Packaging box integrated rack for portable X-ray machine

By designing a integrated rack for portable X-ray machines, including lifting plate, electric cylinder, U-frame and drive components, the problems of easy damage to the radiation source and detector and low detection efficiency are solved, and a more efficient and stable detection process is achieved.

CN223002061UActive Publication Date: 2025-06-20DAWEI MEDICAL (JIANGSU) CO LTD
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Patent Information

Application Number
CN202422109488.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-29
Publication Date
2025-06-20
Estimated Expiration
2034-08-29

AI Technical Summary

Technical Problem

The existing integrated rack for portable X-ray machines is prone to collision and damage of the radiation source and detector when used, and it is not convenient to support and place the test piece to be tested, which affects the detection efficiency.

Method used

A portable X-ray machine packaging box integrated frame is designed, including a lifting plate, an electric cylinder, a U-shaped frame and a driving assembly. The driving assembly drives the lifting plate to move, so that the ray source and the detector extend out of the outlet, and the height of the placement disc and the position of the part to be detected are adjusted by adjusting the studs and moving blocks to ensure that the distance between the detector and the part to be detected is appropriate.

Benefits of technology

It effectively prevents damage to the radiation source and detector, improves detection efficiency, and facilitates support and placement adjustment of the test parts, enhancing the stability and accuracy of detection.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223002061U_ABST
Patent Text Reader

Abstract

The utility model provides a portable X-ray machine packaging box integrated rack which comprises a packaging box rack body, a radiation source and a detector are arranged in the packaging box rack body, and an outlet is formed in the side wall of the packaging box rack body; a lifting plate is arranged in the packaging box rack body, an electric cylinder is arranged on the side wall of the lifting plate, a detector is arranged on a moving block of the electric cylinder, a ray source is arranged on the side wall of the lifting plate, a pair of moving grooves are symmetrically formed in the two corresponding side walls of the lifting plate, and a U-shaped frame is arranged between the pair of moving grooves. Moving blocks inserted into the moving grooves are arranged on the two opposite side walls of the U-shaped frame, a through adjusting stud is arranged at the top of the U-shaped frame, and a containing disc used for containing a to-be-detected piece is arranged at the top of the adjusting stud; and a pair of driving components for driving the lifting plate to move so as to enable the radiation source and the detector to extend out of the outlet are arranged in the packaging box rack main body. The device is reasonable in structure, good in anti-damage effect and high in detection efficiency.
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Description

Technical Field

[0001] The utility model relates to an integrated rack for a packing box of an X-ray machine, and particularly to an integrated rack for a packing box of a portable X-ray machine. Background Art

[0002] In recent years, with the increasing demand for detection equipment in the fields of production, scientific research, public safety, etc., the non-destructive testing industry has developed rapidly. At present, most of the detection industries use detection equipment with high-dose X-rays and large and medium-sized volumes for non-destructive testing to meet the detection requirements of workpieces within a large size range; and, in order to ensure the safety of the detection process, large and medium-sized detection equipment is usually arranged in a large-volume lead room or a lead shell; therefore, when a certain sample needs to be subjected to non-destructive testing, an integrated rack for a packing box of a portable X-ray machine is required to send it to a designated detection agency for testing.

[0003] In the prior art, when the integrated rack for a packing box of a portable X-ray machine is in use, the radiation source and the detector of the X-ray machine need to be taken out as a whole and placed in a suitable position, and then the workpiece to be detected is detected. It is easy to collide and cause damage. And when detecting the workpiece to be detected, it is not convenient to support, place and adjust the workpiece to be detected, which affects the detection efficiency. Now there is an urgent need for an integrated rack for a packing box of a portable X-ray machine to solve the above problems. Summary of the Utility Model

[0004] Aiming at the deficiencies of the prior art, the purpose of the utility model is to provide an integrated rack for a packing box of a portable X-ray machine to solve the problems put forward in the above background art. The structure of the utility model is reasonable, the anti-damage effect is good, and the detection efficiency is high.

