WO2018192012A1 - 硬盘存储模块和硬盘存储设备 - Google Patents

硬盘存储模块和硬盘存储设备 Download PDF

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Publication number
WO2018192012A1
WO2018192012A1 PCT/CN2017/083267 CN2017083267W WO2018192012A1 WO 2018192012 A1 WO2018192012 A1 WO 2018192012A1 CN 2017083267 W CN2017083267 W CN 2017083267W WO 2018192012 A1 WO2018192012 A1 WO 2018192012A1
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WO
WIPO (PCT)
Prior art keywords
hard disk
disk storage
storage module
buckle
module
Prior art date
Application number
PCT/CN2017/083267
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English (en)
French (fr)
Inventor
徐业友
Original Assignee
东莞市欣元睿创电子科技有限公司
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
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Application filed by 东莞市欣元睿创电子科技有限公司 filed Critical 东莞市欣元睿创电子科技有限公司
Publication of WO2018192012A1 publication Critical patent/WO2018192012A1/zh

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Classifications

    • 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
    • G11B33/02Cabinets; Cases; Stands; Disposition of apparatus therein or thereon
    • G11B33/04Cabinets; Cases; Stands; Disposition of apparatus therein or thereon modified to store record carriers
    • 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
    • G11B33/14Reducing influence of physical parameters, e.g. temperature change, moisture, dust

Definitions

  • the present invention relates to the field of hard disk storage technologies, and in particular, to a hard disk storage module and a hard disk storage device using the hard disk storage module.
  • existing hard disk storage devices In order to store multiple hard disks at the same time, existing hard disk storage devices usually have multiple storage spaces inside.
  • the existing hard disk storage device not only has a complicated internal structure, but also needs to install a plurality of complicated small parts, and according to different specifications of the hard disk storage device, it is required to have different size parts, which is inconvenient for production and processing.
  • the main purpose of the present invention is to provide a hard disk storage module, which is intended to make the hard disk storage device using the hard disk storage module not only more applicable, but also easier to manufacture and process.
  • the present invention provides a hard disk storage module, comprising a bracket module, the bracket module has a receiving cavity, and the receiving cavity has two connecting walls disposed opposite to each other;
  • Each of the connecting walls has a buckle and a buckle, and a buckle of the hard disk storage module cooperates with a buckle of another hard disk storage module.
  • each of the connecting walls extends outward to form the buckle.
  • the bracket module further includes a first stop wall and a second stop wall disposed opposite to each other, the first stop wall, the second stop wall and the two connecting walls are enclosed to form the receiving a cavity, the connecting wall portion extending toward the second stop wall to form the buckle.
  • the first stop wall is provided with a notch that communicates with the buckle, and the buckle of the hard disk storage module cooperates with the buckle and the notch of the other hard disk storage module.
  • the first stop wall includes a plurality of first stop plates disposed at intervals, each of the first stop plates connecting two connection walls, and at least one of the first baffles is provided with The gap in which the buckle is connected.
  • At least one of the first stop plates has a plurality of heat dissipation holes, and the heat dissipation holes are in communication with the receiving cavity.
  • the second stop wall includes a plurality of second stop plates disposed at intervals, each of the second stop plates connecting two connection walls, and the plurality of the first storage blocks of the hard disk storage module A stop plate is staggered with the plurality of the second stop plates of the other hard disk storage module and is located in the same plane.
  • the hard disk storage module further includes a dustproof door covering an open end of the receiving cavity, and one side of the dustproof door is rotatably connected to the bracket module.
  • the connecting wall is further provided with a hook.
  • the present invention further provides a hard disk storage device including a housing and at least one of the above-described hard disk storage modules, at least the bracket module being housed in the housing.
  • the accommodating cavity of the hard disk storage module is used for storing the hard disk, and the buckle of one hard disk storage module is locked in the buckle of the other hard disk storage module, so that the two hard disk storage modules can be superimposed on each other, similarly
  • two or more hard disk storage modules can be superimposed by the buckles and buckles of the bracket module, and the hard disk storage module can store a hard disk.
  • the hard disk storage module has a simple structure and does not need to be complicated. Small parts are spliced.
  • the hard disk storage device that uses the hard disk storage module can select a hard disk storage module or a plurality of hard disk storage modules to store the hard disk according to the requirement of the number of storage hard disks.
  • the hard disk storage device has a simple structure and is convenient for production and processing.
  • FIG. 1 is a schematic structural diagram of an embodiment of a hard disk storage module according to the present invention.
  • FIG. 2 is a schematic structural view of the splicing of two hard disk storage modules in FIG. 1;
  • FIG. 3 is a schematic exploded view of two hard disk storage modules according to another embodiment of the present invention.
  • FIG. 4 is a schematic exploded view of an embodiment of a hard disk storage device of the present invention.
