Detection equipment and detection method based on linux solid state disk

By designing a solid-state drive detection device based on Linux, and using the connection mechanism and cover assembly to realize the separate disassembly and support detection of the solid-state drive, the problem of low detection efficiency of solid-state drives in the prior art is solved, and the detection efficiency and accuracy are improved.

CN119993252APending Publication Date: 2025-05-13SHENZHEN LARIX TECH CO LTD
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Patent Information

Application Number
CN202510056632.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-01-14
Publication Date
2025-05-13

AI Technical Summary

Technical Problem

When using existing solid-state drive detection equipment, multiple solid-state drives need to be placed in multiple hard disk slots on the hard disk base in turn, resulting in low efficiency of hard disk disassembly and assembly during actual detection. Due to the influence of different solid-state drives by particles, the physical condition is different, and the detection efficiency and duration are also different, which affects the disassembly and assembly of solid-state drives.

Method used

A linux solid-state drive detection device is designed to realize separate disassembly and support detection of solid-state drives by setting up connection mechanisms and cover components. The connection mechanism is set one-to-one with the support bar and the port, and the movement of the support bar drives the plug-in and detection of the solid-state hard disk; the cover assembly realizes clamping and temperature detection of the solid-state hard disk through the cooperation of the flip plate and the linear motor.

Benefits of technology

It improves the testing efficiency of solid-state drives, realizes separate clamping and temperature detection of solid-state drives, and improves the accuracy and efficiency of detection.

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Abstract

The invention discloses a linux-based solid state disk detection device and a detection method, the linux-based solid state disk detection device comprises a detection machine body and a connecting mechanism, the connecting mechanism is arranged outside the detection machine body, the connecting mechanism comprises ports, the ports are arranged on the outer surface of the detection machine body at equal intervals, support strips are arranged outside the ports, and the support strips are arranged on the outer surface of the detection machine body. The supporting strips and the ports are correspondingly arranged, grooves are formed in the outer surfaces of the supporting strips, the interiors of the grooves are communicated with the interiors of the ports, and the grooves are used for containing the solid state disk; the invention relates to the technical field of solid state disk detection, in particular to a cover plate assembly which is arranged outside a supporting strip, and solves the problems that when existing solid state disk detection equipment is used, the actual detection efficiency is low due to the fact that multiple hard disks are borne by the same hard disk base for detection, and different solid state disks are different in physique due to the fact that the different solid state disks are affected by particles. Therefore, the problem that the actual detection efficiency is reduced due to the fact that the dismounting and replacement of the solid state disk are affected by different detection durations is solved.
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Description

Technical Field

[0001] The present invention relates to the technical field of solid state hard disk detection, in particular to a solid state hard disk detection device and a detection method based on Linux. Background Art

[0002] At present, there are some solid-state hard drive detection devices. These devices usually have multiple disk slots and can detect multiple solid-state hard drives at the same time. However, although these devices can detect solid-state hard drives in batches, staff are still required to manually load multiple solid-state hard drives onto the device one by one, which is a cumbersome operation. In the invention patent with application number CN202310815283.4, a solid-state hard drive detection device and detection method are disclosed. The solid-state hard drive detection device includes a transfer unit, a clamping unit, and a detection unit, which are used to detect solid-state hard drives, realize automatic acquisition of solid-state hard drives on a conveyor belt for detection, and can easily detect solid-state hard drives of different specifications. The operation method is relatively simple and has strong practicality.

[0003] Although the device has the above advantages, it still has the following defects in actual use:

[0004] 1) When the device is in use, multiple solid-state hard disks need to be placed in multiple hard disk slots on the hard disk base in sequence, resulting in low efficiency in hard disk disassembly and assembly during actual testing;

[0005] 2) When multiple hard disks are supported by the same hard disk base of the device and abutted and limited by the same hard disk cover, the hard disks have different physical properties due to the influence of particles, and the detection efficiency and duration are also different during detection, which will affect the actual hard disk disassembly and detection efficiency.

