X-ray emitting device housing module and x-ray detector
The modular design of the housing module solves the problems of portability and inconvenient battery replacement of X-ray detectors, enabling convenient battery replacement and outdoor inspection without the need for an independent power source.
Patent Information
- Application Number
- CN202311333016.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-10-13
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2043-10-13
AI Technical Summary
Existing X-ray detectors are not portable, require an independent power source, are inconvenient for outdoor testing, and have inconvenient battery replacement.
The modular housing module includes a carrying case, an electronic control case, and a battery swapping case. The carrying case has an X-ray window and a carrying handle, while the electronic control case has a battery storage area and a sliding guide sleeve. The locking mechanism enables convenient replacement of the battery module.
This technology enables the X-ray detector to be portable and allows for easy replacement of the battery module, eliminating the need for an independent power supply and improving the flexibility of outdoor inspections.
Smart Images

Figure CN117269206B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of X-ray source, in particular to a shell module of X-ray emitting device and X-ray detector. BACKGROUND
[0002] The X-ray detector is an instrument specially used for detecting ionizing radiation. The X-ray detector is generally used in industry to detect the internal breakage of some objects invisible to the eyes or the short circuit of circuits, etc. For example, the X-ray detector can be used to detect whether the internal circuit of a multi-layer substrate has a short circuit. The X-ray can penetrate the surface of the substrate to see the internal circuit of the substrate. On the opposite side of the X-ray generator, there is a data receiver which automatically converts the received radiation into an electrical signal and transmits it to an expansion board, and converts it into a specific signal in a computer. The image is displayed on a display through special software, so that the internal structure of the substrate can be observed by the naked eye without using a multimeter to test slowly.
[0003] At present, the X-ray detector is widely used in various special occasions, such as industrial non-destructive testing, security detection, foreign matter detection, medical imaging, material analysis, electronic component detection, product quality control and packaging detection, etc. It can accurately detect potential hazards.
[0004] However, the existing X-ray detector is limited by its own structure and can only be placed in a fixed position, which is not convenient for workers to carry and transport. Even a separate power supply device is required, which makes outdoor or outdoor detection very inconvenient. SUMMARY
[0005] In view of the above-mentioned shortcomings of the prior art, the technical problem to be solved by the present application is to provide a shell module of X-ray emitting device and X-ray detector, which can facilitate outdoor carrying of workers to change the detection site, can save the existing independent power supply, and can improve the replacement smoothness and convenience of the battery module.
[0006] In order to solve the above technical problems, the present application provides a shell module of X-ray emitting device, comprising:
[0007] The hand-held shell comprises a shielding box shell, an X-ray window formed on the side wall of the shielding box shell, and a hand-held handle arranged on the side wall of the shielding box shell and avoiding the X-ray window. A shielding inner cavity is formed in the shielding box shell for placing an X-ray tube;
[0008] The electric control shell comprises a protection box shell arranged on the side wall of the shielding box shell away from the X-ray window. The inner cavity of the protection box shell comprises an electric control accommodating area and a battery accommodating area in communication. A sliding guide sleeve is arranged in the battery accommodating area. An open port is arranged on one side of the protection box shell and is in communication with the battery accommodating area and aligned with the sliding guide sleeve.
[0009] The battery replacement shell comprises a pull-out shell and a locking mechanism formed on the side wall of the pull-out shell, the pull-out shell is slidably inserted into the sliding guide sleeve through the open port, the inner cavity of the pull-out shell is used for placing a battery module, and the locking mechanism and the sliding guide sleeve form a snap-fit relationship.
[0010] Preferably, the sliding guide sleeve is provided with a clamping hole; the locking mechanism comprises a sliding groove, a clamping piece and a reset assembly, the sliding groove is formed on the side wall of the pull-out shell, the clamping piece is slidably arranged in the sliding groove, the side of the clamping piece facing the clamping hole is provided with a clamping protrusion matched with the clamping hole, and the side of the clamping piece away from the clamping hole and the end of the sliding groove are provided with the reset assembly.
