Readily releasable locking device for a desk
09687072 ยท 2017-06-27
Assignee
Inventors
Cpc classification
Y10T74/20648
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
Y10T74/20438
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
Y10T74/2042
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
Abstract
Disclosed is a readily releasable locking device for guarding a movement of an angularly movable flat board relative to an elongated shell. The readily releasable locking device includes a latch member operable to retain or release a guided rod that can be retained at various positions to permit the flat board to be tilted at different angles. Also disclosed is a readily releasable locking device for guarding against a movement of the elongated shell that is linearly movable relative to a non-movable tubular core member.
Claims
1. A readily releasable locking device for guarding against a linear movement of a linearly movable elongated shell relative to a non-movable tubular core member, the linearly movable elongated shell being slidably fitted on the non-movable tubular core member, and being disposed to make continuous linear displacement relative to the non-movable tubular core member between a retracted position and an extended position, said readily releasable locking device comprising: an under mounting frame adapted to be secured to the linearly movable elongated shell; front and rear mounting frames adapted to be secured to the non-movable tubular core member and spaced apart from each other in a forward-and-rearward direction; a guiding bar extending in the forward-and-rearward direction to terminate at front and rear ends which are secured to said front and rear mounting frames, respectively; a hollow block configured to be guided by and movable relative to said guiding bar between a rear position, where said hollow block is close to said rear mounting frame, and which corresponds to the retracted position of the linearly movable elongated shell, and a front position, where said hollow block is remote from said rear mounting frame, and which corresponds to the extended position of the linearly movable elongated shell; a connecting rod which extends through said front mounting frame to connect said under mounting frame and said hollow block, thereby permitting said hollow block to be moved with the linearly movable elongated shell; a latch member disposed in said hollow block and coupled with said guiding bar such that said latch member is displaceable between a first orientation, where said latch member together with said hollow block is retained on said guiding bar, and a second orientation, where said latch member together with said hollow block is permitted to move relative to said guiding bar; a biasing member disposed in said hollow block to bias said latch member to the first orientation; and an actuating unit configured to actuate said latch member to move from the first orientation to the second orientation.
2. The readily releasable locking device according to claim 1, wherein said hollow block has a front wall having a rear abutment surface and formed with a through bore through which said guiding bar extends, an upper support wall defining an abutment surface, and a lower limit wall defining a limit surface, and spaced apart from said upper support wall by an accommodation space, said latch member having a fulcrum region held on by said abutment surface, a power region disposed to be actuated by said actuating unit to move between an engaged position, where said power region abuts against said limit surface, and which corresponds to the second orientation of said latch member, and a disengaged position which corresponds to the first orientation of said latch member, and a weight region disposed between said fulcrum region and said power region, and having a gate hole through which said guiding bar extends, and which is configured such that when said power region is in the disengaged position, said weight region is retained on said guiding bar, and such that when said power region is in the engaged position, said weight region is released from being retained on said guiding bar.
3. The readily releasable locking device according to claim 2, wherein said biasing member is sleeved on said guiding bar and disposed between said rear abutment surface and said weight region to bias said latch member to the first orientation.
4. The readily releasable locking device according to claim 3, wherein said actuating unit includes a pull cord having a pulled end, and a cord body extending from said pulled end in the forward-and-rearward direction through said front wall to terminate at an anchor end which is connected to said power region of said latch member, and a manually operable actuator disposed to actuate said pulled end to transmit a pulling force to said anchor end so as to pull said power region from the disengaged position to the engaged position.
5. The readily releasable locking device according to claim 4, wherein said anchor end has an enlarged head, and said power region is formed with a slit for insertion of said cord body therethrough so as to permit said enlarged head to be brought into abutting engagement with said power region, thereby allowing said power region to be pulled to the engaged position.
