CN110572976A - Slide rail mechanism and bracket device thereof - Google Patents

Slide rail mechanism and bracket device thereof Download PDF

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Publication number
CN110572976A
CN110572976A CN201910857623.3A CN201910857623A CN110572976A CN 110572976 A CN110572976 A CN 110572976A CN 201910857623 A CN201910857623 A CN 201910857623A CN 110572976 A CN110572976 A CN 110572976A
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CN
China
Prior art keywords
bracket
support
supporting
wall
frame
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
CN201910857623.3A
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Chinese (zh)
Other versions
CN110572976B (en
Inventor
陈庚金
杨顺和
张维成
王俊强
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
King Slide Works Co Ltd
King Slide Technology Co Ltd
Original Assignee
King Slide Works Co Ltd
King Slide Technology Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by King Slide Works Co Ltd, King Slide Technology Co Ltd filed Critical King Slide Works Co Ltd
Priority to CN201910857623.3A priority Critical patent/CN110572976B/en
Publication of CN110572976A publication Critical patent/CN110572976A/en
Application granted granted Critical
Publication of CN110572976B publication Critical patent/CN110572976B/en
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Classifications

    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K7/00Constructional details common to different types of electric apparatus
    • H05K7/14Mounting supporting structure in casing or on frame or rack
    • H05K7/1401Mounting supporting structure in casing or on frame or rack comprising clamping or extracting means
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K7/00Constructional details common to different types of electric apparatus
    • H05K7/14Mounting supporting structure in casing or on frame or rack
    • H05K7/1485Servers; Data center rooms, e.g. 19-inch computer racks
    • H05K7/1488Cabinets therefor, e.g. chassis or racks or mechanical interfaces between blades and support structures
    • H05K7/1489Cabinets therefor, e.g. chassis or racks or mechanical interfaces between blades and support structures characterized by the mounting of blades therein, e.g. brackets, rails, trays
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K7/00Constructional details common to different types of electric apparatus
    • H05K7/18Construction of rack or frame
    • H05K7/183Construction of rack or frame support rails therefor

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  • Engineering & Computer Science (AREA)
  • Microelectronics & Electronic Packaging (AREA)
  • Computer Hardware Design (AREA)
  • General Engineering & Computer Science (AREA)
  • Drawers Of Furniture (AREA)

Abstract

The invention relates to a sliding rail mechanism and a bracket device thereof. The first support frame can move relative to the rail piece; the second support frame can move relative to the first support frame; the bracket and the second support frame can move relative to each other; the reinforcing part can move relative to the rail part in response to the displacement of the first support frame; the rail piece comprises a first clamping structure, the reinforcing piece comprises a second clamping structure, and the reinforcing piece can be used for clamping the first clamping structure through the second clamping structure.

Description

Slide rail mechanism and bracket device thereof
The application is a divisional application of an invention patent application with the invention name of a sliding rail mechanism and a bracket device thereof, which is filed on 19.01.2017 and has the application number of "201710043595.2".
Technical Field
The invention relates to a sliding rail mechanism and a bracket device thereof, in particular to a sliding rail mechanism which can be put on a rack by a single person and can be suitable for racks with different depths to be installed.
Background
The continental invention patent publication No. CN 102695396B discloses a tool-free mounting bracket for a sliding rail for a server, which comprises a pair of frame positioning columns (4) arranged on a rear mounting bracket (1) of the sliding rail and a frame floating hook (2), wherein the frame floating hook (2) comprises a pair of hooks (203) respectively arranged on a pair of fins (205), and the fins (205) are respectively provided with a sliding guide sleeve (201) and are fixedly connected through an arched door-shaped bending piece (206); two sliding guide columns (101) are further fixed on the rear mounting bracket (1) of the sliding rail, the sliding guide columns (101) are sleeved in sliding guide sleeves (201) and are fixedly connected through gear screws (7), and first return springs (6) are arranged on the sliding guide sleeves (201) and between the wing plates (205) and the gear screws (7); still be equipped with on installing support (1) behind the slide rail and be used for placing buoyancy lift pin via hole (104) of buoyancy lift pin (3), the one end of buoyancy lift pin (3) is connected on "arched door" shape piece (206) of bending through keeping off a position screw (7), and the other end sets up in buoyancy lift pin via hole (104) for conical head (301), and the cover is equipped with second answer spring (5) on buoyancy lift pin (3), between the terminal surface of conical head (301) and fender position screw (7).
According to the configuration, the front scheme can be driven by the slide rail outer rail covered by the rear bracket through the buoyancy lifting pin (3) so as to lock/release the slide rail rear mounting bracket (1). However, the design disclosed in the foregoing is easily limited by the length of the outer rail and the adjustment amount of the bracket with which the outer rail is engaged, and there is a limitation on the use condition. That is, the length of the outer rail is long enough to be actuated to lock/release the sliding track rear mounting bracket (1).