[0005] In order to achieve the above purpose, the utility model is realized by the following technical solutions: An integrated rack for a packing box of a portable X-ray machine, comprising:

[0006] A packing box rack body, a radiation source and a detector are arranged inside the packing box rack body, a handle is arranged on the top of the packing box rack body, an outlet is opened on the side wall of the packing box rack body, a sealing plate for shielding the outlet is arranged on the side wall of the packing box rack body, and a plurality of moving wheels are arranged at the bottom of the packing box rack body;

[0007] Inside the main body of the packing box rack, there is a lifting plate. An electric cylinder is arranged on the side wall of the lifting plate. The detector is placed on the moving block of the electric cylinder, and the radiation source is arranged on the side wall of the lifting plate. A pair of moving grooves are symmetrically opened on the two opposite side walls of the lifting plate. A U-shaped frame is arranged between the pair of moving grooves. Moving blocks inserted into the inside of the moving grooves are arranged on the two opposite side walls of the U-shaped frame. A through adjusting stud is arranged on the top of the U-shaped frame, and a placing plate for placing the workpiece to be detected is arranged on the top of the adjusting stud. A pair of driving components for driving the lifting plate to move so that the radiation source and the detector extend out of the outlet are arranged inside the main body of the packing box rack.

[0008] Further, the driving component includes a sliding seat arranged inside the main body of the packing box rack. A sliding groove is opened on the side of the sliding seat close to the lifting plate. A sliding block connected to the lifting plate is arranged inside the sliding groove. A lead screw passing through the sliding block is arranged inside the sliding groove. A threaded hole matching the lead screw is opened on the sliding block. A driving motor inserted into the inside of the sliding groove and connected to the lead screw is arranged inside the main body of the packing box rack. The side wall of the lead screw far from the driving motor is a smooth surface and is rotatably connected to the sliding seat.

[0009] Further, a storage battery for supplying power to the driving motor, the electric cylinder, the radiation source and the detector is arranged inside the main body of the packing box rack.

[0010] Further, a through hole is opened on the side wall of the U-shaped frame, and internal threads are arranged on the inner wall of the through hole. The U-shaped frame and the adjusting stud are connected by threads.

[0011] Further, a plurality of force-applying columns are arranged on the side wall of the placing plate.

[0012] Further, a rotating hinge is arranged between the sealing plate and the main body of the packing box rack. The cross-sectional area of the outlet is larger than the cross-sectional area of the lifting plate, and the longitudinal length of the outlet is larger than the longitudinal length of the U-shaped frame. A force-applying handle is arranged on the side wall of the sealing plate.

[0013] Further, a stop screw in contact with the top of the lifting plate to stop the U-shaped frame is arranged on the top of the U-shaped frame.

[0014] According to an integrated frame of a packing box for a portable X-ray machine of the present utility model, by rotating the main body of the packing box frame to make the sealing plate vertically upward, and then making the driving component drive the lifting plate to move towards the side close to the outlet, so as to extend the radiation source and the detector out of the outlet. At this time, the placing plate is vertically upward. Applying force to rotate the placing plate can drive the threaded column to move in the vertical direction along the U-shaped frame, so as to adjust the height of the placing plate, and thus adjust the workpiece to be detected placed on the placing plate to a suitable detection height. After the adjustment is completed, applying force to the U-shaped frame can drive the moving block thereon to move along the moving groove, so as to adjust the distance between the workpiece to be detected placed on the placing plate and the radiation source and the detector. Making the electric cylinder work to drive the detector thereon to move to adjust the distance between the detector and the workpiece to be detected until the image is clearly imaged and of appropriate size, and completing the detection of the workpiece to be detected, which is convenient for supporting, placing and adjusting the workpiece to be detected, improving the detection efficiency, and not needing to take out the radiation source and the detector of the X-ray machine as a whole and place them in a suitable position and then detect the workpiece to be detected, avoiding the phenomenon of bump damage, and thus enhancing the anti-damage effect. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] By reading the following detailed description of non-limiting embodiments with reference to the accompanying drawings, other features, objects and advantages of the present utility model will become more apparent:

[0016] Figure 1 FIG. 9 is a perspective view of an integrated frame of a packing box for a portable X-ray machine according to an embodiment of the present utility model;

[0017] Figure 2 FIG. 13 is a front cross-sectional view of an integrated frame of a packing box for a portable X-ray machine according to an embodiment of the present utility model;

[0018] Figure 3 FIG. 17 is a perspective view of the connection between the lifting plate and the electric cylinder in an integrated frame of a packing box for a portable X-ray machine according to an embodiment of the present utility model;

[0019] In the figure: 1, main body of the packing box frame; 101, outlet; 2, handle; 3, sealing plate; 31, rotating hinge; 32, force-applying handle; 4, moving wheel; 5, driving component; 51, driving motor; 52, sliding seat; 53, sliding block; 531, threaded hole; 54, sliding groove; 55, lead screw; 6, lifting plate; 7, radiation source; 8, detector; 9, electric cylinder; 10, moving groove; 11, U-shaped frame; 111, moving block; 12, storage battery; 13, adjusting stud; 14, placing plate; 141, force-applying column; 15, stop screw. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0020] In order to make the technical means, creative features, achieved purposes and effects realized by the present utility model easy to understand, the present utility model will be further described below in conjunction with specific embodiments.