[0006] Therefore, it is necessary to solve the problems that still exist in the above-mentioned device. Summary of the invention

[0007] In view of the deficiencies in the prior art, the present invention provides a solid-state hard disk detection device and a detection method based on Linux, which solves the problem that when the existing solid-state hard disk detection device is used, multiple hard disks are carried for detection by the same hard disk base, resulting in low actual detection efficiency, and because different solid-state hard disks have different physical properties due to the influence of particles, resulting in different detection times, affecting the disassembly, assembly and replacement of the solid-state hard disk, resulting in reduced actual detection efficiency.

[0008] To achieve the above objectives, the present invention is implemented through the following technical solutions: a Linux-based solid-state hard disk detection device, including a detection machine body,

[0009] A connection mechanism, the connection mechanism is arranged outside the detection machine body, the connection mechanism includes a port, the port is arranged equidistantly on the outer surface of the detection machine body, a support bar is arranged outside the port, the support bar and the port are arranged correspondingly, a groove is opened on the outer surface of the support bar, the interior of the groove is connected to the interior of the port, and is used for placing the solid state hard disk;

[0010] The cover plate assembly is arranged outside the support bar, and the placed solid state hard disk is clamped by the movement of the support bar.

[0011] Preferably, the outer surface of the support bar is fixedly connected to a telescopic rod, the outer surface of the telescopic rod is fixedly connected to a support plate, the outer surface of the support plate is fixedly connected to a column, the outer surface of the support bar is provided with a slide groove, the interior of the slide groove is slidably connected to a slide, the interior of the slide groove is rotatably connected to a screw rod, the outer surface of the screw rod is threadedly connected to the body of the slide, one end of the screw rod is fixedly connected to a drive motor via a coupling, and the outer surface of the drive motor is fixedly connected to the interior of the slide groove.

[0012] Preferably, the cover plate assembly includes a flap, which is arranged on the outside of the support bar, and the body of the flap is provided with a through hole, the outer surface of the flap is fixedly connected with a connecting plate, the body of the connecting plate is penetrated and fixedly connected with a rotating rod, the outer surface of the rotating rod is fixedly connected with a rotating gear, the outer side of the rotating rod is provided with a torsion spring, and the two ends of the torsion spring are respectively fixedly connected to the outer surface of the rotating gear and the outer surface of the support plate.

[0013] Preferably, a closing unit is provided at the edge of the through hole, and the closing unit includes a circular plate, the outer surface of the circular plate is movably connected to the outer surface of the flap, a rotating shaft is fixedly connected through the body of the circular plate, one end of the rotating shaft is embedded and rotatably connected to the outer surface of the flap, and a lever is fixedly connected to the outer surface of the circular plate.

[0014] Preferably, the outer surface of the lever is movably connected to a clamping frame, the outer surface of the clamping frame is fixedly connected to a linear motor, the outer surface of the linear motor is slidably connected to a slide rail, and the outer surface of the slide rail is fixedly connected to the outer surface of the flap.

[0015] Preferably, a joint drive unit is provided on the outside of the rotating gear, and the joint drive unit includes a spiral rod, one end of which is embedded in and rotatably connected to the outer surface of the support plate, a ratchet is passed through and fixedly connected to the outer surface of the spiral rod, a driving gear is passed through and fixedly connected to the outer surface of the ratchet, the outer surface of the driving gear is meshed with the outer surface of the rotating gear, and a slide cylinder is passed through and movably connected to the outer surface of the spiral rod.

[0016] Preferably, one side of the outer surface of the slide cylinder is connected to a magnetic ring through magnetic movability, the outer surface of the magnetic ring is fixedly connected to the outer surface of the driving gear, the outer surface of the slide cylinder is connected to an electromagnet through magnetic movability, the outer surface of the electromagnet is fixedly connected to the other end of the spiral rod, the outer surface of the electromagnet is connected to an arc plate, and the outer surface of the arc plate is fixedly connected to the outer surface of the support bar.

