Planer apparatus
A planer having a base, a first support member attached to the base and supporting a cutterhead for selective travel in a first direction toward the base and a second opposite direction, a top frame attached to the first support member and a depth stop mechanism attached to the top frame for selectively preventing travel of the cutterhead in the first direction beyond a pre-selected distance from the base. A depth measuring device including a retractable tape may be attached to the cutterhead. A workpiece level indicator plate movable between an engaged position and a disengaged position may be attached to the planer to indicate contact with a workpiece. A locking mechanism for locking a pivotable infeed table of a planer in the upright position for storage, and thereby switching off power to the planer is also disclosed. The planer may include a readily attachable and detachable dust removal assembly.
This non-provisional patent application is a continuation application of U.S. patent application Ser. No. 11/127,414, entitled PLANER APPARATUS, which was filed on May 12, 2005, which is a continuing application of U.S. patent application Ser. No. 09/918,168, entitled PLANER APPARATUS, which was filed on Jul. 30, 2001 and issued as U.S. Pat. No. 6,951,231, the disclosures of which are herein incorporated by reference.
BACKGROUND OF THE INVENTION1. Field of the Invention
The invention relates to a planer apparatus and, in particular, to a depth stop mechanism and other accessories for a planer.
2. Description of the Invention Background
Over the years, in response to consumer demand, thickness and finishing planers, i.e. planers for reducing the thickness of a piece of wood or similar materials while providing a smooth and flat finish, have been decreasing in size. Such portable planers balance the need to provide the required power to produce a smooth finish with the need to conserve space and decrease weight for portability.
The popularity of portable planers among professionals and woodworking enthusiasts has spurred the introduction of new features designed to increase versatility, precision and convenience. For example, U.S. patent application Ser. No. 09/782,453 to Garcia et al., assigned to the assignee of the present invention, discloses a portable planer having a compact two-speed gear mechanism that is actuated to drive the infeed and outfeed rollers of the planer selectively at a high or low speed.
U.S. Pat. No. 6,089,287 to Welsh et al. discloses a planer with a depth stop adjustment mechanism that allows an operator to select a minimum workpiece depth from one or more predetermined depths, but does not allow selection of any depth within the full range of travel of the cutterhead of the planer.
Also, current depth stop arrangements are located between the cutterhead and the workpiece support table and can place undesirable torque on the cutterhead if the cutterhead is inadvertently lowered beyond the point wherein the depth stop engages the table or other support structure. Such torque can result in damage to the apparatus for positioning the cutterhead.
Additional accessories such as dust collector chutes, depth scales and workpiece level indicators need to be designed for ease of manufacturing, installation and cost-effectiveness.
There remains, therefore, a need for a planer that includes features that overcome the limitations, shortcomings and disadvantages of other planers without compromising their advantages.
SUMMARY OF THE INVENTIONThe invention meets the identified needs, as well as other needs, as will be more fully understood following a review of this specification and drawings.
One embodiment of the invention includes a planer, a base, first and second support members attached to the base and supporting a cutterhead for selective travel toward and away from the base, a top frame attached to at least the first support member and a depth stop mechanism attached to the top frame for selectively preventing travel toward the base beyond a pre-selected distance from the base.
The depth stop mechanism may also include a depth stop member, such as a nut, rotatably supported on a portion of the first support member adjacent to an abutment surface thereof and slidably supported in the top frame. The depth stop mechanism may also include an adjustment assembly, such as a sleeve, in the top frame, for selectively adjusting a position of the depth stop member on the support member relative to the abutment surface.
Another embodiment of the invention includes a planer having a base, a top frame connected to the base, a cutterhead movably supported relative to the base to define an adjustable opening therebetween for selective travel in a first direction toward the base and a second opposite direction, and a depth stop mechanism attached to the top frame and not extending into the adjustable opening. The depth stop mechanism selectively prevents travel of the cutterhead in the first direction beyond a pre-selected distance from the base.
