ADJUSTABLE FRONT AXLE FOR A TOWABLE TRAILER
20210122414 · 2021-04-29
Inventors
Cpc classification
B62D13/06
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
An adjustable front axle for a towed trailer comprising: an axle that comprises an axle shaft and two pivot points, an axle lever; an actuator; two spindles; two spindle blocks; two wheels; and two kingpins. The actuator is configured to rotate the axle shaft and the two spindles from a positive canter angle to a negative canter angle, which causes the camber angle of the wheels to go from negative or neutral to positive. The towed trailer may have a pivotable draw bar.
Claims
1. An adjustable front axle for a towed trailer comprising: an axle that comprises an axle shaft and two pivot points, a right pivot point and a left pivot point; an axle lever; an actuator; two spindles, a right spindle and a left spindle; two spindle blocks, a right spindle block and a left spindle block; two wheels, a right wheel and a left wheel; and two kingpins, a right kingpin and a left kingpin; wherein said axle lever is connected to said axle shaft and is directly or indirectly articulated by said actuator, such that said actuator is configured to rotate said axle shaft and said two spindles from a positive canter angle to a negative canter angle; wherein said actuator is configured to rotate said axle shaft and said two spindles from a positive canter angle to a negative canter angle when a towing vehicle is shifted into reverse; wherein said right pivot point, said right kingpin, and said right spindle block are interconnected to form a hinge that is configured to allow said right wheel to turn; wherein said left pivot point, said left kingpin, and said left spindle block are interconnected to form a hinge that is configured to allow said left wheel to turn; wherein said left spindle is connected to said left wheel and said left spindle block, such that when said left spindle block hingedly turns with respect to said left pivot point, said left spindle and said left wheel also turn; wherein said right spindle is connected to said right wheel and said right spindle block, such that when said right spindle block hingedly turns with respect to said right pivot point, said right spindle and said right wheel also turn; wherein when said axle shaft and said two spindles go from a positive canter angle to a negative canter angle, said camber angle of said two wheels goes from negative or neutral to positive; and wherein when said camber angle of said two wheels is positive, the adjustable front axle is automatically steered in the same direction as said towing vehicle when going in reverse.
2. The adjustable front axle of claim 1, further comprising: two steering stops, a left steering stop and a right steering stop; wherein said left steering stop is connected to said left spindle block and said right steering stop is connected to said right spindle block.
3. The adjustable front axle of claim 2, wherein each of said two steering stops comprises an adjustment portion.
4. The adjustable front axle of claim 1, further comprising: a tie rod; wherein said tie rod is connected, directly or indirectly to said axle shaft, said right spindle block and said left spindle block, such that said two spindle blocks are interconnected and said two wheels turn in the same direction at the same time.
5. The adjustable front axle of claim 4, further comprising: two tie rod connectors, a right tie rod connector and a left tie rod connector; and two tie rod stabilizers, a left tie rod stabilizer and a right tie rod stabilizer; wherein said left tie rod stabilizer and said right tie rod stabilizer are each connected to said tie rod and to said axle shaft; wherein said right tie rod connector is hingedly connected to said tie rod and is connected to said right spindle block; and wherein said left tie rod connector is hingedly connected to said tie rod and is connected to said left spindle block.
6. The adjustable front axle of claim 1, further comprising: a piston; a piston/actuator connector; a piston joint; wherein said piston/actuator connector is connected to said piston and to said actuator; and wherein said piston is connected to said axle lever at said piston joint.
7. The adjustable front axle of claim 6, wherein said actuator is connected to a frame of a towed trailer; wherein said piston is slideably connected to said frame of said towed trailer; and wherein said towed trailer has a pivotable draw bar.