  • first, second, and the like in the present invention are used for the purpose of description only, and are not to be construed as indicating or implying their relative importance or implicitly indicating the number of technical features indicated.
  • features defining “first” or “second” may include at least one of the features, either explicitly or implicitly.
  • the technical solutions between the various embodiments may be combined with each other, but must be based on the realization of those skilled in the art, and when the combination of the technical solutions is contradictory or impossible to implement, it should be considered that the combination of the technical solutions does not exist. It is also within the scope of protection required by the present invention.
  • the present invention provides a hard disk storage module 10, the hard disk storage module 10 includes a bracket module 11, the bracket module 11 has a receiving cavity 111, the receiving cavity 111 has two opposite connecting walls 113;
  • Each of the connecting walls 113 has a buckle 1131 and a buckle 1133.
  • the buckle 1131 of one hard disk storage module 10 cooperates with the buckle 1133 of the other hard disk storage module 10.
  • the accommodating cavity 111 of the hard disk storage module 10 is used for storing a hard disk (not shown).
  • the buckle 1131 of the hard disk storage module 10 is locked to the buckle 1133 of the other hard disk storage module 10. Therefore, the two hard disk storage modules 10 can be superimposed on each other.
  • two or more hard disk storage modules 10 can be superimposed on each other by the combination of the buckle 1131 of the bracket module 11 and the buckle 1133.
  • the bracket module 11 of the 10 can store a hard disk, and the hard disk storage module 10 has a simple structure, and does not need to set complicated and small parts for splicing.
  • the hard disk storage device 100 of the hard disk storage module 10 can select a hard disk storage module 10 or a plurality of hard disk storage modules 10 to store the hard disk according to the requirement of the number of the storage disks.
  • the hard disk storage device 100 not only produces, The processing is convenient, and the installation is convenient and the structure is simple.
  • the bracket module 11 of the hard disk storage module 10 can be integrally formed, so that the hard disk storage module 10 is more convenient to produce and process.
  • each connecting wall 113 extends outward to form a buckle 1131.
  • the extended latch 1131 can be latched into the buckle 1133 of the other hard disk storage module 10 to connect the two hard disk storage modules 10 so that the two are used as a whole.
  • a buckle is protruded from a surface of each connecting wall facing away from the receiving cavity, and the buckle extends in a direction of one side of the connecting wall.
  • the connecting wall The buckled portion of the hard disk storage module has a groove or a through hole matched with the buckle of the other hard disk storage module.
  • the bracket module 11 further includes a first stop wall 115 and a second stop wall 117 disposed opposite to each other, the first stop wall 115, the second stop wall 117 and the two connecting walls 113
  • the receiving cavity 111 is formed, and the connecting wall 113 partially extends toward the second stopping wall 117 to form a buckle 1131.
  • the oppositely disposed first stop wall 115 and second stop wall 117 and the oppositely disposed two connecting walls 113 respectively stop the four sequentially connected outer side walls of the hard disk housed in the accommodating cavity 111.
  • the first stop wall 115 of one hard disk storage module 10 cooperates with the second stop wall 117 of the other hard disk storage module 10, and at the same time, the card of one hard disk storage module 10.
  • the buckle 1131 is locked to the buckle 1133 of the other hard disk storage module 10, so that each two hard disk storage modules 10 achieve a simple and reliable connection.
  • the first stop wall 115 defines a notch 1135 that communicates with the buckle 1133 , a buckle 1131 of a hard disk storage module, and a buckle 1133 and a notch 1135 of another hard disk storage module 10 .
  • Match the first stop wall 115 defines a notch 1135 that communicates with the buckle 1133 , a buckle 1131 of a hard disk storage module, and a buckle 1133 and a notch 1135 of another hard disk storage module 10 .
  • the buckle 1131 of one hard disk storage module 10 is extended by the buckle 1133 and the notch 1135 of the other hard disk storage module 10, and the hook 1131 has a hook The first stop wall 115 forming the notch 1135 is held.
  • the hook is hooked on the first stopping wall 115, the card The buckle 1131 is engaged with the buckle 1133 and the notch 1135 so that the width dimension of each hard disk storage structure 10 is small.
  • the bearing capacity of the buckle 1131, the buckle 1133 and the notch 1135 of the structure is stronger.
  • the first stop wall 115 includes a plurality of first stop plates 1151, 1153, 1155 spaced apart from each other, and each of the first stop plates 1151, 1153, 1155 is connected to the two.
  • the connecting wall 113, at least one first baffle 1151, 1153, 1155 is provided with a notch 1134 communicating with the buckle 1133. There is a gap between each of the two adjacent first stop plates 1151, 1153, 1155, so that the hard disk stored in the receiving cavity 111 is better in heat dissipation.