In another embodiment the planer may include a retractable measuring device, such as a tape, attached to the top frame of the planer. The retractable tape may have a first end retractably affixed to the top frame and a second end affixed to the cutterhead. The retractable measuring device has a scale thereon and may include a transparent member covering a portion of the scale, and a scale indicator. The scale indicator shows the height of the cutterhead from the base on the scale through the transparent member.
In another embodiment the planer includes a cutterhead, a motor operating the cutterhead, a power switch for the motor, and an infeed table pivotable between an operating position and an upright storage position that switches off the power to the motor. The planer includes a side frame with a first aperture thereon. The infeed table has a second aperture aligned with the first aperture so that the apertures may receive a locking device when the infeed table is in the storage position.
Another embodiment of the planer may also include a workpiece level indicator assembly mounted on the cutterhead. The workpiece level indicator assembly includes a workpiece level indicator plate that has a bottom face parallel to the base and a front ledge, and is movable between an engaged position and a disengaged position. When the cutterhead is lowered such that the bottom face of the indicator contacts the workpiece, the level indicator moves to the disengaged position. The workpiece level indicator assembly may also include a cover plate covering an inscription on the workpiece level indicator in the disengaged position and exposing the inscription in the engaged position.
The planer may also include a dust removal assembly that includes a manifold removably attachable to the cutterhead over the cutting member, a dust deflector directing airflow to the manifold, and a dust chute communicating with the manifold. The dust chute has a side opening for connection to a vacuum hose and has also a channel that is releasably connected to the carriage assembly through posts that are received in corresponding slots on the cutterhead.
One feature of an embodiment of the present invention is to provide a depth stop mechanism that is not located between the cutterhead and the workpiece support table.
It is a feature of at least one embodiment of the invention to provide a compact depth stop mechanism for a full range of travel of the cutterhead of a planer or other similar machine.
Another feature of the invention is to provide efficient, effective and easily installable accessories for a portable planer and other similar machines.
It is also a feature of at least one embodiment of the invention to provide an inexpensive and readily adaptable depth measuring device and a convenient workpiece level indicator, either of which can be used with or without a depth stop mechanism for a planer or other similar machine.
It is yet another feature of at least one embodiment of the invention to provide a locking mechanism for storing a portable planer in a safe position with the cutting member and power switch inaccessible to unauthorized persons.
It is also a feature of at least one embodiment of the invention to provide a dust removal assembly that is readily attached to and detached from a portable planer.
Other features and advantages of the invention will become apparent from the detailed description of the preferred embodiments and from the claims.
BRIEF DESCRIPTION OF THE DRAWINGS
Referring now to the drawings for the purpose of illustrating the invention and not for the purpose of limiting the same, it is to be understood that standard components or features that are within the purview of an artisan of ordinary skill and do not contribute to the understanding of the various embodiments of the invention are omitted from the drawings to enhance clarity, even when such features may otherwise be necessary for the operation of a machine, such as a planer, embodying the invention. In addition, it will be appreciated that the characterizations of various components described herein as moving, for example, upwardly or downwardly, or being vertical or horizontal, are relative characterizations only based upon the particular position or orientation of a given component for a particular application.
The planer 100 also includes a cutterhead or carriage assembly 102, as shown in
The first spindle 118 is linked to the second spindle 119 by a chain 122 and sprockets 123 or other means of transmitting rotational motion, so that the rotation of the second spindle 119 results in rotation of the first spindle 118. See
The typical travel distance of the cutterhead 102 relative to the base 103 of a portable planer 100, may be of the order of several inches. One planer, such as the model Delta 22-560 planer manufactured by Delta International Machinery Corp. of Jackson, Tenn., the assignee of this invention, for example, has a 6 inch travel.