8. An adjustable front axle for a towed trailer comprising: an axle that comprises an axle shaft and two pivot points, a right pivot point and a left pivot point; an axle lever; an actuator; two spindles, a right spindle and a left spindle; two spindle blocks, a right spindle block and a left spindle block; two wheels, a right wheel and a left wheel; two kingpins, a right kingpin and a left kingpin; a tie rod; a piston; a piston/actuator connector; and a piston joint; wherein said tie rod is connected, directly or indirectly to said axle shaft, said right spindle block and said left spindle block, such that said two spindle blocks are interconnected and said two wheels turn in the same direction at the same time; wherein said piston/actuator connector is connected to said piston and to said actuator; wherein said piston is connected to said axle lever at said piston joint; wherein said axle lever is connected to said axle shaft and is articulated by said actuator through said piston, said piston/actuator connector, and said piston joint, such that said actuator is configured to rotate said axle shaft and said two spindles from a positive canter angle to a negative canter angle; wherein said actuator is configured to rotate said axle shaft and said two spindles from a positive canter angle to a negative canter angle when a towing vehicle is shifted into reverse; wherein said right pivot point, said right kingpin, and said right spindle block are interconnected to form a right hinge that is configured to allow said right wheel to turn; wherein said left pivot point, said left kingpin, and said left spindle block are interconnected to form a left hinge that is configured to allow said left wheel to turn; wherein said left spindle is connected to said left wheel and said left spindle block, such that when said left spindle block hingedly turns with respect to said left pivot point, said left spindle and said left wheel also turn; wherein said right spindle is connected to said right wheel and said right spindle block, such that when said right spindle block hingedly turns with respect to said right pivot point, said right spindle and said right wheel also turn; wherein when said axle shaft and said two spindles go from a positive canter angle to a negative canter angle, said camber angle of said two wheels goes from negative or neutral to positive; and wherein when said camber angle of said two wheels is positive, the adjustable front axle is automatically steered in the same direction as said towing vehicle when going in reverse.
9. The adjustable front axle of claim 8, further comprising: two steering stops, a left steering stop and a right steering stop; wherein said left steering stop is connected to said left spindle block and said right steering stop is connected to said right spindle block.
10. The adjustable front axle of claim 9, wherein each of said two steering stops comprises an adjustment portion.
11. The adjustable front axle of claim 8, further comprising: two tie rod connectors, a right tie rod connector and a left tie rod connector; and two tie rod stabilizers, a left tie rod stabilizer and a right tie rod stabilizer; wherein said left tie rod stabilizer and said right tie rod stabilizer are each connected to said tie rod and to said axle shaft; wherein said right tie rod connector is hingedly connected to said tie rod and is connected to said right spindle block; and wherein said left tie rod connector is hingedly connected to said tie rod and is connected to said left spindle block.
12. The adjustable front axle of claim 8, wherein said actuator is connected to a frame of a towed trailer; and wherein said piston is slideably connected to said frame of said towed trailer; and wherein said towed trailer has a pivotable draw bar.
13. An adjustable front axle for a towed trailer comprising: an axle that comprises an axle shaft and two pivot points, a right pivot point and a left pivot point; an axle lever; an actuator; two spindles, a right spindle and a left spindle; two spindle blocks, a right spindle block and a left spindle block; two wheels, a right wheel and a left wheel; two kingpins, a right kingpin and a left kingpin; and wherein said axle lever is connected to said axle shaft and is directly or indirectly articulated by said actuator, such that said actuator is configured to rotate said axle shaft and said two spindles from a positive canter angle in the range of 2 to 10 degrees to a negative canter angle in the range of −2 to −10 degrees; wherein said actuator rotates said axle shaft and said two spindles from a positive canter angle in the range of 2 to 10 degrees to a negative canter angle in the range of −2 to −10 degrees when a towing vehicle is shifted into reverse; wherein said right pivot point, said right kingpin, and said right spindle block are interconnected to form a right hinge that is configured to allow said right wheel to turn; wherein said left pivot point, said left kingpin, and said left spindle block are interconnected to form a left hinge that is configured to allow said left wheel to turn; wherein said left spindle is connected to said left wheel and said left spindle block, such that when said left spindle block hingedly turns with respect to said left pivot point, said left spindle and said left wheel also turn; wherein said right spindle is connected to said right wheel and said right spindle block, such that when said right spindle block hingedly turns with respect to said right pivot point, said right spindle and said right wheel also turn; wherein when said axle shaft and said two spindles go from a positive canter angle to a negative canter angle, said camber angle of said two wheels goes from a range of −2 degrees to neutral to a positive range of 0.5 to 4 degrees; and wherein when said camber angle of said two wheels is positive, the adjustable front axle is automatically steered in the same direction as said towing vehicle when going in reverse.
14. The adjustable front axle of claim 13, further comprising two steering stops, a left steering stop and a right steering stop; wherein said left steering stop is connected to said left spindle block and said right steering stop is connected to said right spindle block.
15. The adjustable front axle of claim 14, wherein each of said two steering stops comprises an adjustment portion.
16. The adjustable front axle of claim 13, further comprising: a tie rod; wherein said tie rod is connected, directly or indirectly to said axle shaft, said right spindle block and said left spindle block, such that said two spindle blocks are interconnected and said two wheels turn in the same direction at the same time.