6. The readily releasable locking device according to claim 5, wherein said under mounting frame has a longitudinal mounting wall adapted to be secured to the linearly movable elongated shell and extending in the forward-and-rearward direction to terminate at a rear wall end, and a transverse mounting wall extending downwardly from said rear wall end, said connecting rod being configured to connect said transverse mounting wall and said hollow block, said manually operable actuator having an angular lever which has a fulcrum end pivotally mounted to said under frame about a fourth pivot axis in a position adjacent to said longitudinal mounting wall, a power end, and a weight end which is angularly displaced from said power end about the fourth pivot axis, and which is configured to anchor said pulled end such that when said power end is pushed to move angularly about the fourth pivot axis, said weight end is actuated to pull said pulled end.
7. The readily releasable locking device according to claim 2, wherein said latch member further has a head region which extends from said fulcrum region and outwardly of said hollow block, said fulcrum region being configured to be narrower than said head region, said upper support wall having an engaging hole which has a larger-dimension hole segment and a smaller-dimension hole segment bordered by said abutment surface, said latch member being inserted into said accommodation space through said larger-dimension hole segment such that said fulcrum region is fitted into said smaller-dimension hole segment to thereby be held on by said abutment surface.
8. The readily releasable locking device according to claim 1, wherein said hollow block has a front wall formed with a through bore through which said guiding bar extends, and an upper support wall having an engaging hole which is defined by front and rear abutment surfaces, said readily releasable locking device comprising two of said latch members, said latch members being spaced apart from each other in the forward-and-rearward direction, and each having a fulcrum region held on by a corresponding one of said front and rear abutment surfaces, a power region disposed to be actuated by said actuating unit to move between a normal position, where said power regions of said latch members are away from each other, and which corresponds to the first orientation, and a pressed position, where said power regions of said latch members are closer to each other, and which corresponds to the second orientation, and a weight region disposed between said fulcrum region and said power region, and having a gate hole through which said guiding bar extends, and which is configured such that when said power region is in the normal position, said weight region is retained on said guiding bar, and such that when said power region is in the pressed position, said weight region is released from being retained on said guiding bar.
9. The readily releasable locking device according to claim 8, wherein said biasing member is sleeved on said guiding bar and disposed between said weight regions of said latch members to bias said latch members to the first orientation.
10. The readily releasable locking device according to claim 9, wherein said actuating unit includes a pull cord having a pulled end, and a cord body extending from said pulled end in the forward-and-rearward direction through said front wall and said power region of a front one of said latch members to terminate at an anchor end which is connected to said power region of a rear one of said latch members, a tubular spacer which is sleeved on said cord body and disposed between said power regions of said latch members, and which is configured such that when said power regions of said latch members are in the pressed position, said tubular spacer is braced against said power regions, and a manually operable actuator disposed to actuate said pulled end to transmit a pulling force to said anchor end so as to pull said power region of said rear one of said latch members, thereby permitting said latch members to be displaced from the normal position to the pressed position.
11. The readily releasable locking device according to claim 10, wherein each of said latch members further has a head region which extends from said fulcrum region and outwardly of said hollow block, said fulcrum region being configured to be narrower than said head region, said engaging hole of said upper support wall having a larger-dimension hole segment, a front smaller-dimension hole segment bordered by said front abutment surface, and a rear smaller-dimension hole segment bordered by said rear abutment surface, each of said latch members being inserted into an accommodation space of said hollow block through said larger-dimension hole segment such that said fulcrum region is fitted into a corresponding one of said front and rear smaller-dimension hole segments to thereby be held on by the corresponding one of said front and rear abutment surfaces.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Other features and advantages of the disclosure will become apparent in the following detailed description of the embodiments with reference to the accompanying drawings, in which:
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DETAILED DESCRIPTION
(28) Before the disclosure is described in greater detail, it should be noted that like elements are denoted by the same reference numerals throughout the disclosure.
(29)
(30) The desk support 1 is non-movable, and includes a desk base 10, a supporting leg 11 extending upwardly from the desk base 10 to terminate at an upper leg end 110, and a tubular core member 111 supported on the upper leg end 110. The tubular core member 111 has front and rear segments 113, 112 which are opposite to each other in a forward-and-rearward direction (D1). The non-movable flat board 3 is mounted on the rear segment 112 of the tubular core member 111.
