WO2024179071A1 - 服务器机箱及服务器 - Google Patents

服务器机箱及服务器 Download PDF

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Publication number
WO2024179071A1
WO2024179071A1 PCT/CN2023/134088 CN2023134088W WO2024179071A1 WO 2024179071 A1 WO2024179071 A1 WO 2024179071A1 CN 2023134088 W CN2023134088 W CN 2023134088W WO 2024179071 A1 WO2024179071 A1 WO 2024179071A1
Authority
WO
WIPO (PCT)
Prior art keywords
boss
adjustment
hard disk
movable plate
groove
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.)
Ceased
Application number
PCT/CN2023/134088
Other languages
English (en)
French (fr)
Inventor
官長明
吴俊贤
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.)
Suzhou Metabrain Intelligent Technology Co Ltd
Original Assignee
Suzhou Metabrain Intelligent 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 Suzhou Metabrain Intelligent Technology Co Ltd filed Critical Suzhou Metabrain Intelligent Technology Co Ltd
Publication of WO2024179071A1 publication Critical patent/WO2024179071A1/zh
Priority to US19/000,813 priority Critical patent/US20250133680A1/en
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

Links

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
    • H05K7/1485Servers; 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
    • 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
    • H05K7/1487Blade assemblies, e.g. blade cases or inner arrangements within a blade
    • GPHYSICS
    • G06COMPUTING OR CALCULATING; COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/16Constructional details or arrangements
    • G06F1/18Packaging or power distribution
    • GPHYSICS
    • G11INFORMATION STORAGE
    • G11BINFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
    • G11B33/00Constructional parts, details or accessories not provided for in the other groups of this subclass
    • G11B33/12Disposition of constructional parts in the apparatus, e.g. of power supply, of modules
    • G11B33/121Disposition of constructional parts in the apparatus, e.g. of power supply, of modules the apparatus comprising a single recording/reproducing device
    • G11B33/123Mounting arrangements of constructional parts onto a chassis
    • G11B33/124Mounting arrangements of constructional parts onto a chassis of the single recording/reproducing device, e.g. disk drive, onto a chassis
    • GPHYSICS
    • G11INFORMATION STORAGE
    • G11BINFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
    • G11B33/00Constructional parts, details or accessories not provided for in the other groups of this subclass
    • G11B33/12Disposition of constructional parts in the apparatus, e.g. of power supply, of modules
    • G11B33/125Disposition of constructional parts in the apparatus, e.g. of power supply, of modules the apparatus comprising a plurality of recording/reproducing devices, e.g. modular arrangements, arrays of disc drives
    • G11B33/127Mounting arrangements of constructional parts onto a chassis
    • G11B33/128Mounting arrangements of constructional parts onto a chassis of the plurality of recording/reproducing devices, e.g. disk drives, onto a chassis
    • YGENERAL 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
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02DCLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
    • Y02D10/00Energy efficient computing, e.g. low power processors, power management or thermal management

Definitions

  • the present application relates to the technical field of servers, and in particular to a server chassis and a server.
  • the present application provides a server chassis and a server, which are used to solve the defect in the prior art that the thickness of the hard disk structure cannot be adjusted and can only be adapted to hard disks of one thickness.
  • the present application provides a server chassis, comprising: a base, the base comprising a bottom plate and two side plates arranged on both sides of the bottom plate; a hard disk frame, arranged in the base, the hard disk frame having a first surface, the first surface being away from the bottom plate, and the first surface being provided with a pair of first through holes; a first adjustment component, the first adjustment component being provided with a pair of first legs, each first leg being respectively located above a first through hole; a first movable plate, stacked above the first adjustment component, the first movable plate being able to slide along the first adjustment component; a cover plate, stacked above the first movable plate and connected to the two side plates of the base; wherein, when the first movable plate slides along the first adjustment component, the first movable plate is able to squeeze the first adjustment component so that the first leg of the first adjustment component passes through the first through hole and extends to the inside of the hard disk frame, so as to reduce the effective height inside the hard disk frame.
  • a first boss is provided on a surface of a first movable plate facing a first adjustment component
  • a second boss is provided on a surface of the first adjustment component facing the first movable plate
  • the first boss is provided with a first inclined surface
  • the second boss is provided with a first inclined surface.
  • a second inclined surface is provided, and the first inclined surface and the second inclined surface cooperate and slide; the first boss has two positions, when the first boss is in the first position, the first inclined surface of the first boss and the second inclined surface of the second boss are arranged opposite to each other, and when the first boss is in the second position, the first boss and the second boss are overlapped to squeeze the first adjustment component.
  • the first adjustment component includes: a first adjustment plate, a surface of the first adjustment plate facing the hard disk frame is provided with a pair of first legs, and a surface of the first adjustment plate facing the first movable plate is also provided with a second boss; a first spring sheet, the first spring sheet is stacked above the first surface of the hard disk frame and is located between the pair of first legs; wherein, when the first boss is in the first position, the first spring sheet is in an extended state, and when the first boss is in the second position, the first spring sheet is in a compressed state.
  • the first adjustment component includes a first adjustment plate, a surface of the first adjustment plate facing the hard disk frame is provided with a pair of first legs, and a surface of the first adjustment plate facing the first movable plate is also provided with a second boss; wherein the first through hole is a cross-shaped hole.
  • a server chassis provided according to the present application also includes: a second adjustment component, the second adjustment component is provided with a pair of second legs, the hard disk frame also has a second surface, the second surface is opposite to the first surface, the second surface is provided with a pair of second through holes, and each second leg is respectively located below a second through hole; a second movable plate, stacked below the second adjustment component, the second movable plate is in contact with the bottom plate of the base, and the second movable plate can slide along the second adjustment component; wherein, when the second movable plate slides along the second adjustment component, the second movable plate can squeeze the second adjustment component so that the second leg of the second adjustment component passes through the second through hole and extends to the inside of the hard disk frame to reduce the effective height inside the hard disk frame.
  • a third boss is provided on the surface of the second movable plate facing the second adjusting component
  • a fourth boss is provided on the surface of the second adjusting component facing the second movable plate
  • the third boss is provided with a third inclined surface
  • the fourth boss is provided with a fourth inclined surface
  • the third inclined surface and the fourth inclined surface cooperate and slide;
  • the third boss has two positions, when the third boss is in the first position, the third inclined surface of the third boss is opposite to the fourth inclined surface of the fourth boss, and when the third boss is in the second position, the third boss and the fourth boss are overlapped to squeeze the second adjusting component.
  • the second adjustment component includes: a second adjustment plate, a surface of the second adjustment plate facing the hard disk frame is provided with a pair of second legs, and a surface of the second adjustment plate facing the second movable plate is also provided with a fourth boss; a second spring sheet, the second spring sheet is stacked below the second surface of the hard disk frame and is located between the pair of second legs; wherein, when the third boss is in the first position, the second spring sheet is in an extended state, and when the third boss is in the second position, the second spring sheet is in a compressed state.
  • the second adjustment component includes a second adjustment plate, a surface of the second adjustment plate facing the hard disk frame is provided with a pair of second legs, and a surface of the second adjustment plate facing the second movable plate is also provided with a fourth boss; wherein the second through hole is a cross-shaped hole.
  • the first movable plate and the first adjustment component are configured as a first adjustment mechanism
  • the second movable plate and the second adjustment component are configured as a second adjustment mechanism
  • the number of the first adjustment mechanism and the second adjustment mechanism is multiple, and each first adjustment mechanism is aligned with a second adjustment mechanism.
  • a server chassis provided according to the present application also includes: a first switching switch, which is arranged on the end surface of the cover plate, the first switching switch is slidably connected to the cover plate, and the first switching switch is connected to the first movable plate.
  • the end surface of the cover plate is provided with a first groove, a second groove and a third groove, and the first groove, the second groove and the third groove are arranged in parallel;
  • the first switching switch has a first surface, the first end of the first surface is provided with a first protrusion, and the second end of the first surface is provided with a second protrusion, the first protrusion is arranged in the first groove and can slide along the first groove, the first protrusion is connected to the first movable plate, and the second protrusion is engaged with the second groove or the third groove.
  • the first switching switch also has a second surface, the second surface is opposite to the first surface, the second surface is provided with a third protrusion, the third protrusion is arranged opposite to the second protrusion, and the third protrusion is used to separate the second protrusion from the second groove or the third groove when pressed.
  • a server chassis provided according to the present application also includes a second switching switch, which is arranged on the end surface of the hard disk frame, the second switching switch is slidably connected to the hard disk frame, and the second switching switch is connected to the second movable plate.
  • the end surface of the hard disk frame is provided with a fourth groove, a fifth groove and a sixth groove, and the fourth groove, the fifth groove and the sixth groove are arranged in parallel;
  • the second switching switch has a first surface, the first end of the first surface is provided with a fourth protrusion, the second end of the first surface is provided with a fifth protrusion, the fourth protrusion is arranged in the fourth groove and can slide along the fourth groove, the fourth protrusion is connected to the second movable plate, and the fifth protrusion is engaged with the fifth groove or the sixth groove.
  • the second switching switch also has a second surface, the second surface is opposite to the first surface, the second surface is provided with a sixth protrusion, the sixth protrusion is arranged opposite to the fifth protrusion, and the sixth protrusion is used to separate the fifth protrusion from the fifth groove or the sixth groove when pressed.
  • the present application also provides a server, comprising the above server chassis.
  • the server chassis provided by the present application is provided with a first movable plate, a first adjustment component, and a first through hole on the first surface of the hard disk frame.
  • the first movable plate does not move, the height inside the hard disk frame is the original height, and a hard disk of a certain thickness can be set.
  • the first movable plate squeezes the first adjustment component, causing the first leg to extend into the hard disk frame, thereby reducing the effective height inside the hard disk frame, and a thinner hard disk can be set in the hard disk frame, so that the server chassis can install hard disks of different thicknesses, thereby improving the applicability of the server chassis.
  • FIG1 is a schematic diagram of the overall structure of a server chassis provided by the present application.
  • FIG2 is an exploded view of a server chassis provided by the present application.
  • FIG3 is a schematic structural diagram of a first boss in a first position
  • FIG4 is a schematic diagram of the structure of the first boss in the second position
  • FIG5 is a schematic structural diagram of a third boss in a first position
  • FIG6 is a schematic structural diagram of the third boss in the second position
  • FIG. 7 is an enlarged view of the first switch.
  • 10 first movable plate; 11: first boss; 21: first adjustment plate; 22: first spring piece; 30: hard disk frame; 40: second movable plate; 41: third boss; 51: second adjustment plate; 52: second spring piece; 61: first switching switch; 62: second switching switch; 100: base; 200: cover plate; 201: first groove; 201: second groove; 203: third groove; 211: second boss; 212: first leg; 511: fourth boss; 512: second leg; 611: first protrusion; 612: second protrusion; 613: third protrusion.