[0017] Preferably, a buffer module is provided on the outside of the slide cylinder, and the buffer module includes a connecting bar, the outer surface of the connecting bar is fixedly connected to the outer surface of the slide cylinder, the outer surface of the connecting bar is movably connected to a rack, the outer surface of the rack is fixedly connected to the outer surface of the support bar, and a stop block is provided on the outside of the connecting bar, and the outer surface of the stop block is movably connected to the teeth of the rack.

[0018] Preferably, the main body of the connecting strip is provided with a through cavity, the outer surface of the stop block is movably connected to the interior of the cavity, the outer surface of the stop block is fixedly connected to a spring rod, the output end of the spring rod is slidably connected to the interior of the cavity, the outer surface of the spring rod is fixedly connected to a fixed frame, and the outer surface of the fixed frame is fixedly connected to the outer surface of the connecting strip.

[0019] The present invention also discloses a detection method based on a Linux solid state hard disk detection device, which specifically comprises the following steps:

[0020] Step 1: Place the SSD to be tested inside the groove, and the slide bracket clamps it by sliding inside the slide groove. Then the telescopic rod drives the SSD through the support bar, so that one end of the SSD enters the port for testing and connection.

[0021] Step 2: The movement of the support bar drives the arc plate to contact the electromagnet. The magnetic force of the electromagnet is greater than the magnetic force of the magnetic ring, so that the slide moves close to the electromagnet, so that the driving gear drives the rotating gear to rotate, so that the flap rotates and covers the outer surface of the solid state drive. Then, the circular plate closes the through hole through the movement of the linear motor.

[0022] Step 3: The connecting bar moves synchronously with the slide, and the movement of the slide is damped by the continuous lifting and lowering of the abutment block and the abutment with the teeth of the rack, so that the flap slowly and evenly covers the surface of the solid state drive.

[0023] Beneficial Effects

[0024] The present invention provides a Linux-based solid-state hard disk detection device and detection method. Compared with the prior art, it has the following beneficial effects:

[0025] (1) By setting up a connection mechanism and utilizing a one-to-one setting of the support bar and the port, it is possible to facilitate the separate disassembly and support testing of the solid state drive, thereby improving the testing efficiency of the solid state drive.

[0026] (2) By setting up a cover plate assembly, the connecting plate and the flap are driven to rotate laterally by a rotating rod, so that the flap covers the surface of the solid state hard disk, thereby facilitating the individual clamping of the solid state hard disk and the individual temperature detection of the solid state hard disk.

[0027] (3) By setting up a sealing unit and using a linear motor to drive the clamp to move, the lever drives the circular plate to rotate around the rotating shaft, thereby sealing the outer side of the through hole to improve the accuracy of temperature detection.

[0028] (4) By setting up a joint drive unit, the support bar is used to drive the arc plate to move, the electromagnet is energized to generate magnetism, and the slide cylinder is moved by magnetic attraction, so that the spiral rod drives the driving gear to rotate, and the rotating rod drives the flap to rotate, so that the flap can be automatically covered after the solid-state hard disk is plugged in.

[0029] (5) By setting up a buffer module, the connecting rod is used to drive the stop block to move synchronously with the slide cylinder, and the stop block is used to contact the teeth of the rack to form damping when the slide cylinder moves, so that the flap can cover evenly and slowly to avoid damage to the solid state drive. BRIEF DESCRIPTION OF THE DRAWINGS

[0030] Figure 1 It is a three-dimensional diagram of the external structure of the present invention;

[0031] Figure 2 The figure is a three-dimensional diagram of the external structure of the support bar of the present invention;

[0032] Figure 3 It is a three-dimensional diagram of the external structure of the flap of the present invention;

[0033] Figure 4 It is a three-dimensional diagram of the external structure of the circular plate of the present invention;

[0034] Figure 5 It is a three-dimensional diagram of the external structure of the slide tube of the present invention;

[0035] Figure 6 It is a three-dimensional diagram of the internal structure of the connecting strip of the present invention.

