The present invention pertains to a motor and a motor driven accessory, such as a pump, combination wherein an accessory is driven by a motor, such as an electric motor or a gasoline engine.
Pumps, such as water pumps and generators, are normally driven by a motor, such as an electric motor or a gasoline engine, and the pump and motor are generally combined as a single unit for portability. Typically, the motor and pump are mounted to a common deck plate or platform and spacers or risers are utilized to properly position the pump and the motor with respect to each other for driving engagement with a belt drive.
Problems encountered with such an arrangement are that the pump cannot be easily positioned relative to the motor. The combination limits the possibilities as to how the pump will be positioned relative to the motor and it is awkward, difficult and expensive to add additional equipment, such as a generator, to the combination for driving engagement with the same motor.
This typical arrangement also makes it difficult for utilizing belt tensioner, and the unit is not compact. Also, because of the fixed arrangement between the pump and the motor relative to the supporting deck plate or platform, drive pulley clearance problems readily occur when initially mounting the motor and pump relative to each other on the deck.
Furthermore, with this prior art arrangement, common felt guard attachments cannot be utilized therefore making the construction expensive, and in addition, the arrangement complicates maintenance surface.
The motor to accessory drive system of the present invention is provided for a motor, such as an electric motor or a gasoline engine, having a housing with a drive shaft end protruding from the motor housing and an accessory, such as a water or hydraulic fluid pump, having a housing with a drive shaft end protruding from the pump housing. A mounting plate is secured at one end to the motor housing and secured at another end to the accessory housing whereby the accessory is supported from the motor. This mounting plate is providing with space apertures with the drive shaft ends respectively protruding through the apertures in parallel alignment. Drive pulleys are mounted on each of the protruding drive shaft ends with the pulleys aligned in a common plane, and an endless belt is provided in driving engagement with the pulleys. The endless belt is typically in the form of an elastic drive belt, but may also be provided in the form of a drive chain.
A belt guard cover may be readily provided to cover the belt and the pulleys by securing the cover directly to the mounting plate.
The mounting plate may be expanded to any desired shape or size, such as triangular, in order to attach additional accessory equipment thereto, such as a generator, to be additionally driven by the motor.
The arrangement also permits the ability to position the pump relative to the motor at the most desired attitude, and provides a combination which is much more compact and lighter than the assembly of the prior art. In addition, it is much easier to provide for belt tensioning, if desired, and there is less problem in providing clearance for the pulleys. It is easy to provide a guard cover for the pulleys and belt drive as the cover may be readily attached to the plate itself.
Other objects and advantages appear hereinafter in the following description and claims. The accompanying drawings show, for the purpose of exemplification, without limiting the scope of the invention or the appended claims, certain practical embodiments of the present invention, wherein:
Referring to the drawings, the motor to accessory drive system 10 of the present invention is illustrated. A drive motor 11, in the form of a gasoline engine in
A mounting plate 17 is secured at one end 18 to motor housing 12 and secured at another end 19 to pump housing 14 respectively by bolts 20 whereby the pump 14 is thereby supported from the motor 11.
Mounting plate 17 is provided with spaced apertures 21 and 22 with the drive shaft ends 13 and 16 respectively protruding through apertures 21 and 22 in parallel alignment. Drive pulleys 23 and 24 are mounted respectively on protruding drive shaft ends 13 and 16 whereby pulleys 23 and 24 are aligned in a common plane. Endless flexible drive belt 25 is in driving engagement with the pulleys 23 and 24. In addition, a belt tensioner 26 is provided to tension belt 25 in a conventional manner by mounting the tensioner to the mounting plate 17.
The entire pulley and belt combination is covered with a protective guard cover 27 (
In the embodiments of
The entire unit is very compact compared to the prior art structures and permits the pump 14 to be mounted at many possible different positions relative to motor 11 whereby the unit is compact, more portable, easier to manufacture, provides less problems with regard to pulley clearance and is easy to provide a guard cover therefore and guard cover attachment.