Spread control mechanism
09820430 · 2017-11-21
Assignee
Inventors
Cpc classification
A01C17/008
HUMAN NECESSITIES
International classification
Abstract
A spread control assembly is provided that includes a spread control mechanism and a shut-off adjustment plate attached to a particulate dispersing apparatus. The shut-off adjustment plate includes multiple exit openings that facilitate the dispersing of particulate material. The spread control mechanism pivotally attaches to the shut-off adjustment plate and includes multiple paddles configured to cover at least one of the exit openings in the shut-off adjustment plate when the spread control mechanism is in an activated position.
Claims
1. A spread control assembly comprising: a shut-off adjustment plate attached to a particulate dispersing apparatus, the shut-off adjustment plate including a plurality of exit openings to facilitate the dispersing of particulate material; a spread control mechanism pivotally attached to the shut-off adjustment plate via a fastener that extends through a curved slot defined in the spread control mechanism, the spread control mechanism having a generally arcuate configuration and including a plurality of paddle-like segments configured to cover at least one of the plurality of exit openings in the shut-off adjustment plate when the spread control mechanism is in an activated position; and a pivot mechanism configured to facilitate a pivoting of the spread control mechanism with respect to the shut-off adjustment plate.
2. The spread control assembly of claim 1, wherein when the spread control mechanism is in the activated state the paddle-like segments impede the dispersing of the particulate material through the at least one of the plurality exit openings thereby impeding particulate material from being dispersed out of a side of the spread control mechanism while simultaneously reducing a dispersed amount of the particulate material thereby minimizing particulate material overuse and waste.
3. The spread control assembly of claim 1, wherein the spread control mechanism includes a curved pivot engagement portion that engages the pivot mechanism.
4. The spread control assembly of claim 1, wherein a number of the plurality of exit openings is at least one greater than a number of plurality of paddle-like segments.
5. The spread control assembly of claim 1, wherein the spread control mechanism further includes a handle attached to an end of one of the plurality of paddle-like segments.
6. The spread control assembly of claim 1, wherein the spread control mechanism further includes a slot defined therein and wherein a fastener extends through the slot and engages the shut-off adjustment plate to slidably attach the spread control mechanism to the shut-off adjustment plate.
7. A particulate material dispersing apparatus comprising: a hopper attached to a frame; a spread control assembly attached to a bottom of the hopper that when in an activated position alters a material spread pattern of the particulate material, wherein the spread control assembly includes a shut-off adjustment plate that includes a plurality of exit openings that facilitate the dispersing of the particulate material and a spread control mechanism pivotally attached to the shut-off adjustment plate via a fastener that extends through a curved slot defined in the spread control mechanism, the spread control mechanism including a plurality of paddle-like segments configured to cover at least one of the plurality of exit openings in the shut-off adjustment plate when the spread control mechanism is in an activated position; a pivot mechanism configured to facilitate a pivoting of the spread control mechanism with respect to the shut-off adjustment plate; and a dispersing mechanism disposed below the spread control assembly.
8. The particulate material dispersing apparatus of claim 7, wherein when the spread control assembly is in the activated position, the altered material spread pattern includes impeding the particulate material from being dispersed through one or more exit openings defined in the spread control assembly thereby impeding the particulate material from being dispersed out of a side of the particulate material dispensing apparatus while simultaneously reducing a dispersed amount of the particulate material thereby minimizing particulate material overuse and waste.
9. The particulate material dispersing of claim 7, wherein the spread control mechanism includes a curved pivot engagement portion that engages the pivot mechanism.
10. The particulate material dispersing of claim 7, wherein a number of the plurality of exit openings is at least one greater than a number of plurality of paddle-like segments.
11. The particulate material dispersing of claim 7, wherein the spread control mechanism further includes a handle attached to an end of one of the plurality of paddle-like segments.
12. The particulate material dispersing of claim 7, wherein the spread control mechanism further includes a slot defined therein and wherein a fastener extends through the slot and engages the shut-off adjustment plate to slidably attach the spread control mechanism to the shut-off adjustment plate.
13. A method of dispersing particulate material comprising: providing a particulate material dispensing apparatus having a spread control assembly comprising a spread control mechanism pivotally attached to a shut-off adjustment plate via a fastener that extends through a curved slot defined in the spread control mechanism; pivoting the spread control mechanism with respect to the shut-off adjustment plate via a pivot mechanism thereby placing the spread control assembly in an activated position; dispersing particulate material in a direction to a side opposite of at least one covered exit opening; impeding, simultaneously, dispersing particulate material in a direction that corresponds to a side of the at least one covered exit opening; moving the spread control mechanism to a de-activated position; and dispersing the particulate material in all directions.
14. The method of claim 13, wherein moving the spread control mechanism of the spread control assembly to an activated position includes covering the at least one exit opening of a plurality of exit openings defined in the shut-off adjustment plate.
15. The method of claim 14, wherein moving the spread control mechanism of the spread control assembly to a de-activated position includes uncovering the at least one exit opening of the plurality of exit openings defined in the shut-off adjustment plate.
16. The method of claim 15, wherein the number of plurality of exit openings is at least one greater than the number of covered exit openings when the spread control mechanism is in the activated position.
17. The method of claim 13, wherein prior to moving the spread control mechanism to a de-activated position, the method further comprising reducing, simultaneously, an amount of dispersed particulate material.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
(29) The innovation is now described with reference to the drawings, wherein like reference numerals are used to refer to like elements throughout. In the following description, for purposes of explanation, numerous specific details are set forth in order to provide a thorough understanding of the subject innovation. It may be evident, however, that the innovation can be practiced without these specific details.
(30) While specific characteristics are described herein (e.g., thickness), it is to be understood that the features, functions and benefits of the innovation can employ characteristics that vary from those described herein. These alternatives are to be included within the scope of the innovation and claims appended hereto.
(31) While, for purposes of simplicity of explanation, the one or more methodologies shown herein, e.g., in the form of a flow chart, are shown and described as a series of acts, it is to be understood and appreciated that the subject innovation is not limited by the order of acts, as some acts may, in accordance with the innovation, occur in a different order and/or concurrently with other acts from that shown and described herein. For example, those skilled in the art will understand and appreciate that a methodology could alternatively be represented as a series of interrelated states or events, such as in a state diagram. Moreover, not all illustrated acts may be required to implement a methodology in accordance with the innovation.
(32) Disclosed herein is an innovative spread control assembly for use on a particulate dispersing apparatus that when activated impedes particulate material from being dispersed out one side of the particulate apparatus in accordance with an aspect of the innovation. When activated, the assembly overcomes the aforementioned disadvantage by simultaneously regulating a material flow rate of the particulate material, which impedes over treatment of the lawn and wasted material. Thus, the spread control assembly facilitates the reduction of particulate material that is dispersed onto non-lawn areas (e.g., landscape beds, driveways, etc.) while simultaneously regulating the material flow rate.
(33) With reference now to the figures,
(34) Still referring to
(35) In the example embodiment illustrated in the figures, the hopper 104A, 104B has a rectangular type shape, as viewed from the top, but it is to be understood that the shape of the hopper 104A, 104B can be any shape, such as but not limited to square, circular, etc. An opening (not shown) is defined in a bottom of the hopper 104A, 104B that facilitates the dispersing of the particulate material in association with the innovative spread control assembly 200.
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(37) Thus, the spread control assembly 200 is configured to alter a material spread pattern of the particulate material dispersing apparatus 100A, 100B. More specifically, the spread control assembly 200, when activated, impedes material from being dispersed through one or more exit openings defined in a shut-off adjustment plate explained further below. Therefore, a reduced amount of material is dispersed through only those remaining exit openings not covered by a spread control mechanism thereby eliminating product overuse and waste.
(38) In addition, activation of the spread control assembly 200 causes the material to be dispersed outward from one side of the particulate material dispersing apparatus 100A, 100B while impeding material from being dispersed out an opposite side of the particulate material dispersing apparatus 100A, 100B. Thus, any material dispersed in the altered-spread pattern is impeded from spreading onto non-lawn areas, such as landscape beds, driveways, walkways, etc. It is to be understood that the spread control assembly 200 can be configured to impede material dispersion from either side of the dispersing apparatus 100B, 100B. Thus in one example embodiment, the material may be dispersed from a first side (e.g., left or right) and impeded from being dispersed from a second side (e.g., right of left). Therefore, the example embodiment described herein and illustrated in the figures is for illustrative purposes only and is not intended to limit the scope of the innovation.
(39) As illustrated in
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(42) There are three exit openings 402 defined in the shut-off adjustment plate 400 in the example embodiment illustrated in the figures. It is to be understood, however, that there can be any number of exit openings 402 defined in the exit plate 400. In one example embodiment, the number of exit openings 402 is at least one greater than a number of paddles 304, 306. Thus, when the spread control mechanism 300 is activated all but one exit opening 402 will be covered thereby impeding any material from exiting the covered exit openings 402. Therefore, a reduced amount of material will exit the remaining exit openings 402, which directs the material to exit one side of the particulate material dispersing apparatus 100A, 100B.
(43) When the spread control mechanism 300 is in a non-activated position, as shown in
(44) The pivot mechanism 500 is circular and is integrated into the shut-off adjustment plate 400. The curved pivot engagement portion 308 of the spread control mechanism 300 engages the pivot mechanism 500 to facilitate pivoting of the spread control mechanism 300 with respect to the shut-off adjustment plate 400. Thus, in order to pivot the spread control mechanism 300, the user pivots or rotates the user pivots or rotates the spread control mechanism 300 about the pivot mechanism 500 to the desired position.
(45) Although, the spread control assembly illustrated in the figures is configured to disperse material out a particular side of the particulate dispersing apparatus, it is to be understood that in an alternate embodiment, the spread control assembly can be configured to disperse particulate material out an opposite side of the particulate dispersing apparatus.
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(48) What has been described above includes examples of the innovation. It is, of course, not possible to describe every conceivable combination of components or methodologies for purposes of describing the subject innovation, but one of ordinary skill in the art may recognize that many further combinations and permutations of the innovation are possible. Accordingly, the innovation is intended to embrace all such alterations, modifications and variations that fall within the spirit and scope of the appended claims. Furthermore, to the extent that the term “includes” is used in either the detailed description or the claims, such term is intended to be inclusive in a manner similar to the term “comprising” as “comprising” is interpreted when employed as a transitional word in a claim.