[0036] In the figure: 1, the detection machine body; 2, the port; 3, the support bar; 4, the cover plate assembly; 41, the flap; 42, the through hole; 43, the closing unit; 431, the round plate; 432, the rotating shaft; 433, the lever; 434, the clamping frame; 435, the linear motor; 436, the slide rail; 44, the connecting plate; 45, the rotating rod; 46, the rotating gear; 47, the joint drive unit; 471, the screw rod; 472, the ratchet; 473, the drive Gear; 474, slide; 475, buffer module; 4751, connecting rod; 4752, rack; 4753, block; 4754, chamber; 4755, spring rod; 4756, fixed frame; 476, magnetic ring; 477, electromagnet; 478, arc plate; 48, torsion spring; 5, groove; 6, telescopic rod; 7, support plate; 8, column; 9, slide groove; 10, slide; 11, screw rod; 12, drive motor. DETAILED DESCRIPTION

[0037] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0038] See also Figure 1-6 The present invention provides a technical solution: a Linux-based solid-state hard disk detection device:

[0039] Embodiment 1: Refer to the attached manual Figure 1 , Attachment Figure 2 ;

[0040] The present invention comprises a detection machine body 1, which is made of an existing solid-state hard disk detection machine and is used for detecting solid-state hard disks. A connecting mechanism is arranged on the outside of the detection machine body 1, and the connecting mechanism comprises a port 2, which is adapted to the plug-in of one end of the solid-state hard disk. A plurality of ports 2 are arranged at equal intervals on the outer surface of the detection machine body 1, and a support bar 3 is arranged on the outside of the port 2, and the support bar 3 and the port 2 are arranged one by one. A groove 5 is opened on the outer surface of the support bar 3, and the depth of the groove 5 is the same as the thickness of the solid-state hard disk, but the length is less than the length of the solid-state hard disk, so as to facilitate the plug-in of the solid-state hard disk. The interior of the groove 5 is connected to the interior of the port 2, and a telescopic rod 6 is fixedly connected to the outer surface of the support bar 3. The telescopic rod 6 is made of an existing electric push rod and is electrically connected to an external control circuit. The outer surface of 6 is fixedly connected with a support plate 7, and the outer surface of the support plate 7 is fixedly connected with a column 8. The column 8 plays a supporting role, and the outside of the column 8 is provided with an existing clamping mechanism and a conveyor for loading and unloading solid-state hard disks. A slide groove 9 is opened on the outer surface of the support bar 3, and a slide 10 is slidably connected inside the slide groove 9. The slide 10 is U-shaped and can be clamped by lifting or sliding horizontally inside the slide groove 9. The inside of the slide groove 9 is rotatably connected with a screw rod 11, and the outer surface of the screw rod 11 is threadedly connected to the body of the slide 10. One end of the screw rod 11 is fixedly connected to a drive motor 12 through a coupling. The drive motor 12 is made of a servo motor and is electrically connected to an external control circuit. The outer surface of the drive motor 12 is fixedly connected to the inside of the slide groove 9.

[0041] In this embodiment, the solid-state hard disk to be tested is placed inside the groove 5 on the support bar 3 through the clamping mechanism, and then the driving motor 12 drives the screw rod 11 to rotate, so that the slide 10 moves inside the slide groove 9 along the screw rod 11, and clamps it by fitting one side of the solid-state hard disk. Then the output end of the telescopic rod 6 is extended, so that the support bar 3 drives the solid-state hard disk to move, and one end of the telescopic rod 6 is inserted into the port 2, thereby being electrically connected to the detection machine body 1, and then it can be tested.