In one embodiment, the planer includes an embodiment of a depth stop mechanism 128. See
As shown in
The depth stop mechanism 128 of this embodiment further includes a depth stop member 144, such as a depth stop nut, which is threadedly engaged with the first threaded portion 136 of the first spindle 118, such that when the depth stop nut 144 rotates clockwise or counterclockwise with respect to the first spindle 118, the depth stop nut 144 moves down or up the first threaded portion 136 of the first spindle 118. The depth stop nut 144 may be, for example, a hex nut having a six-sided lateral surface. An abutment surface 146, also referred to herein as a spindle shoulder, may be formed at the junction of the first threaded portion 136 to the second threaded portion 137 by the difference of the diameters of the first threaded portion 136 to the second threaded portion 137 of the first spindle 118. See
One embodiment of the sleeve 132 is shown in exploded view in
The top end 133 may further include a plurality of ramps 154 having corresponding slots 156, and an annular plate 157 for receiving the top end of the retainer shaft 140. The knob 130 is then fastened to the retainer shaft by a fastener 142, such as, for example, the retaining screw 142 shown in
In this embodiment, the knob 130 includes a plurality of posts 160 that correspond in number and are sized to fit into the slots 156 of the top end 133. In the embodiment shown in
The inner surface of the sleeve 132 includes two diametrically opposed flat portions 164, which are sized to contact and hold respective sides of the depth stop nut 144, so that when the sleeve 132 rotates about the first spindle 118, the depth stop nut also rotates about the first spindle 118, causing it to move up or down the first threaded portion 136 of the first spindle 118.
The depth stop mechanism 128 is selectively moveable between an engaged position, shown in
In the “disengaged” position, illustrated in
As is often the case, a workpiece may have to be passed through the planer several times in order to attain the final desired thickness. Those of ordinary skill in the art will appreciate that after the workpiece 114 has passed through the planer 100, the cutterhead 102 is positioned closer to the base 103 and the workpiece 114 is again passed through the planer 100. This activity is repeated until the workpiece 114 is planed to a desired thickness. As will be discussed below, the depth stop mechanism 128 of the present invention permits the user to quickly and accurately establish a stop which prevents the cutterhead 102 from inadvertently being adjusted beyond a point which would result in the workpiece 114 being planed to a lesser than desired thickness.
This embodiment of the depth stop mechanism 128 operates as follows. The knob 130 is rotated counterclockwise to release it from the locked position causing the posts 160 to slide from the slots 156 down the ramps 154 with the spring 162 pushing the sleeve 132 up in the disengaged position and moving the hexagonal surface 148 out of the twenty-four sided surface 150 of the bore 152. Starting at the disengaged position, the cutterhead is moved to a desired height from the base 103 by operating the crank handle 116, which causes the second spindle 119 to rotate. The second spindle 119 has a threaded portion 166, which has the same pitch p2 as the second threaded portion 137 of the first spindle 118. As the chain 122 and sprocket 123 transmit the rotational motion of the second spindle 119 to the first spindle 118, the common pitch p2 keeps the cutterhead 102 level, i.e. parallel to the base 103.
After the cutterhead 102 has reached the height corresponding to the minimum thickness tmin desired for the finished workpiece 114, the knob 130 is rotated clockwise, causing the sleeve 132, and therefore the depth stop nut 144, to also rotate clockwise. As a result, the depth stop nut 144 moves down the first threaded portion 136 of the spindle until it contacts the abutment surface 144. At this position, the knob 130 is depressed and rotated clockwise locking the sleeve 132 within the bore 152 thereby bringing the depth stop mechanism 128 in the engaged position. See
The cutterhead 102 is thereafter moved away from the base 103 by operation of the crank handle 116 to an initial height “h” from the base 103 that will allow for an unfinished/thicker workpiece to be initially inserted. The height “h” is equal to hc plus tmin, where hc is the distance of the cutterhead 102 from the minimum desired distance tmin from the base 103, as shown in
(p1/p2)=(n2/n1)=(hn/hc).
For example, if the first threaded portion 136 has 40 threads per inch, or 1/40 pitch, and the second threaded portion 137 has 16 threads per inch or 1/16 pitch, then the depth stop nut 144 will travel only 40% (i.e. 16/40) of the distance traveled by the cutterhead 102. Accordingly, the cutterhead 103 can be set at any height from the base within its full range of motion, for example 6.5 inches, provided that the depth stop mechanism 128 is constructed such that the distance between the washer 145 and the abutment surface 146 is only 2.6 inches (40% of 6.5), with the pitch ratio chosen for this example. Therefore, the depth stop mechanism 128 is very compact and can be added as a feature of a portable planer 100 without increasing the overall dimensions of the planer, because the depth stop mechanism 128 can be accommodated within the original size of the planer 100.
