IP Library › Patent Application 15196843
Patent Application
App. No. 15/196,843

METHOD TO DECREASE THE ACETALDEHYDE AND FORMALDEHYDE CONTENT IN THE CELLULOSIC FIBER-REINFORCED POLYPROPYLENE COMPOSITES THERMOPLASTICS

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Patent No.
US None
App. No.
15/196,843
Abstract

A method of reducing aldehyde emissions during injection molding of a part with a cellulosic fiber-reinforced polypropylene composition. An injection molding machine capable of the parameters necessary for injection molding of a cellulosic fiber-reinforced polypropylene composition is provided. Said injection molding machine including: a hopper for holding of a pelletized cellulosic fiber-reinforced polypropylene composition material; a feed throat portion; and, a mixing chamber installed in line with the injection molding machine between the hopper and the feed throat portion. Metering an effective amount of an aldehyde reducing composition into the mixing chamber containing pelletized cellulosic fiber-reinforced polypropylene composition and mixing the pelletized cellulosic fiber-reinforced polypropylene composition with the aldehyde reducing composition for wetting the surface of the pellets with the aldehyde reducing composition. A part is then injection molded with the wetted pelletized mixture.

Claims (37)

1 . A method of reducing aldehyde emissions during injection molding of a part with a cellulosic fiber-reinforced polypropylene composition comprising the steps of:

providing an injection molding machine capable of the parameters necessary for injection molding of a cellulosic fiber reinforced polypropylene composition, of said injection molding machine including: a hopper for holding of a pelletized cellulosic fiber-reinforced polypropylene composition material: a feed throat portion; and, a mixing chamber installed in line with the injection molding machine between the hopper and the feed throat portion;

metering an effective amount of an aldehyde reducing composition into the mixing chamber containing pelletized cellulosic fiber-reinforced polypropylene composition;

mixing the pelletized cellulosic fiber-reinforced polypropylene composition with the aldehyde reducing composition for wetting the surface of the pellets with the aldehyde reducing composition; and

injection molding of a part with the wetted pelletized mixture.

2 . The method of reducing aldehyde emissions during injection molding of a part with a cellulosic fiber-reinforced polypropylene composition of claim 1 , wherein said aldehyde reducing composition it selected from the group consisting of an anthranilamide, an anthranilamide derivative, 1,8 diaminonaphthalene, or 3,4-diaminobenzoic acid and mixtures thereof.

3 . The method of reducing aldehyde emissions during injection molding of a part with a cellulosic fiber-reinforced polypropylene composition of claim 2 , wherein the aldehyde reducing composition is used in the effective amount such that from about 0.15 to 0.525 weight percent of the additive is found in the injection molded composition.

4 . The method of reducing aldehyde emissions during injection molding of a part with a cellulosic fiber-reinforced polypropylene composition of claim 1 , wherein a peristaltic pump is used for metering of the aldehyde reducing composition into the mixing chamber.

5 . The method of reducing aldehyde emissions during injection molding of a part with a cellulosic fiber-reinforced polypropylene composition of claim 4 , wherein the peristaltic pump is operably connected to a reservoir containing the aldehyde reducing composition and a hose to deliver the aldehyde reducing composition to the mixing chamber, wherein a control signal is sent to the peristaltic pump to feed the predetermined effective amount of the aldehyde reducing composition during a recovery time of the injection molding cycle.

6 . The method of reducing aldehyde emissions during injection molding of a part with a cellulosic fiber-reinforced polypropylene composition of claim 1 , wherein the part is an automotive part.

7 . The method of reducing aldehyde emissions during injection molding of a part with a cellulosic fiber-reinforced polypropylene composition of claim 6 , wherein at least acetaldehyde and formaldehyde content that is generated during the injection molding of the cellulosic fiber-reinforced polypropylene composition is decreased to meet predetermined automotive requirements on volatile organic compounds emissions.

8 . The method of reducing aldehyde emissions during injection molding of a part with a cellulosic fiber-reinforced polypropylene composition of claim 7 , wherein a plurality of other volatile organic compounds selected from the group consisting of acrolein, benzene, toluene, ethyl-benzene, xylene, styrene, p-dichlorobenzene, tetradecane, chlorpyrifos, di-n-butylpthalate, di-2-ethylhexylphthalate, fenobucarbon and diazinon are at low levels to meet predetermined automotive requirements on volatile organic compounds emissions.

9 . The method of reducing aldehyde emissions during injection molding of a part with a cellulosic fiber-reinforced polypropylene composition of claim 1 , wherein the effective amount of aldehyde reducing composition is that which binds to at least acetaldehyde and formaldehyde that is generated during the injection molding of the cellulosic fiber-reinforced polypropylene composition to eliminate the release of the acetaldehyde and formaldehyde.

