Embodiments of the present invention are directed to edible pet chew treats. In more detail, embodiments of the present invention are directed to edible pet chew treats that improve the health and wellness of animals.
Many domesticated animals (i.e., pets), such as dogs and cats, suffer from poor oral health. To combat this problem, edible pet chew treats have been developed to help dean the animals' mouths. For instance, some currently-available pet chew treats are configured to remove plaque and tartar from an animal's teeth as the animal chews on the treat. However, most currently-available. edible pet chew treats are hard, brittle, and have a cylindrical shape. As a result, when provided to an animal, such pets chew treats are prone to break into large, thick pieces, which the animal quickly swallows without adequate chewing. Furthermore, certain types of animals, such as dogs, are prone to quickly swallowing cylindrical-shaped products whole. By quickly swallowing the treats, the treats are not allowed to reside within the animal's mouth long enough to be effective at cleaning the animals' teeth. Additionally, large pieces can easily be gulped (i.e., swallowed without chewing) and can become lodged in the animal's throat, which can cause the animal to choke and even die, or which can otherwise cause damage to or obstruct the animal's digestive tract which can be quite serious. Furthermore, currently-available edible pet chew treats are often difficult for the animal to digest.
in more detail, currently-available pet chew treats function to remove plaque and tartar from an animal's teeth by way of the surface of the pet chew treats scraping on the animals' teeth as the animal chews the treats. In currently-available pet chew treat, the surface of the treat is relatively smooth, which reduces the effectiveness of the treat's ability to clean the teeth. Furthermore, a surface area to volume ratio of currently available pet chew treats is low, such that a reduced amount of surface area is available for cleaning the animal's teeth. Such a low surface area to volume ratio also reduces the solubility of the treat, thereby reducing the ability of the animal to digest the treats. Furthermore still, entire pet chew treats or large chunks of such pet chew treats can obstruct an animal's airway and/or digestive tract, which causes potential health and wellness issues for the animal.
As such, what is needed is a pet chew treat with a texture that functions to improve oral health of animals, will be much less likely to become lodged in the animals' airway or digestive track, is efficiently digestible, and that promotes the overall health and well-being of the animal.
Embodiments of the present invention include a chew treat for an animal comprising a first major side and an opposite second major side. The first and second major sides of the chew treat are separated by a shelf The chew treat additionally includes a plurality of walls extending from the shelf on each of the first and second major sides, with the walls defining a plurality of pockets on each of the first and second major sides.
Embodiments of the present invention additionally include a method of manufacturing a chew treat for an animal. The method comprises the initial step of mixing ingredients that will form part of the chew treat. A next step includes placing the mixed. ingredients into a mold form of an injection molding machine, wherein the mold form is configured to shape the mixed ingredients to include a first major side and an opposite second major side and a plurality of walls extending from each of the first and second major sides, with the walls defining a plurality of pockets. A final step includes baking the mixed ingredients within the mold form to obtain a finished chew treat.
This summary is provided to introduce a selection of concepts in a simplified form that are further described below in the detailed description. This summary is not intended to identify key features or essential features of the claimed subject matter, nor is it intended to be used to limit the scope of the claimed subject matter. Other aspects and advantages of the present invention will be apparent from the following detailed description of the embodiments and the accompanying drawing figures.
Embodiments of the present invention are described in detail below with reference to the attached drawing figures, wherein:
The drawing figures do not limit the present invention to the specific embodiments disclosed and described herein. The drawings are not necessarily to scale, emphasis instead being placed upon clearly illustrating the principles of the invention.
The following detailed description of the invention references the accompanying drawings that illustrate specific embodiments in which the invention can be pradiced. The embodiments are intended to describe aspects of the invention in sufficient detail to enable those skilled in the art to practice the invention. Other embodiments can be utilized and changes can be made without departing from the scope of the present invention. The following detailed description is, therefore. not to be taken in a hunting. sense. The scope of the present invention is defined only by the appended claims, along with the full scope of equivalents to which such claims are entitled.
In this description, references to “one embodiment,” “an embodiment,” or “embodiments” mean that the feature or features being referred to are included in at least one embodiment of the technology. Separate references to “one embodiment,” “an embodiment,” or “embodiments” in this description do not necessarily refer to the same embodiment and are also not mutually exclusive unless so stated and/or except as will be readily apparent to those skilled in the art from the description. For example, a feature, structure, act, etc. described in one embodiment may also be included in other embodiments, but is not necessarily included. Thus, the present techn.ology can include a variety of combinations and/or integrations of the embodiments described herein.
