Support for ionizing radiation detection equipment

By designing a support structure with a sturdy and adjustable mechanism, the problems of insufficient support stability and adjustability were solved, achieving stable support and accurate testing of the testing equipment.

CN223827746UActive Publication Date: 2026-01-23JIANGSU OSA ENVIRONMENTAL TESTING TECH CO LTD
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Patent Information

Application Number
CN202423142575.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-19
Publication Date
2026-01-23
Estimated Expiration
2034-12-19

AI Technical Summary

Technical Problem

Existing supports are not stable during use, are prone to movement, affecting the accuracy and precision of test results, and cannot be adjusted in height or angle to adapt to different environments.

Method used

A support frame including a stabilizing mechanism and an adjusting mechanism is designed. The stabilizing mechanism provides stability by forming a triangular state through the unfolded stabilizing rod, and the adjusting mechanism adjusts the height and angle through a lead screw and a lifting rod. The clamping plate fixes the testing equipment.

Benefits of technology

It improves the stability and accuracy of the testing equipment, and can adjust the height and angle according to environmental needs to ensure the accuracy and reliability of the test results.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a support for ionizing radiation detection equipment, which relates to the technical field of auxiliary supports of detection equipment and comprises a stand column, a limiting sleeve is slidably sleeved outside the lower end of the stand column, stabilizing mechanisms are symmetrically arranged on the outer side of the lower end of the stand column, and an adjusting mechanism is arranged at the upper end of the stand column. A fixing table is arranged at the top end of the adjusting mechanism, and a mounting table is arranged on one side of the fixing table. The rotating lead screw drives the lifting rod in threaded connection to move up and down, so that the lifting rod drives the fixed table to move synchronously, and the use height of the support can be adjusted; meanwhile, the detection equipment is conveniently clamped on the mounting table through two groups of clamping plates which are gradually close to each other, so that the detection equipment is not easy to slip off during use, and a swing arm of the detection equipment swings by utilizing damping rotating shafts mounted in the fixed table and the mounting table, so that the detection angle of the detection equipment can be adjusted by utilizing the swing arm, and the detection result is more accurate.
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Description

TECHNICAL FIELD

[0001] The utility model relates to detection equipment auxiliary support technical field, concretely relates to a support for ionizing radiation detection equipment. BACKGROUND

[0002] ‌Ionizing radiation detection refers to the process of measuring and evaluating the level of ionizing radiation in the environment through specific instruments and methods. Ionizing radiation refers to radiation that carries enough energy to make electrons in matter atoms or molecules into free states, thereby causing ionization phenomena, including X-rays, gamma rays and other high-energy particles‌.

[0003] The electromagnetic radiation detector is mainly applied to the measurement of the radiation of high-voltage line base stations in life. Generally, the electromagnetic radiation detector is more applied to the early warning of electromagnetic radiation. Especially for the protection of important infrastructure, it needs to be monitored at all times, so the use of the electromagnetic radiation detector is usually in the process of automatic monitoring. When using, it often needs to be matched with a mounting bracket to ensure the stability of the on-site inspection.

[0004] The existing technology has the following problems:

[0005] The existing support is not stable in actual use, which makes it easy to move and thus cannot ensure the accuracy of the detection results, which may cause the position of the detection to change and thus affect the reliability of the detection data. At the same time, the support is often not adjustable, and cannot be changed in height or angle according to the current environment, thus affecting the detection accuracy. UTILITY MODEL CONTENTS

[0006] To solve the above technical problems, the technical scheme adopted by the utility model is:

[0007] A support for ionizing radiation detection equipment, comprising a stand, a limiting sleeve is slidably connected to the outer lower end of the stand, a stabilizing mechanism is symmetrically arranged on the outer lower end of the stand, an adjusting mechanism is arranged on the upper end of the stand, a fixed table is arranged on the top end of the adjusting mechanism, an installation table is arranged on one side of the fixed table, a damping shaft is fixedly installed on the inner side of the fixed table and the installation table, a fixed block is rotatably installed on the outer side of the two damping shafts, and a swing arm is fixedly connected between the two fixed blocks.

