SLASHER SAW SYSTEM
20200282587 ยท 2020-09-10
Inventors
Cpc classification
B27B5/185
PERFORMING OPERATIONS; TRANSPORTING
B23D47/12
PERFORMING OPERATIONS; TRANSPORTING
B27B5/29
PERFORMING OPERATIONS; TRANSPORTING
International classification
B27B5/29
PERFORMING OPERATIONS; TRANSPORTING
B27B1/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A slasher saw system connectable to a source of hydraulic power which requires only three hydraulic lines for power and operation. First, a pressure/power hydraulic line is actuated to turn the saw on and bring the saw down to cut through a stack of timber. Second, the hydraulic pressure/power to bring the saw down is actually provided via back-pressure from a return line returning hydraulic fluid to the source of hydraulic power from the saw. Third, a separate line is used to power the hydraulic cylinder used to raise the saw arm again.
Claims
1. A hydraulically powered slasher saw system adapted for connection by hydraulic lines to a source of hydraulic power, comprising: a saw blade actuated by a saw blade motor, which saw blade is raised in order to position a load of wood for cutting and lowered to cut through said load of wood; a first hydraulic fluid input line connectable between said source of hydraulic power and the saw blade motor for powering said saw motor; a second hydraulic fluid output line connectable between said saw blade motor and said source of hydraulic power for recirculating hydraulic fluid from said saw blade motor to said source of hydraulic power; a third hydraulic fluid line connectable between said source of hydraulic power and a mechanism for raising the saw blade via hydraulic fluid input from said first hydraulic fluid line; and a fourth hydraulic fluid line connected by a T juncture to said second hydraulic fluid output line and running between said T juncture and a mechanism for lowering said saw blade via hydraulic fluid input from said hydraulic fluid output line.
2. The slasher saw system of claim 1, wherein at least one of: the mechanism for raising the saw blade is a hydraulic cylinder receiving fluid via said first hydraulic fluid line, the mechanism for lowering the saw blade is a hydraulic cylinder receiving fluid via said second hydraulic fluid line, the mechanism for raising the saw blade is one side of a hydraulic cylinder receiving fluid via said first hydraulic fluid line and the mechanism for lowering the saw blade is an other side of said hydraulic cylinder receiving fluid via said second hydraulic fluid line, and the saw blade is a circular saw blade and is mounted to the motor in such a way as to continue freely rotating in its direction of motion even when said motor is not being actuated by fluid received via said first hydraulic fluid line.
3. The slasher saw system of claim 1, further comprising a fluid flow restriction in the second hydraulic fluid line intermediate the source for hydraulic power and said T juncture, which fluid flow restriction creates back pressure forcing fluid through the fourth hydraulic fluid line via said T juncture to the mechanism for lowering said saw blade.
4. The slasher saw system of claim 2, further comprising a fluid flow restriction in the second hydraulic fluid line intermediate the source for hydraulic power and said T juncture, which fluid flow restriction creates back pressure forcing fluid through the fourth hydraulic fluid line via said T juncture to the mechanism for lowering said saw blade.
5. The slasher saw system of claim 1, further comprising at least one of: a fluid flow restriction in the third hydraulic fluid line, which fluid flow restriction regulates and slows the speed of fluid flow into said mechanism for raising said saw blade so as to cause said saw blade to be raised at a slower pace, and a fluid flow restriction in the fourth hydraulic fluid line intermediate said T juncture and said mechanism for lowering said saw blade, which fluid flow restriction regulates and slows the speed of fluid flow into said mechanism for lowering said saw blade so as to cause said saw blade to be lowered at a slower pace.
6. The slasher saw system of claim 2, further comprising at least one of: a fluid flow restriction in the third hydraulic fluid line, which fluid flow restriction regulates and slows the speed of fluid flow into said mechanism for raising said saw blade so as to cause said saw blade to be raised at a slower pace, and a fluid flow restriction in the fourth hydraulic fluid line intermediate said T juncture and said mechanism for lowering said saw blade, which fluid flow restriction regulates and slows the speed of fluid flow into said mechanism for lowering said saw blade so as to cause said saw blade to be lowered at a slower pace.
7. The slasher saw system of claim 3, further comprising at least one of: a fluid flow restriction in the third hydraulic fluid line, which fluid flow restriction regulates and slows the speed of fluid flow into said mechanism for raising said saw blade so as to cause said saw blade to be raised at a slower pace, and a fluid flow restriction in the fourth hydraulic fluid line intermediate said T juncture and said mechanism for lowering said saw blade, which fluid flow restriction regulates and slows the speed of fluid flow into said mechanism for lowering said saw blade so as to cause said saw blade to be lowered at a slower pace.
8. The slasher saw system of claim 4, farther comprising at least one of: a fluid flow restriction in the third hydraulic fluid line, which fluid flow restriction regulates and slows the speed of fluid flow into said mechanism for raising said saw blade so as to cause said saw blade to be raised at a slower pace, and a fluid flow restriction in the fourth hydraulic fluid line intermediate said T junction and said mechanism for lowering said saw blade, which fluid flow restriction regulates and slows the speed of fluid flow into said mechanism for lowering said saw blade so as to cause said saw blade to be lowered at a slower pace.
9. The slasher saw system of claim 1, further comprising a one-way fluid line between a fluid output for the saw blade motor and a fluid input for the saw blade motor, wherein said one way fluid line allows fluid to flow only from the fluid output to the fluid input for said saw blade motor.
10. The slasher saw system of claim 2, further comprising a one-way fluid line between a fluid output for the saw blade motor and a fluid input for the saw blade motor, wherein said one way fluid line allows fluid to flow only from the fluid output to the fluid input for said saw blade motor.
