Portable pipeline detection device

By designing a convenient pipeline detection device, the problem of operators being lowered and raised higher during underground cable inspection was solved, enabling convenient operation of the clamps and efficient inspection.

CN224203442UActive Publication Date: 2026-05-05TIANJIN SURVEYING & MAPPING INST CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
TIANJIN SURVEYING & MAPPING INST CO LTD
Filing Date
2025-04-28
Publication Date
2026-05-05

AI Technical Summary

Technical Problem

In existing technologies, the monitoring points for underground cable inspection are high and uneven, requiring operators to lower themselves and raise themselves, which is inconvenient and reduces inspection efficiency.

Method used

A convenient pipeline detection device was designed, including clamps, a bracket, an assembly mechanism, a transmission mechanism, an extension mechanism, and a binding mechanism. It can be adapted to different models of clamps and is positioned on the metal pipe through the telescopic hand handle and the binding mechanism, enabling convenient operation of the clamps.

Benefits of technology

No operator is required to be at a lower position or a higher position, making it easy to clamp the cable and improving the inspection efficiency of buried cables.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a portable pipeline detection device, and belongs to the technical field of pipeline detection equipment. The portable pipeline detection device comprises a clamp, a support, an assembling mechanism, a transmission mechanism, a first extending mechanism, a second extending mechanism and a binding mechanism, one end of the support is fixed to a second clamping sleeve, different handles of the clamp are inserted into the second clamping sleeve and the first clamping sleeve respectively, the assembling mechanism is installed on the clamp, and the binding mechanism is installed on the support. According to the portable pipeline detection device, the assembling mechanism is utilized to adapt to clamps of different models; the telescopic handheld rod can meet different height requirements, and meanwhile, the second extension mechanism and the transmission mechanism can operate the opening of the clamp; a binding mechanism is arranged at the tail part of the handheld rod and is bound on the metal pipe, so that the overall positioning is enhanced; therefore, an operator does not need to lower the lower part and higher the upper part, the clamp can be conveniently clamped and sleeved on the cable, and the detection efficiency of the buried cable is improved.
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Description

Technical Field

[0001] This utility model relates to the field of pipeline detection equipment technology, and more specifically, to a convenient pipeline detection device. Background Technology

[0002] For buried cables, testing is required at the cable exit point. Commonly used clamps can be used to perform the test after being placed on the cable. However, since there is a metal pipe for protection at the cable exit point, clamp positioning and monitoring are required at the point where the cable leaves the metal pipe. However, the monitoring point is often relatively high and is not a flat section, which often requires the operator to lower themselves and raise themselves, causing many inconveniences and reducing the efficiency of testing buried cables. Utility Model Content

[0003] To overcome the above shortcomings, this utility model provides a convenient pipeline detection device, which aims to improve the problem that the monitoring point is relatively high and the section is not flat, which often requires the operator to go down and up, causing a lot of inconvenience to the operation.

[0004] This utility model is implemented as follows:

[0005] This utility model provides a convenient pipeline detection device, including clamps, a bracket, an assembly mechanism, a transmission mechanism, a first extension mechanism, a second extension mechanism, and a binding mechanism. One end of the bracket is fixed on a second sleeve, and different handles of the clamps are respectively inserted into the second sleeve and the first sleeve.

[0006] The assembly mechanism is mounted on the clamp, and the assembly mechanism is set up to assemble clamps of different models.

[0007] The transmission mechanism is mounted on the bracket and the first ferrule, and the transmission mechanism enables the clamp to open or close.

[0008] The first extension mechanism is mounted on the bracket, and the first extension mechanism is configured to adjust the distance between the hand handle and the second ferrule;

[0009] The second extension mechanism is mounted on the first crossbar, and the second extension mechanism is configured to adjust the distance between the threaded rod and the first crossbar.

[0010] The binding mechanism is installed on the handheld stick and is configured to bind the handheld stick to the metal tube.

[0011] In one embodiment of the present invention, a cable storage component is further included, which is disposed on the clamp.

[0012] In one embodiment of the present invention, the assembly mechanism includes a first ferrule, a first locking member, and a second ferrule. The first ferrule and the second ferrule are fitted onto different handles of the clamps, and different first locking members are threaded through the first ferrule and the second ferrule, respectively.