  • the terms “set”, “install”, “connect”, and “connect” should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection, or it can be indirectly connected through an intermediate medium, or it can be the internal connection of two elements.
  • the specific meanings of the above terms in this application can be understood according to specific circumstances.
  • the server chassis includes: a base 100, a first movable plate 10, a first adjustment component, a hard disk frame 30 and a cover plate 200.
  • the base 100 includes a bottom plate and two side plates arranged on both sides of the bottom plate, the hard disk frame 30 is arranged in the base 100, and the hard disk frame 30 has a first surface, the first surface is opposite to the bottom plate, and the first surface is provided with a pair of first through holes.
  • the first adjustment component is provided with a pair of first legs 212, each of which is located above a first through hole.
  • the first movable plate 10 is stacked on the top of the first adjustment component, and the first movable plate 10 can slide along the first adjustment component.
  • the cover plate 200 is stacked on the top of the first movable plate 10 and is connected to the two side plates of the base 100. Wherein, when the first movable plate 10 slides along the first adjustment component, the first movable plate 10 can squeeze the first adjustment component so that the first leg 212 of the first adjustment component passes through the first through hole and extends to the inside of the hard disk frame 30 to reduce the effective height in the hard disk frame 30.
  • the base 100 includes a bottom plate and two side plates arranged on both sides of the bottom plate to form a U-shaped groove structure
  • the hard disk frame 30, the first adjustment assembly and the first movable plate 10 are stacked in the U-shaped groove structure
  • the cover plate 200 is stacked above the first movable plate 10 and connected to the two side plates of the base 100.
  • the first movable plate 10 is pushed to slide along the first adjustment assembly from the front of the base 100, and the first movable plate 10 can generate a squeezing force on the first adjustment assembly, so that the first leg 212 of the first adjustment assembly passes through the first through hole and extends to the inside of the hard disk frame 30, so as to reduce the effective height inside the hard disk frame 30, so that a thinner hard disk can be installed.
  • the first adjustment assembly may be provided with an elastic member, which is disposed on the first surface of the hard disk frame 30 and is located between a pair of first legs 212 of the first adjustment assembly.
  • the elastic member holds up the first adjustment assembly so that the first leg 212 does not pass through the first through hole.
  • the elastic member is compressed, and the first leg 212 passes through the first through hole and extends into the hard disk frame 30.
  • a cross-shaped hole is processed on the first surface of the hard disk frame 30, and the cross-shaped hole constitutes a first through hole.
  • the cross-shaped hole can support the first adjustment component; when the first movable plate 10 applies force to the first adjustment component, the cross-shaped hole is insufficient to support the first adjustment component.
  • An adjustment component wherein the first leg 212 of the first adjustment component passes through the cross-shaped hole and extends into the hard disk frame 30 to reduce the effective height inside the hard disk frame 30 .
  • the first movable plate 10 may be provided with a first boss 11, and the first adjusting component may be provided with a second boss 211.
  • the first boss 11 and the second boss 211 are arranged opposite to each other left and right.
  • the first movable plate 10 does not apply force to the first adjusting component.
  • the first boss 11 moves toward the direction close to the second boss 211.
  • the first boss 11 slides to above the second boss 211, and the first movable plate 10 squeezes the first adjusting component, so that the first leg 212 of the first adjusting component passes through the first through hole and extends into the hard disk frame 30.
  • the server chassis provided in the embodiment of the present application is provided with a first movable plate, a first adjustment component, and a first through hole on the first surface of the hard disk frame.
  • the first movable plate does not move, the height inside the hard disk frame is the original height, and a hard disk of a certain thickness can be set.
  • the first movable plate squeezes the first adjustment component, causing the first leg to extend into the hard disk frame, thereby reducing the effective height inside the hard disk frame, and a thinner hard disk can be set in the hard disk frame, so that the server chassis can install hard disks of different thicknesses, thereby improving the applicability of the server chassis.
  • the surface of the first movable plate 10 facing the first adjustment component is provided with a first boss 11
  • the surface of the first adjustment component facing the first movable plate 10 is provided with a second boss 211
  • the first boss 11 is provided with a first inclined surface
  • the second boss 211 is provided with a second inclined surface
  • the first inclined surface and the second inclined surface cooperate and slide.
  • the first boss 11 has two positions. When the first boss 11 is in the first position, the first inclined surface of the first boss 11 is arranged opposite to the second inclined surface of the second boss 211. When the first boss 11 is in the second position, the first boss 11 and the second boss 211 are overlapped to squeeze the first adjustment component.
  • the first movable plate 10 when the first movable plate 10 does not move, the first inclined surface of the first boss 11 and the second inclined surface of the second boss 211 are arranged opposite to each other, and the first movable plate 10 rests on the second boss 211. At this time, the first movable plate 10 does not apply force to the first adjustment component, and the first leg 212 of the first adjustment component is located above the first through hole.
  • the first movable plate 10 moves, when the first inclined surface of the first boss 11 abuts against the second inclined surface of the second boss 211, the first inclined surface of the first boss 11 and the second inclined surface of the second boss 211 cooperate to slide, so that the first boss 11 slides to the top surface of the second boss 211. At this time, the first boss 11 exerts a squeezing force on the second boss 211, and the first leg 212 of the first adjustment component passes through the first through hole and extends into the hard disk frame 30 to reduce the effective height inside the hard disk frame 30.
  • the first adjustment component includes: a first adjustment plate 21 and a first spring 22.
  • a pair of first legs 212 are provided on the surface of the first adjustment plate 21 facing the hard disk frame 30, and a second boss 211 is further provided on the surface of the first adjustment plate 21 facing the first movable plate 10.
  • the first spring 22 is stacked above the first surface of the hard disk frame 30 and is located between the pair of first legs 212, wherein when the first boss 11 is in the first position, the first spring 22 in an extended state; when the first boss 11 is in the second position, the first elastic sheet 22 is in a compressed state.
  • the first spring piece 22 is located between a pair of first legs 212 of the first adjustment plate 21.
  • the first inclined surface of the first boss 11 is arranged opposite to the second inclined surface of the second boss 211, and the first spring piece 22 is in an extended state.
  • the first spring piece 22 provides a supporting force for the first adjustment plate 21, so that the pair of first legs 212 of the first adjustment plate 21 are located above the first through hole.
  • the first boss 11 squeezes the first adjustment plate 21, and the first adjustment plate 21 squeezes the first spring piece 22 located below it, thereby making the first spring piece 22 in a contracted state.
  • the pair of first legs 212 of the first adjustment plate 21 pass through the first through hole and extend into the hard disk frame 30 to reduce the effective height inside the hard disk frame 30.
  • the first adjustment assembly includes a first adjustment plate 21.
  • a pair of first legs 212 are provided on the surface of the first adjustment plate 21 facing the hard disk frame 30, and a second boss 211 is also provided on the surface of the first adjustment plate 21 facing the first movable plate 10, wherein the first through hole is a cross-shaped hole.
  • the cross-shaped hole can support the first adjustment plate 21; when the first movable plate 10 applies force to the first adjustment plate 21, the cross-shaped hole is not sufficient to support the first adjustment plate 21, and the first leg 212 of the first adjustment plate 21 passes through the cross-shaped hole and extends into the hard disk frame 30 to reduce the effective height inside the hard disk frame 30.
  • a second adjustment component and a second movable plate 40 can also be set on the other side of the hard disk frame 30.
  • the second leg 512 of the second adjustment component extends into the hard disk frame 30, it can cooperate with the first leg 212 to further reduce the effective height inside the hard disk frame 30, so that a thinner hard disk can be installed in the hard disk frame 30.
  • the server chassis further includes: a second adjustment component and a second movable plate 40.
  • the second adjustment component is provided with a pair of second legs 512
  • the hard disk frame 30 further has a second surface, the second surface is opposite to the first surface, and the second surface is provided with a pair of second through holes, and each second leg 512 is respectively located below a second through hole.
  • the second movable plate 40 is stacked below the second adjustment component, the second movable plate 40 contacts the bottom plate of the base 100, and the second movable plate 40 can slide along the second adjustment component.
  • the second movable plate 40 squeezes the second adjustment component so that the second legs 512 of the second adjustment component extend through the second through holes to the inside of the hard disk frame 30, so as to reduce the effective height inside the hard disk frame 30.
  • the second movable plate 40 is located above the bottom plate of the base 100, the second adjustment assembly is stacked on the second movable plate, and the second adjustment assembly is in contact with the second surface of the hard disk frame 30, that is, the second adjustment assembly and the second movable plate 40 are located below the hard disk frame 30.
  • the second leg 512 of the second adjustment assembly is located below the second through hole, and at this time, the second leg 512 does not extend into the hard disk frame 30;
  • the second movable plate 40 squeezes the second adjustment component, forcing the second leg 512 to extend through the second through hole into the hard disk frame 30.
  • the space between the first leg 212 and the second leg 512 is the installation space for the hard disk, so that a thinner hard disk can be installed.
  • the server chassis provided in the embodiment of the present application, by setting a first movable plate, a first adjustment component, a second movable plate and a second adjustment component, can enable the first leg and the second leg to extend from two opposite surfaces of the hard disk frame into the hard disk frame, thereby further reducing the effective height inside the hard disk frame, so that the hard disk frame can install thinner hard disks, thereby improving the applicability of the server chassis.
  • the surface of the second movable plate 40 facing the second adjustment component is provided with a third boss 41
  • the surface of the second adjustment component facing the second movable plate 40 is provided with a fourth boss 511
  • the third boss 41 is provided with a third inclined surface
  • the fourth boss 511 is provided with a fourth inclined surface
  • the third inclined surface and the fourth inclined surface cooperate and slide.
  • the third boss 41 has two positions. When the third boss 41 is in the first position, the third inclined surface of the third boss 41 is opposite to the fourth inclined surface of the fourth boss 511; when the third boss 41 is in the second position, the third boss 41 and the fourth boss 511 are overlapped to squeeze the second adjustment component.
  • the second adjustment component includes: a second adjustment plate 51 and a second spring piece 52.
  • a pair of second legs 512 are provided on the surface of the second adjustment plate 51 facing the hard disk frame 30, and a fourth boss 511 is provided on the surface of the second adjustment plate 51 facing the second movable plate 40.
  • the second spring piece 52 is stacked below the second surface of the hard disk frame 30 and is located between the pair of second legs 512. When the third boss 41 is in the first position, the second spring piece 52 is in an extended state; when the third boss 41 is in the second position, the second spring piece 52 is in a compressed state.