In addition, referring to fig. 1, a slide mechanism 300 includes a slide 302, the slide 302 being mounted to a front column 308 and a rear column 310 of a rack (rack) via a front bracket device 304 and a rear bracket device 306. The rear bracket assembly 306 generally includes a rear bracket 312 and at least one support bracket, such as two support brackets 314 and 316, that are telescopically displaceable relative to each other to adjust the movement of the rear bracket 312 relative to the slide rail 302 in response to different distances between the front pillar 308 and the rear pillar 310. When the slide rail 302 carries an object 318, if the weight W of the object 318 is too heavy, the two support frames 314 and 316 and the rear bracket 312 of the bracket device, such as the rear bracket device 306, may sink and fall down, and the two support frames 314 and 316 and the rear bracket 312 may tilt or tilt relative to each other.
Disclosure of Invention
the invention aims to provide a slide rail mechanism which can realize that a single person stands in front of a rack, can operate a slide rail to be installed on a front machine column and a rear machine column of the rack and can strengthen the supporting capacity of the slide rail.
Another object of the present invention is to provide a slide rail mechanism which can be installed on racks of different depths by a single person and can enhance the supporting capability of the slide rail.
According to an aspect of the present invention, a sliding rail mechanism includes a rail, a first supporting frame, a second supporting frame, a bracket and a reinforcing member. The first support frame can move relative to the rail piece; the second support frame can move relative to the first support frame; the bracket and the second support frame can move relative to each other; the reinforcing piece is connected with the first support frame and comprises a holding part which is used for supporting the rail piece; the rail piece comprises a first clamping structure, the reinforcing piece comprises a second clamping structure, and the reinforcing piece can be used for clamping the first clamping structure through the second clamping structure.
Preferably, when the first support frame moves to a predetermined position relative to the rail member, the second engaging structure of the reinforcement member engages with the first engaging structure of the rail member.
Preferably, the bracket comprises a release structure for releasing the second clamping structure of the reinforcing member from the first clamping structure of the rail member.
preferably, the first support frame further comprises an opening and at least one contact wall adjacent to the opening, the second support frame comprises an abutting portion for penetrating the opening, and the size of the abutting portion is smaller than that of the opening.
Preferably, the bracket includes a side wall, at least one mounting member adjacent to the side wall, and the slide rail mechanism further includes a fastener movably mounted on the bracket.
Preferably, the fastener is pivoted with respect to the bracket, and the fastener includes a supporting leg, and the second supporting frame includes a supporting structure, wherein when the second supporting frame is located at a position with respect to the bracket, the supporting structure of the second supporting frame fails to provide the supporting leg of the fastener for abutting, so that the fastener is located at a first state with respect to the at least one mounting member; when the second support frame leaves the position relative to the bracket, the support structure of the second support frame can provide support legs of the fastener to abut against the support structure, so that the fastener is in a second state relative to the at least one mounting part.
Preferably, the slide rail mechanism further comprises an elastic member attached to the second support frame, the elastic member has a first engaging feature, the bracket comprises a second engaging feature, and the first engaging feature can engage with the second engaging feature.
Preferably, the first latching feature is a protrusion and the second latching feature is a positioning hole.
Preferably, when the second support frame is located at the position corresponding to the bracket, the second support frame is clamped with the second clamping feature of the bracket through the first clamping feature of the elastic member.
Preferably, one of the second supporting frame and the bracket comprises a limiting structure, and the second supporting frame and the bracket can move relative to each other within a limited range through the limiting structure.
Preferably, the bracket further comprises an end wall substantially perpendicularly connected to the side wall, the at least one mounting member being located on the end wall.
Preferably, the side wall of the bracket has a first wall and a second wall defining a space therebetween, and the bracket and the second support frame are displaceable relative to each other through the space.
Preferably, the second support frame includes an extension portion and a guide structure, the extension portion is located between the support structure and the guide structure, the support structure includes a support section and a guide section adjacent to the support section, the fastener further includes a guide pin, when the second support frame is located at the position relative to the bracket, the extension portion of the second support frame provides a guide pin of the fastener for abutting against, so that the fastener is kept at the first state, when the second support frame is located at the position relative to the bracket, the guide section of the support structure is used for driving the support leg of the fastener, so that the fastener is converted from the first state to the second state, and when the fastener is located at the second state, the support section of the support structure is used for providing a support leg of the fastener for abutting against, and when the second support frame returns to the position relative to the bracket again, the guide structure of the second support frame drives the fastener through the guide pin to be converted from the second state to the first state.
Preferably, the slide rail mechanism further comprises a support rail connected to the rail member, the support rail comprising an upper wall, a lower wall, and a longitudinal wall connected between the upper wall and the lower wall, the upper wall, the lower wall, and the longitudinal wall collectively defining a channel, at least a portion of the first support frame being movably mounted to the channel.