[0008] Preferably: the stabilizing mechanism comprises three sets of articulated seat one, the bottom end of the three sets of articulated seat one is fixedly installed at equal intervals on the lower end of the stand, the inner side of the articulated seat one is rotatably installed with a stabilizing rod, the bottom end of the stabilizing rod is fixedly connected with an articulated seat two, the inner side of the articulated seat two is rotatably installed with an antiskid base, the inner side of the stabilizing rod is fixedly connected with an articulated seat three, the outer wall of the antiskid sleeve is fixedly connected with three sets of articulated seat four at equal intervals, and the articulated seat three and the articulated seat four are rotatably installed with a connecting plate.

[0009] Preferably: the bottom of the antiskid base is provided with antiskid stripes.

[0010] Preferably: the adjusting mechanism comprises a sleeve, the lower end of the sleeve is fixedly installed on the upper end of the stand, the inner cavity bottom of the sleeve is fixedly installed with a motor, the output end of the motor is drivingly installed with a lead screw, the outer portion of the lead screw is sleeved with a threaded lifting rod, the left and right inner walls of the sleeve are symmetrically provided with limiting grooves, and the lower end of the lifting rod is fixedly connected with limiting blocks on both sides.

[0011] Preferably: the top end of the lifting rod extends out of the sleeve, the limiting blocks are embedded in the limiting grooves and are slidingly installed.

[0012] Preferably: the upper end of the mounting table is fixedly connected with side plates on both sides, the upper end of the side plate is threadedly connected with a screw rod, the lower end of the side plate is slidingly connected with a limiting rod, and the bottom end of the screw rod is rotatably connected with a clamping plate.

[0013] Preferably: the bottom end of the limiting plate is fixedly connected with the lower side of the rear end of the clamping plate, and the clamping plate is in the shape of a "Fang".

[0014] Preferably: the lower end of the fixing table is fixedly installed on the top end of the lifting rod.

[0015] Compared with the prior art, the utility model has the advantages of the following:

[0016] The utility model provides a support for ionizing radiation detection equipment, through the stabilizing mechanism, by wiggling the stabilizing rod plate, the supporting plate is rotated on the articulated seat one, and then three sets of stabilizing rods can be unfolded to form a stable triangular state, the inner connecting plate can support the unfolded stabilizing rod, and the supporting stability of the stand and the detection equipment can be ensured, and when the stabilizing rod is folded back, the volume is reduced, and the support is convenient to carry.

[0017] The utility model provides a support for ionizing radiation detection equipment, through adjusting mechanism, through the screw rod of rotation drive screw connection's lifting rod carries out up and down movement, make lifting rod drive fixed platform synchronous movement, and can adjust the use height of support, simultaneously through two groups of gradually close's clamping plate, convenient detection equipment is clamped on the installation platform, make it not easy to slip in use, use fixed platform and installation platform inside installation has the damper pivot, make its swing arm swing, can utilize its adjustment detection equipment's detection angle, to make the detection result more accurate. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 It is the structure schematic drawing of the support for ionizing radiation detection equipment of the utility model;

[0019] Figure 2 It is the structure schematic drawing of the utility model's;

[0020] Figure 3 It is the structure schematic drawing of the utility model's;

[0021] Figure 4 It is the structure schematic drawing of the utility model's;

[0022] Figure 5 It is the structure schematic drawing of the utility model's.

[0023] In the drawing: 1, stand; 2, limit sleeve; 3, stable mechanism; 4, adjusting mechanism; 5, fixed platform; 6, installation platform; 7, damper pivot; 8, fixed block; 9, swing arm; 10, side plate; 11, screw; 12, limit rod; 13, clamping plate; 31, hinged seat one; 32, stable rod; 33, hinged seat two; 34, antiskid base; 35, hinged seat three; 36, hinged seat four; 37, connecting plate; 41, sleeve; 42, motor; 43, screw rod; 44, lifting rod; 45, limit slot; 46, limit block. DETAILED DESCRIPTION

[0024] The utility model makes further detailed explanation in combination with example:

[0025] As Figures 1-5 Shown, the utility model provides a support for ionizing radiation detection equipment, including stand 1, the lower end outside of stand 1 is sleeved with limit sleeve 2, the lower end outside of stand 1 is evenly provided with stable mechanism 3, the upper end of stand 1 is equipped with adjusting mechanism 4, the top of adjusting mechanism 4 is equipped with fixed platform 5, one side of fixed platform 5 is equipped with installation platform 6, the inner side of fixed platform 5 and installation platform 6 is fixedly installed with damper pivot 7, the outside of two groups of damper pivot 7 is rotatably installed with fixed block 8, two groups of fixed block 8 are fixedly connected with swing arm 9 between.