With initial reference to
Embodiments of the present invention may provide for the chew treat 10 to be formed in various geometrical shapes. For instance, as illustrated in
The chew treats 10 of embodiments of the present invention can be formed in a variety of sizes, depending on the animals to which the chew treats will be provided, and specifically, depending on the sizes of those animals. For instance, in cases in which the animals are dogs, the chew treats 110 can be formed in at least four different sizes, with each size being directed to a different size and/or class of dogs. For example, a small size chew treat 10 can he used with small-sized dogs (e.g., under 25 pounds (11.34 kg)), a regular size chew treat 10 can be used with regular-sized dogs (e.g., 25 to 60 pounds (11.34 to 27.22 kg)), a large size chew treat 10 can be used with large-sized dogs (e.g., 60 to 100 pounds (27.22 to 45.36 kg)), and a jumbo size chew treat 10 can be used with a jumbo-sized dog (e.g., over 100 pounds (45.36 kg)). Embodiments of the present invention may also include other sizes of chew treats 10 that can be used with other sizes and/or classes of animals, as may be required.
With reference to
Similarly, with reference to
Turning to the pockets 16, in sonic embodiments, the pockets 16 will have a shape that corresponds with the overall shape of the Chew treat 10. The shape of the poCkets 16 may generally be defined by the inner walls 22 and/or the outer walk 20 of the chew treat 10. As such, the inner walls 22 and/or outer walls 20 may be formed with shapes that correspond with the overall shape of the chew treat. For instance, as illustrated in
Nevertheless, in certain embodiments, it may be preferable for the pockets 16 to have the same shape as the overall shape of the chew treat 10, as such embodiments may increase the overall strength of the chew treat 10 and/or may increase the surface area to volume ratio of the chew treat 10. For instance, a hexagonal-shaped chew treat 10 with a plurality of hexagonal-shaped pockets 16, as shown in
In some embodiments, both the first and second sides 1214 of the chew treat 10 may comprise pockets 16. Certain. embodiments may provide for the first and second sides 12, 14 to be generally symmetrical, such that the first and second sides 12, 14 are virtually identical. As such, and as illustrated by
In certain embodiments, the floor surfaces 28 and 28′ are each formed by the shelf 24, such that the floor surfaces 28, 28′ of the pockets 16, 16′ share a common structure (i.e. shelf 24). In such embodiments, the pockets 16, 16′ do not create openings or holes which would extend all of the way through the thickness I of the chew treats 10. in particular, in such embodiments, the combined depths of the pockets 16, 16′ (i.e., Pd+Pd′) is less than the thickness T of the chew treat 10. While such a configuration of the solid shelf 24 may add to the overall strength of the chew treat 10, other embodiments of the present invention may include at least one or more openings or holes extending through the shelf 24 between the pockets 16, 16′. When one or more openings or holes extend through the shelf 24, the shelf 24 will not be solid but may, nonetheless, be configured as a base from which the walls 20, 22 extend.