[0021] As Figure 1 shown, the present utility model provides a technical solution: an integrated frame for a portable X-ray machine packaging box, comprising:

[0022] The packaging box frame body 1, inside the packaging box frame body 1, there are arranged a radiation source 7 and a detector 8, on the top of the packaging box frame body 1, there is arranged a handle 2, on the side wall of the packaging box frame body 1, there is an outlet 101 opened, on the side wall of the packaging box frame body 1, there is arranged a sealing plate 3 for shielding the outlet 101, and on the bottom of the packaging box frame body 1, there are arranged a plurality of moving wheels 4;

[0023] Inside the packaging box frame body 1, there is arranged a lifting plate 6, on the side wall of the lifting plate 6, there is arranged an electric cylinder 9, the detector 8 is placed on the moving block 111 of the electric cylinder 9, the radiation source 7 is placed on the side wall of the lifting plate 6, on the opposite two side walls of the lifting plate 6, there are symmetrically opened a pair of moving grooves 10, between the pair of moving grooves 10, there is arranged a U-shaped frame 11, on the opposite two side walls of the U-shaped frame 11, there are arranged moving blocks 111 inserted into the inside of the moving grooves 10, on the top of the U-shaped frame 11, there is arranged a through adjusting screw column 13, on the top of the adjusting screw column 13, there is arranged a placing plate 14 for placing the piece to be detected, inside the packaging box frame body 1, there are arranged a pair of driving components 5 for driving the lifting plate 6 to move so that the radiation source 7 and the detector 8 extend out of the outlet 101. This design rotates the packaging box frame body 1 to make the sealing plate 3 vertically upward, and then makes the driving component 5 drive the lifting plate 6 to move towards the side close to the outlet 101, so as to extend the radiation source 7 and the detector 8 out of the outlet 101. At this time, the placing plate 14 is vertically upward. Applying force to rotate the placing plate 14 drives the threaded column to move in the vertical direction along the U-shaped frame 11, so as to adjust the height of the placing plate 14, so that the piece to be detected placed on the placing plate 14 is adjusted to a suitable detection height. When the adjustment is completed, applying force to the U-shaped frame 11 drives the moving block 111 thereon to move along the moving groove 10, so as to adjust the distance between the piece to be detected placed on the placing plate 14 and the radiation source 7 and the detector 8. Making the electric cylinder 9 work drives the detector 8 thereon to move to adjust the distance between the detector 8 and the piece to be detected until the image is clearly imaged and of appropriate size, completing the detection of the piece to be detected, thus facilitating the support, placement and adjustment of the piece to be measured, improving the detection efficiency, and not requiring the overall removal of the radiation source 7 and the detector 8 of the X-ray machine and placing them in a suitable position and then detecting the piece to be measured, avoiding the phenomenon of bumping and damage, and thus enhancing the anti-damage effect.

[0024] Referring to Figure 2 and Figure 3, the driving assembly 5 includes a sliding seat 52 arranged inside the main body 1 of the packaging box rack. A chute 54 is provided on one side of the sliding seat 52 close to the lifting plate 6. Inside the chute 54, a sliding block 53 connected to the lifting plate 6 is arranged. Inside the chute 54, a lead screw 55 passing through the sliding block 53 is arranged. A threaded hole 531 matching the lead screw 55 is provided on the sliding block 53. Inside the main body 1 of the packaging box rack, a driving motor 51 inserted into the chute 54 and connected to the lead screw 55 is arranged. One side wall of the lead screw 55 far from the driving motor 51 is a smooth surface and is rotatably connected to the sliding seat 52. This design drives the lead screw 55 to rotate by using the driving motor 51 to work. The rotation of the lead screw 55 drives the sliding block 53 to move along the chute 54. The movement of the sliding block 53 drives the lifting plate 6 to move in the direction close to or away from the outlet 101. The movement of the lifting plate 6 drives the radiation source 7 and the detector 8 to extend out or be received into the outlet 101. It is not necessary to take out the radiation source 7 and the detector 8 of the X-ray machine as a whole and place them in a suitable position and then detect the workpiece to be measured, avoiding the phenomenon of bump damage, thereby enhancing the anti-damage effect. Among them, a pair of driving assemblies 5 are arranged and symmetrically arranged inside the main body 1 of the packaging box rack.

