AROMATIC LATEX AND ITS METHOD OF FABRICATING
20180282502 ยท 2018-10-04
Inventors
Cpc classification
C08J9/28
CHEMISTRY; METALLURGY
C08J9/0061
CHEMISTRY; METALLURGY
C08J9/30
CHEMISTRY; METALLURGY
International classification
Abstract
A kind of aromatic latex and its fabricating method of mixing and foaming by the following components at the weight ratio of 1020 percent of natural latex, 7080 percent of synthetic latex, 0.52 percent of aromatizer, 13 percent of fatty acid ester, 46 percent of sulphur, 13 percent of zinc oxide, 0.52 percent of curing agent. The present invention belongs to the technical field of latex material, particularly a kind of aromatic latex and its fabricating method with merits of high breathability, high elasticity, strong supporting force, aromatic and fresh smell that can improve the sleep quality with the efficacy of skin care and health care. This aromatic latex is mainly used for fabrication of latex mattress.
Claims
1. A kind of aromatic latex mixed and foamed by the following components at the weight ratio of 1020 percent of natural latex, 7080 percent of synthetic latex, 0.52 percent of aromatizer, 13 percent of fatty acid ester, 46 percent of sulphur, 13 percent of zinc oxide, and 0.52 percent of curing agent.
2. The aromatic latex of claim 1, which is mixed and foamed by the following components at the weight ratio of 15 percent of natural latex, 75 percent of synthetic latex, 1 percent of aromatizer, 2 percent of fatty acid ester, 4 percent of sulphur, 2 percent of zinc oxide, and 1 percent of curing agent.
3. The aromatic latex of claim 1, wherein the molecular weight of the said natural latex is 210.sup.5310.sup.5 g/mol; the solid content of the said natural latex is no lower than 60%; the particle diameter of the said natural latex is 12 m.
4. The aromatic latex of claim 1, wherein the said synthetic latex is styrene butadiene rubber.
5. The aromatic latex of claim 1, wherein the said aromatizer is green tea powder or rose powder.
6. A fabricating method for aromatic latex comprising the following procedures: 1) Taking every component according to the weight ratio; 2) Mixing uniformly the natral latex, synthetic latex and aromatizer according to the ratio to get the Mixture 1 for standby application; 3) Adding the fatty acid ester according to the ratio into the Mixture 1 to control the pH value between 77.5 to get the Mixture 2; 4) Adding the sulphur and zinc oxide according to the ratio into the Mixture 2 then mixing uniformly at the temperature of 3545 C. for reaction time of 40120 minutes to get the Mixture 3; 5) Pumping the Mixture 3 into foaming machine simultaneously adding curing agent according to the ratio for mechanical stirring foaming, then pouring the foamed mixture into the model or conveyer belt transported into steam box at the temperature of 110120 C. to get the transient aromatic latex material. 6) Dehydrating and drying the above transient aromatic latex material to get the finished aromatic latex product.
Description
DETAILED DESCRIPTION OF PREFERRED EMBODIMENTS
[0017] The technical solutions of the embodiments will be described clearly and completely. Obviously, the embodiments are just a part and not all of the implementations. Based on the implementations of the present invention, the other implementations obtained by those skilled in the art without creative work will all fall within the scope of the invention.
[0018] Embodiment 1, a kind of aromatic latex mixed and foamed by the following components at the weight ratio of 15 percent of natural latex, 75 percent of synthetic latex, 1 percent of aromatizer, 2 percent of fatty acid ester, 4 percent of sulphur, 2 percent of zinc oxide, and 1 percent of curing agent.
[0019] A fabricating method for the aromatic latex comprises the following procedures: [0020] 1) Taking every component according to the weight ratio; [0021] 2) Mixing uniformly the natral latex, synthetic latex and aromatizer according to the ratio to get the Mixture 1 for standby application; [0022] 3) Adding the fatty acid ester according to the ratio into the Mixture 1 to control the pH value between 77.5 to get the Mixture 2; [0023] 4) Adding the sulphur and zinc oxide according to the ratio into the Mixture 2 then mixing uniformly at the temperature of 3545 C. for reaction time of 40120 minutes to get the Mixture 3; [0024] 5) Pumping the Mixture 3 into foaming machine simultaneously adding curing agent according to the ratio for mechanical stirring foaming, then pouring the foamed mixture into the model or conveyer belt transported into steam box at the temperature of 110120 C. to get the transient aromatic latex material. [0025] 6) Dehydrating and drying the above transient aromatic latex material to get the finished aromatic latex product.
[0026] Embodiment 2, a kind of aromatic latex mixed and foamed by the following components at the weight ratio of 12 percent of natural latex, 73 percent of synthetic latex, 2 percent of aromatizer, 3 percent of fatty acid ester, 5 percent of sulphur, 3 percent of zinc oxide, and 2 percent of curing agent.
[0027] A fabricating method for the aromatic latex comprises the following procedures: [0028] 1) Taking every component according to the weight ratio; [0029] 2) Mixing uniformly the natral latex, synthetic latex and aromatizer according to the ratio to get the Mixture 1 for standby application; [0030] 3) Adding the fatty acid ester according to the ratio into the Mixture 1 to control the pH value between 77.5 to get the Mixture 2; [0031] 4) Adding the sulphur and zinc oxide according to the ratio into the Mixture 2 then mixing uniformly at the temperature of 3545 C. for reaction time of 40120 minutes to get the Mixture 3; [0032] 5) Pumping the Mixture 3 into foaming machine simultaneously adding curing agent according to the ratio for mechanical stirring foaming, then pouring the foamed mixture into the model or conveyer belt transported into steam box at the temperature of 110120 C. to get the transient aromatic latex material. [0033] 6) Dehydrating and drying the above transient aromatic latex material to get the finished aromatic latex product.
[0034] Embodiment 3, a kind of aromatic latex mixed and foamed by the following components at the weight ratio of 10 percent of natural latex, 77 percent of synthetic latex, 1.5 percent of aromatizer, 3 percent of fatty acid ester, 5 percent of sulphur, 2 percent of zinc oxide, and 1 percent of curing agent.
[0035] A fabricating method for the aromatic latex comprises the following procedures: [0036] 1) A fabricating method for the aromatic latex comprises the following procedures: [0037] 2) Mixing uniformly the natral latex, synthetic latex and aromatizer according to the ratio to get the Mixture 1 for standby application; [0038] 3) Adding the fatty acid ester according to the ratio into the Mixture 1 to control the pH value between 77.5 to get the Mixture 2; [0039] 4) Adding the sulphur and zinc oxide according to the ratio into the Mixture 2 then mixing uniformly at the temperature of 3545 C. for reaction time of 40120 minutes to get the Mixture 3; [0040] 5) Pumping the Mixture 3 into foaming machine simultaneously adding curing agent according to the ratio for mechanical stirring foaming, then pouring the foamed mixture into the model or conveyer belt transported into steam box at the temperature of 110120 C. to get the transient aromatic latex material. [0041] 6) Dehydrating and drying the above transient aromatic latex material to get the finished aromatic latex product.
[0042] The aromatic latex of the present invention and its fabricating method has the merits of high breathability, high elasticity and strong supporting force for neck, head and body to reduce the burden on spine and to improve the sleep quality with the fragrant smell, which highly satisfies the customers.
[0043] The detailed description above is just the embodiments of the present invention and not to limit the patent scope of the invention. All the equivalent structures and process modifications based on the specification of the present invention as well as the applications directly or indirectly in the other relevant technical field should also fall within the scope of the invention.