General Description
The preferred embodiment of the invention shown in the drawings and described hereinafter comprises a trailer tongue mounted upon a trailer, including an adjustable pivotal strut and caster mounted medially of said tongue frame, so that the female hitch member on the trailer overlies the male member attached to a vehicle; and a means for locking the strut in raised position for movement of the trailer while not attached to a vehicle.
It has been the custom and practice in the trailer jacking art to provide trailer tongue frames with a manually operated jack, or a cable and winch which elevates the tongue frame to a level so that the female member of a ball hitch may be raised over the male member, or the tongue frame lowered so that both hitch members engage.
However, the use of a manual jack requires the steps of activating said manual jack so that the trailer tongue frame is sufficiently elevated to receive the male member, and then driving the towing vehicle so that the female member overlies the male member. This is not only time-consuming, but produces much frustration, because if the members are not in precise alignment, the jacking frame cannot be lowered thereupon.
Moreover, in cases where a winch and cable are employed to raise the tongue frame over the ball hitch, often times the frame cannot be raised high enough to overlie the ball hitch, if the vehicle or material being towed is too heavy to allow the tongue frame to be manually cranked. Further, such a winch and cable arrangement may prove dangerous to the user, insofar as the brake on the winch may fail and the winch handle fly back and injure the user, who must be in proximity to operate such handle.
Further, there is always the danger, with both conventional trailer tongues and those provided with a winch, that the tongue or trailer may fall upon the user as he attempts to elevate the same over the ball hitch.
Hence, it is an object of the invention to provide an improved trailer jacking device which employs a pivotal strut which raises the tongue frame above the ball hitch by the simple expedient of driving the towing vehicle forward.
It is an additional object of this invention to provide an improved trailer jacking device which allows easy connection with a towing vehicle by providing a tongue frame with a pivotal strut which pivots forward as the towing vehicle is driven backwards in such a fashion that the female hitch member descends to rest securely on its male counterpart.
Yet another advantage of the present invention is to provide a trailer jacking device which raises and lowers a tongue frame without the necessity of the user jacking the frame manually or cranking a winch and cable arrangement.
It is a further object of this invention to provide an improved jacking system which obviates the presence of the user in proximity to the trailer when it is being raised, thus enhancing his safety.
The present invention is intended primarily for use with recreational vehicles such as boat and house trailers, and other recreational vehicles.
In the Drawings
The objects, features, and advantages of the present invention will be more apparent after referring to the following specifications and drawings, in which:
FIG. 1 is a side elevation of a towing vehicle, ball hitch, and trailer tongue frame with adjustable pivotal strut stowed out of the way after the female hitch member has come to rest on its male counterpart carried by the towing vehicle.
FIG. 2 is a side elevation showing the adjustable strut and caster dropped from its stowed position onto the ground before unhitching, and after installation of the shoe which locks the wheel so that it cannot rotate.
FIG. 3 is a side elevation which shows the towing vehicle moving foward, thus pivoting the strut and caster backwards, and raising the female hitch member, thus disengaging the trailer.
FIG. 4 is a side elevation showing trailer tongue frame, adjustable pivotal strut, caster, brakes, and the like in a close-up view.
FIG. 5 is a plan view of the trailer tongue frame looking down upon the pivotal strut and showing its medial position with respect thereto.
FIG. 6 is a plan view of the trailer tongue frame engaging the hitch guide as the vehicle is moved backwardly toward the trailer to engage the same.
FIG. 7 is a plan view illustrating engagement of the trailer tongue frame with the ball hitch.
FIG. 8 is a side elevation and partial section view showing the trailer tongue frame engaged with the ball hitch.
The invention herein described generally includes a trailer tongue frame 5, a female hitch member 10 provided at the apex of said frame, a strut 15 mounted medially of said frame, a caster 20 provided at one end of said strut, and a wheel 25 mounted on said caster. A shoe 85 having a depending pointed position 95 is attachable to caster 20.
Referring particularly to FIG. 5, it will be seen that trailer tongue frame 5 is cross-braced by members 30 and 35. Between said members, at right angles, is constructed housing 40 composed of facing parallel walls of heavy steel. Housing 40 is further provided with hole 45.