[0026] The upper end of the mounting table 6 is symmetrically fixedly connected with a side plate 10 on both sides, the upper end of the side plate 10 is threadedly connected with a screw rod 11, the lower end of the side plate 10 is slidably connected with a limiting rod 12, and the bottom end of the screw rod 11 is rotatably connected with a clamping plate 13.

[0027] The bottom end of the limiting plate is fixedly connected with the lower side of the rear end of the clamping plate 13, and the clamping plate 13 is in the shape of a 'Fang'.

[0028] The lower end of the fixed table 5 is fixedly installed with the top end of the lifting rod 44.

[0029] In the scheme, when it is necessary to adjust the detection angle of the detection device, the fixed blocks 8 at both ends of the swing arm 9 can be manually forced to swing around the damping rotating shaft 7, and the damping rotating shaft 7 can provide a certain resistance, so that the swing arm 9 can stably stay at the position after swinging to the required angle and will not randomly shake due to slight external force interference. By accurately adjusting the swing angle of the swing arm 9, the detection angle of the detection device can be adjusted, so that it can better align the detection target or adapt to the needs of different detection scenes.

[0030] As shown in Figure 4 The stable mechanism 3 includes three sets of hinged seats one 31, the bottom ends of the three sets of hinged seats one 31 are fixedly installed at equal distances on the lower end of the stand column 1, the inner side of the hinged seat one 31 is rotatably installed with a stable rod 32, the bottom end of the stable rod 32 is fixedly connected with a hinged seat two 33, the inner side of the hinged seat two 33 is rotatably installed with an anti-skid base 34, the inner side of the stable rod 32 is fixedly connected with a hinged seat three 35, the outer wall of the anti-skid sleeve is fixedly connected with three sets of hinged seats four 36 at equal distances, and the hinged seat three 35 and the hinged seat four 36 are rotatably installed with a connecting plate 37.

[0031] The bottom of the anti-skid base 34 is provided with anti-skid stripes.

[0032] In the scheme, by folding and recycling the stable rod 32, the connecting plate 37 can push the limiting sleeve 2 to move upwards, so that the volume of the stand column 1 is rapidly reduced, and the relatively large space originally occupied due to unfolding is effectively contracted, thereby facilitating carrying.

[0033] As shown in Figure 5 The adjusting mechanism 4 includes a sleeve 41, the lower end of the sleeve 41 is fixedly installed with the upper end of the stand column 1, the inner cavity bottom of the sleeve 41 is fixedly installed with a motor 42, the output end of the motor 42 is drivingly installed with a lead screw 43, the outer part of the lead screw 43 is sleeved with a lifting rod 44 which is threadedly installed, the left and right inner walls of the sleeve 41 are symmetrically provided with limiting grooves 45, and the lower end of the lifting rod 44 is symmetrically fixedly connected with limiting blocks 46.

[0034] The top end of the lifting rod 44 extends out of the inside of the sleeve 41, the limiting blocks 46 are embedded in the limiting grooves 45 and are slidingly installed.

[0035] In this design, when the lifting rod 44 moves up and down, it will drive the limiting block 46 to slide synchronously in the limiting groove 45, thereby preventing the lifting rod 44 from rotating and making its up and down movement smooth.

[0036] The working principle of the bracket used for ionizing radiation detection equipment will be explained in detail below.

[0037] like Figures 1-5 As shown, when using the bracket for ionizing radiation detection equipment, the detection equipment can be placed on the mounting platform 6. Then, the screw 11 can be rotated, causing the screw 11 to push the clamping plate 13 to move. The two sets of clamping plates 13 gradually approach each other under the sliding guide of the limiting rod 12, thereby clamping the detection equipment. By prying the stabilizing rod 32 outward, the stabilizing rod 32 unfolds outward under the action of the hinge seat 31. At the same time, the stabilizing rod 32 and the connecting plate 37 and the hinge seat 36 pulled by the hinge support 3 move synchronously, so that the limiting sleeve 2 is on the column. The lower end of 1 slides downwards, and when the three sets of stabilizing rods 32 unfold to form a triangular state, the anti-slip base 34 at the bottom of the bracket can be placed on the ground, thus completing the stable placement of the bracket. Then, through the stability of the bracket and the detection equipment, by starting the motor 42, the motor 42 drives the lead screw 43 to rotate, so that the lead screw 43 drives the threaded lifting rod 44 to move up and down, so that the lifting rod 44 drives the mounting platform 6 and the detection equipment to move synchronously through the fixed platform 5 and the swing arm 9, thereby adjusting the detection height of the electromagnetic radiation detection equipment, which is convenient to adjust according to the current environment and expands its application range.

[0038] The present invention has been described in detail above. However, modifications or improvements can be made to it, which will be obvious to those skilled in the art. Therefore, any modifications or improvements that do not depart from the spirit of the present invention are within the protection scope of the present invention.

Claims

1. A support for an ionizing radiation detection device, comprising a column (1), wherein a limiting sleeve (2) is slidably sleeved on the lower end of the column (1), characterized in that: On the outer sides of the lower ends of the columns (1), stabilizing mechanisms (3) are symmetrically provided. At the upper ends of the columns (1), an adjusting mechanism (4) is provided. At the top end of the adjusting mechanism (4), a fixing platform (5) is provided. On one side of the fixing platform (5), an installation platform (6) is provided. Inside the fixing platform (5) and the installation platform (6), damping rotating shafts (7) are fixedly installed. Outside the two damping rotating shafts (7), fixing blocks (8) are rotatably installed. Between the two fixing blocks (8), a swing arm (9) is fixedly connected.

2. The bracket for an ionizing radiation detection device according to claim 1, characterized in that: The stabilizing mechanism (3) includes three hinge seats one (31). The bottom ends of the three hinge seats one (31) are fixedly installed on the lower ends of the columns (1) at equal intervals. Inside the hinge seats one (31), stabilizing rods (32) are rotatably installed. At the bottom end of the stabilizing rod (32), a hinge seat two (33) is fixedly connected. Inside the hinge seat two (33), an anti-slip base (34) is rotatably installed. Inside the stabilizing rod (32), a hinge seat three (35) is fixedly connected. On the outer wall of the anti-slip sleeve, three hinge seats four (36) are fixedly connected at equal intervals. Between the hinge seat three (35) and the hinge seat four (36), a connecting plate (37) is rotatably installed.

3. A bracket for an ionizing radiation detection device according to claim 2, characterized in that: Anti-slip stripes are provided at the bottom of the anti-slip base (34).

4. A bracket for an ionizing radiation detection device according to claim 1, characterized in that: The adjusting mechanism (4) includes a sleeve (41). The lower end of the sleeve (41) is fixedly installed with the upper end of the column (1). At the bottom of the inner cavity of the sleeve (41), a motor (42) is fixedly installed. The output end of the motor (42) is drivingly installed with a screw rod (43). Outside the screw rod (43), a lifting rod (44) installed with a thread is sleeved. On the left and right inner walls of the sleeve (41), limiting grooves (45) are symmetrically provided. On both sides of the lower end of the lifting rod (44), limiting blocks (46) are symmetrically fixedly connected.

5. A bracket for an ionizing radiation detection device according to claim 4, characterized in that: The top end of the lifting rod (44) extends out of the inside of the sleeve (41). The limiting block (46) is fitted with the limiting groove (45) and is slidably installed.

6. A bracket for an ionizing radiation detection device according to claim 1, characterized in that: On both sides of the upper end of the installation platform (6), side plates (10) are symmetrically fixedly connected. On the upper ends of the side plates (10), screw rods (11) are threadedly connected. At the lower ends of the side plates (10), limiting rods (12) are slidably connected. At the bottom end of the screw rod (11), a clamping plate (13) is rotatably connected.

7. A bracket for an ionizing radiation detection device according to claim 6, characterized in that: The bottom end of the limiting plate is fixedly connected with the lower side of the rear end of the clamping plate (13). The clamping plate (13) is in an "L" shape.

8. A bracket for an ionizing radiation detection device according to claim 1, characterized in that: The lower end of the fixing platform (5) is fixedly installed with the top end of the lifting rod (44).