(31) The elongated shell 23 is not angularly movable, and is slidably fitted on the tubular core member 111. The elongated shell 23 is disposed to make continuous linear displacement relative to the tubular core member 111 in a forward-and-rearward direction (D1) between a retracted position (see
(32) The movable flat board 4 is linearly moved with the elongated shell 23 when the elongated shell 23 is moved linearly (see
(33) The first readily releasable locking device 5 is used for guarding against an angular movement of the movable flat board 4 relative to the elongated shell 23. As best shown in
(34) The first link bar 43 is fixed on the flat board 4 and has a first pivot end 431 distal from the flat board 4. The second link bar 50 is fixed on the elongated shell 23 and has a second pivot end 501 distal from the elongated shell 23.
(35) The first hollow block 52 is pivotally mounted to the second pivot end 501 about a second pivot axis (P2), and has a guiding slot 526 (see
(36) As best shown in
(37) The first latch member 53 is disposed in the first hollow block 52 and is coupled with the guided rod 51 such that the first latch member 53 is displaceable between a first orientation (see
(38) As shown in
(39) As shown in
(40) As best shown in
(41) With reference to
(42) The first biasing member 54 is disposed in the first hollow block 52 to bias the first latch member 53 to the first orientation. In this embodiment, the first biasing member 54 is a spring sleeved on the rod body 510, and is disposed between the inner abutment surface 5211 and the weight region 531 to bias the first latch member 53 to the first orientation (
(43) The first actuating unit 550 is configured to actuate the first latch member 53 to move from the first orientation to the second orientation. As best shown in
(44) In this embodiment, the anchor end 575 has an enlarged head 5751, and the power region 534 of the first latch member 53 is formed with a slit 535 for insertion of the cord body 571 so as to permit the enlarged head 5751 to be brought into abutting engagement with the power region 534, thereby allowing the power region 534 to be pulled to the engaged position.
(45) With reference to
(46) The angular lever 560 has a lever-fulcrum region 562 pivotally mounted to the mounting wall 554 about a third pivot axis (P3), a power end 563, and a weight end 564. The weight end 564 is angularly displaced from the power end 563 about the third pivot axis (P3), and is configured to anchor the pulled end 573 such that when the power end 563 is pushed to move angularly about the third pivot axis (P3), the weight end 564 is actuated to pull the pulled end 573. The angular lever 560 further has a web portion 561 which interconnects the power end 563 and the weight end 564 for reinforcement of the structure of the angular lever 560.
(47) In addition, the weight end 564 is configured to have an engaging bore 5641 for insertion of the pulled end 573 therethrough. The pulled end 573 has an enlarged head 5731 which is anchored in the engaging bore 5641 when the weight end 564 is actuated to pull the pulled end 573.
(48) In this embodiment, the cord member 57 further includes a tubular sheath 572, into which the cord body 571 is inserted loosely, and a tubular fitting 574 (see
(49) As shown in
(50) Referring back to
(51) Furthermore, the first readily releasable locking device 5 includes two of the locking units 520. In each locking unit 520, two second link bars 50 (only one is shown in
(52) With reference to
(53) As best shown in
(54) The under mounting frame 660 is secured to the elongated shell 23. The front and rear mounting frames 115, 114 are secured to an inner surface of the front segment 113 of the tubular core member 111, and are spaced apart from each other in the forward-and-rearward direction (D1).
(55) The guiding bar 61 extends in the forward-and-rearward direction (D1) to terminate at front and rear ends 611, 612 which are secured to the front and rear mounting frames 115, 114, respectively.
(56) The second hollow block 62 is configured to be guided by and movable relative to the guiding bar 61 between a rear position (
(57) The connecting rod 67 extends through the front mounting frame 115 to connect the under mounting frame 660 and the second hollow block 62, thereby permitting the second hollow block 62 to be moved with the elongated shell 23.