17. The adjustable front axle of claim 16, further comprising: two tie rod connectors, a right tie rod connector and a left tie rod connector; and two tie rod stabilizers, a left tie rod stabilizer and a right tie rod stabilizer; wherein said left tie rod stabilizer and said right tie rod stabilizer are each connected to said tie rod and to said axle shaft; wherein said right tie rod connector is hingedly connected to said tie rod and is connected to said right spindle block; and wherein said left tie rod connector is hingedly connected to said tie rod and is connected to said left spindle block.
18. The adjustable front axle of claim 13, further comprising: a piston; a piston/actuator connector; a piston joint; wherein said piston/actuator connector is connected to said piston and to said actuator; and wherein said piston is connected to said axle lever at said piston joint.
19. The adjustable front axle of claim 18, wherein said actuator is connected to a frame of a towed trailer; and wherein said piston is slideably connected to said frame of said towed trailer.
20. The adjustable front axle of claim 13, wherein said towed trailer has a pivotable draw bar.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0022] The drawings are of illustrative embodiments. They do not illustrate all embodiments. Other embodiments may be used in addition or instead. Details which may be apparent or unnecessary may be omitted to save space or for more effective illustration. Some embodiments may be practiced with additional components or steps and/or without all of the components or steps which are illustrated. When the same numeral appears in different drawings, it refers to the same or like components or steps.
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DETAILED DESCRIPTION OF THE ILLUSTRATIVE EMBODIMENTS
[0033] Before the present methods and systems are disclosed and described, it is to be understood that the methods and systems are not limited to specific methods, specific components, or to particular implementations. The methods and systems disclosed and described herein may be understood more readily by reference to the following detailed description of preferred embodiments and the examples included therein and to the Figures and their previous and following description. It is also to be understood that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting.
[0034] As used in the specification and the appended claims, the singular forms “a,” “an,” and “the” include plural referents unless the context clearly dictates otherwise. Ranges may be expressed herein as from “about” one particular value, and/or to “about” another particular value. When such a range is expressed, another embodiment includes from the one particular value and/or to the other particular value. Similarly, when values are expressed as approximations, by use of the antecedent “about,” it will be understood that the particular value forms another embodiment. It will be further understood that the endpoints of each of the ranges are significant both in relation to the other endpoint, and independently of the other endpoint.
[0035] “Optional” or “optionally” means that the subsequently described event or circumstance may or may not occur, and that the description includes instances where said event or circumstance occurs and instances where it does not.
[0036] The term “substantially” refers to the complete or nearly complete extent or degree of an action, characteristic, property, state, structure, item, or result. For example, in one embodiment, an object that is “substantially” located within a housing would mean that the object is either completely within a housing or nearly completely within a housing. The exact allowable degree of deviation from absolute completeness may in some cases depend on the specific context. However, generally speaking, the nearness of completion will be so as to have the same overall result as if absolute and total completion were obtained. The use of “substantially” is also equally applicable when used in a negative connotation to refer to the complete or near complete lack of an action, characteristic, property, state, structure, item or result.
[0037] As used herein, the terms “approximately” and “about” generally refer to a deviance of within 5% of the indicated number or range of numbers. In one embodiment, the term “approximately” and “about” may refer to a deviance of between 0.001-10% from the indicated number or range of numbers. Unless otherwise stated, all measurements, values, ratings, positions, magnitudes, sizes, locations, and other specifications that are set forth in this specification, including in the claims that follow, are approximate, not exact. They are intended to have a reasonable range that is consistent with the functions to which they relate and with what is customary in the art to which they pertain.
[0038] Throughout the description and claims of this specification, the word “comprise” and variations of the word, such as “comprising” and “comprises,” means “including but not limited to,” and is not intended to exclude, for example, other components, integers or steps. “Exemplary” means “an example of” and is not intended to convey an indication of a preferred or ideal embodiment. “Such as” is not used in a restrictive sense, but for explanatory purposes.
[0039] As used herein, the term “towing vehicle” refers to any vehicle that may be used in connection with a towed trailer. The term “towing vehicle” may include trucks, smaller personal automobiles, or any other vehicle capable of connecting with, or capable of being modified to connect with, a towed trailer.
[0040] As used herein, the term “towed trailer” refers to any wheeled trailer that may be towed by a towing vehicle after being joined by some form of trailer hitch. It is to be understood that vehicles may similarly be towed, as well as trailers, under the adjustable axle of the present disclosure.
[0041] As used herein, the term “camber angle” refers to the angle made by the wheels of a vehicle relative to the road surface. The camber angle is the angle between the vertical axis of the wheels used for steering and the vertical axis of the vehicle when viewed from the front or rear. If the top of the wheel is farther out than the bottom (that is, away from the axle), it is called positive camber; if the bottom of the wheel is farther out than the top, it is called negative camber.