  • the two connecting walls 113 of the hard disk storage module 10 respectively have two buckles 1131 and two buckles 1133 .
  • the first stop wall 115 includes three first stop plates 1151 . 1153, 1155, the three first stop flaps 1151, 1153, 1155 have different width dimensions, wherein the two first stop flaps 1151, 1155 are provided with a notch 1134, and each notch 1134 is respectively connected with a buckle 1133, one After the two buckles 1131 of the hard disk storage module 10 pass through the two buckles 1133 and the notch of the other hard disk storage module, the hooks of the buckle 1131 are hooked on the first stop plates 1151 and 1155 forming the notches, and the two hard disks.
  • the connection effect of the storage module 10 is good and it is not easy to loose.
  • the number of the first baffles can also be more or less, and the number of the buckles can be set more or less correspondingly to meet the needs of more occasions.
  • At least one first baffle 1151 has a plurality of heat dissipation holes 115a, and the heat dissipation holes 115a communicate with the accommodating cavity 111.
  • the arrangement of the heat dissipation holes 115a can further dissipate heat from the hard disk in the accommodating cavity 111, so that the hard disk storage module 10 stores the hard disk better.
  • the two first baffles 1151, 1155 are provided with a plurality of heat dissipation holes 115a, and the heat dissipation holes 115a on each of the first baffles 1151 and 1155 are evenly distributed.
  • the second stop wall 117 includes a plurality of second stop plates 1171, 1173, 1175 spaced apart from each other, and each of the second stop plates 1171, 1173, 1175 is connected to the two connecting walls 113,
  • the plurality of first stop plates 1151, 1153, 1155 of one hard disk storage module 10 are interleaved with the plurality of second stop plates 1171, 1173, 1175 of the other hard disk storage module 10 and are located on the same plane.
  • the plurality of first stop plates 1151, 1153, 1155 and the plurality of second stop plates 1171, 1173, 1175 of the staggered holding make the connection of the two hard disk storage modules 10 stronger and more adaptable.
  • the first stop plates 1151, 1153, 1155 and the second stop plates 1171, 1173, 1175 which are flat on the uniform plane collectively stop the hard disks stored in the two hard disk storage modules 10.
  • the buckle 1131 Since the buckle 1131 is in the process of being caught by the buckle 1133 and the notch 1134, the buckle 1131 needs to be elastically deformed, so that the hook slides into the buckle 1133 and the notch 1134, and then recovers the deformation, so that in order to make the buckle 1131
  • the two sides of the buckle 1131 form a groove with the connecting wall 113, and the arrangement of the groove reduces the connection range of the buckle 1131 and the connecting wall 113, so that the connection range of the buckle 1131 and the connecting wall 113 is reduced.
  • the buckle 1131 is easy to recover during the elastic deformation process, and is less prone to fatigue, so that the buckle 1131 has a good use effect and a long service life.
  • the hard disk storage module 10 further includes a dustproof door 13 covering an open end of the receiving cavity 111 , and one side of the dustproof door 13 is rotatably connected to the bracket module 11 .
  • the dustproof door 13 is rotatably connected to the bracket module 11 through a rotating shaft, and the rotating shaft casing is provided with a torsion spring.
  • the dustproof door 13 is under the action of elastic force.
  • An open end of the accommodating cavity 111 is covered to prevent dust from entering the inside of the accommodating cavity 111.
  • the hard disk rotates and pushes the dustproof door 13 under the action of the thrust, and the hard disk enters the accommodating cavity 111, and the hard disk enters the accommodating cavity 111.
  • the dustproof door 13 is pressed by the side wall of the hard disk.
  • the dustproof door 13 re-covers the open end of the accommodating cavity 111 under the resilience of the hard disk to maintain the sealing property of the accommodating cavity 111.
  • the connecting wall 13 is further provided with a hook 1135.
  • the hook 1135 can connect the hard disk storage module 10 to a position where it needs to be placed, so that the connection performance is good, and displacement is not easy during use.
  • the hard disk storage module 10 can be superimposed and set according to requirements, and the structure can be connected by itself, and no other parts are needed for auxiliary connection, and the utility model is strong and can be mass-produced.
  • the present invention further provides a hard disk storage device 100.
  • the hard disk storage device 100 includes a housing 30 and at least one hard disk storage module 10.
  • the specific structure of the hard disk storage module 10 is as described above with reference to the foregoing hard disk storage device. All the technical solutions of all the above embodiments are adopted, and therefore all the beneficial effects brought by the technical solutions of the foregoing embodiments are at least one of the details.
  • the hard disk storage module 10 is received in the housing 30 .
  • the hard disk storage device 100 includes two hard disk storage modules 10, each hard disk storage module 10 includes a bracket module 11 and a dustproof door 13, and two bracket modules 11 are superposed and arranged.
  • the first stop plates 1151, 1153, 1155 of the bracket module 11 cooperate with the second stop plates 1171, 1173, 1175 of the other bracket module 11 and are staggered, and at the same time, the buckle 1131 of the bracket module 11 is clamped.
  • the mating connection of the two bracket modules is achieved, and the housing 30 is matched with the dimensions of the two bracket modules 11.
  • the housing 30 has a connection position (not shown) corresponding to the bracket module 11 .
  • the two connecting walls 113 of each bracket module 11 are further provided with a plurality of hooks 1135 , which can be connected with the connection position in the housing 30 .
  • the mating connection makes the bracket module 11 and the housing 30 simple and secure.
  • the hard disk storage device 100 further includes a door frame 15 connected to one end of the housing 30.
  • the dustproof door 13 of each hard disk storage module 10 is connected to the door frame 15 and covers an opening of the bracket module 11 to accommodate the cavity 111.
  • the hard disk storage device 100 further includes a PCB (Printed Circuit) a board 50, the PCB assembly 50 is connected and housed in the housing 30, and cooperates with an end of the bracket module 11 facing away from the dustproof door 13, and is stored in the hard disk in each hard disk storage module 10.
  • the PCB assembly 50 can be electrically connected to the PCB assembly 50.
  • the PCB assembly 50 has a foolproof structure facing the end of the bracket module 11. After the hard disk is stored in the receiving cavity 111, the anti-stay structure can form a latching feeling with the corresponding structure on the hard disk. The hard disk storage is successful.
  • the foolproof structure can also be disposed inside each receiving cavity to prompt the hard disk storage to be successful.
  • a PCB board (not shown) is disposed inside the PCB assembly, and the PCB assembly 50 also has a plurality of heat dissipation structures 51 for dissipating heat generated by the PCB board.
  • the hard disk storage device 100 further includes a bottom plate 70 connected to one end of the housing 30 facing away from the door frame 15.
  • the bottom plate 70 is provided with a plurality of venting holes 71, which can dissipate heat generated inside the housing 30.
  • the hard disk storage device 100 further includes a cover 90.
  • the cover 90 covers the door frame 15 to not only protect the hard disk storage device 100 storing the hard disk from dust, but also make the hard disk storage device 100 look more beautiful.
  • a hard disk storage module 10 or a plurality of hard disk storage modules 10 can be disposed in the casing of the hard disk storage device 100, and the shell, the door frame and the PCB component of different specifications can be adapted according to the number of the hard disk storage modules 10. And the cover body, no need for other small and cumbersome parts.
  • the hard disk storage device 100 can be applied to different occasions with only minor changes.
  • the hard disk storage device 100 can be a large charging device or can be applied to other devices.

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  • Packaging For Recording Disks (AREA)

Abstract

一种硬盘存储模块和硬盘存储设备,其中,硬盘存储模块(10)包括支架模块(11),所述支架模块(11)具有一容纳腔(111),所述容纳腔(111)具有相对设置的两连接壁(113);每一所述连接壁(113)均具有卡扣(1131)和扣位(1133),一所述硬盘存储模块(10)的卡扣(1131)与另一所述硬盘存储模块(10)的扣位(1133)相配合。支架模块(11)的容纳腔(111)用于存放硬盘,一硬盘存储模块(10)的卡扣(1131)卡持于另一硬盘存储模块(10)的扣位(1133)中,从而使得两个硬盘存储模块(10)可以相互叠加,同理可知,两个以上的硬盘存储模块(10)也可以通过支架模块(11)的卡扣(1131)和扣位(1133)的配合相互叠加,每一硬盘存储模块(10)的支架模块(11)均可存放一硬盘,该硬盘存储模块(10)结构简单,无需设置复杂、细小的零件进行拼接。

Description

硬盘存储模块和硬盘存储设备
技术领域
本发明涉及硬盘存储技术领域,特别涉及一种硬盘存储模块和应用该硬盘存储模块的硬盘存储设备。
背景技术
现有的硬盘存储设备,为了能同时存储多个硬盘,其内部通常具有多个存储空间。但现有的硬盘存储设备不仅内部结构较为繁琐,需要安装多个复杂的细小零件,而且根据不同规格的硬盘存储设备,需要配备不同尺寸的零部件,为生产和加工带来不便。
发明内容
本发明的主要目的是提供一种硬盘存储模块,旨在使应用该硬盘存储模块的硬盘存储设备不仅适用性更强,且生产加工更加简便。
为实现上述目的,本发明提出的硬盘存储模块,包括支架模块,所述支架模块具有一容纳腔,所述容纳腔具有相对设置的两连接壁;
每一所述连接壁均具有卡扣和扣位,一所述硬盘存储模块的卡扣与另一所述硬盘存储模块的扣位相配合。
可选地,每一所述连接壁的一侧部分向外延伸形成所述卡扣。
可选地,所述支架模块还包括相对设置的第一止挡壁和第二止挡壁,所述第一止挡壁、第二止挡壁和两所述连接壁围合形成所述容纳腔,所述连接壁部分向所述第二止挡壁方向延伸形成所述卡扣。
可选地,所述第一止挡壁开设有与所述扣位连通的缺口,一所述硬盘存储模块的卡扣与另一所述硬盘存储模块的扣位和缺口相配合。
可选地,所述第一止挡壁包括间隔设置的多个第一止挡板,每一所述第一止挡板均连接两连接壁,至少一所述第一挡板设有与所述扣位连通的缺口。
可选地,至少一所述第一止挡板具有多个散热孔,所述散热孔与容纳腔连通。
可选地,所述第二止挡壁包括间隔设置的多个第二止挡板,每一所述第二止挡板均连接两连接壁,一所述硬盘存储模块的多个所述第一止挡板与另一所述硬盘存储模块的多个所述第二止挡板交错设置,并位于同一平面。
可选地,所述硬盘存储模块还包括防尘门,所述防尘门覆盖于所述容纳腔的一开口端,该防尘门的一侧转动连接于所述支架模块。
可选地,所述连接壁还设有挂钩。
本发明还提出一种硬盘存储设备,包括壳体和至少一上述的硬盘存储模块,至少所述支架模块容置于所述壳体内。
本发明技术方案中,硬盘存储模块的容纳腔用于存放硬盘,一硬盘存储模块的卡扣卡持于另一硬盘存储模块的扣位中,从而使得两个硬盘存储模块可以相互叠加,同理可知,两个以上的硬盘存储模块也可以通过支架模块的卡扣和扣位的配合相互叠加,每一硬盘存储模块的支架模块均可存放一硬盘,该硬盘存储模块结构简单,无需设置复杂、细小的零件进行拼接。进一步地,应用该硬盘存储模块的硬盘存储设备可以根据存储硬盘数量的需求,选用一个硬盘存储模块或叠加设置多个硬盘存储模块对硬盘进行存储,该硬盘存储设备结构简单,生产、加工方便。
附图说明
为了更清楚地说明本发明实施例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简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,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示出的结构获得其他的附图。
图1为本发明硬盘存储模块一实施例的结构示意图;
图2为图1中两硬盘存储模块拼接的结构示意图;
图3为本发明另一实施例两硬盘存储模块的爆炸示意图;
图4为本发明硬盘存储设备一实施例的爆炸示意图。
附图标号说明:
标号 名称 标号 名称
100 硬盘存储设备 115a 散热孔
10 硬盘存储模块 117 第二止挡壁
11 支架模块 1171 第二止挡板
111 容纳腔 1173 第二止挡板
113 连接壁 1175 第二止挡板
1131 卡扣 13 防尘门
1133 扣位 15 门框
1134 缺口 30 壳体
1135 挂钩 50 PCB组件
115 第一止挡壁 51 散热结构
1151 第一止挡板 70 底板
1153 第一止挡板 71 透气孔
1155 第一止挡板 90 盖体
本发明目的的实现、功能特点及优点将结合实施例,参照附图做进一步说明。
具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明的一部分实施例,而不是全部的实施例。基于本发明中的实施例,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,都属于本发明保护的范围。
需要说明,本发明实施例中所有方向性指示(诸如上、下、左、右、前、后……)仅用于解释在某一特定姿态(如附图所示)下各部件之间的相对位置关系、运动情况等,如果该特定姿态发生改变时,则该方向性指示也相应地随之改变。
另外,在本发明中涉及“第一”、“第二”等的描述仅用于描述目的,而不能理解为指示或暗示其相对重要性或者隐含指明所指示的技术特征的数量。由此,限定有“第一”、“第二”的特征可以明示或者隐含地包括至少一个该特征。另外,各个实施例之间的技术方案可以相互结合,但是必须是以本领域普通技术人员能够实现为基础,当技术方案的结合出现相互矛盾或无法实现时应当认为这种技术方案的结合不存在,也不在本发明要求的保护范围之内。
参照图1至图4,本发明提出一种硬盘存储模块10,该硬盘存储模块10包括支架模块11,支架模块11具有一容纳腔111,容纳腔111具有相对设置的两连接壁113;
每一连接壁113均具有卡扣1131和扣位1133,一硬盘存储模块10的卡扣1131与另一硬盘存储模块10的扣位1133相配合。
本发明技术方案中,硬盘存储模块10的容纳腔111用于存放硬盘(未图示),参见图2,一硬盘存储模块10的卡扣1131卡持于另一硬盘存储模块10的扣位1133中,从而使得两个硬盘存储模块10可以相互叠加,同理可知,两个以上的硬盘存储模块10也可以通过支架模块11的卡扣1131和扣位1133的配合相互叠加,每一硬盘存储模块10的支架模块11均可存放一硬盘,该硬盘存储模块10结构简单,无需设置复杂、细小的零件进行拼接。进一步地,应用该硬盘存储模块10的硬盘存储设备100可以根据存储硬盘数量的需求,选用一个硬盘存储模块10或叠加设置多个硬盘存储模块10对硬盘进行存储,该硬盘存储设备100不仅生产、加工方便,且安装方便、结构简单。
本发明一实施例中,硬盘存储模块10的支架模块11可一体化成型,使得该硬盘存储模块10生产和加工更加方便。
参见图1,本发明一实施例中,每一连接壁113的一侧部分向外延伸形成卡扣1131。延伸形成的卡扣1131可以卡持与另一硬盘存储模块10的扣位1133中,从而将两个硬盘存储模块10进行连接,使两者成为一个整体使用。
本发明另一未图示的实施例中,每一连接壁背离容纳腔的表面凸设有卡扣,且该卡扣向该连接壁一侧的方向进行延伸,该实施例中,该连接壁具有的扣位也凸设于该表面,一硬盘存储模块的扣位具有与另一硬盘存储模块的扣位相配合的凹槽或通孔。
本发明一实施例中,支架模块11还包括相对设置的第一止挡壁115和第二止挡壁117,所述第一止挡壁115、第二止挡壁117和两连接壁113围合形成容纳腔111,连接壁113部分向第二止挡壁117方向延伸形成卡扣1131。
相对设置的第一止挡壁115和第二止挡壁117以及相对设置的两连接壁113分别对容置于容纳腔111内的硬盘的四个依次连接的外侧壁进行止挡。对于每两个相叠加的硬盘存储模块10,一硬盘存储模块10的第一止挡壁115与另一硬盘存储模块10的第二止挡壁117相配合,同时,一硬盘存储模块10的卡扣1131卡持于另一硬盘存储模块10的扣位1133,从而使每两个硬盘存储模块10实现简单、可靠的连接。
参见图1,本发明一实施例中,第一止挡壁115开设有与扣位1133连通的缺口1135,一硬盘存储模块的卡扣1131与另一硬盘存储模块10的扣位1133和缺口1135相配合。