(58) The second latch member 63 is disposed in the second hollow block 62 and is coupled with the guiding bar 61 such that the second latch member 63 is displaceable between a first orientation (
(59) As best shown in
(60) As best shown in
(61) Referring further to
(62) The second biasing member 64 is disposed in the second hollow block 62 to bias the second latch member 63 to the first orientation (
(63) The second actuating unit 650 is configured to actuate the second latch member 63 to move from the first orientation to the second orientation. The second actuating unit 650 includes a cord member 69 and a manually operable actuator 68.
(64) The cord member 69 includes a pull cord 690. The pull cord 690 has a pulled end 693, and a cord body 691 extending from the pulled end 693 in the forward-and-rearward direction (D1) through the front mounting frame 115 and the front wall 621 to terminate at an anchor end 698 which is connected to the power region 634 of the second latch member 63. The anchor end 698 has an enlarged head 6981, and the power region 634 is formed with a slit 635 for insertion of the cord body 691 so as to permit the enlarged head 6981 to be brought into abutting engagement with the power region 634, thereby allowing the power region 634 to be pulled to the engaged position (
(65) In this embodiment, the cord member 69 further includes a tubular sheath 692 into which the cord body 691 is inserted loosely, and a tubular fitting 694 (see
(66) The manually operable actuator 68 is disposed to actuate the pulled end 693 to transmit a pulling force to the anchor end 698 so as to pull the power region 634 from the disengaged position (
(67) With reference to
(68) The manually operable actuator 68 has an angular lever 680. The angular lever 680 has a fulcrum end 682, a power end 684, and a weight end 685. The fulcrum end 682 is pivotally mounted to the covering member 65 of the under mounting frame 660 about a fourth pivot axis (P4) in a position adjacent to the front wall end 664 of the longitudinal mounting wall 661. The weight end 685 is angularly displaced from the power end 684 about the fourth pivot axis (P4), and is configured to anchor the pulled end 693 such that when the power end 684 is pushed to move angularly about the fourth pivot axis (P4), the weight end 685 is actuated to pull the pulled end 693. As shown in
(69) In this embodiment, as shown in
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(71) The second hollow block 62 has a front wall 621 and an upper support wall 622. The front wall 621 is formed with a through bore 625 through which the guiding bar 61 extends. The upper support wall 622 has an engaging hole 627 which is defined by front and rear abutment surfaces 6222, 6223.
(72) Furthermore, as shown in
(73) In the second embodiment, each of the second latch members 63 further has a head region 632 which extends from the fulcrum region 633 and outwardly of the second hollow block 62. The fulcrum region 633 is configured to be narrower than the head region 632 and the weight region 631 so as to serve as a neck of the second latch member 63.
(74) As shown in
(75) In this embodiment, the second biasing member 64 is disposed between the weight regions 631 of the latch members 63 to bias the second latch members 63 to the first orientation (
(76) Furthermore, in the second embodiment, the cord body 691 extends from the pulled end 693 in the forward-and-rearward direction (D1) through the front mounting frame 115, the front wall 621, and the power region 634 of a front one of the second latch members 63 to terminate at an anchor end 698 which is connected to the power region 634 of a rear one of the second latch members 63.
(77) In the second embodiment, the second actuating unit 650 further includes a tubular spacer 696. The tubular spacer 696 is sleeved on the cord body 691 and is disposed between the power regions 634 of the second latch members 63. The tubular spacer 696 is configured such that when the power regions 634 of the second latch members 63 are in the pressed position (
(78) In the second embodiment, the manually operable actuator 68 is disposed to actuate the pulled end 693 of the cord body 691 to transmit a pulling force to the anchor end 698 so as to pull the power region 634 of the rear one of the second latch members 63, thereby permitting the second latch members 63 to be displaced from the normal position to the pressed position.
(79) While the disclosure has been described in connection with what are considered the exemplary embodiments, it is understood that this disclosure is not limited to the disclosed embodiments but is intended to cover various arrangements included within the spirit and scope of the broadest interpretation so as to encompass all such modifications and equivalent arrangements.