[0025] Refer to Figure 2 , a storage battery 12 for supplying power to the driving motor 51, the electric cylinder 9, the radiation source 7 and the detector 8 is arranged inside the main body 1 of the packaging box rack, improving the rationality of this design. Through holes are provided on the side wall of the U-shaped frame 11, and internal threads are provided on the inner walls of the through holes. The U-shaped frame 11 and the adjusting stud 13 are connected by threads. This design is convenient for the adjusting stud 13 to move along the U-shaped frame 11 by using threaded connection.

[0026] Refer to Figure 3 , a plurality of force-applying columns 141 are arranged on the side wall of the placement plate 14. This design is convenient for applying force to the placement plate 14 to make it rotate by using the force-applying columns 141.

[0027] Refer to Figure 1 and Figure 2 , a rotating hinge 31 is arranged between the sealing plate 3 and the main body 1 of the packaging box rack. The cross-sectional area of the outlet 101 is larger than the cross-sectional area of the lifting plate 6. The longitudinal length of the outlet 101 is greater than the longitudinal length of the U-shaped frame 11. A force-applying handle 32 is arranged on the side wall of the sealing plate 3. This design is convenient for applying force to the sealing plate 3 and is convenient for the radiation source 7 and the detector 8 to extend out or be received into the outlet 101. It is not necessary to take out the radiation source 7 and the detector 8 of the X-ray machine as a whole and place them in a suitable position and then detect the workpiece to be measured, avoiding the phenomenon of bump damage, thereby enhancing the anti-damage effect.

[0028] Refer to Figure 3, a stop screw 15 is provided at the top of the U-shaped frame 11, which contacts the top of the lifting plate 6 to stop the U-shaped frame 11. This design uses the threaded connection between the stop screw 15 and the U-shaped frame 11, so that the bottom of the stop screw 15 contacts or moves away from the top of the lifting plate 6, thereby stopping or loosening the U-shaped frame 11 and improving the stability of the detection location.

[0029] Referring to Figures 1-3 , as an embodiment of the present utility model: when it is necessary to detect the object to be detected, the staff first rotates the packaging box frame body 1 to make the sealing plate 3 vertically upward, and then makes the driving motor 51 in the driving assembly 5 work to drive the lead screw 55 to rotate. The rotation of the lead screw 55 drives the sliding block 53 to move along the chute 54. The movement of the sliding block 53 drives the lifting plate 6 to move in the direction of approaching or departing from the outlet 101. The movement of the lifting plate 6 drives the radiation source 7 and the detector 8 to extend to the outlet 101. At this time, the placement plate 14 is vertically upward. Then, a force is applied to the force application column 141 to drive the placement plate 14 to rotate, thereby driving the threaded column to move vertically along the U-shaped frame 11, so as to adjust the height of the placement plate 14, so that the object to be detected placed on the placement plate 14 is adjusted to a suitable detection height. After the adjustment is completed, a force is applied to the U-shaped frame 11 to drive the moving block 111 thereon to move along the moving groove 10, so as to adjust the distance between the object to be detected placed on the placement plate 14 and the radiation source 7 and the detector 8. Make the electric cylinder 9 work to drive the detector 8 thereon to move to adjust the distance between the detector 8 and the object to be detected until the image is clearly imaged and of appropriate size. After the adjustment is completed, make the bottom of the stop screw 15 contact the top of the lifting plate 6 to stop the U-shaped frame 11, improving the stability of the detection of the object to be detected. Then continue to complete the detection of the object to be detected, which is convenient for supporting, placing and adjusting the object to be measured, improving the detection efficiency, and does not require the overall removal of the radiation source 7 and the detector 8 of the X-ray machine and placing them in a suitable position and then detecting the object to be measured, avoiding the phenomenon of bumping and damage, thereby enhancing the anti-damage effect.

[0030] After the detection is completed, make the driving motor 51 work in the reverse direction so that the radiation source 7 and the detector 8 are received into the outlet 101 and completely placed inside the packaging box frame body 1. Finally, use the sealing plate 3 to block the outlet 101 to complete the storage operation of the radiation source 7 and the detector 8. The sealing plate 3 and the packaging box frame body 1 can be connected by magnetic adsorption or by wing bolts, improving the stability of the occlusion of the outlet 101. Magnetic adsorption connection and wing bolt connection are both existing technologies, improving the practicality of the present utility model.