[0042] As used herein, the term caster angle or castor angle is the angular displacement of the steering axis from the vertical axis of a steered wheel in a vehicle or towed trailer, measured in the longitudinal direction. It is the angle between the pivot line (in a car an imaginary line that runs through the center of the upper ball joint to the center of the lower ball joint) and vertical.
[0043] Disclosed are components that may be used to perform the disclosed methods and systems. These and other components are disclosed herein, and it is understood that when combinations, subsets, interactions, groups, etc. of these components are disclosed that while specific reference of each various individual and collective combinations and permutation of these may not be explicitly disclosed, each is specifically contemplated and described herein, for all methods and systems. This applies to all embodiments of this application including, but not limited to, steps in disclosed methods. Thus, if there are a variety of additional steps that may be performed it is understood that each of these additional steps may be performed with any specific embodiment or combination of embodiments of the disclosed methods.
[0044] These and other features, and characteristics of the present technology, as well as the methods of operation and functions of the related elements of structure and the combination of parts and economies of manufacture, will become more apparent upon consideration of the following description and the appended claims with reference to the accompanying drawings, all of which form a part of this specification, wherein like reference numerals designate corresponding parts in the various figures. It is to be expressly understood, however, that the drawings are for the purpose of illustration and description only and are not intended as a definition of the limits of the disclosure.
[0045] The previous description of the disclosed embodiments is provided to enable any person skilled in the art to make or use the present disclosure. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the generic principles defined herein may be applied to other embodiments without departing from the spirit or scope of the disclosure. Thus, the present disclosure is not intended to be limited to the embodiments shown herein but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.
[0046] Various embodiments are now described with reference to the drawings. In the following description, for purposes of explanation, numerous specific details are set forth in order to provide a thorough understanding of one or more embodiments. It may be evident, however, that the various embodiments may be practiced without these specific details.
[0047] In accordance with the embodiments disclosed herein, the present disclosure is directed to an adjustable front axle for a towable trailer. The adjustable front axle of the present disclosure serves as a convenient, effective way to improve the safety and handling of driving a trailer, especially while driving in reverse. The position of the adjustable front axle of the present disclosure may be selectively adjusted based on whether the towing vehicle is operating in forward drive or reverse. More specifically, the present disclosure provides a convenient manner to adjust the caster and camber angles of the front axle of a towed trailer to optimize the safety and handling of towing a trailer regardless of whether the driver is operating the towing vehicle in forward drive or reverse.
[0048] Before the present methods and systems are disclosed and described in detail, it is to be understood that the methods and systems are not limited to specific methods, specific components, or to particular implementations. It is also to be understood that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting.
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[0052] Another benefit of the system of the present disclosure is that the trailer has two axles, which allows a greater and more evenly balanced payload and reduces stress on the hitch 209.
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[0056] The tie rod stabilizers are 611, 612 may be springs (compression, torsion, tension, volute or leaf) or simply a non-spring telescopic rod that allows the axle to be rotated by the actuator 420, without forcing the spindle blocks 620, 621 and/or tie rod 610 to be overly torqued.
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[0058] The two block caps 625, 728 are preferably made from aluminum and they hold the kingpin 725 in place and, when removed, allow access to the kingpin 725. The vertical stabilizer bolt engages with the kingpin 725 to further secure the kingpin 725 in place and secure the axle/shaft and spindle block 621 and related axle portions.
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[0062] The previous description of the disclosed embodiments is provided to enable any person skilled in the art to make or use the present disclosure. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the generic principles defined herein may be applied to other embodiments without departing from the spirit or scope of the disclosure. Thus, the present disclosure is not intended to be limited to the embodiments shown herein but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.
[0063] Unless otherwise expressly stated, it is in no way intended that any method set forth herein be construed as requiring that its steps be performed in a specific order. Accordingly, where a method claim does not actually recite an order to be followed by its steps or it is not otherwise specifically stated in the claims or descriptions that the steps are to be limited to a specific order, it is in no way intended that an order be inferred, in any respect. This holds for any possible non-express basis for interpretation, including: matters of logic with respect to arrangement of steps or operational flow; plain meaning derived from grammatical organization or punctuation; the number or type of embodiments described in the specification.
[0064] It will be apparent to those of ordinary skill in the art that various modifications and variations may be made without departing from the scope or spirit of the present disclosure. Other embodiments will be apparent to those skilled in the art from consideration of the specification and practice disclosed herein. It is intended that the specification and examples be considered as exemplary only, with a true scope and spirit being indicated by the following claims.