[0011] Preferably, the reset assembly comprises a positioning column, a compression spring and a positioning screw, the positioning column is formed on the clamping piece, the positioning screw is fixedly arranged at the end of the sliding groove, and the two ends of the compression spring are sleeved with the positioning column and the positioning screw respectively.
[0012] Preferably, the clamping piece is provided with a clamping groove allowing the fingers of the staff to extend into the clamping groove.
[0013] Preferably, the number of clamping holes is two; the number of locking mechanisms is two, the two locking mechanisms correspond to the two clamping holes one by one, and the clamping pieces of the two locking mechanisms are close to each other when the snap-fit relationship is released.
[0014] Preferably, the pull-out shell is provided with an inner charging interface for electrically connecting the battery module; the protective box shell is provided with an outer charging interface, and the outer charging interface is electrically connected to the inner charging interface when the pull-out shell is inserted into the battery accommodating area.
[0015] Preferably, the protective box shell is in the shape of a rectangular cover body, and the protective box shell is arranged on the side wall of the shielding box shell; the side wall of the shielding box shell is provided with a plurality of limiting protrusions, and each limiting protrusion is detachably connected to the edge of the protective box shell.
[0016] Preferably, the side wall of the shielding box shell is provided with a wire harness passing hole for connecting the shielding inner cavity and the electric control accommodating area.
[0017] Preferably, the shielding box shell comprises a rectangular cylindrical shell, two ports of the rectangular cylindrical shell are respectively provided with cover plates, one of the cover plates is provided with the X-ray window, the other cover plate is connected to the protective box shell, the outer peripheral wall of the rectangular cylindrical shell is provided with a first supporting protrusion, the edge of the cover plate is provided with a second supporting protrusion corresponding to the first supporting protrusion, and the second supporting protrusion and the first supporting protrusion are detachably connected.
[0018] The application also provides an X-ray detector comprising:
[0019] The housing module of the X-ray emitting device;
[0020] X-ray tube, the X-ray tube is installed in the shielded cavity;
[0021] The battery module is installed in the pull-out housing;
[0022] The circuit system is installed in the electronically controlled enclosure area and is electrically connected to the battery module and the X-ray tube, respectively.
[0023] As described above, the housing module of the X-ray emitting device and the X-ray detector of the present invention have the following beneficial effects: The housing module of the X-ray emitting device adopts a modular design, that is, the housing module includes a carrying case, an electrical control case, and a battery replacement case. A shielded cavity is formed inside the shielded housing, which is used to house an X-ray tube, wherein the X-ray tube is an existing component and will not be described in detail here. The X-ray window is formed on the side wall of the shielded housing, which facilitates the emission of X-rays generated by the X-ray tube. The carrying handle is located on the side wall of the shielded housing and avoids the X-ray window, which is convenient for personnel to carry outdoors to change the detection location. In order to eliminate the need for the existing independent power supply, the protective housing is located on the side wall of the shielded housing away from the X-ray window. The inner cavity of the protective housing includes a communicating electrical control accommodating area and a battery accommodating area, and the battery accommodating area is used to house the battery replacement case. In order to improve the smoothness and convenience of battery module replacement, a sliding guide sleeve is provided in the battery accommodating area. The pull-out housing is slidably inserted into the sliding guide sleeve through the opening 5, and the locking mechanism and the sliding guide sleeve form a snap-fit relationship. Therefore, the housing module of the X-ray emitting device of the present invention can be easily carried by staff outdoors to change detection locations, can eliminate the need for existing independent power supplies, and can improve the smoothness and convenience of battery module replacement. Attached Figure Description
[0024] Figure 1 Shown is a perspective view of the housing module of the X-ray emitting device of the present invention;
[0025] Figure 2 The image shown is a side view of the housing module of the X-ray emitting device of the present invention.
[0026] Figure 3 Displayed as along Figure 2 A sectional view of line A-A in the middle;
[0027] Figure 4 Displayed as Figure 3 Enlarged view of section B;
[0028] Figure 5 Displayed as a 3D image of the carrying case;
[0029] Figure 6Fig. 1 is a top view showing a portable case;
[0030] Figure 7 Fig. 3 is a sectional view taken along the line C-C of Fig. 1; Figure 6
[0031] Figure 8 Fig. 4 is a perspective view showing a battery replacement case;
[0032] Figure 9 Fig. 5 is a perspective view showing a lock mechanism.
[0033] Element No. Explanation
[0034] 1 portable case
[0035] 11 shielded case
[0036] 111 limiting protrusion
[0037] 112 wire restraint passage hole
[0038] 113 rectangular cylindrical case
[0039] 114 cover plate
[0040] 115 first leg protrusion
[0041] 116 second leg protrusion
[0042] 12 X-ray window
[0043] 13 portable handle
[0044] 14 shielded inner cavity
[0045] 2 electric control case
[0046] 21 shielded case
[0047] 211 external charging interface
[0048] 22 electric control accommodating area
[0049] 23 battery accommodating area
[0050] 24 sliding guide sleeve
[0051] 241 clamping hole
[0052] 25 open port
[0053] 3 battery replacement case
[0054] 31 pull-out case
[0055] 32 lock mechanism
[0056] 321 sliding groove
[0057] 322 buckle
[0058] 322a buckle convex
[0059] 322b buckle slot
[0060] 323 reset assembly
[0061] 323a positioning column
[0062] 323b compression spring
[0063] 323c positioning screw DETAILED DESCRIPTION
[0064] The following illustrates the embodiments of the present application by specific examples, and those skilled in the art can easily understand other advantages and effects of the present application from the content disclosed in the specification.
[0065] It should be understood that the structures, proportions, sizes, etc. shown in the drawings attached to the specification are only used to cooperate with the content disclosed in the specification for those skilled in the art to understand and read, and are not used to limit the defined conditions that the present application can be implemented, so they do not have technical substantive significance. Any modification of the structure, change of the proportional relationship or adjustment of the size, without affecting the effects that the present application can produce and the purposes that the present application can achieve, should still fall within the scope that the technical content disclosed by the present application can cover. At the same time, the terms such as "upper", "lower", "left", "right", "middle" and "one" used in the specification are only for the convenience of clear description, and are not used to limit the scope that the present application can be implemented, the change or adjustment of the relative relationship, without substantially changing the technical content, is also considered as the scope that the present application can be implemented.
[0066] As shown in Figure 1 , Figure 2 and Figure 3 , the present application provides a shell module of an X-ray emitting device, comprising:
[0067] A portable shell 1, the portable shell 1 comprises a shielding box shell 11, an X-ray window 12 formed on the side wall of the shielding box shell 11, and a portable handle 13 arranged on the side wall of the shielding box shell 11 and avoiding the X-ray window 12, a shielding inner cavity 14 (see Figure 7 for details) is formed in the shielding box shell 11, and the shielding inner cavity 14 is used to place an X-ray tube;
[0068] The electric control shell 2 comprises a protective box shell 21 arranged on the side wall of the shielding box shell 11 away from the X-ray window 12, and the inner cavity of the protective box shell 21 comprises an electric control accommodating area 22 and a battery accommodating area 23 in communication, the battery accommodating area 23 is provided with a sliding guide sleeve 24, and one side of the protective box shell 21 is provided with an open hole 25 in communication with the battery accommodating area 23 and aligned with the sliding guide sleeve 24;
[0069] The battery replacement shell 3 comprises a pull-out shell 31 and a locking mechanism 32 formed on the side wall of the pull-out shell 31, the pull-out shell 31 is slidably inserted into the sliding guide sleeve 24 through the open hole 25, and the inner cavity of the pull-out shell 31 is used for placing a battery module, and the locking mechanism 32 and the sliding guide sleeve 24 form a snap-fit relationship.
[0070] In the present application, the shell module of the X-ray emitting device adopts a modular design, that is, the shell module comprises the portable shell 1, the electric control shell 2 and the battery replacement shell 3. The shielding box shell 11 forms a shielding inner cavity 14, and the shielding inner cavity 14 is used for placing an X-ray tube, wherein the X-ray tube is an existing component, which is not described here. The X-ray window 12 is formed on the side wall of the shielding box shell 11, which is convenient for radiating X-rays generated by the X-ray tube. The portable handle 13 is arranged on the side wall of the shielding box shell 11 and avoids the X-ray window 12, which is convenient for the staff to carry outdoors to change the detection site. In order to save the existing independent power supply, the protective box shell 21 is arranged on the side wall of the shielding box shell 11 away from the X-ray window 12, and the inner cavity of the protective box shell 21 comprises an electric control accommodating area 22 and a battery accommodating area 23 in communication, and the battery accommodating area 23 is used for placing the battery replacement shell 3. In order to improve the replacement smoothness and convenience of the battery module, the sliding guide sleeve 24 is arranged in the battery accommodating area 23, the pull-out shell 31 is slidably inserted into the sliding guide sleeve 24 through the open hole 25, and the locking mechanism 32 and the sliding guide sleeve 24 form a snap-fit relationship.
[0071] Therefore, the shell module of the X-ray emitting device can facilitate the staff to carry outdoors to change the detection site, can save the existing independent power supply, and can improve the replacement smoothness and convenience of the battery module.
[0072] As Figure 4 and Figure 9As shown, in order to facilitate the staff to operate, and simplify the overall structure of the lock catch mechanism 32, the above-mentioned sliding guide sleeve 24 is provided with a clamping hole 241; the above-mentioned lock catch mechanism 32 includes a sliding groove 321, a clamping part 322 and a reset assembly 323, the sliding groove 321 is formed in the side wall of the pull-out shell 31, the clamping part 322 is slidingly arranged in the sliding groove 321, the side of the clamping part 322 facing the clamping hole 241 is provided with a clamping protrusion 322a which is clamped and matched with the clamping hole 241, and the side of the clamping part 322 away from the clamping hole 241 and the end of the sliding groove 321 are provided with the reset assembly 323. When the staff presses or pushes the clamping part 322, the clamping part 322 moves away from the clamping hole 241, the clamping protrusion 322a is separated from the clamping hole 241, and the staff can take out the battery replacement shell 3 from the battery accommodating area 23. When the staff releases the clamping part 322, the clamping part 322 returns to the original position under the action of the reset assembly 323.
[0073] In order to facilitate the assembly of the above-mentioned reset assembly 323, the above-mentioned reset assembly 323 includes a positioning column 323a, a compression spring 323b and a positioning screw 323c, the positioning column 323a is formed on the clamping part 322, the positioning screw 323c is fixedly arranged at the end of the sliding groove 321, and the two ends of the compression spring 323b are sleeved with the positioning column 323a and the positioning screw 323c respectively. In this way, the compression spring 323b will not move relative to the clamping part 322.
[0074] In order to facilitate the staff to exert force on the clamping part 322 with fingers, the above-mentioned clamping part 322 is provided with a clamping groove 322b which allows the staff's fingers to enter.
[0075] As shown in Figure 2 and Figure 8 , in order to facilitate the staff to take out the battery replacement shell 3 with one hand, the number of the above-mentioned clamping holes 241 is two; the number of the above-mentioned lock catch mechanisms 32 is two, the two lock catch mechanisms 32 correspond to the two clamping holes 241 one by one, and the clamping parts 322 of the two lock catch mechanisms 32 are close to each other when the clamping and matching relationship is released.
[0076] The staff can also use the existing charging line to charge the battery module through the external charging interface 211, the above-mentioned pull-out shell 31 is provided with an internal charging interface (not shown), and the internal charging interface is used for electrically connecting the above-mentioned battery module; the above-mentioned protective box shell 21 is provided with an external charging interface 211 (see Figure 1 for details), and the external charging interface 211 is electrically connected with the internal charging interface when the pull-out shell 31 is inserted into the battery accommodating area 23.
[0077] As shown in Figure 5 , Figure 6 and Figure 7As shown, in order to facilitate disassembly and assembly of the protective box shell 21, the protective box shell 21 is in the form of a rectangular cover, and the protective box shell 21 covers the side wall of the shielding box shell 11; a plurality of limiting protrusions 111 are arranged on the side wall of the shielding box shell 11, and each limiting protrusion 111 is detachably connected to the edge of the protective box shell 21. In some specific schemes, the limiting protrusion 111 abuts against the inner wall of the protective box shell 21.
[0078] As shown, Figure 5 In order to facilitate the passage of the wire harness, a wire harness passage hole 112 is arranged on the side wall of the shielding box shell 11, and the wire harness passage hole 112 is used to communicate the shielding inner cavity 14 and the electric control containing area 22.
[0079] As shown, Figure 5 In order to enable the shielding box shell 11 to be stably placed on the table top, the shielding box shell 11 comprises a rectangular cylinder shell 113, two ports of the rectangular cylinder shell 113 are respectively provided with cover plates 114, one of the cover plates 114 is provided with the X-ray window 12, and the other cover plate 114 is connected to the protective box shell 21; a first supporting leg protrusion 115 is arranged on the outer peripheral wall of the rectangular cylinder shell 113, a second supporting leg protrusion 116 corresponding to the first supporting leg protrusion 115 is arranged on the edge of the cover plate 114, and the second supporting leg protrusion 116 and the first supporting leg protrusion 115 are detachably connected. In some specific schemes, a plurality of first supporting leg protrusions 115 are arranged on the upper and lower sides of the rectangular cylinder shell 113, and a second supporting leg protrusion 116 is arranged on the upper and lower edges of the cover plate 114, and the second supporting leg protrusion 116 is detachably connected to the corresponding first supporting leg protrusion 115. In this way, the first supporting leg protrusion 115 and the second supporting leg protrusion 116 both have the functions of supporting legs and connecting ear plates. The shielding box shell 11 can also be placed upright or upside down.
[0080] The present application also provides an X-ray detector, comprising:
[0081] The shell module of the X-ray emitting device;
[0082] An X-ray tube, which is installed in the shielding inner cavity 14;
[0083] A battery module, which is installed in the pull-out shell 31;
[0084] A circuit system, which is installed in the electric control containing area 22 and is electrically connected to the battery module and the X-ray tube.
[0085] In summary, the shell module of the X-ray emitting device and the X-ray detector of the present application can facilitate outdoor carrying of the staff to convert the detection site, can save the existing independent power supply, and can improve the replacement smoothness and convenience of the battery module. Therefore, the present application effectively overcomes the various shortcomings in the prior art and has high industrial utilization value.
[0086] The above embodiments are only illustrative of the principles and effects of the present application, and are not intended to limit the present application. Any modification or change made by those skilled in the art without departing from the spirit and scope of the present application shall be covered by the claims of the present application.
Claims
1. A housing module of an X-ray emitting apparatus, characterized by, The utility model relates to a portable X-ray machine, which comprises a portable shell (1), an electric control shell (2) and a battery replacement shell (3). The portable shell (1) comprises a shielding box shell (11), an X-ray window (12) formed on the side wall of the shielding box shell (11) and a portable handle (13) arranged on the side wall of the shielding box shell (11) and avoiding the X-ray window (12), wherein the shielding box shell (11) forms a shielding inner cavity (14) for placing an X-ray tube. The electric control shell (2) comprises a protective box shell (21) arranged on the side wall of the shielding box shell (11) away from the X-ray window (12), wherein the inner cavity of the protective box shell (21) comprises an electric control accommodating area (22) and a battery accommodating area (23) in communication, the battery accommodating area (23) is provided with a sliding guide sleeve (24), and one side of the protective box shell (21) is provided with an open port (25) in communication with the battery accommodating area (23) and aligned with the sliding guide sleeve (24). The battery replacement shell (3) comprises a pull-out shell (31) and a locking mechanism (32) formed on the side wall of the pull-out shell (31), wherein the pull-out shell (31) is slidably inserted into the sliding guide sleeve (24) through the open port (25), the inner cavity of the pull-out shell (31) is used for placing a battery module, the locking mechanism (32) and the sliding guide sleeve (24) form a snap-fit relationship, and the sliding guide sleeve (24) is provided with a clamping hole (241).
2. The housing module of an X-ray emitting apparatus according to claim 1, characterized in that: The locking mechanism (32) comprises a sliding groove (321), a clamping piece (322) and a reset assembly (323), the sliding groove (321) is formed on the side wall of the pull-out shell (31), the clamping piece (322) is slidably arranged in the sliding groove (321), one side of the clamping piece (322) facing the clamping hole (241) is provided with a clamping convex (322a) for clamping the clamping hole (241), the reset assembly (323) is arranged between the other side of the clamping piece (322) away from the clamping hole (241) and the end of the sliding groove (321), and the shielding box shell (11) comprises a rectangular cylindrical shell (113), two ports of the rectangular cylindrical shell (113) are respectively provided with cover plates (114), one of the cover plates (114) is provided with the X-ray window (12), the other cover plate (114) is connected to the protective box shell (21), the outer peripheral wall of the rectangular cylindrical shell (113) is provided with a first supporting leg convex (115), the edge of the cover plate (114) is provided with a second supporting leg convex (116) corresponding to the first supporting leg convex (115), and the second supporting leg convex (116) and the first supporting leg convex (115) are detachably connected.
3. The housing module of an X-ray emitting apparatus according to claim 1, characterized in that: The reset assembly (323) comprises a positioning column (323a), a compression spring (323b) and a positioning screw (323c), the positioning column (323a) is formed on the clamping piece (322), the positioning screw (323c) is fixedly arranged in the end of the sliding groove (321), and the two ends of the compression spring (323b) are respectively sleeved with the positioning column (323a) and the positioning screw (323c). The clamping piece (322) is provided with a clamping groove (322b) for allowing the fingers of the staff to extend into.
4. The housing module of an X-ray emitting apparatus according to claim 1, characterized in that: The number of the clamping holes (241) is two; the number of the locking mechanisms (32) is two, and the two locking mechanisms (32) correspond to the two clamping holes (241) one by one, and the clamping parts (322) of the two locking mechanisms (32) are close to each other when the clamping cooperation relationship is released.
5. The housing module of an X-ray emitting apparatus according to claim 1, characterized in that: The pull-out shell (31) is provided with an inner charging interface for electrically connecting the battery module; the protective box shell (21) is provided with an outer charging interface (211), and the outer charging interface (211) is electrically connected to the inner charging interface when the pull-out shell (31) is inserted into the battery accommodating area (23).
6. The housing module of an X-ray emitting apparatus according to claim 1, characterized in that: The protective box shell (21) is in the shape of a rectangular cover, and the protective box shell (21) is covered on the side wall of the shielding box shell (11); a plurality of limiting protrusions (111) are arranged on the side wall of the shielding box shell (11), and each limiting protrusion (111) is detachably connected to the edge of the protective box shell (21).
7. The housing module of an X-ray emitting apparatus according to claim 1, characterized in that: A wire harness passing hole (112) is arranged on the side wall of the shielding box shell (11), and the wire harness passing hole (112) is used for connecting the shielding inner cavity (14) and the electric control accommodating area (22).
8. An X-ray detector, characterized by, Comprise: The shell module of the X-ray emitting device according to any one of claims 1 to 7; An X-ray tube installed in the shielding inner cavity (14); A battery module installed in the pull-out shell (31); Circuit system installed in the electric control accommodating area (22), and the circuit system is electrically connected to the battery module and the X-ray tube, respectively.
Citation Information
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