This invention relates to a cutting tool for scoring flexible materials, preferably rubber, allowing the flexible material to be bent to fit in and around corners and on other non-flat surfaces.
When installing flexible materials in a home, installers have to score the materials to fit the materials in and around corners and other non-flat surfaces. Currently, installers use a utility knife or another similar tool. However, such tools are inexact, result in variations, and prone to slippage, which may cause the installer to damage the material or cause bodily injury. As such, there is a need for an improved tool for scoring flexible materials.
The present invention provides a tool for scoring flexible building materials. The scoring tool as described is preferably manufactured from durable materials, such as steel and/or aluminum, that are capable of withstanding repeated cycles of scoring the materials.
In an embodiment of this invention, the scoring tool comprises a base with a receiver having a support surface. The receiver is preferably adjustable and the flexible material is positionable on the support surface within the receiver.
A guide is preferably hingeably connected with respect to the base. The guide is moveable between an open position and a fixable, closed position. The guide preferably includes a linear opening and a pair of guide bars on each side of the linear opening.
A platform is preferably slidable on the guide bars between a starting position and an end position. The platform includes at least one blade, and preferably two blades positioned in a “v-shape” relative to each other, extending toward the base and through the linear opening, when the guide is in the closed position.
The base may also include a mechanism for holding the guide closed and secured in position relative to the base. The base, and specifically the receiver, may also be adjustable allowing the tool to receive and score different sized flexible materials.
These and other objects and features of this invention will be better understood from the following detailed description taken in conjunction with the drawings, wherein:
The tool as described is preferably used to score flexible building materials 100, such as, but not limited to, rubber coves, planks, baseboards, and other trim, allowing the flexible material to more easily bend around corners, fit in corners, and/or be adapted to fit against other non-flat surfaces.
The scoring tool of this invention preferably includes a base 120, a guide 140, and a platform 160. The scoring tool is preferably manufactured from durable materials that are capable of withstanding the repeated stress of scoring flexible materials, such as steel and aluminum.
As shown in the figures, the base 120 includes a receiver 130 having a support surface 132. The receiver 130 is preferably adjustable to accommodate a range of building materials and sizes. More specifically, a width of the receiver is preferably adjustable. The flexible material is thus positionable on the support surface 132 within the receiver 130 as shown in
As shown best between
A platform 160 is preferably slidable on the guide 140 between a starting position and an end position. Here also, one or more springs 162 may be employed to maintain the platform 160 in the starting position relative to the guide 140. The platform 160 further includes at least one blade 170 extending toward the base 120 and through the linear opening 150, preferably when the guide 140 is in the closed position.
According to one embodiment the at least blade 170 comprises a pair of blades, wherein the blades 170 are set at an angle relative to each other. As best shown in
In a preferred embodiment, the blades 170 are set at a 94 degree angle to each other. Alternatively embodiments may comprise an 88 degree angle or any other angle to provide a desired score in the flexible material. Alternative embodiments, may include a curved blade or another shaped blade for making the score line in the material.
According to embodiments best shown in
As shown in
As best shown in
As shown in the figures, at least one knob 155, and as shown two knobs 155, are used for adjusting a width of the receiver 130. In an embodiment having two knobs 155, the knobs may be joined with a timing belt 158 to coordinate movement of the moveable wall 134 between adjustment screws 159. In this manner, the receiver 130 may be adjusted between the narrowest and widest material 110 desirable. More specifically, a range between approximately 4″ and 6¼″ of materials 110 may be placed within the receiver 130 for scoring.
As briefly described above, the base 120 may further include a base block 125 that connects to one end of the base 120 and is connectable with respect to a free end (i.e., the non-hinged end) of the guide 140. The base block 125 preferably engages with the guide 140 when the guide 140 is moved into the closed position. In one preferred embodiment, the guide 140 locks into the base block 125 when the guide 140 is lowered into engagement with the base 120.
According to one preferred embodiment, the base block 125 includes having a fine height adjustment relative to the base 120. Specifically, one or more thumb wheels 127 may be positioned through the base block 125 to adjust a height of the base block 125 relative to the base 120. In this manner, a user may control a height at which the guide 140 locks into the base 120 depending on the material 110 to be scored.
In one preferred embodiment, a pair of biased pins 180, best shown in
As shown in the figures, the guide 140 of this embodiment includes a pair of guide bars 145. The guide bars 145 preferably include a low-friction surface and/or bearings or another device to allow the platform 160 to easily slide along the guide 140. A handle 175 may be positioned on the platform 160 for ease of sliding operation. The guide bars 145 also preferably restrict movement of the platform 160 along a linear path to provide a straight score in the flexible material 110.
In operation, the scoring tool of this invention starts in the position shown in
Therefore, a method of scoring a flexible building material may comprise providing the base 120 with the receiver 130 and providing the flexible material 110 within the receiver 120. Next, a user closes the guide 140 that is hingeably connected with respect to the base 120 to contain the flexible material 110. Next, the user slides the platform 160 along the guide 140 between a starting position and an end position, wherein the platform 160 includes at least one blade 170 extending toward the base 120. Finally, the user scores the flexible material 110 with the blade 170 as it passes over the material 110.
As described above, the free end of the guide 140 may be locked to the base 120 upon closure of the guide 140. Also, once the platform 160 is slid to the end position, the free end of the guide 140 may be automatically released from the base 120.
While in the foregoing specification this invention has been described in relation to certain preferred embodiments thereof, and many details have been set forth for purpose of illustration, it will be apparent to those skilled in the art that the material cutter is susceptible to additional embodiments and that certain of the details described herein can be varied considerably without departing from the basic principles of the invention.
This application claims the benefit of U.S. Provisional Application, Ser. No. 62/570,691, filed on 11 Oct. 2017. The co-pending parent application is hereby incorporated by reference herein in its entirety and is made a part hereof, including but not limited to those portions which specifically appear hereinafter.
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Number | Date | Country | |
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