Preferably, the longitudinal wall of the support rail has a first limit feature located in the channel, and the first support frame has a second limit feature corresponding to the first limit feature.
Preferably, the slide rail mechanism further comprises another bracket having a side wall and at least one mounting member adjacent to the side wall, the side wall being connected to the longitudinal wall of the support rail.
According to another aspect of the present invention, a sliding rail mechanism includes a rail, a first supporting frame, a second supporting frame, a bracket and a reinforcing member. The first support frame can move relative to the rail piece; the second support frame can move relative to the first support frame; the bracket and the second support frame can move relative to each other; the reinforcing part can move relative to the rail part in response to the displacement of the first support frame; the rail piece comprises a first clamping structure, the reinforcing piece comprises a second clamping structure, and the reinforcing piece can be used for clamping the first clamping structure through the second clamping structure.
According to another aspect of the present invention, a bracket device of a slide rail mechanism includes an auxiliary support frame, and a bracket mounted to the auxiliary support frame. One of the auxiliary support frame and the bracket is provided with a first wall and a second wall, a space is defined between the first wall and the second wall, and the bracket and the auxiliary support frame can move relative to each other through the space; wherein the bracket comprises a first supporting convex body positioned on one of the upper side and the lower side of the space for supporting the second supporting frame; wherein, the auxiliary supporting frame comprises a front supporting convex body positioned at the other of the upper side and the lower side of the space for supporting the bracket.
Drawings
For further explanation of the above objects, structural features and effects of the present invention, the present invention will be described in detail below with reference to the accompanying drawings, in which:
Fig. 1 shows a prior art slide rail mechanism mounted to two columns and carrying an object.
fig. 2 is a schematic perspective view illustrating a first column and a second column of a rack to which a slide rail mechanism according to an embodiment of the invention is mounted.
Fig. 3 is a schematic perspective view illustrating a slide rail mechanism according to an embodiment of the invention.
Fig. 4 is an exploded view of a slide rail mechanism according to an embodiment of the invention.
Fig. 5 is a partial schematic view of a slide rail mechanism according to an embodiment of the invention, wherein a fastener is in a first state.
Fig. 6 is a partial schematic view of a slide rail mechanism according to an embodiment of the invention, wherein the fastener is in a second state.
Fig. 7 is a schematic view illustrating the second supporting frame of the embodiment of the invention in a first position relative to the first bracket.
Fig. 8 is a schematic view illustrating the second supporting frame of the embodiment of the invention in a second position relative to the first bracket.
FIG. 9 is a schematic view of the at least one mounting member of the first bracket entering the aperture of the first mast and the fastener in the second state in accordance with one embodiment of the present invention.
FIG. 10 is a schematic view of at least one mounting member of the first bracket entering a hole in the first mast and the fastener in a first state according to one embodiment of the invention.
Fig. 11 is a schematic view illustrating the slide rail mechanism of an embodiment of the present invention being mounted to the first column through the first bracket.
Fig. 12 is an enlarged view of the region a of fig. 11.
Fig. 13 is an enlarged view of the region B of fig. 11.
Fig. 14 is an enlarged view of the region C of fig. 11.
Fig. 15 is a schematic view of the first bracket of the slide rail mechanism mounted to the first column according to an embodiment of the present invention.
Fig. 16 is an enlarged view of the region a of fig. 15.
Fig. 17 is a schematic view illustrating the first bracket and the second bracket of the slide rail mechanism of the embodiment of the invention being mounted to the first column and the second column, respectively.
Fig. 18 is a schematic view illustrating that the slide rail mechanism can be operated and retracted from an extended state in one direction according to an embodiment of the present invention.
Fig. 19 is a schematic view illustrating that the first bracket can contact the reinforcement member when the slide rail mechanism is in the retracted state from the extended state according to the embodiment of the present invention.
Fig. 20 is an enlarged view of the region a of fig. 19.
fig. 21 is a schematic view illustrating that the first bracket can release the reinforcing member from the rail member when the slide rail mechanism of the embodiment of the invention is in the retracted state from the extended state.
Fig. 22 is an enlarged view of the region a of fig. 21.
Fig. 23 is a schematic view illustrating a sliding rail mechanism in a retracted state according to an embodiment of the invention.
Fig. 24 is a schematic view of the slide rail mechanism of the embodiment of the invention mounted to two columns and carrying an object.
Detailed Description
As shown in fig. 2, the slide rail mechanism 20 of an embodiment of the present invention can be mounted to a first column 26 and a second column 28 of a rack (rack) through a first bracket 22 (also referred to as bracket) and a second bracket 24 (also referred to as another bracket).
As shown in fig. 3 and 4, the slide rail mechanism 20 includes a rail member 30, a first support frame 32 (also referred to as an extension support frame), a second support frame 34 (also referred to as an auxiliary support frame), the first bracket 22, and a reinforcement member 36, and preferably further includes a support rail 38.