In some embodiments, the wall thicknesses Wt of the inner walls 22 and/or the outer walls 20 will be based on the size of the chew treat 10 and/or on the particular size and/or class of animal to which the chew treat 10 is to be given. The wall thickness Wt can provide for the overall strength of the chew treat 10, while simultaneously facilitating the ability of the chew treat 10 to effectively floss the animal's teeth by being appropriately sized for fitting between adjacent teeth in an animal's mouth. In addition, the wall thickness Wt allows for any sizeable parts swallowed by a “gulping” animal to dissolve more quickly, with greater solubility. The wall thickness Wt also allows for the nutrients to be digested more rapidly by the animal's stomach acids. This configuration also helps avoid esophageal and intestinal blockages. In particular, configuration of the wall thicknesses Wt provides a high surface area to volume ratio, which can facilitate solubility and digestion of the chew treat. Given the previously-described size categories of chew treats 10, the wall thicknesses Wt of the chew treats 10 may be as follows: small size chew treats 10 may hive wall thicknesses WI between 0.100 to 0.035 inches (0.254 to 0089 cm), between 0.080 to 0.040 inches (0.203 to 0.102 cm), or between 0.070 to 0.050 inches (0.178 to 0.127 cm), regular size chew treats 10 may have wall thicknesses Wt between 0.150 to 0.050 inches (0.381 to 0.127 cm), between 0.090 to 0.060 inches (0.229 to 0.152 cm), or between 0.075 to 0.060 inches (0.191 to 0.152 cm); large size chew treats 10 may have wall thicknesses Wt between 0.250 to 0.040 inches (0.635 to 0.102 cm), between 0.100 to 0.050 inches (0.254 to 0.127 cm), or between 0.090 to 0.065 inches (0.229 to 0.1.65 cm): and jumbo size chew treats 10 may have wall thicknesses Wt between 0.350 to 0.065 inches (0.889 to 0.165 cm). between 0.180 to 0.070 inches (0.457 to 0.178 cm), or between 0.110 to 0.075 inches (0.279 to 0.191 cm). In certain embodiments, it should be understood that the wall thicknesses Wt for the inner walls 22 may be different than the wall thicknesses for the outer walls 20. For instance, in some embodiments, the inner walls 22 may have thicknesses Wt that are less than thicknesses Wt of the outer walls 20 in other embodiments, the inner walls 22 may have thicknesses Wt that are greater than thicknesses Wt of the outer walls 20.
Remaining with
With continued reference to
Given the dimensions of the chew treats 10 described above, embodiments of the present invention provide for the Chew treats 10 to have very high surface area to volume ratios. in particular, some embodiments provide for the surface area to volume ratio (as measured by “square inches:cubic inches”) to be at least 12:1, at least 13:1, at least 14:1, at least 15:1, at least 16:1, at least 17:1, at least 18:1, at least 19:1, at least 20:1, at least 21:1, at least 22:1, at least 23:1, at least 24:1, or at least 25:1 . When measured on a “square cm:cubic cm basis, such ratios may be at least 4.7:1 at least 5.1:1, at least 5.5:1 at least 5.9:1, at least 6.3:1, at least 6.7:1, at least 7.1:1, at least 7.5:1, at least 7.9:1, at least 8.3:1, at least 8.7:1, at least 9.1:1, at least 9.4:15, or at least 9.8:1. For comparison, a flat-surfaced. cylindrical object having a diameter of 5 inches and a thickness of 1.5 inches would have a surface area of less than 2:1 (as measured by “square inches:cubic inches”) or 0.8:1 (as measured on a “square cm:cubic cm”).
Furthermore, in some embodiments, a surface of the chew treat 10 may include micro-holes 30 on and/or through at least a portion of the surface of the chew treat 10, as is illustrated in
Embodiments of the present invention provide for the chew treat 10 to be highly palatable and healthy to animals. In particular, the chew treats 10 may be formed with wholesome and nutritional ingredients that enhance the overall health of animals, while maintaining the palatability of the chew treats 10. Highly palatable chew treats 10 will promote the willingness of animals to chew the chew treats 10, which positively impact the cleaning and flossing of the teeth in addition, the ingredients from which the chew treats 10 are formed may reduce halitosis and fecal odor of the animal. Furthermore, one or more of the ingredients included within the chew treat 10 can enhance the shine of the coat, or promote joint health, or enhance the health of the animal's eyes, heart, lung or immune system. 111 further embodiments, ingredients that provide flea and tick repellant functionality can also be included as ingredients of the chew treat 10.
Embodiments of the present invention include a manufacturing process for making a chew treat, such as the chew treats 10 illustrated in the figures. In some embodiments, the process will include stages for nixing, molding, and baking the chew treat 10. For instance, a first stage may include a mixing stage, in which the ingredients of the chew treat 10 are mixed. and combined. In some embodiments, the mixing may be performed by an extrusion process in which the ingredients of the chew treats 10 are placed within an extrusion machine for mixing. In some embodiments, the ingredients that are provided to the extrusion machine for mixing may be in the form of a plurality of pellets. Thereafter, the mixed ingredients can be extruded from the extrusion machine to create an extruded product. However, it should be understood that, in some embodiments, the ingredients may be mixed by other processes, such that an extmsion machine is not required.
