Cutting device
11084109 · 2021-08-10
Assignee
Inventors
Cpc classification
International classification
Abstract
The present invention relates to a cutting device for use in cutting a collar which is mounted on a bolt in half, the cutting device comprising: ⋅ a mouth (16) for receiving the portion of the collar (28) to be cut; ⋅ a pair of jaws (17a, 17b) diametrically opposite one another and located within the mouth (16), each jaw (17a, 17b) being provided with a cutting blade (18), ⋅ a driver (22) for moving at least one jaw (17a) relative to the other (17b) such that the collar (28) can be cut in half by the action of the jaws (17a, 17b) moving towards one another, and ⋅ a guard (15) which, in use, prevents the cutting blade (18) from protruding beyond the mouth (16) and damaging a surface adjacent to the collar (28) to be cut in half.
Claims
1. A cutting device for use in cutting a collar which is mounted on a bolt in half, the cutting device comprising: a mouth for receiving the portion of the collar to be cut; a pair of jaws diametrically opposite one another and defining a plane of the pair of jaws, and located within the mouth, each jaw being provided with a cutting blade, wherein the cutting blade lies in a cutting blade plane which is offset from the plane of the jaws; a driver for moving at least one jaw relative to the other such that the collar can be cut in half by the action of the jaws moving towards one another and including a stop member; and a guard which, in use, prevents the cutting blade from protruding beyond the mouth and damaging a surface adjacent to the collar to be cut in half.
2. The cutting device of claim 1, wherein the cutting device includes a handle and can be hand-held in use.
3. The cutting device of claim 1, wherein the guard is removeably attachable to the cutting device.
4. The cutting device of claim 1, wherein at least an outer surface of the guard is polished.
5. The cutting device of claim 1, wherein the guard is provided by two L-shaped or substantially L-shaped members, each located at either side of the entrance to the mouth.
6. The cutting device of claim 1, wherein the device is battery powered.
7. The cutting device of claim 6, wherein the device comprises a rechargeable battery pack.
8. The cutting device of claim 7, wherein the rechargeable battery pack is removeable.
9. The cutting device of claim 7, wherein the battery is a lithium-ion battery or a graphene battery.
10. The cutting device of claim 1, wherein the driver is driven by an integral hydraulic driver system.
11. The cutting device of claim 1, wherein the jaws are pivotably mounted within the cutting device and the driver causes them to pivot towards one another to cut the collar.
12. The cutting device of claim 11, wherein the driver is wedge shaped.
13. The cutting device of claim 1, wherein the cutting device includes a resilient member such that the driver is resiliently biased by the action of the resilient member such that the driver is prevented from causing the jaws to move towards one another prior to the driver being actuated.
14. The cutting device of claim 1, wherein the device further includes a side guide to center the collar relative to the jaws.
15. The cutting device of claim 14, wherein the side guide is provided at either side of the mouth.
16. The cutting device of claim 14, wherein the side guide is provided at one side of the mouth.
17. The cutting device of claim 14, wherein an outer surface of the side guide is shaped to complement an outer surface of the collar.
18. The cutting device of claim 14, wherein the side guide is molded from a plastics material.
19. The cutting device of claim 1, wherein the device is a hydraulic hand-held collar cropper.
20. A method for cutting a collar attached to a bolt located on a body of an aircraft, the method involving the use of a cutting device by engaging a cutting blade of each jaw with the collar, wherein the cutting device comprises: a mouth for receiving the portion of the collar to be cut; a pair of jaws diametrically opposite one another and located within the mouth, each jaw being provided with the cutting blade, a driver for moving at least one jaw relative to the other such that the collar can be cut in half by the action of the jaws moving towards one another, and a guard which, in use, prevents the cutting blade from protruding beyond the mouth and damaging a surface adjacent to the collar to be cut in half.
21. A blade for use with a cutting device, wherein a blade is triangular or substantially triangular in cross section, and wherein the cutting device comprises: a mouth for receiving the portion of the collar to be cut; a pair of jaws diametrically opposite one another and located within the mouth, each jaw being provided with the cutting blade, a driver for moving at least one jaw relative to the other such that the collar can be cut in half by the action of the jaws moving towards one another, and a guard which, in use, prevents the cutting blade from protruding beyond the mouth and damaging a surface adjacent to the collar to be cut in half.
Description
(1) Non-limiting embodiments of the present invention will now be described by way of reference to the accompanying drawings in which:
(2)
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(9) Before describing the various non-limiting embodiments of the present invention, we would point out that for the sake of consistency we will use the same reference numerals to identify the corresponding parts in the different embodiments of the cutting device of the present invention.