Referring to FIG. 4, it will be seen that a strut 15 is provided with apertures 51 through 60, drilled to substantially the same diameter as hole 45. Shaft 65 may be placed in hole 45, and through any one of the several apertures 51 through 60 provided in strut 15, thereby pivotally mounting said strut within housing 40.
Referring more particularly to FIG. 4, it will be seen that caster 20 is provided at one end of strut 15. Caster 20 is further provided with wheel 25 joined to said caster by shaft 27. Wheel 25 is rotatable with respect to caster 20, and caster 20 is so designed that it may swivel about strut 15. Wheel 25 is firmly locked in rigid position when shoe 85 is attached thereto by insertion of pin 100 at the end of chain 102 through corresponding apertures 105, 110 in the shoe and caster respectively. When shoe 85 is so installed, pin 100 passes between the spokes of the wheel to prevent rotation of the wheel.
Now that various elements of the structure have been generally set forth, its operation will be perceived. The height of trailer tongue frame 5 after strut 15 has been pivoted to vertical position will depend which aperture 51 through 60 has been selected. It will be understood that frame 5 must be initially raised by means of a manual jack or other implement to select the aperture 51 through 60 along the shaft of strut 15 requisite to raise jacking frame 5 a preselected distance above hitch member 80 when strut 15 has been fixed in vertical position past its pivot point.
Referring to FIG. 3, it will be seen that as a towing vehicle 4 backs toward jacking frame 5, male hitch member 80 will underlie female hitch member 10. It will be understood there are different ways by which bolt 90 may be activated to secure the hitch. Once towing vehicle 4 gives a movement to jacking frame 5, strut 15 will pivot.
It will be observed that the path of travel of strut 15 with respect to frame 5 is impeded approximately 15 degrees past its vertical pivot point position by means of cross-brace 35. It will be further observed that after the appropriate height of frame 5 has been selected, pin 67 may be placed in hole 47 provided in housing 40 beneath hole 45. Thus, after strut 15 has been positioned between both walls of housing 40 so that frame 5 is raised to the desired height, strut 15 can be prevented from pivoting forward by means of insertion of pin 67 in hole 47 and through one of the remaining vacant apertures 51 through 60 provided in strut 15. The end of shaft 65 may be provided with handle 70 and chain 75 to aid in shaft 65's easy insertion and withdrawal from hole 45.
When towing vehicle 4 is backed up, the V-shaped hitch guide 12 attached to vehicle 4 and partially surrounding male hitch member 80 will contact female hitch member 10 and center it, as illustrated in FIG. 6 and 7. When the member 10 is centered, strut 15 will pivot forward, lowering female hitch member 10 upon male hitch member 80, as shown in FIG. 8. Since the hitch members will be in axial alignment, and since now female hitch member 10 overlies male hitch member 80, bolt 90 may be activated to secure the hitch. It will be noted that, before towing vehicle 4 is driven backwards, shoe 85 is attached to caster 20 so that wheel 25 cannot rotate. Also, the depending pointed portion 95 of shoe 85 digs into the ground when strut 15 is at an angle so that the locked wheel cannot slide along the ground. It will be observed that, once strut 15 has swung forward, it may be pivoted upward into stowage position as seen in FIG. 1.
To effect separation of hitch members, bolt 90 is deactivated, shoe 85 is attached and strut 15 lowered so that the pointed portion 95 of shoe 85 rests upon the ground. Towing vehicle 4 is simply driven forward and, as it is so driven, strut 15 will pivot backward, raising female hitch member 10 of frame 5 above male hitch member 80 of towing vehicle 4. As noted, the backward pivotal movement of strut 15 will be impeded by cross-brace 35 at which time pin 67 may be inserted to rigidly hold strut 15. In this configuration shoe 85 can be detached for movement of the trailer independent of vehicle 4 using wheel 25 which is free to rotate.
It will be observed that when frame 5 is motivated to and fro by towing vehicle 4, the path of frame 5 will describe a segment of an arc with respect to vehicle 4, said arc having its center where strut 15 meets the ground.
While one embodiment of the invention has been shown and described, it will be obvious that other adaptations and modifications can be made within the true spirit and scope of the invention.