[0013] In one embodiment of this utility model, the transmission mechanism includes a gear ring, a first horizontal column, a first vertical column, a first bevel gear transmission component, a second bevel gear transmission component, a third bevel gear transmission component, a U-shaped rod, a gear, a second horizontal column, and a second vertical column. One end of the gear ring is fixed to the outer wall of the first sleeve, the lower end of the first vertical column is rotatably disposed on the upper surface of the bracket, one end of the U-shaped rod is fixed to the upper surface of the bracket, and the upper end of the second vertical column is rotatably disposed on the other end of the U-shaped rod through a bearing.

[0014] Both the first and second horizontal columns are rotatably mounted on the bracket via bearings. The first horizontal column and the first vertical column are connected together by the first bevel gear transmission component. The first vertical column and the second horizontal column are connected together by the second bevel gear transmission component. The second horizontal column and the second vertical column are connected together by the third bevel gear transmission component. The gear is fixed on the second vertical column and meshes with the gear ring.

[0015] In one embodiment of this utility model, the first extension mechanism includes a connecting rod, a threaded post, a first nut, and a handheld rod. One end of the connecting rod is fixed to the outer wall of the bracket, and the handheld rod is slidably inserted into the connecting rod. A first through hole is provided on the connecting rod. One end of the threaded post is fixed to the outer wall of the handheld rod, and the threaded post passes through the first through hole. The first nut is threaded onto the threaded post.

[0016] In one embodiment of this utility model, the second extension mechanism includes a frame, a threaded rod, a second nut, and a slider. One end of the first crossbar is fixed to the outer wall of the frame. The threaded rod passes through the frame. The second nut is threaded onto the threaded rod. There are two second nuts, which are distributed on both sides of the frame. The slider is fixed to one end of the threaded rod. A groove is provided on the frame, and the slider is slidably disposed on the groove.

[0017] In one embodiment of the present invention, a knob is also included, which is fixed to the other end of the threaded rod.

[0018] In one embodiment of this utility model, the binding mechanism includes a strap, a Velcro strap, a connecting strap, and a guide sleeve. One end of the strap and one end of the connecting strap are fixed to the end of the hand handle. The Velcro strap is disposed on the strap, and the other end of the connecting strap is fixed to the guide sleeve. A second through hole is provided on both the connecting strap and the guide sleeve.

[0019] The advantages and positive effects of this utility model are:

[0020] (1) The assembly mechanism can be used to adapt to different models of clamps;

[0021] (2) A telescopic hand lever to meet different height requirements, and a second extension mechanism and a transmission mechanism to operate the opening or closing of the clamp;

[0022] (3) A binding mechanism is provided at the end of the handheld stick to bind it to the metal tube, thereby enhancing the overall positioning;

[0023] (4) It does not require the operator to be lowered or raised, and it is easy to clamp the clamp onto the cable, which improves the efficiency of testing buried cables. Attached Figure Description

[0024] To more clearly illustrate the technical solutions of the embodiments of this utility model, the drawings used in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of this utility model and should not be regarded as a limitation of the scope. For those skilled in the art, other related drawings can be obtained from these drawings without creative effort.

[0025] Figure 1 This is a three-dimensional structural diagram of a convenient pipeline detection device provided by an embodiment of the present invention;

[0026] Figure 2 A diagram showing the relationship between the clamps and the cable storage component provided in this embodiment of the utility model;

[0027] Figure 3 A diagram showing the relationship between the assembly mechanism and the transmission mechanism provided for embodiments of this utility model;

[0028] Figure 4 Provided for the embodiments of this utility model Figure 3 Enlarged view of region A in the middle;

[0029] Figure 5 A three-dimensional structural schematic diagram of the transmission mechanism provided for an embodiment of this utility model;

[0030] Figure 6 A three-dimensional structural schematic diagram of the first extension mechanism provided for an embodiment of this utility model;

[0031] Figure 7 Provided for the embodiments of this utility model Figure 6 Enlarged view of region B in the middle;

[0032] Figure 8 A three-dimensional structural diagram of the second extension mechanism provided for an embodiment of this utility model.