  • the second spring piece 52 is located between the pair of second legs 512 of the second adjustment plate 51.
  • the third boss 41 and the fourth boss 511 are arranged opposite to each other, and the second spring piece 52 is in an extended state.
  • the second spring piece 52 lifts up the second adjustment plate 51, so that the pair of second legs 512 of the second adjustment plate 51 are located below the second through hole.
  • the third boss 41 slides to the top of the fourth boss 511
  • the third boss 41 presses the second adjustment plate 51
  • the second adjustment plate 51 presses the second spring piece 52 located above it, so that the second spring piece 52 is in an extended state.
  • the pair of second legs 512 of the second adjustment plate 51 penetrate the second through hole and extend into the hard disk frame 30 to reduce the effective height inside the hard disk frame 30 .
  • the second adjustment assembly includes a second adjustment plate 51.
  • a pair of second legs 512 are provided on the surface of the second adjustment plate 51 facing the hard disk frame 30, and a fourth boss 511 is provided on the surface of the second adjustment plate 51 facing the second movable plate 40, wherein the second through hole is a cross-shaped hole.
  • the cross-shaped hole can support the second adjustment plate 51; when the second movable plate 40 applies force to the second adjustment plate 51, the cross-shaped hole is not sufficient to support the second adjustment plate 51, and the first leg 512 of the second adjustment plate 51 passes through the cross-shaped hole and extends into the hard disk frame 30 to reduce the effective height inside the hard disk frame 30.
  • the first movable plate 10 and the first adjustment assembly are configured as a first adjustment mechanism
  • the second movable plate 40 and the second adjustment assembly are configured as a second adjustment mechanism
  • the number of first adjustment mechanisms and second adjustment mechanisms is multiple
  • each first adjustment mechanism is aligned with a second adjustment mechanism
  • first adjustment mechanisms can be arranged above the hard disk frame 30, and multiple second adjustment mechanisms can be arranged below the hard disk frame 30.
  • Each first adjustment mechanism and/or second adjustment mechanism can adjust the height of the relative position in the hard disk frame 30, so that hard disks of different thicknesses can be installed in the hard disk frame 30 at the same time.
  • the three first adjustment mechanisms and the three second adjustment mechanisms can divide the space in the hard disk frame 30 into three areas with different effective heights.
  • the effective height of the space in the hard disk frame 30 facing the first adjustment mechanisms and the second adjustment mechanisms is the highest, and a thicker hard disk can be installed; if one of the second pair of first adjustment mechanisms and the second adjustment mechanisms moves, the first leg 212 of the first adjustment mechanism or the second leg 512 of the second adjustment mechanism extends into the hard disk frame 30 to reduce the effective height in the hard disk frame 30, so that a thinner hard disk can be installed in the hard disk frame 30; and the first leg 212 and the second leg 512 of the third pair of first adjustment mechanisms both extend into the hard disk frame 30, which can further reduce the effective height in the hard disk frame 30, so that a thinner hard disk can be installed.
  • the server chassis further comprises a first switch 61 .
  • the first switch 61 is disposed on the end surface of the cover plate 200 , the first switch 61 is slidably connected to the cover plate 200 , and the first switch 61 is connected to the first movable plate 10 .
  • the first switching switch 61 is arranged on the end surface of the cover plate 200, and the first switching switch 61 is connected to the first movable plate 10.
  • the first switching switch 61 When the first switching switch 61 is pushed to slide along the cover plate 200, the first movable plate 10 can be driven to move, thereby squeezing the first adjustment plate 21, so that a pair of first legs 212 of the first adjustment plate 21 extend into the hard disk frame 30.
  • the end surface of the cover plate 200 is provided with a first groove 201 , a second groove 202 and a third groove 203, the first groove 201, the second groove 202 and the third groove 203 are arranged in parallel, and the distance between the second groove 202 and the third groove 203 is smaller than the distance between the first groove 201 and the second groove 202.
  • the first switch 61 has a first surface, a first end of the first surface is provided with a first protrusion 611, and a second end of the first surface is provided with a second protrusion 612, the first protrusion 611 is arranged in the first groove 201, and can slide along the first groove 201, the first protrusion 611 is connected to the first movable plate 10, and the second protrusion 612 is engaged with the second groove 202 or the third groove 203.
  • the bottom surface of the cover plate 200 is provided with a first groove 201, a second groove 202 and a third groove 203, one end of each of the first groove 201, the second groove 202 and the third groove 203 extends to the end surface of the cover plate 200, and the width of the first groove 201 satisfies the stroke of the first movable plate 10.
  • the first protrusion 611 is located in the first groove 201, and when the first protrusion 611 pushes the first switch 61 to slide along the first groove 201, the first protrusion 611 drives the first movable plate 10 to move.
  • the second groove 202 and the third groove 203 are used to fix the second protrusion 612 of the first switch 61.
  • the second protrusion 612 When the first switching switch 61 is not moved, the second protrusion 612 is engaged with the second groove 202; when the first protrusion 611 slides along the first groove 201, the second protrusion 612 can be engaged with the third groove 203. At this time, the first boss 11 of the first movable plate 10 and the second boss 211 of the first adjustment plate 21 are overlapped, and a pair of first legs 212 of the first adjustment plate 21 extend into the hard disk frame 30.
  • the first switching switch 61 also has a second surface, the second surface is opposite to the first surface, and the second surface is provided with a third protrusion 613, the third protrusion 613 is arranged opposite to the second protrusion 612, and the third protrusion 613 is used to separate the second protrusion 612 from the second groove 202 or the third groove 203 when pressed.
  • the second protrusion 612 can be disengaged from the second groove 202 or the third groove 203 , thereby pushing the first switch 61 to make the first protrusion 611 slide along the first groove 201 , thereby adjusting the position of the first movable plate 10 .
  • the server chassis further includes a second switch 62 , which is disposed on the end surface of the hard disk frame 30 , is slidably connected to the hard disk frame 30 , and is connected to the second movable plate 40 .
  • the second switching switch 62 is arranged on the lower end surface of the hard disk frame 30, and the second switching switch 62 is connected to the second movable plate 40.
  • the second switching switch 62 When the second switching switch 62 is pushed to slide along the hard disk frame 30, the second movable plate 40 can be driven to move, thereby squeezing the second adjustment plate 51, so that a pair of second legs 512 of the second adjustment plate 51 extend into the hard disk frame 30.
  • the bottom surface of the hard disk frame 30 is provided with a fourth groove, a fifth groove and a sixth groove, the fourth groove, the fifth groove and the sixth groove are arranged in parallel, and the distance between the fourth groove and the fifth groove is greater than the distance between the fifth groove and the sixth groove.
  • the width of the fourth groove meets the stroke of the second movable plate 40.
  • the second switching switch 62 has a first surface, the first end of the first surface is provided with a fourth protrusion, the second end of the first surface is provided with a fifth protrusion, the fourth protrusion is arranged in the fourth groove and can slide along the fourth groove, and the fifth protrusion is engaged with the fifth groove or the sixth groove.
  • the fifth protrusion is engaged with the fifth groove; after the fourth protrusion moves along the fourth groove, the fifth protrusion is engaged with the sixth groove.
  • the third protrusion 41 of the second movable plate 40 and the fourth protrusion 511 of the second adjustment plate 51 are overlapped, and a pair of second legs 512 of the second adjustment plate 51 extend into the hard disk frame 30.
  • the second switching switch 62 also has a second surface, which is opposite to the first surface.
  • the second surface is provided with a sixth protrusion, which is arranged opposite to the fifth protrusion.
  • the sixth protrusion is used to separate the fifth protrusion from the fifth groove or the sixth groove when pressed.
  • the structure of the second switching switch 62 is the same as that of the first switching switch 61.
  • the fifth protrusion can be disengaged from the fifth groove or the sixth groove, thereby pushing the second switching switch 62 to make the fourth protrusion slide along the fourth groove, thereby adjusting the position of the second movable plate 20.
  • An embodiment of the present application also provides a server, including a server chassis.
  • the server chassis includes: a base 100, a first movable plate 10, a first adjustment component, a hard disk frame 30 and a cover plate 200.
  • the base 100 includes a bottom plate and two side plates arranged on both sides of the bottom plate.
  • the hard disk frame 30 is arranged in the base 100.
  • the hard disk frame 30 has a first surface, the first surface is opposite to the bottom plate, and the first surface is provided with a pair of first through holes.
  • the first adjustment component is provided with a pair of first legs 212, each of which is located above a first through hole.
  • the first movable plate 10 is stacked above the first adjustment component, and the first movable plate 10 can slide along the first adjustment component.
  • the cover plate 200 is stacked above the first movable plate 10 and is connected to the two side plates of the base 100. Wherein, when the first movable plate 10 slides along the first adjustment component, the first movable plate 10 can squeeze the first adjustment component so that the first leg 212 of the first adjustment component passes through the first through hole and extends to the inside of the hard disk frame 30 to reduce the effective height in the hard disk frame 30.
  • the base 100 includes a bottom plate and two side plates arranged on both sides of the bottom plate to form a U-shaped groove structure, the hard disk frame 30, the first adjustment assembly and the first movable plate 10 are stacked in the U-shaped groove structure, and the cover plate 200 is stacked above the first movable plate 10 and connected to the two side plates of the base 100.
  • the first movable plate 10 is pushed to slide along the first adjustment assembly from the front of the base 100, and the first movable plate 10 can generate a squeezing force on the first adjustment assembly, so that the first leg 212 of the first adjustment assembly passes through the first through hole and extends to the inside of the hard disk frame 30, so as to reduce the effective height inside the hard disk frame 30, so that a thinner hard disk can be installed.
  • the first adjustment assembly when the first movable plate 10 does not move, the first leg 212 of the first adjustment assembly is located above the first through hole of the hard disk frame 30.
  • the first adjustment assembly may be provided with an elastic member, which is disposed on the first surface of the hard disk frame 30 and is located between the pair of first legs 212 of the first adjustment assembly.
  • the elastic member When the first movable plate 10 does not apply force to the first adjustment assembly, the elastic member lifts the first adjustment assembly so that the first leg 212 does not pass through the first through hole, and when the first movable plate 10 applies force to the first adjustment assembly, the elastic member is compressed, and the first leg 212 passes through the first through hole and extends into the hard disk frame 30.
  • a cross-shaped hole is processed on the first surface of the hard disk frame 30, and the cross-shaped hole constitutes a first through hole.
  • the cross-shaped hole can support the first adjustment component; when the first movable plate 10 applies force to the first adjustment component, the cross-shaped hole is insufficient to support the first adjustment component, and the first leg 212 of the first adjustment component passes through the cross-shaped hole and extends into the hard disk frame 30 to reduce the effective height inside the hard disk frame 30.
  • the first movable plate 10 may be provided with a first boss 11, and the first adjusting component may be provided with a second boss 211.
  • the first boss 11 and the second boss 211 are arranged opposite to each other left and right.
  • the first movable plate 10 does not apply force to the first adjusting component.
  • the first boss 11 moves toward the direction close to the second boss 211.
  • the first boss 11 slides to above the second boss 211, and the first movable plate 10 squeezes the first adjusting component, so that the first leg 212 of the first adjusting component passes through the first through hole and extends into the hard disk frame 30.
  • the surface of the first movable plate 10 facing the first adjustment component is provided with a first boss 11
  • the surface of the first adjustment component facing the first movable plate 10 is provided with a second boss 211
  • the first boss 11 is provided with a first inclined surface
  • the second boss 211 is provided with a second inclined surface
  • the first inclined surface and the second inclined surface cooperate and slide.
  • the first boss 11 has two positions. When the first boss 11 is in the first position, the first inclined surface of the first boss 11 is arranged opposite to the second inclined surface of the second boss 211. When the first boss 11 is in the second position, the first boss 11 and the second boss 211 are overlapped to squeeze the first adjustment component.
  • the first movable plate 10 when the first movable plate 10 does not move, the first inclined surface of the first boss 11 and the second inclined surface of the second boss 211 are arranged opposite to each other, and the first movable plate 10 rests on the second boss 211. At this time, the first movable plate 10 does not apply force to the first adjustment component, and the first leg 212 of the first adjustment component is located above the first through hole.
  • the first movable plate 10 moves, when the first inclined surface of the first boss 11 abuts against the second inclined surface of the second boss 211, the first inclined surface of the first boss 11 and the second inclined surface of the second boss 211 cooperate to slide, so that the first boss 11 slides to the top surface of the second boss 211. At this time, the first boss 11 exerts a squeezing force on the second boss 211, and the first leg 212 of the first adjustment component passes through the first through hole and extends into the hard disk frame 30 to reduce the effective height inside the hard disk frame 30.
  • the first adjustment component includes: a first adjustment plate 21 and a first spring 22.
  • a pair of first legs 212 are provided on the surface of the first adjustment plate 21 facing the hard disk frame 30, and a second boss 211 is further provided on the surface of the first adjustment plate 21 facing the first movable plate 10.
  • the first spring 22 is stacked above the first surface of the hard disk frame 30 and is located between the pair of first legs 212, wherein when the first boss 11 is in the first position, the first spring 22 in an extended state; when the first boss 11 is in the second position, the first elastic sheet 22 is in a compressed state.
  • the first spring piece 22 is located between a pair of first legs 212 of the first adjustment plate 21.
  • the first inclined surface of the first boss 11 is arranged opposite to the second inclined surface of the second boss 211, and the first spring piece 22 is in an extended state.
  • the first spring piece 22 provides a supporting force for the first adjustment plate 21, so that the pair of first legs 212 of the first adjustment plate 21 are located above the first through hole.
  • the first boss 11 squeezes the first adjustment plate 21, and the first adjustment plate 21 squeezes the first spring piece 22 located below it, thereby making the first spring piece 22 in a contracted state.
  • the pair of first legs 212 of the first adjustment plate 21 pass through the first through hole and extend into the hard disk frame 30 to reduce the effective height inside the hard disk frame 30.
  • a second adjustment component and a second movable plate 40 can also be set on the other side of the hard disk frame 30.
  • the second leg 512 of the second adjustment component extends into the hard disk frame 30, it can cooperate with the first leg 212 to further reduce the effective height inside the hard disk frame 30, so that a thinner hard disk can be installed in the hard disk frame 30.
  • the server chassis further includes: a second adjustment component and a second movable plate 40.
  • the second adjustment component is provided with a pair of second legs 512
  • the hard disk frame 30 further has a second surface, the second surface is opposite to the first surface, and the second surface is provided with a pair of second through holes, and each second leg 512 is respectively located below a second through hole.
  • the second movable plate 40 is stacked below the second adjustment component, the second movable plate 40 contacts the bottom plate of the base 100, and the second movable plate 40 can slide along the second adjustment component.
  • the second movable plate 40 squeezes the second adjustment component so that the second legs 512 of the second adjustment component extend through the second through holes to the inside of the hard disk frame 30, so as to reduce the effective height inside the hard disk frame 30.
  • the second movable plate 40 is located above the bottom plate of the base 100, the second adjustment component is stacked on the second movable plate, and the second adjustment component contacts the second surface of the hard disk frame 30, that is, the second adjustment component and the second movable plate 40 are located below the hard disk frame 30.
  • the second movable plate 40 When the second movable plate 40 does not move, the second leg 512 of the second adjustment component is located below the second through hole, and at this time, the second leg 512 does not extend into the hard disk frame 30; after the second movable plate 40 moves, the second movable plate 40 squeezes the second adjustment component, forcing the second leg 512 to pass through the second through hole and extend into the hard disk frame 30, and the space between the first leg 212 and the second leg 512 is the installation space of the hard disk, so that a thinner hard disk can be installed.
  • the surface of the second movable plate 40 facing the second adjustment component is provided with a third boss 41
  • the surface of the second adjustment component facing the second movable plate 40 is provided with a fourth boss 511
  • the third boss 41 is provided with a third inclined surface
  • the fourth boss 511 is provided with a fourth inclined surface
  • the third inclined surface and the fourth inclined surface cooperate and slide.
  • the third boss 41 has two positions. When the third boss 41 is in the first position, the third inclined surface of the third boss 41 and the fourth boss 511 are in the first position. When the third boss 41 is in the second position, the third boss 41 and the fourth boss 511 are overlapped to squeeze the second adjustment component.
  • the second adjustment component includes: a second adjustment plate 51 and a second spring piece 52.
  • a pair of second legs 512 are provided on the surface of the second adjustment plate 51 facing the hard disk frame 30, and a fourth boss 511 is provided on the surface of the second adjustment plate 51 facing the second movable plate 40.
  • the second spring piece 52 is stacked below the second surface of the hard disk frame 30 and is located between the pair of second legs 512. When the third boss 41 is in the first position, the second spring piece 52 is in an extended state; when the third boss 41 is in the second position, the second spring piece 52 is in a compressed state.
  • the second spring piece 52 is located between the pair of second legs 512 of the second adjustment plate 51.
  • the third boss 41 and the fourth boss 511 are arranged opposite to each other, and the second spring piece 52 is in an extended state.
  • the second spring piece 52 lifts up the second adjustment plate 51, so that the pair of second legs 512 of the second adjustment plate 51 are located below the second through hole.
  • the third boss 41 slides to the top of the fourth boss 511
  • the third boss 41 squeezes the second adjustment plate 51
  • the second adjustment plate 51 squeezes the second spring piece 52 located above it, thereby making the second spring piece 52 in a contracted state.
  • the pair of second legs 512 of the second adjustment plate 51 pass through the second through hole and extend into the hard disk frame 30 to reduce the effective height inside the hard disk frame 30.
  • the server provided in the embodiment of the present application can adjust the installation height of the hard disk in the server chassis by setting up a server chassis, so that the server can install hard disks of various thicknesses, thereby improving the applicability of the server and enhancing the functionality of the server.

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Abstract

本申请涉及服务器技术领域,提供一种服务器机箱及服务器。上述的服务器机箱包括:底座(100);硬盘框架(30)设置于底座内,硬盘框架(30)具有第一表面,第一表面设有一对第一通孔;第一调节组件设有一对第一支腿(212),每个第一支腿分别位于一个第一通孔的上方;第一移动板(10)叠设于第一调节组件的上方,第一移动板(10)能够沿第一调节组件滑动;盖板(200)叠设于第一移动板(10)的上方,并与底座(100)的两个侧板连接;在第一移动板(10)沿第一调节组件滑动时,第一移动板(10)能够挤压第一调节组件,以使第一调节组件的第一支腿(212)贯穿第一通孔延伸至硬盘框架(30)的内部。上述的服务器机箱,在第一移动板(10)移动前和移动后,硬盘框架(30)内高度不同,从而可在硬盘框架(30)内设置厚度不同的硬盘,提高了服务器机箱的适用性。

Description

服务器机箱及服务器
相关申请的交叉引用
本申请要求于2023年02月27日提交中国专利局,申请号为202310167894.2,申请名称为“服务器机箱及服务器”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本申请涉及服务器技术领域,尤其涉及一种服务器机箱及服务器。
背景技术
现今的服务器为了满足不同的功能以及愈来愈大的储存需求,需要支持不同大小的硬盘。在现有的服务器机箱中,大部分光盘结构都是固定式的,其只能安装设定尺寸的硬盘,致使硬盘结构无法满足服务器的内在需求。
目前,也有将硬盘结构作为整体式结构,其与服务器机箱可拆卸连接,但是这种整体式结构需要额外购置其他的模块来作抽换,而在抽换时,还需要将服务器断电,影响了服务器的使用时间。
发明内容
本申请提供一种服务器机箱及服务器,用以解决现有技术中硬盘结构的厚度无法调节,只能适配一种厚度的硬盘的缺陷。
本申请提供一种服务器机箱,包括:底座,底座包括底板和设置在底板两侧的两个侧板;硬盘框架,设置于底座内,硬盘框架具有第一表面,第一表面与底板相背离,第一表面设有一对第一通孔;第一调节组件,第一调节组件设有一对第一支腿,每个第一支腿分别位于一个第一通孔的上方;第一移动板,叠设于第一调节组件的上方,第一移动板能够沿第一调节组件滑动;盖板,叠设于第一移动板的上方,并与底座的两个侧板连接;其中,在第一移动板沿第一调节组件滑动时,第一移动板能够挤压第一调节组件,以使第一调节组件的第一支腿贯穿第一通孔延伸至硬盘框架的内部,以减小硬盘框架内的有效高度。
根据本申请提供的一种服务器机箱,第一移动板面向第一调节组件的表面设有第一凸台,第一调节组件面向第一移动板的表面设有第二凸台,第一凸台设有第一斜面,第二凸台 设有第二斜面,第一斜面与第二斜面配合滑动;第一凸台具有两种位置,在第一凸台处于第一位置的情况下,第一凸台的第一斜面与第二凸台的第二斜面相对设置,在第一凸台处于第二位置的情况下,第一凸台与第二凸台叠设,以挤压第一调节组件。
根据本申请提供的一种服务器机箱,第一调节组件包括:第一调节板,第一调节板面向硬盘框架的表面设有一对第一支腿,第一调节板面向第一移动板的表面还设有第二凸台;第一弹片,第一弹片叠设于硬盘框架的第一表面的上方,并位于一对第一支腿之间;其中,在第一凸台处于第一位置时,第一弹片处于伸长状态,在第一凸台处于第二位置时,第一弹片处于压缩状态。
根据本申请提供的一种服务器机箱,第一调节组件包括第一调节板,第一调节板面向硬盘框架的表面设有一对第一支腿,第一调节板面向第一移动板的表面还设有第二凸台;其中,第一通孔为十字形孔。
根据本申请提供的一种服务器机箱,还包括:第二调节组件,第二调节组件设有一对第二支腿,硬盘框架还具有第二表面,第二表面与第一表面相对,第二表面设有一对第二通孔,每个第二支腿分别位于一个第二通孔的下方;第二移动板,叠设于第二调节组件的下方,第二移动板与底座的底板接触,第二移动板能够沿第二调节组件滑动;其中,在第二移动板沿第二调节组件滑动时,第二移动板能够挤压第二调节组件,以使第二调节组件的第二支腿贯穿第二通孔延伸至硬盘框架的内部,以减小硬盘框架内的有效高度。