10 . A method of reducing aldehyde emissions during injection molding of a part with a cellulosic fiber-reinforced polypropylene composition comprising the steps of:

providing pelletized cellulosic fiber-reinforced polypropylene composition material;

providing an aldehyde reducing composition, said aldehyde reducing composition comprising at least two moieties selected from the group consisting of anthranilamide, anthranilamide derivative, 1,8 diaminonaphthalene, 3,4-diaminobenzoic acid and combinations thereof;

providing an injection molding machine capable of the predetermined parameters necessary for injection molding of the cellulosic fiber-reinforced polypropylene composition, said injection molding machine including a hopper portion for holding the pelletized cellulosic fiber-reinforced polypropylene composition material, a feed throat portion, a mixing chamber installed between the hopper and feed throat portions, and a pump for delivering an effective amount of the aldehyde reducing composition to the mixing chamber;

metering an effective amount of the aldehyde reducing composition into the mixing chamber containing a predetermined amount of the pelletized cellulosic fiber-reinforced polypropylene composition;

operably mixing the pelletized cellulosic fiber-reinforced polypropylene composition with the aldehyde reducing composition for wetting the surface of the pellets with the aldehyde reducing composition; and

injection molding of the part with the wetted pelletized mixture.

11 . The method of reducing aldehyde emissions during injection molding of a part with a cellulosic fiber-reinforced polypropylene composition of claim 10 , wherein the pump is a peristaltic pump.

12 . The method of reducing aldehyde emissions during injection molding of a part with a cellulosic fiber-reinforced polypropylene composition of claim 11 , wherein the peristaltic pump is operably connected to a reservoir containing the aldehyde reducing composition and a hose to deliver the aldehyde reducing composition to the mixing chamber, wherein a control signal is sent to the peristaltic pump to feed the predetermined effective amount of the aldehyde reducing composition during a recovery time of the injection molding cycle.

13 . The method of reducing aldehyde emissions during injection molding of a part with a cellulosic fiber-reinforced polypropylene composition of claim 10 , wherein the aldehyde reducing composition is used in an effective amount such that about 0.15 to 0.525 weight percent of the additive is found in the injection molded composition.

14 . The method of reducing aldehyde emissions during injection molding of a part with a cellulosic fiber-reinforced polypropylene composition of claim 13 , wherein the effective amount is about 0.21 to 0.525 weight percent.

15 . The method of reducing aldehyde emissions during injection molding of a part with a cellulosic fiber-reinforced polypropylene composition of claim 13 , wherein the effective amount is about 0.15 to 0.375 weight percent.

16 . The method of reducing aldehyde emissions during injection molding of a part with a cellulosic fiber-reinforced polypropylene composition of claim 10 , wherein the polypropylene composition is reinforced with vegetal fibers selected from the group consisting of hardwoods, softwoods, roots, husks, fruits, seeds, grasses, reeds, basts, stalks, canes, leafs, leaf sheaths and combinations thereof.

17 . The method of reducing aldehyde emissions during injection molding of a part with a cellulosic fiber-reinforced polypropylene composition of claim 10 , wherein the method decreases at least acetaldehyde and formaldehyde content in the cellulosic fiber-reinforced polypropylene composition to meet predetermined requirements.

18 . The method of reducing aldehyde emissions during injection molding of a part with a cellulosic fiber-reinforced polypropylene composition of claim 17 , wherein the method allows a plurality of other volatile organic compounds to be at low levels to meet predetermined requirements, said other volatile organic compounds selected from the group consisting of acrolein, benzene, toluene, ethyl-benzene, xylene, styrene, p-dichlorobenzene, tetradecane, chlorpyrifos, di-n-butylpthalate, di-2-ethylhexylphthalate, fenobucarbon and diazinon.

19 . A method of reducing aldehyde emissions during injection molding of a part with a cellulosic fiber-reinforced polypropylene composition comprising the steps of:

providing pelletized cellulosic fiber-reinforced polypropylene composition material;

providing an aldehyde reducing composition, said aldehyde reducing composition comprising at least two moieties selected from the group consisting of anthranilamide, anthranilamide derivative, 1,8 diaminonaphthalene, 3,4-diaminobenzoic acid and combinations thereof;

providing an injection molding machine capable of the predetermined parameters necessary for injection molding of the cellulosic fiber-reinforced polypropylene composition, said injection molding machine including a barrel for injection molding, a hopper portion for holding the pelletized cellulosic fiber-reinforced polypropylene composition material, a feed throat portion, a mixing chamber installed between the hopper and feed throat portions, and a peristaltic pump for delivering an effective amount of the aldehyde reducing composition to the mixing chamber;

metering the effective amount of the aldehyde reducing composition into the mixing chamber containing a predetermined amount of the pelletized cellulosic fiber-reinforced polypropylene composition during a recovery time of the injection molding cycle;

operably mixing the pelletized cellulosic fiber-reinforced polypropylene composition with the aldehyde reducing composition for wetting the surface of the pellets with the aldehyde reducing composition; and

injection molding of the part with the wetted pelletized mixture;

wherein at least acetaldehyde and formaldehyde emissions are reduced to predetermined levels meeting requirements.

20 . The method of reducing aldehyde emissions during injection molding of a part with a cellulosic fiber-reinforced polypropylene composition of claim 16 , wherein the aldehyde reducing composition is used in an effective amount such that from about 0.15 and 0.525 weight percent of the additive is found in the injection molded composition.

Assignments (2)
CHANGE OF NAME Recorded May 9, 2017
From: MAGNA INTERNATIONAL INC.
To: MAGNA EXTERIORS INC.
Reel/Frame 042301/0037 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 11, 2016
From: BALTAZAR-Y-JIMENEZ, ALEXIS; WITKOWSKI, RICHARD J.
To: MAGNA INTERNATIONAL INC.
Reel/Frame 039982/0654 →