Safety knife with retractable sheath
10207414 ยท 2019-02-19
Assignee
Inventors
- Brendan Groeneweg (Brooklyn Park, MN, US)
- Kruse Otto (Jamestown, ND, US)
- Wallace H. Larson (Jamestown, ND, US)
Cpc classification
B26B5/003
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A safety knife may include a housing defining an internal cavity, a blade coupled to the housing, and a sheath slideably engaged with the housing. The sheath may translate into the internal cavity of the housing to expose the blade. A switch may be pivotally coupled to the housing and may release the sheath from a locked position in response to depression of the switch. A locking arm may be pivotally coupled to the sheath with a projection that locks the sheath in an extended position by engaging an internal wall of the housing. A pawl may be pivotally coupled to the switch to depress the locking arm. The sheath includes a ridge that engages the pawl and rotates the pawl from a fully extended position.
Claims
1. A safety knife, comprising: a housing defining an internal cavity; a blade coupled to the housing; a sheath engaged with the housing and configured to translate into the internal cavity of the housing and expose the blade in response to a force applied to the sheath; and a locking arm pivotally coupled to the sheath, wherein the locking arm comprises a projection configured to lock the sheath in an extended position by engaging an internal wall of the housing.
2. The safety knife of claim 1, further comprising a switch movably coupled to the housing and a pawl pivotally coupled to the switch, wherein the pawl is configured to depress the locking arm and translate the sheath into the internal cavity of the housing.
3. The safety knife of claim 2, further comprising a recess formed in the sheath to expose and align a portion of the locking arm with the pawl.
4. The safety knife of claim 3, further comprising a torsion spring coupled to the pawl and configured to urge the pawl into a fully extended position.
5. The safety knife of claim 4, wherein the sheath comprises a ridge.
6. The safety knife of claim 1, further comprising a spring coupled to a first anchor point and a second anchor point of the sheath, wherein the spring urges the sheath to cover the blade in response to the force being removed from the sheath.
7. The safety knife of claim 1, further comprising: a first anchor point coupled to the sheath; a second anchor point coupled to the housing; and a spring coupled with and extending between the first anchor point and the second anchor point.
8. The safety knife of claim 1, wherein the coupling between the blade and the housing is a blade retention system.
9. The safety knife of claim 8, wherein the blade retention system comprises: a nut retained in the housing; and a fastener extending through an opening in the blade and into the nut.
10. The safety knife of claim 9, wherein the nut comprises an elongated geometry that aligns with a slot formed in the sheath.
11. A safety knife, comprising: a housing defining an internal cavity; a blade coupled to the housing; a sheath slideably engaged with the housing and configured to translate into the internal cavity of the housing to expose the blade; a switch pivotally coupled to the housing; and a locking arm pivotally coupled to the sheath.
12. The safety knife of claim 11, wherein the locking arm comprises a projection that locks the sheath in an extended position by engaging an internal wall of the housing.
13. The safety knife of claim 11, further comprising a spring coupled to a first anchor point and a second anchor point of the sheath, wherein the spring urges the sheath to cover the blade in response to a force being removed from the sheath.
14. A safety knife, comprising: a housing comprising a first anchor point and defining an internal cavity; a blade coupled to the housing; a sheath slideably engaged with the housing and configured to translate into the internal cavity of the housing to expose the blade, wherein the sheath comprises a second anchor point; a spring coupled to the first anchor point and the second anchor point; and a locking arm pivotally coupled to the sheath, wherein the locking arm comprises a projection that locks the sheath in an extended position by engaging an internal wall of the housing.
15. The safety knife of claim 14, wherein the spring urges the sheath into a safe state with the blade covered by the sheath in response to a force being removed from the sheath when the blade is lifted from a cutting surface.
16. The safety knife of claim 15, further comprising a switch movably coupled to the housing.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The subject matter of the present disclosure is particularly pointed out and distinctly claimed in the concluding portion of the specification. A more complete understanding of the present disclosures, however, may best be obtained by referring to the detailed description and claims when considered in connection with the drawing figures, wherein like numerals denote like elements.
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DETAILED DESCRIPTION
(9) The detailed description of exemplary embodiments herein makes reference to the accompanying drawings, which show exemplary embodiments by way of illustration and their best mode. While these exemplary embodiments are described in sufficient detail to enable those skilled in the art to practice the disclosures, it should be understood that other embodiments may be realized and that logical, chemical, and mechanical changes may be made without departing from the spirit and scope of the disclosures. Thus, the detailed description herein is presented for purposes of illustration only and not of limitation. For example, the steps recited in any of the method or process descriptions may be executed in any order and are not necessarily limited to the order presented. Furthermore, any reference to singular includes plural embodiments, and any reference to more than one component or step may include a singular embodiment or step. Also, any reference to attached, fixed, connected or the like may include permanent, removable, temporary, partial, full and/or any other possible attachment option. Additionally, any reference to without contact (or similar phrases) may also include reduced contact or minimal contact.
(10) The safety knife of the present disclosure is, in various embodiments, an exposure-control knife with a blade-sheath lock. The blade sheath is also retractable, and has an auto-locking mechanism. The sheath may cover the blade in response to the blade not being in contact with a surface for a cutting operation. The sheath may automatically cover the blade in response to the blade being removed from a cutting surface. The sheath may automatically cover the blade even if the sheaths switch feature is in the activated and unlocked position.
