PORTABLE PIPE CUTTER SYSTEM
20210206014 ยท 2021-07-08
Inventors
Cpc classification
B26D2007/013
PERFORMING OPERATIONS; TRANSPORTING
B26D7/01
PERFORMING OPERATIONS; TRANSPORTING
B26D3/16
PERFORMING OPERATIONS; TRANSPORTING
B26D1/02
PERFORMING OPERATIONS; TRANSPORTING
International classification
B26D7/01
PERFORMING OPERATIONS; TRANSPORTING
B26D3/16
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A height adjustable portable levelling pipe cutter system is disclosed that keeps all sizes of pipe, secure and at proper cutting height, so clean precise cuts can be made. The system works with a variety of cutters and devices and keep level straight pipe for even cuts. The portable system holds and cuts all pipe sizes and can be adapted for many types of cutting systems, and can also hold laser measuring tools to ensure proper cut length. The system relates to a construction tool for proper cutting of all sizes of pipe in a safe ergonomic adjustable portable system.
Claims
1. A portable pipe cutter system comprising: a frame defined by two or more longitudinal tracks and two or more lateral cross members, said frame being removably mounted on trolley frame supports; two or more pipe roller assemblies, configured to cooperate with each of the longitudinal tracks, each of the pipe roller assemblies having two or more pipe rollers; and a cutting device mounted on one of the lateral cross members, wherein, when a pipe is placed on the pipe rollers on the two or more pipe roller assemblies, the cutting device can be engaged to cut the pipe to a predetermined length.
2. The portable pipe cutter system of claim 1, wherein the pipe rollers are attached to the pipe roller assemblies by adjustable roller supports, thereby allowing the pipe roller assemblies to be moved into positions on the pipe roller assemblies to accommodate pipes of varying circumference.
3. The portable pipe cutter system of claim 1, wherein one or more of the pipe roller assemblies are supported by the lateral cross member.
4. The portable pipe cutter system of claim 1, further comprising a laser measuring tool to determine length of the pipe to be cut.
5. The portable pipe cutter system of claim 1, wherein the cutting device is manipulated into a cutting position by a handle.
6. The portable pipe cutter system of claim 1, wherein the cutting device is a grinder, saw, or router.
7. The portable pipe cutter system of claim 1, wherein the frame further comprises a pipe stop bar.
8. The portable pipe cutter system of claim 7, further comprising a laser measuring tool that is aligned with the pipe stop bar and the cutting device.
9. The portable pipe cutter system of claim 1, wherein the system comprises a first end pipe roller assembly, a second end pipe roller assembly and a central pipe roller assembly.
10. The portable pipe cutter system of claim 9, wherein the central pipe roller assembly comprises two roller assemblies in close alignment.
11. The portable pipe cutter system of claim 10, wherein the two roller assemblies are a unitary structure.
12. The portable pipe cutter system of claim 11, wherein the cutting device is positioned between the two roller assemblies.
13. The portable of pipe cutter system of claim 1, wherein the pipe roller assemblies and trolley frame supports are dimensioned to be nestable.
14. Use of the portable pipe cutter system of claim 1, to cut pipes comprising the steps of: placing the pipe to be cut on the pipe rollers; engaging the cutting device to cut a section of the pipe; manually rotating the pipe on the pipe rollers until the pipe is completely cut around its circumference.
15. A process for cutting pipes, comprising the steps: assembling a frame comprising two or more longitudinal tracks and two or more lateral cross members, said frame being removably mounted on adjustable supports; attaching two or more pipe roller assemblies to cooperate with each of the longitudinal tracks, each of the pipe roller assemblies having two or more adjustable pipe rollers; mounting a cutting device on one of the lateral cross members; placing a pipe to be cut on the pipe roller assemblies; sliding the cutting device to an appropriately distance along the longitudinal tracks; engaging the cutting device to cut a section of the pipe; rotating the pipe on the pipe rollers until the pipe is completely cut around its circumference.
16. The process according the claim 15, further comprising the step of; adjusting position of the pipe rollers to accommodate circumference of the pipe.
17. The process according the claim 15, further comprising the step of; adjusting height of the frame to an ergonomically appropriate height for operator.
18. The process according the claim 15, further comprising the step of; determining the appropriately distance along the longitudinal tracks using a laser measuring device.
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWINGS
[0020] To easily identify the discussion of any particular element or act, the most significant digit or digits in a reference number refer to the figure number in which that element is first introduced.
[0021]
[0022]
[0023]
[0024]
DETAILED DESCRIPTION
[0025] Devices and methods for carrying out the invention are presented in terms of embodiments depicted within the FIGS. However, the invention is not limited to the described embodiments, and a person skilled in the art will appreciate that many other embodiments of the invention are possible without deviating from the basic concept of the invention, and that any such work around will also fall under scope of this invention. It is envisioned that other styles and configurations of the present invention can be easily incorporated into the teachings of the present invention, and the configurations shall be shown and described for purposes of clarity and disclosure and not by way of limitation of scope.
[0026] The present invention describes a height adjustable and collapsible pipe cutter system. In operation, pipes of various lengths and diameters can be cut safely, accurately and at an ergonomically appropriate level. The cutting device, which may be a grinding disc, a toothed saw, or router, is held in place on the frame of the pipe cutter system, thereby achieving a smooth cut surface. When a laser measuring device is employed, the pipe cutter system can also achieve reproducible pipe cutting results. It is additionally contemplated that the cutting device may be linked to a CNC-control unit which controllably adjusts the cutting machine.
[0027] The process of the invention includes the steps of placing a pipe to be cut on the roller assemblies, and adjusting the roller assemblies along the trolley frame so that the pipe is securely supported at both ends and in the middle. Rollers on each of the roller assemblies can also be adjusted to accommodate pipes of varying diameters. The height of the cutter system can then be adjusted so that the frame is at an appropriate ergonomic height for the operator. The central roller assembly, typically containing the cutting device, can then be moved along the trolley track such that the cutting device is aligned at the position where the cut is to be made. A laser device, or some other form of measuring tool is used to assist in determining the positioning of the cutting device. When the cutting device is in the correct position, the cutting surface of the cutting device is engaged with the pipe. The pipe is manually rotated, and the cutting surface of the cutting device is re-engaged with the pipe. This process is repeated until the pipe is completely cut around the entire circumference.
[0028]
[0029] The first end pipe roller assembly 108 may additionally comprise a first end laser device 124 that is aligned with the first end of a pipe. The central pipe roller assembly 112 may additionally comprise a central laser device 126 that indicates the desired cutting line of the pipe. The trolley frame support 106 is adjustable so that the height of the roller trolley frame 100 can be positioned at an ergonomically appropriate level.
[0030] The various trollies can be locked into position once set with a simple clamping action or cam lock. This can be achieved in a very simple and easy manner, such as turning a key.
[0031]
[0032]
[0033]
[0034] In an alternative embodiment, the cutter would be engaged and remain engaged while the pipe is slowly turned by hand and being cut at the same time. Rather than it being engaged, manually rotated and then reengaging and repeated. Hence cutting and turning at the same time with holding the cutter in the engaged position continuously. One hand on the cutting handle and one hand slowly turning the pipe.
[0035] For the alternate version described above, where the grinder 402 can be raised or lowered by a motor, the rotation of the pipe may also be driven by a motor to complete the autonomy of the device. In this version the operator would only set the measurement and place the pipe onto the cutter while the lifting of the grinder and the rotation of the pipe would both be automated.
[0036] Each roller assembly (108, 110, and 112) are typically a unitary structure that will roll along the lower trolley track 102, each assembly is easily removable from the lower trolley track 102 for transport and storage. Similarly, the trolley frame support 106 are easily removable from the lateral cross member 104. The lateral cross member 104 can be designed such that they can be stackable for ease of transport or storage.
[0037] The pipe cutter system may be designed such that, when dis-assembled, the roller assemblies (first end pipe roller assembly 108, second end pipe roller assembly 110 and central pipe roller assembly 112) can fit within the trolley frame support 106. When the pipe roller assemblies and trolley frame supports are dimensioned to be nestable, this enables the system to be easily stacked for storage and transport.
[0038] The foregoing descriptions of specific embodiments of the present invention have been presented for purposes of illustration and description. They are not intended to be exhaustive or to limit the invention and method of use to the precise forms disclosed. Obviously many modifications and variations are possible in light of the above teaching. The embodiments described were chosen and described in order to best explain the principles of the invention and its practical application, and to thereby enable others skilled in the art to best utilize the invention and various embodiments with various modifications as are suited to the particular use contemplated. It is understood that various omissions or substitutions of equivalents are contemplated as circumstance may suggest or render expedient, but is intended to cover the application or implementation without departing from the spirit or scope of the claims of the present invention.