As can be seen in
Another embodiment of the present invention may comprise a planer 100 that has a workpiece level indicator assembly 181 shown in FIGS. 12(a)-12(d). The workpiece level indicator assembly 181 includes a workpiece level indicator plate 182 that is mounted preferably on the front surface 184 of the cutterhead 102, such that it can slide between an engaged position shown in
A spring 190, illustrated in
Yet another embodiment of the planer 100 may include a locking mechanism 198, which allows the infeed table 108 to pivot between an extended position during operation and an upright storage position in which the planer 100 is switched off and the cutting blade is inaccessible for safety reasons, as shown in
The planer 100 may also include a dust removal assembly 206, as shown in
The dust removal assembly 206 also includes a dust chute 216 that communicates with the manifold 210 through a dust channel 218, which is releasably connected to the carriage assembly 102. The dust channel 218 may be attached to the dust chute 216 with fasteners 224, or by welding, and may be an integral part of the dust chute 216. The dust channel 218 has two end posts 220, which are attached, for example, by spot welds, and are sized to slide into corresponding guiding slots 222 on the carriage assembly 102. The guiding slots 222 help slide the dust channel 218 and dust chute 216 easily onto the carriage assembly 102. The manifold 210 is then placed on the carriage assembly 102 and the thumbscrews 212 are inserted and tightened over the manifold deck 211. The dust chute 216 has a side opening 226, to which a vacuum hose (such as, for example, vacuum hose 230 shown in outline in
The depth stop mechanism 128, the depth measuring device 168, the workpiece level indicator assembly 181, the locking mechanism 198 and the dust removal assembly 206 have all been described for a portable planer, but they can readily be used with a standard planer or other machine that includes a rotary cutting member 105 mounted on a carriage assembly 102, such as a combination planer/molder, planer/sander, etc.
Whereas particular embodiments of the invention have been described herein for the purpose of illustrating the invention and not for the purpose of limiting the same, it will be appreciated by those of ordinary skill in the art that numerous variations of the details, materials and arrangement of parts may be made within the principle and scope of the invention without departing from the invention as described in the appended claims.
Claims
1. A planer, comprising:
- a base;
- a top frame connected to the base;
- a cutterhead movably supported relative to the base to define an adjustable opening therebetween for selective travel in a first direction toward the base and a second opposite direction; and
- a depth stop mechanism attached to the top frame and not extending into the adjustable opening, the depth stop mechanism having a depth stop member and selectively preventing travel of the cutterhead in the first direction beyond a pre-selected distance from the base when the depth stop member contacts an abutment portion of a column member attached to the base, while permitting travel of the cutterhead in the second direction.
2. A planer, comprising:
- a base;
- first and second support members attached to the base and movably supporting thereon a cutterhead for selective travel in a first direction toward the base and a second opposite direction;
- a top frame attached to at least the first support member; and
- a depth stop mechanism having a depth stop member, wherein the depth stop mechanism is attached to the top frame for selectively preventing travel of the cutterhead in the first direction beyond a pre-selected distance from the base when the depth stop member contacts an abutment surface on the first support member, while permitting travel of the cutterhead in the second direction.
3. The planer of claim 2 wherein the depth stop mechanism further comprises an adjustment assembly in the top frame, the adjustment assembly selectively adjusting a position of the depth stop member on the first support member relative to the abutment surface wherein the depth stop member is rotatably supported on a first threaded portion of the first support member adjacent to the abutment surface thereof.
4. The planer of claim 3 wherein the depth stop member comprises a depth stop nut threadedly received on the first threaded portion of the first support member and wherein the first support member is rotatable.