每两个硬盘存储模块10在叠加使用过程中,一硬盘存储模块10的卡扣1131由另一硬盘存储模块10的扣位1133和缺口1135处伸入,该卡扣1131所具有的卡勾勾持于形成该缺口1135的第一止挡壁115。参见图2,由于卡扣1131为连接壁113向其一侧延伸形成,且卡扣1131卡持于扣位1133和缺口1135的过程中,卡勾勾持于第一止挡壁115,该卡扣1131与扣位1133和缺口1135的配合卡持,使得每一硬盘存储结构10的宽度尺寸较小。且该结构的卡扣1131、扣位1133和缺口1135处的承力能力更强。
参见图1,本发明一实施例中,第一止挡壁115包括且间隔设置的多个第一止挡板1151、1153、1155,每一第一止挡板1151、1153、1155均连接两连接壁113,至少一第一挡板1151、1153、1155设有与扣位1133连通的缺口1134。每两个邻近设置的第一止挡板1151、1153、1155之间具有间隔空隙,使容纳腔111内存储的硬盘散热效果更好。
参见图1,本发明一实施例中,硬盘存储模块10的两连接壁113均具有两个卡扣1131和两个扣位1133,第一止挡壁115包括三个第一止挡板1151、1153、1155,三个第一止挡板1151、1153、1155的宽度尺寸不同,其中两个第一止挡板1151、1155设有缺口1134,每一缺口1134分别与一扣位1133连通,一硬盘存储模块10的两卡扣1131分别穿过另一硬盘存储模块的两个扣位1133和缺口后,卡扣1131的卡勾勾持于形成缺口的第一止挡板1151、1155,两硬盘存储模块10的连接效果好,不易松脱。
可以理解的,第一挡板的数量还可以为更多或更少,扣位的数量也可以相应的设置更多或更少,以满足更多场合的需求。
进一步地,本发明一实施例中,至少一第一挡板1151具有多个散热孔115a,散热孔115a与容纳腔111连通。散热孔115a的设置能够更进一步得对容纳腔111内的硬盘进行散热,使得该硬盘存储模块10存储硬盘的效果更好。参见图1,一实施例中,两个第一挡板1151、1155设有多个散热孔115a,且每一第一挡板1151、1155上的散热孔115a均匀分布。
本发明一实施例中,第二止挡壁117包括且间隔设置的多个第二止挡板1171、1173、1175,每一第二止挡板1171、1173、1175均连接两连接壁113,一硬盘存储模块10的多个第一止挡板1151、1153、1155与另一硬盘存储模块10的多个第二止挡板1171、1173、1175交错设置,并位于同一平面。
参见图2,交错卡持的多个第一止挡板1151、1153、1155和多个第二止挡板1171、1173、1175使得两个硬盘存储模块10的连接更加牢固,适配性更加好。此时,持平于统一平面的第一止挡板1151、1153、1155和第二止挡板1171、1173、1175共同对存储于该两个硬盘存储模块10中的硬盘进行止挡。
由于卡扣1131在卡持于扣位1133和缺口1134的过程中,卡扣1131需要产生弹性形变,使卡勾滑入扣位1133和缺口1134,之后再回复形变,因此,为了使卡扣1131在发生弹性形变过程中不易损坏,且使用寿命长,该卡扣1131的两侧与连接壁113形成凹槽,该凹槽的设置,减小了卡扣1131与连接壁113的连接范围,使得卡扣1131在弹性形变过程中易于恢复,不易产生疲劳,使卡扣1131的使用效果好、寿命长。
参见图3,硬盘存储模块10还包括防尘门13,防尘门13覆盖于容纳腔111的一开口端,该防尘门13的一侧转动连接于支架模块11。
具体地,防尘门13通过转轴与支架模块11转动连接,该转轴外套设有扭转弹簧,当该硬盘存储模块10的容纳腔111内没有存储硬盘时,防尘门13在弹性力的作用下将容纳腔111的一开口端进行覆盖,防止灰尘进入容纳腔111内部,在装入硬盘过程中,硬盘在推力作用下旋转推起该防尘门13,硬盘随之进入容纳腔111内,硬盘存储好后,防尘门13由硬盘的侧壁压住,待取出硬盘后,防尘门13在回弹力的作用下重新覆盖容纳腔111的开口端,保持容纳腔111的密封性。
参见图1,连接壁13还设有挂钩1135,该挂钩1135可以将该硬盘存储模块10连接于需要安放的位置,使其连接性能好,使用过程中不易发生位移。
该硬盘存储模块10可以根据需要进行叠加设置,且自身结构即可进行连接,无需其他零件辅助连接,适用性强,可批量生产。
参见图4,本发明还提出一种硬盘存储设备100,该硬盘存储设备100包括壳体30和至少一硬盘存储模块10,该硬盘存储模块10的具体结构参照上述实施例,由于本硬盘存储设备100采用了上述所有实施例的全部技术方案,因此至少具有上述实施例的技术方案所带来的所有有益效果,在此不再一一赘述。其中,硬盘存储模块10容置于壳体30内。
参见图4,本发明一实施例中,硬盘存储设备100包括两个硬盘存储模块10,每一硬盘存储模块10包括一支架模块11和一防尘门13,两个支架模块11叠加设置,一支架模块11的第一止挡板1151、1153、1155与另一支架模块11的第二止挡板1171、1173、1175相配合,并交错设置,同时,一支架模块11的卡扣1131卡持于另一支架模块11的扣位1133和缺口1134中,实现两支架模块的11配合连接,壳体30与该两个支架模块11的尺寸相配合。壳体30内具有与支架模块11相配合的连接位(未图示),每一支架模块11的两连接壁113还设有多个挂钩1135,该挂钩1135可与壳体30内的连接位相配合连接,使得支架模块11与壳体30连接简便且牢固。
硬盘存储设备100还包括门框15,门框15连接于壳体30的一端,每一硬盘存储模块10的防尘门13均连接于门框15,且覆盖支架模块11内容纳腔111的一开口。