根据本申请提供的一种服务器机箱,第二移动板面向第二调节组件的表面设有第三凸台,第二调节组件面向第二移动板的表面设有第四凸台,第三凸台设有第三斜面,第四凸台设有第四斜面,第三斜面与第四斜面配合滑动;第三凸台具有两种位置,在第三凸台处于第一位置的情况下,第三凸台的第三斜面与第四凸台的第四斜面相对,在第三凸台处于第二位置的情况下,第三凸台与第四凸台叠设,以挤压第二调节组件。
根据本申请提供的一种服务器机箱,第二调节组件包括:第二调节板,第二调节板面向硬盘框架的表面设有一对第二支腿,第二调节板面向第二移动板的表面还设有第四凸台;第二弹片,第二弹片叠设于硬盘框架的第二表面的下方,并位于一对第二支腿之间;其中,在第三凸台处于第一位置时,第二弹片处于伸长状态,在第三凸台处于第二位置时,第二弹片处于压缩状态。
根据本申请提供的一种服务器机箱,第二调节组件包括第二调节板,第二调节板面向硬盘框架的表面设有一对第二支腿,第二调节板面向第二移动板的表面还设有第四凸台;其中,第二通孔为十字形孔。
根据本申请提供的一种服务器机箱,第一移动板和第一调节组件构造成第一调节机构,第二移动板和第二调节组件构造成第二调节机构,第一调节机构与第二调节机构的数量为多个,且每个第一调节机构与一个第二调节机构位置对正。
根据本申请提供的一种服务器机箱,还包括:第一切换开关,设置于盖板的端面,第一切换开关与盖板滑动连接,第一切换开关与第一移动板连接。
根据本申请提供的一种服务器机箱,盖板的端面设有第一凹槽、第二凹槽和第三凹槽,第一凹槽、第二凹槽和第三凹槽平行设置;第一切换开关具有第一表面,第一表面的第一端设有第一凸起,第一表面的第二端设有第二凸起,第一凸起设于第一凹槽内,并能够沿第一凹槽滑动,第一凸起与第一移动板连接,第二凸起与第二凹槽或第三凹槽相卡接。
根据本申请提供的一种服务器机箱,第一切换开关还具有第二表面,第二表面与第一表面相对,第二表面设有第三凸起,第三凸起与第二凸起相对设置,第三凸起用于在按动时使第二凸起与第二凹槽或第三凹槽分离。
根据本申请提供的一种服务器机箱,还包括第二切换开关,设置于硬盘框架的端面,第二切换开关与硬盘框架滑动连接,第二切换开关与第二移动板连接。
根据本申请提供的一种服务器机箱,硬盘框架的端面设有第四凹槽、第五凹槽和第六凹槽,第四凹槽、第五凹槽和第六凹槽平行设置;第二切换开关具有第一表面,第一表面的第一端设有第四凸起,第一表面的第二端设有第五凸起,第四凸起设于第四凹槽内,并能够沿第四凹槽滑动,第四凸起与第二移动板连接,第五凸起与第五凹槽或第六凹槽相卡接。
根据本申请提供的一种服务器机箱,第二切换开关还具有第二表面,第二表面与第一表面相对,第二表面设有第六凸起,第六凸起与第五凸起相对设置,第六凸起用于在按动时使第五凸起与第五凹槽或第六凹槽分离。
本申请还提供一种服务器,包括如上的服务器机箱。
本申请提供的服务器机箱,通过设置第一移动板、第一调节组件,并在硬盘框架的第一表面设置第一通孔,在第一移动板未发生移动时,硬盘框架内的高度为原有高度,可设置一种厚度的硬盘,在第一移动板发生移动后,第一移动板挤压第一调节组件,致使第一支腿延伸至硬盘框架内,从而减小了硬盘框架内的有效高度,可在硬盘框架内设置厚度较薄的硬盘,从而使服务器机箱能够安装不同厚度的硬盘,提高了服务器机箱的适用性。
附图说明
为了更清楚地说明本申请或现有技术中的技术方案,下面将对实施例或现有技术描述中 所需要使用的附图作一简单地介绍,显而易见地,下面描述中的附图是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1是本申请提供的服务器机箱的整体结构示意图;
图2是本申请提供的服务器机箱的爆炸图;
图3是第一凸台处于第一位置的结构示意图;
图4是第一凸台处于第二位置的结构示意图;
图5是第三凸台处于第一位置的结构示意图;
图6是第三凸台处于第二位置的结构示意图;
图7是第一切换开关的放大图。
附图标记:
10:第一移动板;11:第一凸台;21:第一调节板;22:第一弹片;30:硬盘框架;40:第二移动板;41:第三凸台;51:第二调节板;52:第二弹片;61:第一切换开关;62:第二切换开关;100:底座;200:盖板;201:第一凹槽;201:第二凹槽;203:第三凹槽;211:第二凸台;212:第一支腿;511:第四凸台;512:第二支腿;611:第一凸起;612:第二凸起;613:第三凸起。
具体实施方式
为使本申请的目的、技术方案和优点更加清楚,下面将结合本申请中的附图,对本申请中的技术方案进行清楚、完整地描述,显然,所描述的实施例是本申请一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。
本申请的说明书和权利要求书中的术语“第一”、“第二”的特征可以明示或者隐含地包括一个或者更多个该特征。在本申请的描述中,除非另有说明,“多个”的含义是两个或两个以上。
在本申请的描述中,需要理解的是,术语“中心”、“纵向”、“横向”、“长度”、“宽度”、“厚度”、“上”、“下”、“前”、“后”、“左”、“右”、“竖直”、“水平”、“顶”、“底”“内”、“外”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本申请和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本申请的限制。
在本申请的描述中,还需要说明的是,除非另有明确的规定和限定,术语“设置”、“安装”、“相连”、“连接”应做广义理解,例如,可以是固定连接,也可以是可拆卸连接,或一体地连接;可以是机械连接,也可以是电性连接;可以是直接相连,也可以通过中间媒介间接相连,可以是两个元件内部的连通。对于本领域的普通技术人员而言,可以具体情况理解上述术语在本申请中的具体含义。
下面结合图1-图7描述本申请的服务器机箱及服务器。
如图1和图2所示,在本申请的实施例中,服务器机箱包括:底座100、第一移动板10、第一调节组件、硬盘框架30和盖板200。底座100包括底板和设置在底板两侧的两个侧板,硬盘框架30设置于底座100内,硬盘框架30具有第一表面,第一表面与底板相背离,第一表面设有一对第一通孔。第一调节组件设有一对第一支腿212,每个第一支腿212分别位于一个第一通孔的上方。第一移动板10叠设于第一调节组件的上方,第一移动板10能够沿第一调节组件滑动,盖板200叠设于第一移动板10的上方,并与底座100的两个侧板连接。其中,在第一移动板10沿第一调节组件滑动时,第一移动板10能够挤压第一调节组件,以使第一调节组件的第一支腿212贯穿第一通孔延伸至硬盘框架30的内部,以减小硬盘框架30内的有效高度。
具体来说,在本实施例中,底座100包括底板和设置在底板两侧的两个侧板,以形成U型槽结构,硬盘框架30、第一调节组件和第一移动板10叠设于该U型槽结构内,盖板200叠设在第一移动板10的上方,并与底座100的两个侧板连接。从底座100的正前方推动第一移动板10沿第一调节组件滑动,第一移动板10可对第一调节组件产生挤压力,从而使第一调节组件的第一支腿212贯穿第一通孔延伸至硬盘框架30的内部,以减小硬盘框架30内的有效高度,从而可以安装厚度较薄的硬盘。
进一步地,在本实施例中,在第一移动板10未发生移动时,第一调节组件的第一支腿212位于硬盘框架30的第一通孔的上方。在本实施例中,第一调节组件可设有弹性件,该弹性件设置于硬盘框架30的第一表面上,并位于第一调节组件的一对第一支腿212之间,在第一移动板10未对第一调节组件施力时,弹性件将第一调节组件托起,从而使第一支腿212不会贯穿第一通孔,而在第一移动板10对第一调节组件施力时,弹性件被压缩,第一支腿212贯穿第一通孔延伸至硬盘框架30内。
可选地,在本申请的另一个实施例中,在硬盘框架30的第一表面加工十字形孔,该十字形孔构成第一通孔。在第一移动板10未对第一调节组件施力时,该十字形孔可对第一调节组件起到支撑作用;在第一移动板10对第一调节组件施力时,该十字形孔不足以支撑第 一调节组件,第一调节组件的第一支腿212贯穿十字形孔延伸至硬盘框架30内,以减小硬盘框架30内的有效高度。
进一步地,在本实施例中,第一移动板10可设有第一凸台11,第一调节组件可设有第二凸台211,在第一移动板10未发生移动时,第一凸台11与第二凸台211左右相对设置,此时,第一移动板10未对第一调节组件施力;在第一移动板10移动时,第一凸台11向靠近第二凸台211的方向移动,最终,第一凸台11滑动至第二凸台211的上方,第一移动板10挤压第一调节组件,从而使第一调节组件的第一支腿212贯穿第一通孔延伸至硬盘框架30内。
本申请实施例提供的服务器机箱,通过设置第一移动板、第一调节组件,并在硬盘框架的第一表面设置第一通孔,在第一移动板未发生移动时,硬盘框架内的高度为原有高度,可设置一种厚度的硬盘,在第一移动板发生移动后,第一移动板挤压第一调节组件,致使第一支腿延伸至硬盘框架内,从而减小了硬盘框架内的有效高度,可在硬盘框架内设置厚度较薄的硬盘,从而使服务器机箱能够安装不同厚度的硬盘,提高了服务器机箱的适用性。
如图3和图4所示,在本申请的实施例中,第一移动板10面向第一调节组件的表面设有第一凸台11,第一调节组件面向第一移动板10的表面设有第二凸台211,第一凸台11设有第一斜面,第二凸台211设有第二斜面,第一斜面与第二斜面配合滑动。第一凸台11具有两种位置,在第一凸台11处于第一位置的情况下,第一凸台11的第一斜面与第二凸台211的第二斜面相对设置,在第一凸台11处于第二位置的情况下,第一凸台11与第二凸台211叠设,以挤压第一调节组件。
具体来说,如图3所示,在第一移动板10未发生移动时,第一凸台11的第一斜面和第二凸台211的第二斜面相对设置,第一移动板10搭在第二凸台211上,此时,第一移动板10未对第一调节组件施力,第一调节组件的第一支腿212位于第一通孔的上方。如图4所示,在第一移动板10移动时,当第一凸台11的第一斜面与第二凸台211的第二斜面相抵接时,第一凸台11的第一斜面与第二凸台211的第二斜面配合滑动,以使第一凸台11滑动至第二凸台211的顶面,此时第一凸台11对第二凸台211产生挤压力,第一调节组件的第一支腿212贯穿第一通孔延伸至硬盘框架30内,以减小硬盘框架30内的有效高度。
可选地,在本申请的一个实施例中,第一调节组件包括:第一调节板21和第一弹片22。第一调节板21面向硬盘框架30的表面设有一对第一支腿212,第一调节板21面向第一移动板10的表面还设有第二凸台211。第一弹片22叠设于硬盘框架30的第一表面的上方,并位于一对第一支腿212之间,其中,在第一凸台11处于第一位置时,第一弹片22 处于伸长状态;在第一凸台11处于第二位置时,第一弹片22处于压缩状态。
具体来说,第一弹片22位于第一调节板21的一对第一支腿212之间,在第一移动板10未发生移动时,第一凸台11的第一斜面与第二凸台211的第二斜面相对设置,第一弹片22处于伸长状态,第一弹片22为第一调节板21提供支撑力,从而使第一调节板21的一对第一支腿212位于第一通孔的上方。在第一移动板10发生移动后,当第一凸台11滑动至第二凸台211的上方时,第一凸台11挤压第一调节板21,第一调节板21挤压位于其下方的第一弹片22,进而使第一弹片22处于收缩状态,此时,第一调节板21的一对第一支腿212贯穿第一通孔延伸至硬盘框架30内,以减小硬盘框架30内的有效高度。
可选地,在本申请的另一个实施例中,第一调节组件包括第一调节板21。第一调节板21面向硬盘框架30的表面设有一对第一支腿212,第一调节板21面向第一移动板10的表面还设有第二凸台211,其中,第一通孔为十字形孔。
具体来说,在第一移动板10未对第一调节板21施力时,该十字形孔可对第一调节板21起到支撑作用;在第一移动板10对第一调节板21施力时,该十字形孔不足以支撑第一调节板21,第一调节板21的第一支腿212贯穿十字形孔延伸至硬盘框架30内,以减小硬盘框架30内的有效高度。
相应地,在本申请的实施例中,还可以在硬盘框架30的另一侧设置第二调节组件和第二移动板40,第二调节组件的第二支腿512延伸至硬盘框架30内时,可与第一支腿212配合进一步减小硬盘框架30内的有效高度,使硬盘框架30内可以安装厚度更薄的硬盘。
具体地,服务器机箱还包括:第二调节组件和第二移动板40。第二调节组件设有一对第二支腿512,硬盘框架30还具有第二表面,第二表面与第一表面相对,第二表面设有一对第二通孔,每个第二支腿512分别位于一个第二通孔的下方。第二移动板40叠设于第二调节组件的下方,第二移动板40与底座100的底板接触,第二移动板40能够沿第二调节组件滑动。其中,在第二移动板40沿第二调节组件滑动时,第二移动板40挤压第二调节组件,以使第二调节组件的第二支腿512贯穿第二通孔延伸至硬盘框架30的内部,以减小硬盘框架30内的有效高度。