Next, a second stage of the process may include baking the mixed ingredients in an injection molding machine mold form to create the chew treat 10. The injection molding machine may include a mold form that has a shape corresponding to the shape of the chew treat 10 to be manufactured. For instance, the mold form may be configured to shape the mixed ingredients to include a first major side and an opposite second major side and a plurality of walls extending from each of the first and second major sides, with the walk defining a plurality of pockets. As such, the mixed ingredients can be introduced into the mold form of the injection molding machine for baking. After baking, the final chew treat 10 can be removed from the mold form for cooling.
In use, the chew treat 10 can be provided to an animal, such as a household pet (e.g., dog or cat), as a nutritional treat. Beneficially, the chew treat 10 also functions to enhance dental efficacy of the animal. For instance, the plurality of inner pockets 16 as defined by the inner walls 22 and/or outer walls 20 provide a strong and efficient chew treat 10 that functions to scrub and floss the animal's teeth as the animal chews the chew treat 10. Enhanced dental efficacy is further achieved with the pockets 16 formed on each of the first and second sides 12, 14 of the chew treat 10, as the animal's teeth will fit within the pockets 16 during chewing and will be scraped by the walls 20, 22 of the pockets, so as to clean the sides of the teeth. Furthermore, the walls 20, 22 are configured to floss between the animal's teeth. Specifically, the walls 20, 22 are sized so as to fit between adjacent teeth of an animal to thereby provide a flossing action between the teeth during chewing. As such, dental efficacy in animals can be enhanced without the need for dental cl caning under anesthesia.
In addition, the enhanced strength of the chew treat 10 of embodiments of the present invention is beneficial because it prolongs chewing time, which functions both to increase the dental cleaning properties of the chew treat 10, and also increases the enjoyment of the chew treat by the pet. Specifically, the chew treat 10, due to its strength and shape, is designed to reduce gulping whole or large chunks of the chew treats 10, which can lodge in the throat or cause issues in the digestive tract of animals. Furthermore, the enhanced strength of the chew treat 10 also reduces potential damage to the chew treat 10 during production, shipping and shelf handling.
Given the above, the chew treat 10 functions to clean, scrub, and floss the animal's teeth. The configuration of the inner and outer walls 22, 20 provide a high surface area to volume ratio for the chew treat 10. which functions to enhance dental efficacy and enhanced digestibility. Furthermore, dental efficacy can be enhanced via the micro holes 30 created through at least a portion of the chew treat's 10 surface. The micro-holes 30 also function to reduce the weight of the chew treat 10 and provide it additional strength characteristics.
In addition, the configuration of the inner and outer walls 22, 20 enhances solubility of the chew treat 10 to thereby speed digestion. Such solubility can be beneficial if the animal does not chew the chew treat 10 adequately. Furthermore, the combination of the wide overall diameter D of the chew treat 10 and the reduced thickness T of the inner and outer walls 22, 20 reduce the potential for esophageal and intestinal blockages of the chew treat 10.
In an example of one embodiment of the present invention, an innovative formula for a pet chew treat 10 with a three inch diameter D was injection molded according to the manufacturing process described above. The chew treat 10 was formed with a hexagonal shape (as illustrated in
The resulting surface area to volume ratio of the prepared chew treat 10 was found to be quite high. Specifically the surface area was found to be 53.947 square inches (348.045 square cm) and the volume was 2.882 cubic inches (47.228 cubic cm), which resulted in a surface area to volume ratio of about 18.7:1 when measured in inches (7.4:1 when measured in cm). To provide a comparison, a smooth cube having a volume of 2.882 would have a surface area to volume rad o of about 4.2:1 when measured in inches (1.7:1 when measured in cm),
Although this invention has been described with its preferred embodiment(s), it is noted that equivalents may be employed and substitutions made herein without departing from the scope of the invention.
The inventors hereby state their intent to rely on the Doctrine of Equivalents to determine and assess the reasonably fair scope of the present invention as it pertains to any apparatus not materially departing from but outside the literal scope of the invention as set forth in the following claims.
This application claims priority to and is a Divisional of U.S. patent application Ser. No. 14/718,377, filed on May 21, 2015, which is based on and claims priority to U.S. Provisional Application Ser. No. 62/001,310, filed on May 21, 2014, each of which is incorporated herein by reference in its entirety.
Number | Date | Country | |
---|---|---|---|
62001310 | May 2014 | US |
Number | Date | Country | |
---|---|---|---|
Parent | 14718377 | May 2015 | US |
Child | 16806385 | US |