硬盘存储设备100还包括PCB(Printed Circuit Board,印制电路板)组件50,该PCB组件50连接,并容置于壳体30内,且与支架模块11背离防尘门13的一端配合,存储于每一硬盘存储模块10内的硬盘可与该PCB组件50电连接,该PCB组件50面对支架模块11的一端具有防呆结构,硬盘存入容纳腔111后,该防呆结构能够与硬盘上相应的结构形成卡持手感,以提示硬盘存储成功。 防呆结构也可设置于每一容纳腔的内部,以提示硬盘存储成功。该PCB组件内部设有PCB板(未图示),且PCB组件50也具有多个散热结构51,以散发PCB板产生的热量。
硬盘存储设备100还包括底板70,该底板70连接于壳体30背离门框15的一端,该底板70设有多个透气孔71,该透气孔71可散发壳体30内部产生的热量。
硬盘存储设备100还包括盖体90,盖体90盖合于门框15,不仅使存储有硬盘的硬盘存储设备100起到防尘的作用,且使得硬盘存储设备100外表更加美观。
可以理解地,该硬盘存储设备100的壳体内可以设置一个硬盘存储模块10、或者多个硬盘存储模块10,根据硬盘存储模块10的个数来适配生产不同规格的壳体、门框、PCB组件和盖体,无需其他细小而繁琐的零件。使得该硬盘存储设备100仅需较小的改变,即可适用于不同的场合。
该硬盘存储设备100可以为大型充电装置,也可应用于其他装置中。
以上所述仅为本发明的优选实施例,并非因此限制本发明的专利范围,凡是在本发明的发明构思下,利用本发明说明书及附图内容所作的等效结构变换,或直接/间接运用在其他相关的技术领域均包括在本发明的专利保护范围内。

Claims (18)

  1. 一种硬盘存储模块,其特征在于,包括支架模块,所述支架模块具有一容纳腔,所述容纳腔具有相对设置的两连接壁;
    每一所述连接壁均具有卡扣和扣位,一所述硬盘存储模块的卡扣与另一所述硬盘存储模块的扣位相配合。
  2. 如权利要求1所述的硬盘存储模块,其特征在于,每一所述连接壁的一侧部分向外延伸形成所述卡扣。
  3. 如权利要求2所述的硬盘存储模块,其特征在于,所述支架模块还包括相对设置的第一止挡壁和第二止挡壁,所述第一止挡壁、第二止挡壁和两所述连接壁围合形成所述容纳腔,所述连接壁部分向所述第二止挡壁方向延伸形成所述卡扣。
  4. 如权利要求3所述的硬盘存储模块,其特征在于,所述第一止挡壁开设有与所述扣位连通的缺口,一所述硬盘存储模块的卡扣与另一所述硬盘存储模块的扣位和缺口相配合。
  5. 如权利要求4所述的硬盘存储模块,其特征在于,所述第一止挡壁包括间隔设置的多个第一止挡板,每一所述第一止挡板均连接两连接壁,至少一所述第一挡板设有与所述扣位连通的缺口。
  6. 如权利要求5所述硬盘存储模块,其特征在于,至少一所述第一止挡板具有多个散热孔,所述散热孔与容纳腔连通。
  7. 如权利要求5所述的硬盘存储模块,其特征在于,所述第二止挡壁包括间隔设置的多个第二止挡板,每一所述第二止挡板均连接两连接壁,一所述硬盘存储模块的多个所述第一止挡板与另一所述硬盘存储模块的多个所述第二止挡板交错设置,并位于同一平面。
  8. 如权利要求1至7任一项所述的硬盘存储模块,其特征在于,所述硬盘存储模块还包括防尘门,所述防尘门覆盖于所述容纳腔的一开口端,该防尘门的一侧转动连接于所述支架模块。
  9. 如权利要求1至7任一项所述的硬盘存储模块,其特征在于,所述连接壁还设有挂钩。
  10. 一种硬盘存储设备,其特征在于,包括壳体和至少一硬盘存储模块,所述硬盘存储模块,包括支架模块,所述支架模块具有一容纳腔,所述容纳腔具有相对设置的两连接壁;
    每一所述连接壁均具有卡扣和扣位,一所述硬盘存储模块的卡扣与另一所述硬盘存储模块的扣位相配合;
    至少所述支架模块容置于所述壳体内。
  11. 如权利要求10所述的硬盘存储设备,其特征在于,每一所述连接壁的一侧部分向外延伸形成所述卡扣。
  12. 如权利要求11所述的硬盘存储设备,其特征在于,所述支架模块还包括相对设置的第一止挡壁和第二止挡壁,所述第一止挡壁、第二止挡壁和两所述连接壁围合形成所述容纳腔,所述连接壁部分向所述第二止挡壁方向延伸形成所述卡扣。
  13. 如权利要求12所述的硬盘存储设备,其特征在于,所述第一止挡壁开设有与所述扣位连通的缺口,一所述硬盘存储模块的卡扣与另一所述硬盘存储模块的扣位和缺口相配合。
  14. 如权利要求13所述的硬盘存储设备,其特征在于,所述第一止挡壁包括间隔设置的多个第一止挡板,每一所述第一止挡板均连接两连接壁,至少一所述第一挡板设有与所述扣位连通的缺口。
  15. 如权利要求14所述硬盘存储设备,其特征在于,至少一所述第一止挡板具有多个散热孔,所述散热孔与容纳腔连通。
  16. 如权利要求14所述的硬盘存储设备,其特征在于,所述第二止挡壁包括间隔设置的多个第二止挡板,每一所述第二止挡板均连接两连接壁,一所述硬盘存储模块的多个所述第一止挡板与另一所述硬盘存储模块的多个所述第二止挡板交错设置,并位于同一平面。
  17. 如权利要求10至16任一项所述的硬盘存储设备,其特征在于,所述硬盘存储模块还包括防尘门,所述防尘门覆盖于所述容纳腔的一开口端,该防尘门的一侧转动连接于所述支架模块。
  18. 如权利要求10至16任一项所述的硬盘存储设备,其特征在于,所述连接壁还设有挂钩。
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