5. The planer of claim 4 wherein the adjustment assembly comprises a sleeve rotatably supported within the top frame and slidably and non-rotatably supporting the depth stop nut therein such that rotation of the sleeve rotates the depth stop nut on the first threaded portion of the first support member.
6. The planer of claim 5 further comprising a sleeve locking mechanism for selectively preventing rotation of the sleeve relative to the top frame.
7. The planer of claim 6 wherein the first support member defines an axis of rotation about which the sleeve may rotate and wherein the sleeve locking mechanism comprises: a bushing attached to the sleeve such that rotation of the bushing rotates the sleeve about the axis of rotation, the bushing having at least a portion with a non-circular exterior, the non-circular exterior of the bushing selectively receivable in a bore within the top frame that is shaped to define a plurality of positions about the axis of rotation in which the bushing may be retained when the non-circular exterior of the bushing is received therein; and a knob attached to the first support member for selective rotation of the first support member relative to the bushing, the knob being selectively engageable with the bushing for rotating the sleeve about the axis of rotation.
8. The planer of claim 7 wherein the bushing is integral with the sleeve.
9. The planer of claim 7 wherein the knob includes a plurality of posts corresponding to a plurality of ramps on the bushing for selectively locking the sleeve in a non-rotatable position.
10. The planer of claim 9 further comprising a biaser for biasing the knob to a disengaged position.
11. The planer of claim 2 further comprising a retractable measuring device having a first end retractably affixed to the top frame and a second end affixed to the cutterhead.
12. The planer of claim 5, wherein the depth stop nut is at a bottom end of the sleeve and abuts the abutment surface on the first support member when the cutterhead reaches a predetermined distance away from the base when the sleeve is in an engaged position.
13. The planer of claim 7, wherein the sleeve is locked in the engaged position when the knob is biased toward the top frame and rotated such that the posts travel up the ramps and are received in corresponding slots in the ramps.
14. The planer of claim 2, wherein the first support member is linked to the second support member such that rotation of the first support member causes substantially identical rotation of the second support member such that the cutterhead remains substantially parallel to the base during height adjustment.
15. The planer of claim 14, wherein the first support member is linked to the second support member by an endless chain received on sprockets on the first support member and the second support member.
16. The planer of claim 4, wherein the depth stop nut travels on the first threaded portion of the first support member having a first pitch and the cutterhead travels on a second threaded portion of the first support member having a second pitch.
17. The planer of claim 16, wherein the ratio of the first pitch to the second pitch is about 2.5.
18. A material removal device, comprising:
- a base;
- frame means connected to the base and having a top portion;
- means for removing material from a workpiece when positioned on the base;
- means for adjusting a location of the means for removing relative to the base, such that upon rotation of the means for adjusting in a first direction, the means for removing moves towards the base and upon rotation of the means for adjusting in a second direction, the means for removing moves away from the base; and means attached to the top portion of the frame means for selectively stopping the means for removing from moving beyond a predetermined distance toward the base while permitting the means for removing to move away from the base, wherein the means for selectively stopping has a depth stop means for preventing the means from removing to move beyond the predetermined distance when the depth stop means abuts at least one column member supported on the base.
19. The material removal device of claim 18 wherein the means for adjusting comprises a first rotatable column member and a second rotatable column member supported on the base and coupled to the means for removing.
20. The material removal device of claim 19 wherein the depth stop means is positioned on a portion of the first rotatable column member and selectively rotatable thereon for selective abutment with a shoulder on the first rotatable column member such that when the depth stop means is in abutting relationship to the shoulder, the removing means cannot move toward the base and wherein a depth stop adjustment means is supported in the top portion of the frame means for adjusting the position of the depth stop means on the first rotatable column member.
21-39. (canceled)
Type: Application
Filed: Oct 29, 2007
Publication Date: Apr 24, 2008
Inventors: Jaime Garcia (Jackson, TN), Waymon McNeal (Jackson, TN), Vance Roe (Jackson, TN), Jeffrey Weston (Jackson, TN)
Application Number: 11/978,530
International Classification: B27C 1/04 (20060101); B26D 7/06 (20060101); B27C 1/14 (20060101);