The rail 30 has a first end 40a and a second end 40b positioned opposite the first end 40 a. The rail 30 includes a first detent structure 42 located between the first end 40a and the second end 40 b.
The support rail 38 is attached, such as fixedly attached, to a back side of the rail member 30 and may be considered part of the rail member 30. For example, the support rail 38 may be riveted, bolted, welded, or the like, to the rail member 30. Further, the support rail 38 has an upper wall 44a, a lower wall 44b, and a longitudinal wall 46 connected between the upper wall 44a and the lower wall 44 b. The upper wall 44a, the lower wall 44b and the longitudinal wall 46 together define a channel 48. Preferably, the longitudinal wall 46 has a first stop feature 50 located within the channel 48. Here, the first position-limiting feature 50 is exemplified by a bump. The second bracket 24 has a side wall 52 and at least one mounting member 53 located adjacent one end of the side wall 52, the side wall 52 being connected to the longitudinal wall 46 of the support rail 38. The at least one mounting member 53 is exemplified by two. Preferably, the second bracket 24 is located adjacent the second end 40b of the rail member 30.
The first support bracket 32 is displaceable relative to the rail member 30. For example, but not limiting in implementation, a portion of the first support frame 32 is movably mounted to the channel 48 of the support rail 38, and the first support frame 32 is capable of moving relative to the rail member 30 through the channel 48 of the support rail 38. The first support frame 32 has an upper support wall 54a, a lower support wall 54b, and a longitudinal wall 56 connected between the upper support wall 54a and the lower support wall 54 b. The upper support wall 54a, the lower support wall 54b and the longitudinal wall 56 together define a channel 58. Further, the first support frame 32 has a second stop feature 60, the second stop feature 60 is connected to the longitudinal wall 56 of the first support frame 32, and the second stop feature 60 is located corresponding to the first stop feature 50 of the support rail 38. Here, the second limiting feature 60 is exemplified by an extension arm. Preferably, the first support frame 32 further includes an opening 62 and a contact wall 64 adjacent to the opening 62. Wherein the opening 62 is longitudinally disposed. Preferably, the first support frame 32 further includes a guiding surface 66 (e.g., a slant surface or a curved surface), and the contact wall 64 and the guiding surface 66 are respectively located at two sides of the opening 62.
The second support bracket 34 is displaceable relative to the first support bracket 32. For example, but not limited to, a portion of the second support bracket 34 is movably mounted to the channel 58 of the first support bracket 32, and the second support bracket 34 is displaceable relative to the first support bracket 32 through the channel 58 of the first support bracket 32. The second support bracket 34 includes a resilient arm 67 and an abutting portion 68 disposed on the resilient arm 67, wherein the resilient arm 67 extends from the second support bracket 34. The abutting portion 68 can be used to be inserted into the opening 62 of the first support frame 32, and the size of the abutting portion 68 is smaller than that of the opening 62. Preferably, the second support bracket 34 includes a support structure 70, an extension 72 and a guide structure 74. The extension 72 is located between the support structure 70 and the guide structure 74.
The first bracket 22 and the second bracket 34 are movable relative to each other. Preferably, the first bracket 22 is movably mounted to the second support bracket 34 and is adjustable to be positioned adjacent the first end 40a of the rail member 30. The first bracket 22 includes a side wall 76, an end wall 77 and at least one mounting member 78. The end wall 77 is substantially vertically connected to the side wall 76; the at least one mounting member 78 is disposed on the end wall 77, and two mounting members 78 are illustrated. The slide mechanism 20 further includes a fastener 80 movably mounted to the first bracket 22. The first bracket 22 and the second bracket 34 (and the first bracket 32) can be regarded as a bracket device.
Further, one of the first bracket 22 and the second bracket 34 has a first wall and a second wall defining a space therebetween. Herein, taking the example that the upper portion and the lower portion of the side wall 76 of the first bracket 22 respectively have a first wall 82a and a second wall 82b, a space 84 is defined between the first wall 82a and the second wall 82 b. The first bracket 22 and the second bracket 34 are movable relative to each other through the space 84. Preferably, the fastener 80 is pivotally connected to the first bracket 22 through a shaft 85, for example, the fastener 80 is pivotally connected to the first wall 82 a; the fastener 80 includes a supporting leg 86 and a guiding leg 88. Preferably, the fastener 80 further comprises a mounting portion 90, a fastening portion 92 and an arm portion 94 located between the mounting portion 90 and the fastening portion 92. Here, the supporting leg 86 and the guiding leg 88 are spaced apart from each other. The supporting legs 86 and the guiding legs 88 are bent relative to the mounting portion 90, and the supporting legs 86 and the guiding legs 88 are located in the space 84 adjacent to the first bracket 22.
Preferably, one of the first bracket 22 and the second bracket 34 includes a limiting structure 96, and the second bracket 34 and the first bracket 22 can be displaced relative to each other within a limited range through the limiting structure 96. Here, the limiting structure 96 can be a long hole with a boundary, and the slide rail mechanism 20 further includes a connecting member 98 passing through a portion of the limiting structure 96 for connecting the second supporting frame 34 to the first bracket 22.
Preferably, the first bracket 22 includes a first supporting protrusion 23 located on one of the upper and lower sides (e.g., upper side) of the space 84 for supporting the second supporting frame 34, and the second supporting frame 34 includes a front supporting protrusion 35a located on the other of the upper and lower sides (e.g., lower side) of the space 84 for supporting a second wall 82b of the first bracket 22 (see fig. 24). Preferably, the first support frame 32 includes a second support protrusion 33 located on one of the upper and lower sides (e.g., upper side) of the channel 58 for supporting the second support frame 34, and the second support frame 34 includes a rear support protrusion 35b located on the other of the upper and lower sides (e.g., lower side) of the channel 58 for supporting the lower support wall 54b of the first support frame 32.
Preferably, the slide mechanism 20 further includes an elastic member 100 attached to the second support frame 34. For example, the elastic member 100 can be connected to the second supporting frame 34 by riveting or screwing. The resilient member 100 has a first detent feature 102; on the other hand, the first bracket 22 includes a second latching feature 104, and the first latching feature 102 can latch in the second latching feature 104. The first latching feature 102 and the second latching feature 104 may be concave (or hole) or convex, or may be a matching structure of convex or concave (or hole), for example, the first latching feature 102 is a convex portion, and the second latching feature 104 is a positioning hole, but the implementation is not limited.
The reinforcing member 36 is mounted on the rail 30 and the first support frame 32 for reinforcing the supporting ability between the rail 30 and the first support frame 32. Specifically, the reinforcing member 36 includes a second engaging structure 106, and the reinforcing member 36 can be used to engage the first engaging structure 42 of the rail member 30 through an engaging portion 108 of the second engaging structure 106. Herein, the second latching structure 106 is exemplified by an elastic fitting, which can be connected to the reinforcing member 36 by riveting or screwing, and thus can be regarded as a part of the reinforcing member 36. The first latching structure 42 and the latching portion 108 of the second latching structure 106 may be concave (or hole) or convex, or may be a structure matching convex or concave (or hole), but the implementation is not limited thereto. On the other hand, the first bracket 22 includes a releasing structure 109 for releasing the latching portion 108 of the second latching structure 106 of the reinforcing member 36 from the first latching structure 42 of the rail member 30.
Preferably, the reinforcing member 36 further includes a body portion 110 and at least one clasping portion 112 located on one side of the body portion 110. Here, two clasping portions 112 are taken as an example. The two clasping portions 112 can be used to support the upper portion and the lower portion of the rail 30, respectively. The other side of the main body 110 of the reinforcing member 36 is connected to the first supporting frame 32. For example, the reinforcing member 36 can be fixedly connected to the first supporting frame 32 by riveting, screwing, welding or clipping, so that the first supporting frame 32 and the reinforcing member 36 can be regarded as a whole.
As shown in fig. 5, one of the support leg 86 of the fastener 80 and the support structure 70 of the second support frame 34 includes at least one guide section. The at least one guiding section may be an inclined surface or an arc surface. Here, for example, the supporting structure 70 includes a first guiding section 120, and the supporting structure 70 further includes a supporting section 122 adjacent to the first guiding section 120. When the second supporting frame 34 is located at a first position P1 (also referred to as a position) relative to the first bracket 22, the supporting structure 70 of the second supporting frame 34 and the supporting leg 86 of the fastening member 80 define a predetermined distance therebetween, so that the supporting structure 70 of the second supporting frame 34 cannot provide the supporting leg 86 of the fastening member 80 to abut against, and the fastening member 80 can be located at a first state S1 (e.g., a locked state) relative to the at least one mounting member 78. It should be noted that in the first state S1, the fastening portion 92 of the fastening member 80 is close to the at least one mounting member 78.
As shown in fig. 6, when the second supporting frame 34 moves away from the first position P1 relative to the first bracket 22, the supporting structure 70 of the second supporting frame 34 can provide the supporting foot 86 of the fastening member 80 to abut or support, so that the fastening member 80 is no longer in the first state S1 relative to the at least one mounting member 78. The limiting structure 96 and the connecting member 98 are used to limit the displacement of the second supporting frame 34 and the first bracket 22 relative to each other.