[0031] The foregoing has shown and described the basic principles, main features and advantages of the present utility model. For those skilled in the art, it is obvious that the present utility model is not limited to the details of the above-described exemplary embodiments, and without departing from the spirit or basic features of the present utility model, the present utility model can be implemented in other specific forms. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting. The scope of the present utility model is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be embraced within the present utility model. Any reference signs in the claims should not be construed as limiting the claims concerned.

[0032] In addition, it should be understood that although this specification is described in terms of embodiments, not every embodiment only contains an independent technical solution. This narrative manner of the specification is only for clarity. Those skilled in the art should regard the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A portable X-ray machine packaging box integrated frame, comprising: A packaging box frame body (1), wherein a radiation source (7) and a detector (8) are arranged inside the packaging box frame body (1), a handle (2) is arranged on the top of the packaging box frame body (1), an outlet (101) is opened on the side wall of the packaging box frame body (1), a sealing plate (3) for shielding the outlet (101) is arranged on the side wall of the packaging box frame body (1), and a plurality of movable wheels (4) are arranged on the bottom of the packaging box frame body (1); It is characterized in that A lifting plate (6) is arranged inside the packaging box frame body (1), an electric cylinder (9) is arranged on the side wall of the lifting plate (6), the detector (8) is placed on the moving block (111) of the electric cylinder (9), the radiation source (7) is placed on the side wall of the lifting plate (6), a pair of moving grooves (10) are symmetrically opened on the corresponding side walls of the lifting plate (6), a U-shaped frame (11) is arranged between the pair of moving grooves (10), moving blocks (111) inserted into the moving grooves (10) are arranged on the opposite side walls of the U-shaped frame (11), a through adjusting stud (13) is arranged on the top of the U-shaped frame (11), and a placement plate (14) for placing the to-be-detected parts is arranged on the top of the adjusting stud (13), and a pair of driving components (5) for driving the lifting plate (6) to move so that the radiation source (7) and the detector (8) extend out of the outlet (101) are arranged inside the packaging box frame body (1).

2. The integrated frame for a portable X-ray machine packaging box according to claim 1, characterized in that: The driving assembly (5) comprises a slide seat (52) arranged inside the packaging box frame body (1); a slide groove (54) is provided on a side of the slide seat (52) close to the lifting plate (6); a sliding block (53) connected to the lifting plate (6) is provided inside the slide groove (54); a screw rod (55) penetrating the sliding block (53) is provided inside the slide groove (54); a threaded hole (531) matching the screw rod (55) is provided on the sliding block (53); a driving motor (51) inserted into the slide groove (54) and connected to the screw rod (55) is provided inside the packaging box frame body (1); a side wall of the screw rod (55) away from the driving motor (51) is a smooth surface and is rotatably connected to the slide seat (52).

3. The integrated frame of the portable X-ray machine packaging box according to claim 2, characterized in that: A storage battery (12) for supplying power to a driving motor (51), an electric cylinder (9), a radiation source (7) and a detector (8) is arranged inside the packaging box frame body (1).

4. The integrated frame for a portable X-ray machine packaging box according to claim 1, characterized in that: A through hole is provided on the side wall of the U-shaped frame (11), an inner wall of the through hole is provided with an internal thread, and the U-shaped frame (11) and the adjusting stud (13) are connected via threads.

5. The integrated frame for a portable X-ray machine packaging box according to claim 4, characterized in that: The side wall of the placement plate (14) is provided with a plurality of force-applying columns (141).

6. The integrated frame for a portable X-ray machine packaging box according to claim 1, characterized in that: A rotating hinge (31) is provided between the sealing plate (3) and the packaging box frame body (1); the cross-sectional area of ​​the outlet (101) is greater than the cross-sectional area of ​​the lifting plate (6); the longitudinal length of the outlet (101) is greater than the longitudinal length of the U-shaped frame (11); and a force application handle (32) is provided on the side wall of the sealing plate (3).

7. The integrated frame for a portable X-ray machine packaging box according to claim 1, characterized in that: The top of the U-shaped frame (11) is provided with a stop screw (15) which contacts the top of the lifting plate (6) to stop the U-shaped frame (11).