具体来说,在本实施例中,第二移动板40位于底座100的底板的上方,第二调节组件叠设于第二移动板之上,第二调节组件与硬盘框架30的第二表面接触,即第二调节组件和第二移动板40位于硬盘框架30的下方。在第二移动板40未发生移动时,第二调节组件的第二支腿512位于第二通孔的下方,此时,第二支腿512并未延伸至硬盘框架30内;在第 二移动板40移动后,第二移动板40挤压第二调节组件,迫使第二支腿512贯穿第二通孔延伸至硬盘框架30内,第一支腿212与第二支腿512之间的空间即为硬盘的安装空间,从而可以安装厚度更薄的硬盘。
本申请实施例提供的服务器机箱,通过设置第一移动板、第一调节组件、第二移动板和第二调节组件,能够使第一支腿和第二支腿从硬盘框架相对的两个表面延伸至硬盘框架内,进一步减小了硬盘框架内的有效高度,从而使硬盘框架可安装厚度更薄的硬盘,提高了服务器机箱的适用性。
进一步地,在本申请的实施例中,第二移动板40面向第二调节组件的表面设有第三凸台41,第二调节组件面向第二移动板40的表面设有第四凸台511,第三凸台41设有第三斜面,第四凸台511设有第四斜面,第三斜面与第四斜面配合滑动。其中,第三凸台41具有两种位置,在第三凸台41处于第一位置的情况下,第三凸台41的第三斜面与第四凸台511的第四斜面相对;在第三凸台41处于第二位置的情况下,第三凸台41与第四凸台511叠设,以挤压第二调节组件。
具体来说,如图5所示,在第二移动板40未移动时,第三凸台41的第三斜面和第四凸台511的第四斜面相对设置,第二移动板40搭在第四凸台511上,此时,第二移动板40未对第二调节组件施力,第二调节组件的第二支腿512位于第二通孔的下方。如图6所示,在第二移动板40移动时,当第三凸台41的第三斜面与第四凸台511的第四斜面相抵接时,第三凸台41的第三斜面与第四凸台511的第四斜面配合滑动,以使第三凸台41滑动至第四凸台511的底面,此时第三凸台41对第四凸台511产生挤压力,第二调节组件的第二支腿512贯穿第二通孔延伸至硬盘框架30内,以减小硬盘框架30内的有效高度。
可选地,如图5和图6所示,在本申请的一个实施例中,第二调节组件包括:第二调节板51和第二弹片52。第二调节板51面向硬盘框架30的表面设有一对第二支腿512,第二调节板51面向第二移动板40的表面设有第四凸台511。第二弹片52叠设于硬盘框架30的第二表面的下方,并位于一对第二支腿512之间。其中,在第三凸台41处于第一位置时,第二弹片52处于伸长状态;在第三凸台41处于第二位置时,第二弹片52处于压缩状态。
具体来说,第二弹片52位于第二调节板51的一对第二支腿512之间,在第二移动板40未移动时,第三凸台41与第四凸台511相对设置,第二弹片52处于伸长状态,第二弹片52将第二调节板51顶起,从而使第二调节板51的一对第二支腿512位于第二通孔的下方。在第二移动板40移动后,当第三凸台41滑动至第四凸台511的上方时,第三凸台41挤压第二调节板51,第二调节板51挤压位于其上方的第二弹片52,进而使第二弹片52处 于收缩状态,此时,第二调节板51的一对第二支腿512贯穿第二通孔延伸至硬盘框架30内,以减小硬盘框架30内的有效高度。
可选地,在本申请的另一个实施例中,第二调节组件包括第二调节板51。第二调节板51面向硬盘框架30的表面设有一对第二支腿512,第二调节板51面向第二移动板40的表面设有第四凸台511,其中,第二通孔为十字形孔。
具体来说,在第二移动板40未对第二调节板51施力时,该十字形孔可对第二调节板51起到支撑作用;在第二移动板40对第二调节板51施力时,该十字形孔不足以支撑第二调节板51,第二调节板51的第一支腿512贯穿十字形孔延伸至硬盘框架30内,以减小硬盘框架30内的有效高度。
在本申请的实施例中,第一移动板10和第一调节组件构造成第一调节机构,第二移动板40和第二调节组件构造成第二调节机构,第一调节机构和第二调节机构的数量为多个,且每个第一调节机构与一个第二调节机构位置对正。
具体来说,可在硬盘框架30的上方设置多个第一调节机构,同时,在硬盘框架30的下方设置多个第二调节机构,每个第一调节机构和/或第二调节机构均可对硬盘框架30内相对位置的高度进行调节,以使硬盘框架30内可同时安装不同厚度的硬盘。具体地,假设第一调节机构和第二调节机构的数量均为三个,则三个第一调节机构和三个第二调节机构可将硬盘框架30内的空间划分为三个有效高度不同的区域。具体地,如第一对第一调节机构和第二调节机构不移动,则第一调节机构和第二调节机构所对硬盘框架30内的空间有效高度最高,可安装厚度较厚的硬盘;如第二对第一调节机构和第二调节机构中的一者移动,使第一调节机构的第一支腿212或第二调节机构的第二支腿512延伸至硬盘框架30内,以减小硬盘框架30内的有效高度,可使硬盘框架30安装厚度较薄的硬盘;而第三对第一调节机构的第一支腿212和第二调节机构的第二支腿512均延伸至硬盘框架30内,可进一步减小硬盘框架30内的有效高度,从而可以安装更薄的硬盘。
如图1所示,在本申请的实施例中,服务器机箱还包括第一切换开关61。第一切换开关61设置于盖板200的端面,第一切换开关61与盖板200滑动连接,第一切换开关61与第一移动板10连接。
具体来说,第一切换开关61设置于盖板200的端面,第一切换开关61与第一移动板10连接,推动第一切换开关61沿盖板200滑动时,可带动第一移动板10移动,进而挤压第一调节板21,使第一调节板21的一对第一支腿212延伸至硬盘框架30内。
进一步地,如图7所示,盖板200的端面设有第一凹槽201、第二凹槽202和第三凹槽 203,第一凹槽201、第二凹槽202和第三凹槽203平行设置,且第二凹槽202与第三凹槽203之间的间距小于第一凹槽201与第二凹槽202之间的间距。第一切换开关61具有第一表面,第一表面的第一端设有第一凸起611、第一表面的第二端设有第二凸起612,第一凸起611设于第一凹槽201内,并能够沿第一凹槽201滑动,第一凸起611与第一移动板10连接,第二凸起612与第二凹槽202或第三凹槽203相卡接。
具体来说,盖板200的底面设有第一凹槽201、第二凹槽202和第三凹槽203,第一凹槽201、第二凹槽202和第三凹槽203的一端均延伸至盖板200的端面,第一凹槽201的宽度满足第一移动板10的行程。第一凸起611位于该第一凹槽201内,推动第一切换开关61,使第一凸起611沿第一凹槽201滑动时,第一凸起611带动第一移动板10移动。第二凹槽202和第三凹槽203用于对第一切换开关61的第二凸起612进行固定。在第一切换开关61未移动时,第二凸起612与第二凹槽202卡接;当第一凸起611沿第一凹槽201滑动后,第二凸起612可与第三凹槽203卡接,此时,第一移动板10的第一凸台11与第一调节板21的第二凸台211叠设,第一调节板21的一对第一支腿212延伸至硬盘框架30内。
进一步地,如图7所示,在本申请的实施例中,第一切换开关61还具有第二表面,第二表面与第一表面相对,第二表面设有第三凸起613,第三凸起613与第二凸起612相对设置,第三凸起613用于在按动时使第二凸起612与第二凹槽202或第三凹槽203分离。
具体来说,按动第三凸起613时可使第二凸起612脱离第二凹槽202或第三凹槽203,从而可以推动第一切换开关61,以使第一凸起611沿第一凹槽201滑动,进而调节第一移动板10的位置。
相应地,服务器机箱还包括第二切换开关62,第二切换开关62设置于硬盘框架30的端面,第二切换开关62与硬盘框架30滑动连接,第二切换开关62与第二移动板40连接。
具体来说,第二切换开关62设置于硬盘框架30的下端面,第二切换开关62与第二移动板40连接,推动第二切换开关62沿硬盘框架30滑动时,可带动第二移动板40移动,进而挤压第二调节板51,使第二调节板51的一对第二支腿512延伸至硬盘框架30内。
进一步地,硬盘框架30的底面设有第四凹槽、第五凹槽和第六凹槽,第四凹槽、第五凹槽和第六凹槽平行设置,第四凹槽与第五凹槽之间的间距大于第五凹槽与第六凹槽之间的间距。第四凹槽的宽度满足第二移动板40的行程。第二切换开关62具有第一表面,该第一表面的第一端设有第四凸起,第一表面的第二端设有第五凸起,第四凸起设于第四凹槽内,并能够沿第四凹槽滑动,第五凸起与第五凹槽或第六凹槽相卡接。
具体来说,在第二切换开关62未发生移动时,第五凸起与第五凹槽相卡接;在第四凸起沿第四凹槽发生移动后,第五凸起与第六凹槽相卡接,此时,第二移动板40的第三凸台41与第二调节板51的第四凸台511叠设,第二调节板51的一对第二支腿512延伸至硬盘框架30内。
进一步地,第二切换开关62还具有第二表面,第二表面与第一表面相对,第二表面设有第六凸起,第六凸起与第五凸起相对设置,第六凸起用于在按动时使第五凸起与第五凹槽或第六凹槽分离。
具体来说,第二切换开关62的结构与第一切换开关61的结构相同,按动第六凸起时可使第五凸起脱离第五凹槽或第六凹槽,从而可以推动第二切换开关62,以使第四凸起沿第四凹槽滑动,进而调节第二移动板20的位置。
本申请实施例还提供了一种服务器,包括服务器机箱。
具体来说,服务器机箱内设置有硬盘以及主板等。服务器机箱包括:底座100、第一移动板10、第一调节组件、硬盘框架30和盖板200。底座100包括底板和设置在底板两侧的两个侧板,硬盘框架30设置于底座100内,硬盘框架30具有第一表面,第一表面与底板相背离,第一表面设有一对第一通孔。第一调节组件设有一对第一支腿212,每个第一支腿212分别位于一个第一通孔的上方。第一移动板10叠设于第一调节组件的上方,第一移动板10能够沿第一调节组件滑动,盖板200叠设于第一移动板10的上方,并与底座100的两个侧板连接。其中,在第一移动板10沿第一调节组件滑动时,第一移动板10能够挤压第一调节组件,以使第一调节组件的第一支腿212贯穿第一通孔延伸至硬盘框架30的内部,以减小硬盘框架30内的有效高度。
具体来说,底座100包括底板和设置在底板两侧的两个侧板,以形成U型槽结构,硬盘框架30、第一调节组件和第一移动板10叠设于该U型槽结构内,盖板200叠设在第一移动板10的上方,并与底座100的两个侧板连接。从底座100的正前方推动第一移动板10沿第一调节组件滑动,第一移动板10可对第一调节组件产生挤压力,从而使第一调节组件的第一支腿212贯穿第一通孔延伸至硬盘框架30的内部,以减小硬盘框架30内的有效高度,从而可以安装厚度较薄的硬盘。
进一步地,在本实施例中,在第一移动板10未发生移动时,第一调节组件的第一支腿212位于硬盘框架30的第一通孔的上方。在本实施例中,第一调节组件可设有弹性件,该弹性件设置于硬盘框架30的第一表面上,并位于第一调节组件的一对第一支腿212之间,在第一移动板10未对第一调节组件施力时,弹性件将第一调节组件托起,从而使第一支腿 212不会贯穿第一通孔,而在第一移动板10对第一调节组件施力时,弹性件被压缩,第一支腿212贯穿第一通孔延伸至硬盘框架30内。
可选地,在本申请的另一个实施例中,在硬盘框架30的第一表面加工十字形孔,该十字形孔构成第一通孔。在第一移动板10未对第一调节组件施力时,该十字形孔可对第一调节组件起到支撑作用;在第一移动板10对第一调节组件施力时,该十字形孔不足以支撑第一调节组件,第一调节组件的第一支腿212贯穿十字形孔延伸至硬盘框架30内,以减小硬盘框架30内的有效高度。
进一步地,在本实施例中,第一移动板10可设有第一凸台11,第一调节组件可设有第二凸台211,在第一移动板10未发生移动时,第一凸台11与第二凸台211左右相对设置,此时,第一移动板10未对第一调节组件施力;在第一移动板10移动时,第一凸台11向靠近第二凸台211的方向移动,最终,第一凸台11滑动至第二凸台211的上方,第一移动板10挤压第一调节组件,从而使第一调节组件的第一支腿212贯穿第一通孔延伸至硬盘框架30内。
如图3和图4所示,在本申请的实施例中,第一移动板10面向第一调节组件的表面设有第一凸台11,第一调节组件面向第一移动板10的表面设有第二凸台211,第一凸台11设有第一斜面,第二凸台211设有第二斜面,第一斜面与第二斜面配合滑动。第一凸台11具有两种位置,在第一凸台11处于第一位置的情况下,第一凸台11的第一斜面与第二凸台211的第二斜面相对设置,在第一凸台11处于第二位置的情况下,第一凸台11与第二凸台211叠设,以挤压第一调节组件。
具体来说,如图3所示,在第一移动板10未发生移动时,第一凸台11的第一斜面和第二凸台211的第二斜面相对设置,第一移动板10搭在第二凸台211上,此时,第一移动板10未对第一调节组件施力,第一调节组件的第一支腿212位于第一通孔的上方。如图4所示,在第一移动板10移动时,当第一凸台11的第一斜面与第二凸台211的第二斜面相抵接时,第一凸台11的第一斜面与第二凸台211的第二斜面配合滑动,以使第一凸台11滑动至第二凸台211的顶面,此时第一凸台11对第二凸台211产生挤压力,第一调节组件的第一支腿212贯穿第一通孔延伸至硬盘框架30内,以减小硬盘框架30内的有效高度。