[0033] In the diagram: 110-Clamping clamp; 120-Cable retractor; 130-Assembly mechanism; 131-First ferrule; 132-First locking element; 133-Second ferrule; 140-Bracket; 150-Transmission mechanism; 151-Gear ring; 152-First horizontal column; 153-First vertical column; 154-First bevel gear transmission component; 155-Second bevel gear transmission component; 156-Third bevel gear transmission component; 157-U-shaped rod; 158-Gear; 159-Second horizontal column; 1 590 - Second column; 160 - First extension mechanism; 161 - Connecting rod; 162 - First through hole; 163 - Threaded column; 164 - First nut; 165 - Handheld rod; 170 - Second extension mechanism; 171 - Frame; 172 - Threaded rod; 173 - Second nut; 174 - Knob; 175 - Slider; 176 - Slide groove; 180 - Binding mechanism; 181 - Strap; 182 - Velcro; 183 - Connecting strap; 184 - Guide sleeve; 185 - Second through hole. Detailed Implementation

[0034] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.

[0035] Example

[0036] Please see Figures 1-8 This utility model provides a technical solution: a convenient pipeline detection device, including a clamp 110, a bracket 140, an assembly mechanism 130, a transmission mechanism 150, a first extension mechanism 160, a second extension mechanism 170, and a binding mechanism 180. One end of the bracket 140 is fixed on a second sleeve 133. Different handles of the clamp 110 are respectively inserted into the second sleeve 133 and the first sleeve 131. It also includes a cable storage component 120, which is disposed on the clamp 110 and is used to store the cable on the clamp 110.

[0037] The assembly mechanism 130 is mounted on the clamp 110. The assembly mechanism 130 is set up to assemble clamps 110 of different models. The assembly mechanism 130 includes a first ferrule 131, a first locking member 132 and a second ferrule 133. The first ferrule 131 and the second ferrule 133 are sleeved on different handles of the clamp 110. Different first locking members 132 are threaded through the first ferrule 131 and the second ferrule 133 respectively.

[0038] The transmission mechanism 150 is mounted on the bracket 140 and the first ferrule 131. The transmission mechanism 150 enables the clamp 110 to open or close. The transmission mechanism 150 includes a gear ring 151, a first horizontal column 152, a first vertical column 153, a first bevel gear transmission component 154, a second bevel gear transmission component 155, a third bevel gear transmission component 156, a U-shaped rod 157, a gear 158, a second horizontal column 159, and a second vertical column 1590. One end of the gear ring 151 is fixed to the outer wall of the first ferrule 131. The lower end of the first vertical column 153 is rotatably mounted on the upper surface of the bracket 140. One end of the U-shaped rod 157 is fixed to the bracket 140. On the upper surface of 0, the upper end of the second column 1590 is rotatably mounted on the other end of the U-shaped rod 157 via a bearing. The first horizontal column 152 and the second horizontal column 159 are both rotatably mounted on the bracket 140 via bearings. The first horizontal column 152 and the first column 153 are connected together by the first bevel gear transmission component 154. The first column 153 and the second horizontal column 159 are connected together by the second bevel gear transmission component 155. The second horizontal column 159 and the second column 1590 are connected together by the third bevel gear transmission component 156. The gear 158 is fixed on the second column 1590 and meshes with the gear ring 151.

[0039] The first extension mechanism 160 is mounted on the bracket 140. The first extension mechanism 160 is used to adjust the distance between the handheld rod 165 and the second sleeve 133. The first extension mechanism 160 includes a connecting rod 161, a threaded post 163, a first nut 164 and a handheld rod 165. One end of the connecting rod 161 is fixed to the outer wall of the bracket 140. The handheld rod 165 is slidably inserted into the connecting rod 161. A first through hole 162 is provided on the connecting rod 161. One end of the threaded post 163 is fixed to the outer wall of the handheld rod 165. The threaded post 163 passes through the first through hole 162. The first nut 164 is threaded onto the threaded post 163.

[0040] The second extension mechanism 170 is mounted on the first horizontal column 152. The second extension mechanism 170 is used to adjust the distance between the threaded rod 172 and the first horizontal column 152. The second extension mechanism 170 includes a frame 171, a threaded rod 172, a second nut 173, and a slider 175. One end of the first horizontal column 152 is fixed to the outer wall of the frame 171. The threaded rod 172 passes through the frame 171. The second nut 173 is threaded onto the threaded rod 172. There are two second nuts 173, which are distributed on both sides of the frame 171. The slider 175 is fixed to one end of the threaded rod 172. A groove 176 is provided on the frame 171. The slider 175 is slidably disposed on the groove 176. The second extension mechanism 170 also includes a knob 174, which is fixed to the other end of the threaded rod 172. The knob 174 is designed to facilitate the rotation of the first horizontal column 152.