11. The slasher saw system of claim 3, further comprising a one-way fluid line between a fluid output for the saw blade motor and a fluid input for the saw blade motor, wherein said one way fluid line allows fluid to flow only from the fluid output to the fluid input for said saw blade motor.
12. The slasher saw system of claim 4, further comprising one-way fluid line between a fluid output for the saw blade motor and a fluid input for the saw blade motor, wherein said one way fluid line allows fluid to flow only from the fluid output to the fluid input for said saw blade motor.
13. The slasher saw system of claim 5, further comprising a one-way fluid line between a fluid output for the saw blade motor and a fluid input for the saw blade motor, wherein said one way fluid line allows fluid to flow only from the fluid output to the fluid input for said saw blade motor.
14. The slasher saw system of claim 6, further comprising a of fluid line between a fluid output for the saw blade motor and a fluid input for the saw blade motor, wherein said one way fluid line allows fluid to flow only from the fluid output to the fluid input for said saw blade motor.
15. The slasher saw system of claim 7, further comprising a one-way fluid line between a fluid output for the saw blade motor and a fluid input for the saw blade motor, wherein said one way fluid line allows fluid to flow only from the fluid output to the fluid input for said saw blade motor.
16. The slasher saw system of claim 8, further comprising a one-way fluid line between a fluid output for the saw blade motor and a fluid input for the saw blade motor, wherein said one way fluid line allows fluid to flow only from the fluid output to the fluid input for said saw blade motor.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0008] The novel features believed to be characteristic of this invention are set forth with particularity in the appended claims. The invention itself, however, both as to its organization and method of operation, together with further object and advantages thereof, may best be understood by reference to the following description taken in connection with the accompanying drawings in which:
[0009]
[0010]
[0011]
[0012]
[0013]
[0014]
[0015]
[0016]
[0017]
[0018]
[0019]
[0020]
[0021]
DESCRIPTION
[0022]
[0023] To this point, in terms of the numbered and described parts above, the slasher saw assembly of the invention resembles prior art slasher saw assemblies. However, as best seen in
[0024] The foregoing factors create a circular saw system that functions on the lower powered, less expensive power package normally used with a bar saw. For operational purposes only two buttons (or activation switches) on the loader are necessary. A first button/switch on the loader controls (not shown) that sends fluid to the up side of cylinder 15 via line 3, which has a narrowed orifice or flow control 16A between the hydraulic cylinder 15 and the loader. (This orifice or flow control 16A acts as a flow restrictor and makes the saw 10 come back into the pocket, 13 smoothly). A second button/switch on the loader controls (not shown) sends fluid through power line 1 to bring saw 5 up to speed for cutting and after a brief pause for back-pressure to build in line 2 (caused by a flow restricting orifice or flow control 16B between the T junction 9 and the loader) forcing fluid into and through line 4 to the down side of cylinder 15, which has an orifice or flow control 16C between the hydraulic cylinder 15 and the T junction 9. (This flow restricting orifice or flow control 16C makes the saw 10 go down at the right speed to cut through the load of wood in cradle 8).
[0025] As can be discerned from the previous discussion, back pressure created by strategically placed flow restricting orifices or flow controls 16A, 16B, 16C is critical to the function of our invention. (See, generally,
[0026] In terms of actual operator activation and use, the power supplied through the first button (sending fluid into cylinder 15 to raise the saw 5) is only present when the first button/switch is being pushed. Consequently, when it is released and the second button is pushed to bring saw 5 up to speed, backpressure builds through lines 2 and 4 and pushes fluid into the down side of hydraulic cylinder 15 (bringing the saw 5 down for sawing purposes). Hydraulic fluid can be evacuated from the raise side of cylinder 15 as fluid pressure builds in the raise side of the cylinder 15 and fluid power is no longer being supplied via line 3 to this side of the hydraulic cylinder. The opposite happens when the first button is pushed and the second button is no longer being pushed.
[0027]
PARTS LIST
[0028] 1 saw power hose/line running from loader to saw motor [0029] 2 saw return hose/line running from saw motor to loader [0030] 3 saw raise hose/line running from loader to hydraulic cylinder [0031] 4 saw lower hose/line running from T junction in line 2 in my invention rather than from the loader as in prior art [0032] 5 saw motor [0033] 5B motor drive shaft [0034] 6 recirculation line between motor input via line 1 and motor output line 2 [0035] 7 check valve in recirculation line permitting only flow from output to input side of motor [0036] 8 cradle or trough [0037] 9 T junction [0038] 10 circular saw blade [0039] 11 pivot for circular saw [0040] 12 frame for circular saw assembly [0041] 13 pocket (location of circular saw in lifted position [0042] 14A frame upright defining pocket [0043] 14B frame upright defining pocket [0044] 15 hydraulic cylinder for raising/lowering circular saw [0045] 15A piston arm connecting hydraulic cylinder to circular saw assembly [0046] 16A Restricting orifice or flow control in line 3 hydraulic cylinder and loader [0047] 16B Restricting orifice or flow control in line 2 between between T and loader [0048] 16C Restricting orifice flow control in line 4 between between T and hydraulic cylinder [0049] 17 Mandrel housing [0050] 17A Mandrel (saw facing end) [0051] 17B Mandrel (motor interface flange) [0052] 17C Mandrel housing interior [0053] 18 mandrel shaft [0054] 18A Mandrel shaft (saw interface) [0055] 18B Mandrel shaft (motor interface)
[0056] In view of the foregoing, it should be clear that numerous changes and variations can be made without exceeding the scope of the inventive concept outlined. Accordingly, it is to be understood that the embodiment(s) of the invention herein described is/are merely illustrative of the application of the principles of the invention. Reference herein to details of the illustrated embodiment(s) is not intended to limit the scope of the claims when filed, which will recite those features regarded as essential to the invention.