可选地,在本申请的一个实施例中,第一调节组件包括:第一调节板21和第一弹片22。第一调节板21面向硬盘框架30的表面设有一对第一支腿212,第一调节板21面向第一移动板10的表面还设有第二凸台211。第一弹片22叠设于硬盘框架30的第一表面的上方,并位于一对第一支腿212之间,其中,在第一凸台11处于第一位置时,第一弹片22 处于伸长状态;在第一凸台11处于第二位置时,第一弹片22处于压缩状态。
具体来说,第一弹片22位于第一调节板21的一对第一支腿212之间,在第一移动板10未发生移动时,第一凸台11的第一斜面与第二凸台211的第二斜面相对设置,第一弹片22处于伸长状态,第一弹片22为第一调节板21提供支撑力,从而使第一调节板21的一对第一支腿212位于第一通孔的上方。在第一移动板10发生移动后,当第一凸台11滑动至第二凸台211的上方时,第一凸台11挤压第一调节板21,第一调节板21挤压位于其下方的第一弹片22,进而使第一弹片22处于收缩状态,此时,第一调节板21的一对第一支腿212贯穿第一通孔延伸至硬盘框架30内,以减小硬盘框架30内的有效高度。
相应地,在本申请的实施例中,还可以在硬盘框架30的另一侧设置第二调节组件和第二移动板40,第二调节组件的第二支腿512延伸至硬盘框架30内时,可与第一支腿212配合进一步减小硬盘框架30内的有效高度,使硬盘框架30内可以安装厚度更薄的硬盘。
具体地,服务器机箱还包括:第二调节组件和第二移动板40。第二调节组件设有一对第二支腿512,硬盘框架30还具有第二表面,第二表面与第一表面相对,第二表面设有一对第二通孔,每个第二支腿512分别位于一个第二通孔的下方。第二移动板40叠设于第二调节组件的下方,第二移动板40与底座100的底板接触,第二移动板40能够沿第二调节组件滑动。其中,在第二移动板40沿第二调节组件滑动时,第二移动板40挤压第二调节组件,以使第二调节组件的第二支腿512贯穿第二通孔延伸至硬盘框架30的内部,以减小硬盘框架30内的有效高度。
具体来说,在本实施例中,第二移动板40位于底座100的底板的上方,第二调节组件叠设于第二移动板之上,第二调节组件与硬盘框架30的第二表面接触,即第二调节组件和第二移动板40位于硬盘框架30的下方。在第二移动板40未发生移动时,第二调节组件的第二支腿512位于第二通孔的下方,此时,第二支腿512并未延伸至硬盘框架30内;在第二移动板40移动后,第二移动板40挤压第二调节组件,迫使第二支腿512贯穿第二通孔延伸至硬盘框架30内,第一支腿212与第二支腿512之间的空间即为硬盘的安装空间,从而可以安装厚度更薄的硬盘。
进一步地,在本申请的实施例中,第二移动板40面向第二调节组件的表面设有第三凸台41,第二调节组件面向第二移动板40的表面设有第四凸台511,第三凸台41设有第三斜面,第四凸台511设有第四斜面,第三斜面与第四斜面配合滑动。其中,第三凸台41具有两种位置,在第三凸台41处于第一位置的情况下,第三凸台41的第三斜面与第四凸台 511的第四斜面相对;在第三凸台41处于第二位置的情况下,第三凸台41与第四凸台511叠设,以挤压第二调节组件。
具体来说,如图5所示,在第二移动板40未移动时,第三凸台41的第三斜面和第四凸台511的第四斜面相对设置,第二移动板40搭在第四凸台511上,此时,第二移动板40未对第二调节组件施力,第二调节组件的第二支腿512位于第二通孔的下方。如图6所示,在第二移动板40移动时,当第三凸台41的第三斜面与第四凸台511的第四斜面相抵接时,第三凸台41的第三斜面与第四凸台511的第四斜面配合滑动,以使第三凸台41滑动至第四凸台511的底面,此时第三凸台41对第四凸台511产生挤压力,第二调节组件的第二支腿512贯穿第二通孔延伸至硬盘框架30内,以减小硬盘框架30内的有效高度。
可选地,如图5和图6所示,在本申请的一个实施例中,第二调节组件包括:第二调节板51和第二弹片52。第二调节板51面向硬盘框架30的表面设有一对第二支腿512,第二调节板51面向第二移动板40的表面设有第四凸台511。第二弹片52叠设于硬盘框架30的第二表面的下方,并位于一对第二支腿512之间。其中,在第三凸台41处于第一位置时,第二弹片52处于伸长状态;在第三凸台41处于第二位置时,第二弹片52处于压缩状态。
具体来说,第二弹片52位于第二调节板51的一对第二支腿512之间,在第二移动板40未移动时,第三凸台41与第四凸台511相对设置,第二弹片52处于伸长状态,第二弹片52将第二调节板51顶起,从而使第二调节板51的一对第二支腿512位于第二通孔的下方。在第二移动板40移动后,当第三凸台41滑动至第四凸台511的上方时,第三凸台41挤压第二调节板51,第二调节板51挤压位于其上方的第二弹片52,进而使第二弹片52处于收缩状态,此时,第二调节板51的一对第二支腿512贯穿第二通孔延伸至硬盘框架30内,以减小硬盘框架30内的有效高度。
本申请实施例提供的服务器,通过设置服务器机箱,可对服务器机箱内硬盘的安装高度进行调节,从而使服务器可安装多种厚度的硬盘,提高了服务器的适用性,增强了服务器的功能性。
最后应说明的是:以上实施例仅用以说明本申请的技术方案,而非对其限制;尽管参照前述实施例对本申请进行了详细的说明,本领域的普通技术人员应当理解:其依然可以对前述各实施例所记载的技术方案进行修改,或者对其中部分技术特征进行等同替换;而这些修改或者替换,并不使相应技术方案的本质脱离本申请各实施例技术方案的精神和范围。

Claims (20)

  1. 一种服务器机箱,其特征在于,包括:
    底座,所述底座包括底板和设置在所述底板两侧的两个侧板;
    硬盘框架,设置于所述底座内,所述硬盘框架具有第一表面,所述第一表面与所述底板相背离,所述第一表面设有一对第一通孔;
    第一调节组件,所述第一调节组件设有一对第一支腿,每个所述第一支腿分别位于一个所述第一通孔的上方;
    第一移动板,叠设于所述第一调节组件的上方,所述第一移动板能够沿所述第一调节组件滑动;
    盖板,叠设于所述第一移动板的上方,并与所述底座的两个侧板连接;
    其中,在所述第一移动板沿所述第一调节组件滑动时,所述第一移动板能够挤压所述第一调节组件,以使所述第一调节组件的第一支腿贯穿所述第一通孔延伸至所述硬盘框架的内部,以减小所述硬盘框架内的有效高度。
  2. 根据权利要求1所述的服务器机箱,其特征在于,所述第一移动板面向所述第一调节组件的表面设有第一凸台,所述第一调节组件面向所述第一移动板的表面设有第二凸台,所述第一凸台设有第一斜面,所述第二凸台设有第二斜面,所述第一斜面与所述第二斜面配合滑动;
    所述第一凸台具有两种位置,在所述第一凸台处于第一位置的情况下,所述第一凸台的第一斜面与所述第二凸台的第二斜面相对设置,在所述第一凸台处于第二位置的情况下,所述第一凸台与所述第二凸台叠设,以挤压所述第一调节组件。
  3. 根据权利要求2所述的服务器机箱,其特征在于,所述第一调节组件包括:
    第一调节板,所述第一调节板面向所述硬盘框架的表面设有一对所述第一支腿,所述第一调节板面向所述第一移动板的表面还设有所述第二凸台;
    第一弹片,所述第一弹片叠设于所述硬盘框架的第一表面的上方,并位于一对所述第一支腿之间;
    其中,在所述第一凸台处于所述第一位置时,所述第一弹片处于伸长状态,在所述第一凸台处于所述第二位置时,所述第一弹片处于压缩状态。
  4. 根据权利要求2所述的服务器机箱,其特征在于,所述第一调节组件包括第一调节板,所述第一调节板面向所述硬盘框架的表面设有一对所述第一支腿,所述第一调节板面向所述第一移动板的表面还设有所述第二凸台;其中,所述第一通孔为十字形孔。
  5. 根据权利要求1所述的服务器机箱,其特征在于,还包括:
    第二调节组件,所述第二调节组件设有一对第二支腿,所述硬盘框架还具有第二表面,所述第二表面与所述第一表面相对,所述第二表面设有一对第二通孔,每个所述第二支腿分别位于一个所述第二通孔的下方;
    第二移动板,叠设于所述第二调节组件的下方,所述第二移动板与所述底座的底板接触,所述第二移动板能够沿所述第二调节组件滑动;
    其中,在所述第二移动板沿所述第二调节组件滑动时,所述第二移动板能够挤压所述第二调节组件,以使所述第二调节组件的第二支腿贯穿所述第二通孔延伸至所述硬盘框架的内部,以减小所述硬盘框架内的有效高度。
  6. 根据权利要求5所述的服务器机箱,其特征在于,所述第二移动板面向所述第二调节组件的表面设有第三凸台,所述第二调节组件面向所述第二移动板的表面设有第四凸台,所述第三凸台设有第三斜面,所述第四凸台设有第四斜面,所述第三斜面与所述第四斜面配合滑动;
    所述第三凸台具有两种位置,在所述第三凸台处于第一位置的情况下,所述第三凸台的第三斜面与所述第四凸台的第四斜面相对,在所述第三凸台处于第二位置的情况下,所述第三凸台与所述第四凸台叠设,以挤压所述第二调节组件。
  7. 根据权利要求6所述的服务器机箱,其特征在于,所述第二调节组件包括:
    第二调节板,所述第二调节板面向所述硬盘框架的表面设有一对所述第二支腿,所述第二调节板面向所述第二移动板的表面还设有所述第四凸台;
    第二弹片,所述第二弹片叠设于所述硬盘框架的第二表面的下方,并位于一对所述第二支腿之间;
    其中,在所述第三凸台处于所述第一位置时,所述第二弹片处于伸长状态,在所述第三凸台处于所述第二位置时,所述第二弹片处于压缩状态。
  8. 根据权利要求6所述的服务器机箱,其特征在于,所述第二调节组件包括第二调节板,所述第二调节板面向所述硬盘框架的表面设有一对所述第二支腿,所述第二调节板面向所述第二移动板的表面还设有所述第四凸台;其中,所述第二通孔为十字形孔。
  9. 根据权利要求5所述的服务器机箱,其特征在于,所述第一移动板和所述第一调节组件构造成第一调节机构,所述第二移动板和所述第二调节组件构造成第二调节机构,所述第一调节机构与所述第二调节机构的数量为多个,且每个所述第一调节机构与一个所述第二调节机构位置对正。
  10. 根据权利要求9所述的服务器机箱,其特征在于,每个所述第一调节机构和/或所述第二调节机构用于对所述硬盘框架内相对位置的高度进行调节。
  11. 根据权利要求1所述的服务器机箱,其特征在于,还包括第一切换开关,设置于所述盖板的端面,所述第一切换开关与所述盖板滑动连接,所述第一切换开关与所述第一移动板连接。
  12. 根据权利要求11所述的服务器机箱,其特征在于,所述盖板的端面设有第一凹槽、第二凹槽和第三凹槽,所述第一凹槽、所述第二凹槽和所述第三凹槽平行设置;
    所述第一切换开关具有第一表面,所述第一表面的第一端设有第一凸起,所述第一表面的第二端设有第二凸起,所述第一凸起设于所述第一凹槽内,并能够沿所述第一凹槽滑动,所述第一凸起与所述第一移动板连接,所述第二凸起与所述第二凹槽或所述第三凹槽相卡接。
  13. 根据权利要求12所述的服务器机箱,其特征在于,所述第一切换开关还具有第二表面,所述第二表面与所述第一表面相对,所述第二表面设有第三凸起,所述第三凸起与所述第二凸起相对设置,所述第三凸起用于在按动时使所述第二凸起与所述第二凹槽或所述第三凹槽分离。
  14. 根据权利要求5所述的服务器机箱,其特征在于,还包括第二切换开关,设置于所述硬盘框架的端面,所述第二切换开关与所述硬盘框架滑动连接,所述第二切换开关与所述第二移动板连接。
  15. 根据权利要求14所述的服务器机箱,其特征在于,所述硬盘框架的端面设有第四凹槽、第五凹槽和第六凹槽,所述第四凹槽、所述第五凹槽和所述第六凹槽平行设置;
    所述第二切换开关具有第一表面,所述第一表面的第一端设有第四凸起,所述第一表面的第二端设有第五凸起,所述第四凸起设于所述第四凹槽内,并能够沿所述第四凹槽滑动,所述第四凸起与所述第二移动板连接,所述第五凸起与所述第五凹槽或所述第六凹槽相卡接。
  16. 根据权利要求15所述的服务器机箱,其特征在于,所述第二切换开关还具有第二表面,所述第二表面与所述第一表面相对,所述第二表面设有第六凸起,所述第六凸起与所述第五凸起相对设置,所述第六凸起用于在按动时使所述第五凸起与所述第五凹槽或所述第六凹槽分离。
  17. 根据权利要求5所述的服务器机箱,其特征在于,所述底板和所述底座的两个侧板形成U型槽结构。
  18. 根据权利要求17所述的服务器机箱,其特征在于,所述硬盘框架、所述第一调节组件和所述第一移动板叠设于所述U型槽结构内。
  19. 根据权利要求5所述的服务器机箱,其特征在于,所述第一支腿与所述第二支腿之间的空间用于安装硬盘。
  20. 一种服务器,其特征在于,包括权利要求1-19中任一项所述的服务器机箱。
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