[0042] Embodiment 2: Based on Embodiment 1, refer to the attached Figure 1 , Attachment Figure 3 ;

[0043] A cover plate assembly 4 is arranged on the outside of the support bar 3, and the cover plate assembly 4 includes a flap 41, which is arranged on the outside of the support bar 3. A through hole 42 is provided on the body of the flap 41, and a temperature sensor is arranged inside the through hole 42, which can be used for temperature detection during solid state hard disk detection. At the same time, the through hole 42 can also be used for heat dissipation. A connecting plate 44 is fixedly connected to the outer surface of the flap 41, and a rotating rod 45 is fixedly connected to the body of the connecting plate 44. A rotating gear 46 is fixedly connected to the outer surface of the rotating rod 45. A torsion spring 48 is sleeved on the outside of the rotating rod 45. The torsion spring 48 facilitates the resetting of the flap 41 by rebounding. The two ends of the torsion spring 48 are respectively fixedly connected to the outer surface of the rotating gear 46 and the outer surface of the support plate 7.

[0044] In this embodiment, when the solid-state hard disk is plugged into port 2, the rotating rod 45 drives the flap 41 to rotate through the connecting plate 44, so that the flap 41 covers the surface of the solid-state hard disk, clamping it, and while the rotating rod 45 rotates, the torsion spring 48 can be compressed by rotating the gear 46 to facilitate the resetting of the flap 41, and the temperature can be detected through the through hole 42 on the body. At the same time, the through hole 42 is transparently arranged to perform heat dissipation.

[0045] Embodiment 3: Based on Embodiment 2, refer to the attached Figure 3 , Attachment Figure 4 ;

[0046] The edge of the through hole 42 is provided with a closing unit 43, which includes a circular plate 431. The outer diameter of the circular plate 431 is larger than the inner diameter of the through hole 42, and the circular plate 431 is made of a material that is resistant to pressure, wear, high temperature corrosion and has good sealing properties. The outer surface of the circular plate 431 is movably connected to the outer surface of the flap 41. The body of the circular plate 431 is fixedly connected with a rotating shaft 432. The connection between the rotating shaft 432 and the support plate 7 and the circular plate 431 is provided with an axial limiting measure. One end of the rotating shaft 432 is connected to the outer surface of the flap 41. The surface is embedded in the rotation connection, the outer surface of the circular plate 431 is fixedly connected with the lever 433, the outer surface of the lever 433 is movably connected with the clamping frame 434, the cross-section of the clamping frame 434 is U-shaped, and its clamping range is larger than the outer diameter of the lever 433, the outer surface of the clamping frame 434 is fixedly connected with the linear motor 435, the linear motor 435 is electrically connected to the external control circuit, the outer surface of the linear motor 435 is slidably connected with the slide rail 436, and the outer surface of the slide rail 436 is fixedly connected to the outer surface of the flap 41.

[0047] In this embodiment, when the flap 41 covers the surface of the solid-state hard disk and a temperature test is required, the linear motor 435 drives the clamp 434 to slide along the slide rail 436, and the clamp 434 abuts against the lever 433 to cause the circular plate 431 to rotate around the rotating shaft 432. When the circular plate 431 completely covers one side of the through hole 42, the internal thermal insulation is improved to improve the accuracy of temperature detection. At the same time, when heat dissipation is required, the circular plate 431 can be moved to break away from covering one side of the through hole 42.

[0048] Embodiment 4: Based on Embodiment 3, refer to the attached Figure 1 , Attachment Figure 5 ;

[0049] The outside of the rotating gear 46 is provided with a joint drive unit 47, which includes a spiral rod 471. The spiral rod 471 has a DNA spiral shape. One end of the spiral rod 471 is embedded and rotatably connected with the outer surface of the support plate 7. The outer surface of the spiral rod 471 is penetrated and fixedly connected with a ratchet 472. The ratchet 472 can only drive the driving gear 473 to rotate in one direction through the action of the internal pawl. The outer surface of the ratchet 472 is penetrated and fixedly connected with a driving gear 473. The outer surface of the driving gear 473 is meshed with the outer surface of the rotating gear 46. The outer surface of the spiral rod 471 is penetrated and movably connected with a slide cylinder 474. The slide cylinder 474 is made of magnetic material. One of the outer surfaces of the slide cylinder 474 The side is connected with a magnetic ring 476 through magnetic movability, and the magnetic ring 476 maintains the initial stability of the slide 474 through magnetism. The outer surface of the magnetic ring 476 is fixedly connected to the outer surface of the driving gear 473. The outer surface of the slide 474 is connected with an electromagnet 477 through magnetic movability. The surface of the electromagnet 477 is provided with an annular conductive element (not shown in the figure). The outer surface of the electromagnet 477 is fixedly connected to the other end of the spiral rod 471. The outer surface of the electromagnet 477 is movably connected with an arc plate 478. The arc edge of the arc plate 478 is provided with an arc-shaped conductive element (not shown in the figure). The circuit is connected for the electromagnet 477 by contacting the annular conductive element. The outer surface of the arc plate 478 is fixedly connected to the outer surface of the support bar 3.

[0050] In this embodiment, when the support bar 3 moves, the arc plate 478 follows the movement, and when one side of the solid state hard disk is plugged into the port 2, the arc-shaped conductive element on the arc plate 478 contacts the annular conductive element on the electromagnet 477, so that the circuit of the electromagnet 477 is connected to generate magnetic force. When its magnetic force is greater than the magnetic force of the magnetic ring 476 and the elastic force of the torsion spring 48, the slide 474 is attracted to move toward it. When the slide 474 moves, the spiral abutment causes the spiral rod 471 to rotate, and the pawl of the ratchet 472 causes the drive gear 473 to follow the rotation, and the engagement of the drive gear 473 with the rotating gear 46 causes the flap 41 to rotate. When the electromagnet 477 is powered off, the direction of the slide 474 movement is reset, and the drive gear 473 will not rotate in the opposite direction.

[0051] Embodiment 5: Based on Embodiment 4, refer to the attached Figure 1 , Attachment Figure 6 ;

[0052] The outside of the slide 474 is provided with a buffer module 475, which includes a connecting bar 4751, the cross section of which is T-shaped, the outer surface of the connecting bar 4751 is fixedly connected to the outer surface of the slide 474, the outer surface of the connecting bar 4751 is movably connected to a rack 4752, the outer surface of the rack 4752 is fixedly connected to the outer surface of the support bar 3, and the outside of the connecting bar 4751 is provided with a stop block 4753, the cross section of the stop block 4753 is an isosceles triangle, and a damping effect is formed by contacting with the teeth of the rack 4752, and the outer surface of the stop block 4753 is movably connected to the teeth of the rack 4752. Then, the main body of the connecting bar 4751 is provided with a through cavity 4754, which can facilitate the movement of the block 4753. The outer surface of the block 4753 is movably connected to the inside of the cavity 4754. The outer surface of the block 4753 is fixedly connected to a spring rod 4755, which can facilitate the resetting of the block 4753 and act as a damping agent through elastic force. The output end of the spring rod 4755 is slidably connected to the inside of the cavity 4754. The outer surface of the spring rod 4755 is fixedly connected to a fixed frame 4756. The outer surface of the fixed frame 4756 is fixedly connected to the outer surface of the connecting bar 4751.

[0053] In this embodiment, the connecting bar 4751 moves synchronously with the slide 474, thereby driving the stop block 4753 to move synchronously through the spring rod 4755, and damping is formed by the abutment between the stop block 4753 and the teeth of the rack 4752, so that the flap 41 rotates slowly and uniformly. At the same time, the stop block 4753 enters the cavity 4754 after being abutted by the teeth, and compresses the output end of the spring rod 4755. When the stop block 4753 is between two adjacent teeth again, the rebound of the output end of the spring rod 4755 makes the stop block 4753 contact the teeth again.