(11) Referring now to
(12) Referring now to
(13) In various embodiments, safety knife 100 may include various safety features. Switch 106 may be biased in the y direction into the undepressed position by spring 116. A pawl 112 may be pivotally coupled to switch 106 by joint 114. Pawl 112 may be aligned in the y direction (vertically) with depression 115 in sheath 104. Sheath 104 may retain a locking arm 109 (represented by broken lines) pivotally coupled to sheath 104 at joint 107. A portion of locking arm 109 may be exposed from sheath 104 by depression 115 in sheath 104. The exposed portion of locking arm 109 may align with pawl 112. Pawl 112 is configured to depress the exposed portion of locking arm 109 in response to depression of switch 106. As described in greater detail in
(14) In various embodiments, locking arm 109 may pivot about joint 107 in response to depression by pawl 112. Projection 108 of locking arm 109 may move downward (in the y direction) to provide clearance in the x direction between projection 108 and wall 111 of housing 102. Sheath 104 may be allowed to retract into housing 102 in the x direction in response to projection 108 clearing wall 111. In response to sheath 104 retracting into housing 102 in the x direction, wall 113 of sheath 104 may contact pawl 112 and rotate pawl 112 about joint 114. Wall 113 of sheath 104 may be adjacent depression 115 in sheath 104. Wall 113 may define an internal edge of ridge 117 of sheath 104. Thus, ridge 117 may maintain pawl 112 in a rotated state in response to sheath 104 sliding into housing 102.
(15) In various embodiments, locking arm 109 may also compress spring 110 in response to depression by pawl 112. In that regard, spring 110 is configured to lock sheath 104 into place by urging locking arm 109 to rotate about joint 107 and raise projection 108 in the y direction (vertically) to overlap with wall 111 in the x direction (horizontally). A blade retention system 118 may retain blade 120 in safety knife 100.
(16) Referring now to
(17) In various embodiments, locking arm 109 may be maintained in a pivoted position, compressing spring 110, by projection 108 slidably engaging surface 138 of internal cavity 136. Sheath 104 may have a limited range of retraction based on at least one of the depth of end 134 in the x direction relative to internal portion 105, the location of anchor point 124 relative to slot 122 in the x direction, or the location of wall 113 relative to housing 102 in the x direction, for example. Switch 106 is depicted as released and in an undepressed position in
(18) Referring now to
(19) In various embodiments, pawl 112 may be rotatably coupled to switch 106 by joint 114. Pawl 112 may include a torsion spring 140 configured to bias pawl 112 into the extended position as illustrated in
(20) Referring now to
(21) In various embodiments, wall 113 of ridge 117 may prevent pawl 112 from rotating about joint 114 into the fully extended position. Depression of switch 106 in this position may cause pawl 112 to rotate about joint 114 further and/or only partially depress exposed portion 150 of locking arm 109 so that projection 108 cannot clear wall 111. Wall 113 of ridge 117 thus restricts sheath 104 from exposing the blade by disabling the unlocking function of switch 106 until sheath 104 is fully extended and locked into position. Stated another way, ridge 117 allows pawl 112 to rotate into the fully extended position in response to sheath 104 being in a fully extended position.
(22) With reference to
(23) Benefits, other advantages, and solutions to problems have been described herein with regard to specific embodiments. Furthermore, the connecting lines shown in the various figures contained herein are intended to represent exemplary functional relationships and/or physical couplings between the various elements. It should be noted that many alternative or additional functional relationships or physical connections may be present in a practical system. However, the benefits, advantages, solutions to problems, and any elements that may cause any benefit, advantage, or solution to occur or become more pronounced are not to be construed as critical, required, or essential features or elements of the disclosures.
(24) The scope of the disclosures is accordingly to be limited by nothing other than the appended claims, in which reference to an element in the singular is not intended to mean one and only one unless explicitly so stated, but rather one or more. Moreover, where a phrase similar to at least one of A, B, or C is used in the claims, it is intended that the phrase be interpreted to mean that A alone may be present in an embodiment, B alone may be present in an embodiment, C alone may be present in an embodiment, or that any combination of the elements A, B and C may be present in a single embodiment; for example, A and B, A and C, B and C, or A and B and C. Different cross-hatching is used throughout the figures to denote different parts but not necessarily to denote the same or different materials.
(25) Systems, methods and apparatus are provided herein. In the detailed description herein, references to one embodiment, an embodiment, an example embodiment, etc., indicate that the embodiment described may include a particular feature, structure, or characteristic, but every embodiment may not necessarily include the particular feature, structure, or characteristic. Moreover, such phrases are not necessarily referring to the same embodiment. Further, when a particular feature, structure, or characteristic is described in connection with an embodiment, it is submitted that it is within the knowledge of one skilled in the art to affect such feature, structure, or characteristic in connection with other embodiments whether or not explicitly described. After reading the description, it will be apparent to one skilled in the relevant art(s) how to implement the disclosure in alternative embodiment
(26) Furthermore, no element, component, or method step in the present disclosure is intended to be dedicated to the public regardless of whether the element, component, or method step is explicitly recited in the claims. No claim element is intended to invoke 35 U.S.C. 112(f) unless the element is expressly recited using the phrase means for. As used herein, the terms comprises, comprising, or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus.