of modifying | |
CN103437097B (en) | A kind of crystalline substance of ramee becomes method of modifying | |
CN103437155B (en) | A kind of crystalline substance of polypropylene fabric becomes method of modifying | |
CN103422277A (en) | Composite crystal change modification method of cotton yarn | |
CN103437148B (en) | A kind of crystalline substance of viscose yarn becomes method of modifying | |
CN103422278B (en) | A kind of crystalline substance of cotton becomes method of modifying | |
CN103422282A (en) | Crystal transition modification method of flax fabric | |
CN103437149B (en) | A kind of brilliant change method of modifying | |
CN103437098B (en) | A kind of crystalline substance of viscose becomes method of modifying | |
CN103422271B (en) | A kind of crystalline substance of tossa becomes method of modifying | |
CN103437095B (en) | A kind of crystalline substance of linen fibre becomes method of modifying | |
CN103422283A (en) | Crystal change modification method of cotton fabric | |
CN103422273B (en) | A kind of compound crystal variation modification method of viscose | |
CN103437152A (en) | Crystal variation modification method of ambari fiber | |
CN103422274B (en) | A kind of compound crystal variation modification method of cotton fiber | |
CN103437151A (en) | Compound crystal variation modification method of ramie fiber | |
CN103437099B (en) | A kind of crystalline substance of ramie/viscose blended yarn becomes method of modifying | |
CN103422272B (en) | A kind of compound crystal variation modification method of linen fibre | |
CN103422279A (en) | Crystal transition modification method of flax yarn |
Legal Events
Date | Code | Title | Description |
---|---|---|---|
C06 | Publication | ||
PB01 | Publication | ||
C10 | Entry into substantive examination | ||
SE01 | Entry into force of request for substantive examination | ||
C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20151118 Termination date: 20180726 |
|
CF01 | Termination of patent right due to non-payment of annual fee |