Specifically, when the second supporting frame 34 is shifted from the first position P1 to a second position P2 in a first direction D1 relative to the first bracket 22, the supporting structure 70 of the second supporting frame 34 contacts the supporting leg 86 through the first guiding section 120 to drive the fastening device 80 to deflect an angle until the second supporting frame 34 is at the second position P2, the supporting section 122 of the supporting structure 70 of the second supporting frame 34 can provide the supporting leg 86 of the fastening device 80 to abut against, so that the fastening device 80 is switched from the first state S1 to a second state S2 (e.g., an unlocked state) relative to the at least one mounting device 78, and the supporting leg 86 abuts against through the supporting structure 70 of the second supporting frame 34, so that the fastening device 80 can be maintained in the second state S2; on the other hand, when the second supporting frame 34 is at the second position P2 relative to the first bracket 22, the guiding structure 74 of the second supporting frame 34 is located corresponding to the guiding foot 88 of the fastener 80. It should be noted that one of the guiding structure 74 of the second supporting frame 34 and the guiding leg 88 of the fastener 80 can be an inclined surface or an arc surface. In addition, when the second supporting frame 34 moves away from the first position P1 to the second position P2 relative to the first bracket 22, the fastener 80 can be in the second state S2. In the second state S2, the fastening portion 92 of the fastening member 80 is away from the at least one mounting member 78.
As shown in fig. 7, when the second supporting frame 34 is located at the first position P1 relative to the first bracket 22, the second supporting frame 34 is clamped to the second clamping feature 104 of the first bracket 22 through the first clamping feature 102 of the elastic member 100, and the first clamping feature 102 corresponds to a blocking wall 124 of the second clamping feature 104. Accordingly, the second supporting frame 34 can be maintained at the first position P1 relative to the first bracket 22.
As shown in fig. 8, the operation mode can be selected to directly operate the first latching feature 102 of the resilient member 100 to release the second latching feature 104 of the first bracket 22, and then displace the second supporting frame 34 relative to the first bracket 22 from the first position P1 to the first position D1 to the second position P2. Alternatively, the first latching feature 102 is designed to have a guiding mechanism, such as a slope or a cambered surface, relative to the second latching feature 104, so that the first latching feature 102 can be disengaged from the second latching feature 104 by the displacement of the second supporting frame 34 relative to the first bracket 22.
As shown in fig. 9, when the second supporting frame 34 is located at the second position P2 relative to the first bracket 22, the supporting structure 70 of the second supporting frame 34 can provide the supporting foot 86 of the fastening member 80 to abut against, so that the fastening member 80 is located at the second state S2 relative to the first column 26 (also referred to as "column"). Wherein the buckle portion 92 of the buckle 80 is away from the at least one mounting member 78, and the buckle portion 92 fails to lock the first mast 26. Further, when the first bracket 22 is to be installed on the first mast 26, the user can advance the first bracket 22 in a second direction D2 (e.g., a direction opposite to the first direction D1) such that the at least one mounting member 78 of the first bracket 22 enters the at least one hole 126 of the first mast 26 and the first bracket 22 abuts against the first mast 26.
As shown in fig. 10, when the first bracket 22 abuts against the first mast 26, the user can apply a force in the second direction D2 to move the second supporting frame 34 relative to the first bracket 22 from the second position P2 to the first position P1 in the second direction D2, so that the supporting structure 70 of the second supporting frame 34 cannot provide the supporting foot 86 of the fastener 80 to abut against, and the fastener 80 can be operated to recover the first state S1. Preferably, in response to the second supporting frame 34 being displaced from the second position P2 to the second direction D2 relative to the first bracket 22, the guiding structure 74 can drive the guiding leg 88 of the fastening member 80, so that the fastening member 80 is restored from the second state S2 to the first state S1. Wherein the fastening portion 92 of the fastener 80 is adjacent to the at least one mounting member 78, and the fastening portion 92 is capable of locking the first mast 26. Thus, the process of mounting the first bracket 22 to the first mast 26 is completed.
As shown in fig. 11, the operator may pre-stretch the slide mechanism 20 to make the slide mechanism 20 in an extended state having a first length L1. Specifically, the first supporting frame 32 can be displaced relative to the rail member 30 in the second direction D2 to be in an extended state relative to the supporting rail 38, and the second supporting frame 34 can be displaced relative to the first supporting frame 32 in the second direction D2 to be in an extended state.
The second limit feature 60 of the first support frame 32 can abut against the first limit feature 50 of the support rail 38 (see fig. 12).
Since the reinforcing member 36 is connected to the first supporting frame 32, in response to the displacement of the first supporting frame 32 relative to the rail member 30 and/or the supporting rail 38 in the second direction D2, the reinforcing member 36 can move to a predetermined position relative to the rail member 30, so that the reinforcing member 36 is clamped to the first clamping structure 42 of the rail member 30 by the clamping portion 108 of the second clamping structure 106 (see fig. 13). Accordingly, the first support frame 32 can be temporarily fixed relative to the rail 30 by the reinforcement member 36 being engaged with the rail 30. The second supporting frame 34 can be displaced in the second direction D2 relative to the first supporting frame 32 until the abutting portion 68 of the second supporting frame 34 enters the opening 62 of the first supporting frame 32, and the abutting portion 68 can abut against the contact wall 64 of the first supporting frame 32 (see fig. 13).