[0054] The present invention also discloses a detection method based on a Linux solid state hard disk detection device, which specifically comprises the following steps:

[0055] Step 1: Place the SSD to be tested inside the groove 5, and the slide 10 clamps it by sliding inside the slide slot 9, and then the telescopic rod 6 drives the SSD to move through the support bar 3, so that one end of the SSD enters the port 2 for testing and connection;

[0056] Step 2: The support bar 3 moves to drive the arc plate 478 to contact the electromagnet 477. The magnetic force of the electromagnet 477 is greater than the magnetic force of the magnetic ring 476, so that the slide 474 moves close to the electromagnet 477, so that the driving gear 473 drives the rotating gear 46 to rotate, so that the flap 41 rotates to cover the outer surface of the solid state hard disk, and then the circular plate 431 closes the through hole 42 through the movement of the linear motor 435;

[0057] Step 3: The connecting bar 4751 moves synchronously with the slide 474. The movement of the slide 474 is damped by the continuous lifting and lowering of the abutment block 4753 and the abutment with the teeth of the rack 4752, so that the flap 41 slowly and evenly covers the surface of the solid state drive.

[0058] Meanwhile, the contents not described in detail in this specification belong to the prior art known to those skilled in the art.

[0059] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A Linux-based solid-state hard disk detection device, comprising a detection machine body (1), characterized in that: A connecting mechanism, the connecting mechanism being arranged outside the detection machine body (1), the connecting mechanism comprising a port (2), the ports (2) being arranged at equal intervals on the outer surface of the detection machine body (1), a support bar (3) being arranged outside the port (2), the support bar (3) and the port (2) being arranged correspondingly, a groove (5) being provided on the outer surface of the support bar (3), the interior of the groove (5) being connected to the interior of the port (2), and being used for placing the solid state hard disk; A cover plate assembly (4), wherein the cover plate assembly (4) is arranged outside the support bar (3) and clamps the placed solid state hard disk through the movement of the support bar (3).

2. A Linux-based solid state drive detection device according to claim 1, characterized in that: The outer surface of the support bar (3) is fixedly connected to a telescopic rod (6), the outer surface of the telescopic rod (6) is fixedly connected to a support plate (7), the outer surface of the support plate (7) is fixedly connected to a column (8), the outer surface of the support bar (3) is provided with a slide groove (9), the interior of the slide groove (9) is slidably connected to a slide frame (10), the interior of the slide groove (9) is rotatably connected to a screw rod (11), the outer surface of the screw rod (11) is threadedly connected to the body of the slide frame (10), one end of the screw rod (11) is fixedly connected to a drive motor (12) via a coupling, and the outer surface of the drive motor (12) is fixedly connected to the interior of the slide groove (9).

3. The Linux-based solid state drive detection device according to claim 1, characterized in that: The cover plate assembly (4) comprises a flap (41), the flap (41) being arranged outside the support bar (3), the body of the flap (41) being provided with a through hole (42), the outer surface of the flap (41) being fixedly connected to a connecting plate (44), the body of the connecting plate (44) being penetrated and fixedly connected to a rotating rod (45), the outer surface of the rotating rod (45) being fixedly connected to a rotating gear (46), the outer surface of the rotating rod (45) being sleeved with a torsion spring (48), the two ends of the torsion spring (48) being respectively fixedly connected to the outer surface of the rotating gear (46) and the outer surface of the support plate (7).

4. The Linux-based solid state drive detection device according to claim 3, characterized in that: A closing unit (43) is provided at the edge of the through hole (42), and the closing unit (43) comprises a circular plate (431), the outer surface of the circular plate (431) is movably connected to the outer surface of the flap (41), a rotating shaft (432) is passed through the body of the circular plate (431) and is fixedly connected thereto, one end of the rotating shaft (432) is embedded and rotatably connected to the outer surface of the flap (41), and a lever (433) is fixedly connected to the outer surface of the circular plate (431).

5. The Linux-based solid state drive detection device according to claim 4, characterized in that: The outer surface of the lever (433) is movably connected to a clamping frame (434), the outer surface of the clamping frame (434) is fixedly connected to a linear motor (435), the outer surface of the linear motor (435) is slidably connected to a slide rail (436), and the outer surface of the slide rail (436) is fixedly connected to the outer surface of the flap (41).

6. The Linux-based solid state drive detection device according to claim 3, characterized in that: A joint drive unit (47) is arranged outside the rotating gear (46), and the joint drive unit (47) comprises a spiral rod (471), one end of the spiral rod (471) is embedded and rotatably connected to the outer surface of the support plate (7), a ratchet (472) is passed through the outer surface of the spiral rod (471) and is fixedly connected thereto, a driving gear (473) is passed through the outer surface of the ratchet (472) and is fixedly connected thereto, the outer surface of the driving gear (473) is meshed with the outer surface of the rotating gear (46), and a slide cylinder (474) is passed through the outer surface of the spiral rod (471) and is movably connected thereto.

7. The Linux-based solid state drive detection device according to claim 6, characterized in that: One side of the outer surface of the slide cylinder (474) is connected to a magnetic ring (476) through magnetic movability, and the outer surface of the magnetic ring (476) is fixedly connected to the outer surface of the driving gear (473). The outer surface of the slide cylinder (474) is connected to an electromagnet (477) through magnetic movability, and the outer surface of the electromagnet (477) is fixedly connected to the other end of the spiral rod (471). The outer surface of the electromagnet (477) is connected to an arc plate (478), and the outer surface of the arc plate (478) is fixedly connected to the outer surface of the support bar (3).

8. The Linux-based solid state drive detection device according to claim 6, characterized in that: A buffer module (475) is arranged outside the slide (474), and the buffer module (475) includes a connecting bar (4751), the outer surface of the connecting bar (4751) is fixedly connected to the outer surface of the slide (474), the outer surface of the connecting bar (4751) is movably connected to a rack (4752), the outer surface of the rack (4752) is fixedly connected to the outer surface of the support bar (3), and a stop block (4753) is arranged outside the connecting bar (4751), and the outer surface of the stop block (4753) is movably connected to the teeth of the rack (4752).

9. The Linux-based solid state drive detection device according to claim 8, characterized in that: The main body of the connecting bar (4751) is provided with a through cavity (4754); the outer surface of the stop block (4753) is movably connected to the interior of the cavity (4754); the outer surface of the stop block (4753) is fixedly connected to a spring rod (4755); the output end of the spring rod (4755) is slidably connected to the interior of the cavity (4754); the outer surface of the spring rod (4755) is fixedly connected to a fixed frame (4756); and the outer surface of the fixed frame (4756) is fixedly connected to the outer surface of the connecting bar (4751).

10. A detection method based on a Linux solid state hard disk detection device, using the Linux solid state hard disk detection device according to any one of claims 1 to 9, characterized in that: The specific steps include: Step 1: Place the solid state hard disk to be tested inside the groove (5), and the slide (10) clamps it by sliding inside the slide groove (9), and then the telescopic rod (6) drives the solid state hard disk to move through the support bar (3), so that one end of the solid state hard disk enters the port (2) for detection and connection; Step 2: The support bar (3) moves to drive the arc plate (478) to contact the electromagnet (477). The magnetic force of the electromagnet (477) is greater than the magnetic force of the magnetic ring (476), so that the slide cylinder (474) moves close to the electromagnet (477), so that the driving gear (473) drives the rotating gear (46) to rotate, thereby causing the flap (41) to rotate and cover the outer surface of the solid state hard disk. Then, through the movement of the linear motor (435), the circular plate (431) closes the through hole (42); Step 3: The connecting bar (4751) moves synchronously with the slide (474), and the movement of the slide (474) is damped by the continuous lifting and lowering of the abutment block (4753) and the abutment with the teeth of the rack (4752), so that the flap (41) slowly and evenly covers the surface of the solid state hard disk.

Citation Information

Patent Citations

  • Solid state disk detection equipment and detection method

    CN116524993A