(10) As illustrated in
(11) Attached to one end of the handle 12 is a power source 13, preferably in the form of a removable, rechargeable battery pack. Preferably, the battery is a lithium-ion battery or a graphene battery. As will be appreciated, it is preferable that the battery pack is readily removable and replaceable such that if the battery is fully discharged, it can be readily replaced thereby reducing the amount of down time in the event that the battery is fully discharged during use.
(12) Although not illustrated, the handle 12 houses the hydraulic drive system used to drive the cutting components of the cutter 10.
(13) Attached to the other end of the handle 12 is the housing 11, which houses the hydraulic drive system and the cutting components. Preferably, the housing includes at least one removable panel to allow easy access to the working components of the cutting device of the present invention.
(14) With further reference to
(15) Staying with
(16) With particular reference to
(17) As illustrated, a blade 18 is attached, preferably removeably attached, to each jaw 17a, 17b. Each blade 18 includes a cutting surface or edge 18a. As it is preferable to cut the collar 28 into two halves, it is preferable that the cutting edges 18a of the blade 18 are held by their respective jaws 17a/17b so that they are diametrically opposite one another or substantially diametrically opposite one another.
(18) With particular reference to
(19) Although the blade 18 is described as being preferably triangular in cross section (i.e. tri-blade), it is to be appreciated that any other shape of the blade is envisaged, including a blade which is diamond, trapezoid, rhombus, pentagon, parallelogram or hexagon etc. in cross-section.
(20) As will be appreciated, because the blade 18 preferably has more than one cutting surface 18a/18b/18c, in the event that a cutting surface 18a becomes blunt through use, the act of switching to a non-blunt cutting surface 18b/18c is relatively easy. This increases the efficiency of the use of the present cutting device 10, because there is less downtime when replacing a blunt blade.
(21) With further reference to
(22) The driving wedge 22 and rod 21 are held in its inactive state or rest position by spring member 20. As illustrated, the spring 20 is helical in construction, although it is to be appreciated that any other suitable form of spring or resilient member may be used to resiliently bias the driving wedge 22 and rod 21 towards the handle 12 i.e. away from the mouth 16 of the cutting device 10.
(23) As illustrated in
(24) In the event that a collar 28 is to be cut, the device 10 is positioned over the collar 28 to be removed such that the collar 28 to be removed is located within the mouth 16 between the jaws 17a and 17b.
(25) As shown in
(26) Once the collar 28 is suitably positioned within the mouth 16 via the side guides 31, the user will depress the trigger 14 thereby actuating the hydraulic system (not illustrated) located within the handle 12 which causes the drive rod 21 to act against the resilient spring member 20 such that the driving wedge 22 is pushed by the drive rod 20 against the bias of the spring member 20.
(27) As illustrated in
(28) As will be appreciated, in this embodiment, on carrying out the cutting process, the blade 18 engages with the end of the collar 28 distal to the aircraft surface (not illustrated) on which the collar 28 is located thereby effecting a cut from the top to the bottom of the collar 28.
(29) As illustrated in
(30) By comparison to the cutting device 10 of the preceding figures, the blades 18 do not lie in the same plane as the jaws 17a/1b, rather the blades 18 are offset relative to the plane of the jaws 17a/17b, preferably by 45 degrees. This enables the device 100 not to be held directly above the collar 28 to cut the collar 28. This allows the device 100 to be used to cut collars 28 in confined spaces.
(31) In addition, and with specific reference to
(32) Furthermore, and with additional reference to
(33) In this embodiment, the cutting device 100 is placed over the collar 28 to be cut such that the collar 28 is located within the mouth 16. The user then positions the cutting device 100 such that an outer surface of the collar 28 abuts against the side guide 31 and hence, is centered relative to the blades 18. Once centered, the driving wedge 28 is actuated via the trigger 14, thereby cutting the collar 28 in half. By the action of the additional stops 50, the cut collar 28 is retained within the mouth space 16.
(34) With specific reference to
(35) It is to be appreciated that the cutting device of the present invention can be provided with differently sized size guides 31 which are readily interchangeable and replaceable depending on the size of the collar to be cut.
(36) It is also to be appreciated that the size guides can be made of a resilient material such that one size enables all sizes of collar to be cut.
(37) It is also to be appreciated that the cutting device of the present invention can be used to remove a collar from any bolted fixing provided on the surface of an object where it is desirable not to damage the surface of the object adjacent to the collar being removed.
(38) In the present specification “comprises” means “includes or consists of” and “comprising” means “including or consisting of”.
(39) The features disclosed in the foregoing description, or the following claims, or the accompanying drawings, expressed in their specific forms or in terms of a means for performing the disclosed function, or a method or process for attaining the disclosed result, as appropriate, may, separately, or in any combination of such features, be utilised for realising the invention in diverse forms thereof.