The support section 122 of the support structure 70 of the second support frame 34 can provide support or abutment for the support leg 86 of the fastener 80 (see fig. 14), so that the fastener 80 is in the second state S2 relative to the at least one mounting member 78. Wherein the fastening portion 92 of the fastening member 80 is away from the at least one mounting member 78; on the other hand, when the second supporting frame 34 is located at the second position P2 relative to the first bracket 22, the guiding structure 74 of the second supporting frame 34 is located corresponding to or adjacent to the guiding leg 88 of the fastener 80; on the other hand, the first latching feature 102 of the elastic member 100 of the second support bracket 34 is not latched to the second latching feature 104 of the first bracket 22.
When mounting the slide mechanism 20 to the first mast 26 and the second mast 28, a user can first advance the slide mechanism 20 in the second direction D2 such that the at least one mounting member 78 of the first bracket 22 faces the at least one hole 126 of the first mast 26.
as shown in fig. 15, after the at least one mounting member 78 of the first bracket 22 of the sliding track mechanism 20 enters the at least one hole 126 of the first column 26, the first bracket 22 (e.g., the end wall 77) can abut against the first column 26. Further, an operator may apply a force in the second direction D2, for example, apply a force to the slide rail mechanism 20 in the second direction D2, so that the second supporting frame 34 is displaced from the second position P2 to the second direction D2 relative to the first bracket 22 to the first position P1, in other words, the supporting section 122 of the supporting structure 70 of the second supporting frame 34 fails to provide the supporting foot 86 of the fastening 80 to abut against (this portion may refer to fig. 16), so that the fastening 80 is operable to return to the first state S1. Wherein, the first latching feature 102 of the elastic member 100 of the second supporting frame 34 can be latched to the second latching feature 104 of the first bracket 22. Further, in response to the displacement of the second supporting frame 34 relative to the first bracket 22, the guiding structure 74 can drive the guiding leg 88 of the fastening member 80, so that the fastening member 80 swings at an angle from the second state S2 to return to the first state S1. The fastening portion 92 of the fastening member 80 is adjacent to the at least one mounting member 78, and the fastening portion 92 is used for locking the first column 26. Preferably, when the fastener 80 is in the first state S1, the extending portion 72 of the second supporting frame 34 can provide the guiding foot 88 to abut against, so that the fastener 80 is kept in the first state S1. It should be noted that, as shown in fig. 14 and 16, the supporting foot 86 of the fastening member 80 has a second guiding section 128. In a process of moving the second supporting frame 34 relative to the first bracket 22 from the first position P1 to the first direction D1 (e.g., a direction opposite to the second direction D2) to the second position P2 through the first guiding section 120 or the second guiding section 128 (see fig. 16 and 14), the second supporting frame 34 can easily drive the fastener 80 to be switched from the first state S1 to the second state S2.
As shown in fig. 17, after completing the operation of mounting the first bracket 22 to the first mast 26, the operator can operate the rail 30 to displace in the first direction D1 relative to the second support bracket 34, so that the at least one mounting member 53 of the second bracket 24 enters the at least one hole 130 of the second mast 28. Since this part is within the technical scope that can be understood by a person skilled in the art, it is not described herein for the sake of brevity. It can be seen that the track mechanism 20 can be mounted to the first mast 26 and the second mast 28. It should be noted that the first bracket 22 and the second bracket 24 can be detached from the first mast 26 and the second mast 28, respectively (see fig. 17, 15 and 11 for brevity, which is not described herein again).
As shown in fig. 18 and 19, the slide rail mechanism 20 can be operated from the extended state to a retracted state. Specifically, an operator can displace the second supporting frame 34 in the first direction D1, wherein the releasing structure 109 of the first bracket 22 can contact the latching portion 108 of the second latching structure 106 of the reinforcing member 36 (see fig. 20).
As shown in fig. 21 and 22, when the second supporting frame 34 continues to be displaced in the first direction D1, the releasing structure 109 of the first bracket 22 can release the engaging portion 108 of the second engaging structure 106 of the reinforcing member 36 from the first engaging structure 42 of the rail member 30, so that the first supporting frame 32 can be displaced relative to the rail member 30. Preferably, one of the releasing structure 109 of the first bracket 22 and the latching portion 108 of the second latching structure 106 has an inclined surface or an arc surface, which helps the releasing structure 109 release the latching portion 108 of the second latching structure 106 of the reinforcing member 36 from the first latching structure 42 of the rail member 30.
As shown in fig. 23, after the first supporting frame 32 is relatively movable with respect to the rail 30, the first bracket 22, the second supporting frame 34, and the first supporting frame 32 can be folded with respect to the rail 30 and/or the supporting rail 38, so that the slide rail mechanism 20 is in the folded state and has a second length L2.
Fig. 24 is a schematic view illustrating the mounting of the slide rail mechanism 20 to the first column 26 and the second column 28. Specifically, when the rail 30 (only the supporting rail 38 is shown as the rail 30) carries an object 132 (e.g. an electronic device or a chassis), if the weight W1 of the object 132 is too heavy, the first supporting protrusion 23 and the front supporting protrusion 35a can support the space between the first bracket 22 and the second supporting frame 34. In addition, the first support frame 32 and the second support frame 34 can be supported by the second support protrusions 33 and the rear support protrusions 35 b. By this arrangement, the problem of possible sinking and falling of the slide rail and/or the bracket device relative to each other can be prevented. In short, unlike the load problem related to the slide rail and/or the bracket device shown in fig. 1, in the case of bearing a weight W1 or an external force, the present embodiment provides the first bracket 22, the second bracket 34 and the first bracket 32 to be maintained in a horizontal state as much as possible by the arrangement of the first supporting protrusions 23, the second supporting protrusions 33, the front supporting protrusions 35a and the rear supporting protrusions 35b, so as to prevent the problem of tilting or tilting of the first bracket 22, the second bracket 34 and the first bracket 32.
From the above description, it can be seen that the enhanced efficacy and advantages of the present invention are:
1. With the help of the arrangement, an operator can finish the assembly and disassembly of the sliding rail mechanism to two machine columns of the rack by one person in front of the rack, and the operation is very convenient and fast.
2. The first support frame can be temporarily clamped on the rail piece through the reinforcing piece, so that when the first bracket is abutted to the first machine column and the sliding rail mechanism is operated to move forward in the direction of the first machine column, the second support frame is favorable for driving the fastener, the fastener is enabled to be converted into the first state from the second state, for example, the fastener can be enabled to be converted into the locking state from the unlocking state, and the fastener can be used for locking the machine column of the machine frame.
3. The reinforcement can be the activity of rail spare relatively, and the reinforcement contains the portion of clasping and can provide rail spare supporting role, so helps promoting the structural strength of rail spare.
4. Under the condition of bearing a weight or an external force, the first bracket, the second support frame and the first support frame can be kept in a horizontal state as much as possible through the arrangement of the first support convex body, the second support convex body, the front support convex body and the rear support convex body.
Although the present invention has been described with reference to the present specific embodiments, it will be recognized by those skilled in the art that the above embodiments are illustrative only, and various equivalent changes and modifications may be made without departing from the spirit of the present invention, and therefore, it is intended to cover in the appended claims all such changes and modifications as fall within the true spirit of the invention.

Claims (5)

1. The utility model provides a bracket device of slide rail mechanism, contains an auxiliary stay frame and a bracket, its characterized in that:
The bracket is mounted to the auxiliary support frame;
One of the auxiliary support frame and the bracket is provided with a first wall and a second wall, a space is defined between the first wall and the second wall, and the bracket and the auxiliary support frame can move relative to each other through the space;
Wherein the bracket comprises a first supporting convex body positioned on one of the upper side and the lower side of the space for supporting the auxiliary supporting frame;
Wherein, the auxiliary supporting frame comprises a front supporting convex body positioned at the other of the upper side and the lower side of the space for supporting the bracket.
2. The bracket device of slide rail mechanism according to claim 1, further comprising a rail member, an extension support frame capable of moving relative to the rail member, and a reinforcing member connected to the extension support frame, wherein the auxiliary support frame is capable of moving relative to the extension support frame.
3. The bracket device of slide rail mechanism according to claim 2, wherein the rail member comprises a first engaging structure, the reinforcing member comprises a second engaging structure, and the reinforcing member can engage the first engaging structure through the second engaging structure.
4. The bracket device of claim 2, wherein one of the extension support and the auxiliary support has an upper support wall, a lower support wall, and a longitudinal wall connected between the upper support wall and the lower support wall, the upper support wall, the lower support wall, and the longitudinal wall together define a channel, and the extension support and the auxiliary support are displaceable relative to each other through the channel, the extension support includes a second support protrusion located on one of the upper and lower sides of the channel for supporting the auxiliary support, and the auxiliary support includes a rear support protrusion located on the other of the upper and lower sides of the channel for supporting the extension support.
5. The bracket device of claim 1, wherein the bracket comprises a side wall and at least one mounting member adjacent to the side wall.
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CN112312713B (en) * 2019-07-31 2022-08-26 川湖科技股份有限公司 Slide rail mechanism
CN112515386B (en) * 2019-09-17 2022-07-29 川湖科技股份有限公司 Telescopic mechanism
CN112841949B (en) * 2019-11-26 2023-04-25 川湖科技股份有限公司 Sliding rail mechanism
CN111787748A (en) * 2020-08-09 2020-10-16 苏州浪潮智能科技有限公司 Prevent slide rail structure that server dropped and inclined

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CN110572976B (en) 2020-12-18
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