[0041] The binding mechanism 180 is installed on the handheld rod 165. The binding mechanism 180 is used to bind the handheld rod 165 to the metal tube. The binding mechanism 180 includes a strap 181, a Velcro strap 182, a connecting strap 183, and a guide sleeve 184. One end of the strap 181 and one end of the connecting strap 183 are fixed to the end of the handheld rod 165. The Velcro strap 182 is provided on the strap 181. The other end of the connecting strap 183 is fixed to the guide sleeve 184. A second through hole 185 is provided on both the connecting strap 183 and the guide sleeve 184. In this embodiment, the material can be carbon fiber or other non-conductive materials, or non-conductive materials can be used in key positions.

[0042] Specifically, the working principle of this portable pipeline detection device is as follows: In use, the two handles of the clamp 110 are inserted into the second retaining sleeve 133 and the first retaining sleeve 131, respectively. Then, the first locking member 132 is rotated. The end of the first locking member 132 presses against the handles of the clamp 110, fixing the handles of the clamp 110 within the first retaining sleeve 131 and the second retaining sleeve 133. The arrangement of the first retaining sleeve 131, the first locking member 132, and the second retaining sleeve 133 facilitates quick assembly of clamps 110 of different models. Depending on the height of the monitoring point, the handheld rod 165 is moved to adjust the distance between the end of the handheld rod 165 and the bracket 140. After adjustment, the handheld rod 165 is held, and the first nut 164 is rotated. 164 By pressing the outer wall of the connecting rod 161, the handheld rod 165 is fixed inside the connecting rod 161. Then, the threaded rod 172 is pulled, and under the action of the slider 175 and the groove 176, the end of the threaded rod 172 is brought close to the end of the handheld rod 165. Then, the second nut 173 is rotated, and the second nut 173, by pressing the frame 171, fixes the threaded rod 172 to the frame 171. Holding the handheld rod 165, the clamp 110 is moved closer to the cable. Then, the knob 174 is rotated. The rotation of the knob 174 causes the frame 171 and the first crossbar 152 to rotate. The rotation of the first crossbar 152 causes the first bevel gear transmission component 154 to rotate. The rotation of the first bevel gear transmission component 154... The rotation of the first column 153 causes the second bevel gear transmission component 155 to rotate, which in turn causes the second horizontal column 159 to rotate. The rotation of the second horizontal column 159 then causes the third bevel gear transmission component 156 to rotate, which in turn causes the second column 1590 to rotate. The rotation of the second column 1590 then causes the gear 158 to rotate. Because the gear 158 meshes with the gear ring 151, the gear 158 moves the gear ring 151, bringing the two handles of the clamp 110 closer together, thus opening the clamp 110. Then, by holding the handle 165, the clamp 110 is secured to the cable. Finally, the knob 174 is rotated in the opposite direction to open the clamp. The two handles of the clamp 110 are positioned far apart, clamping the cable. Then, the strap 181 is wrapped around the metal pipe. The strap 181 is then passed through the second through hole 185 on the connecting strap 183 and the guide sleeve 184. Finally, the strap 181 is secured to the metal pipe using Velcro 182, enhancing the overall positioning. The cable can then be inspected. This portable pipeline detection device can be adapted to different models of clamps 110 using the assembly mechanism 130. The telescopic hand rod 165 meets different height requirements. The second extension mechanism 170 and the transmission mechanism 150 can operate the opening of the clamp 110. A binding mechanism 180 is provided at the end of the hand rod 165 to bind it to the metal pipe, enhancing the overall positioning.This eliminates the need for operators to bend low or rise high, and facilitates the easy attachment of the clamp 110 to the cable, thus improving the efficiency of inspecting buried cables.

[0043] The above are merely embodiments of this utility model and are not intended to limit the scope of protection of this utility model. For those skilled in the art, this utility model can have various modifications and variations. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the scope of protection of this utility model. It should be noted that similar reference numerals and letters in the following figures indicate similar items; therefore, once an item is defined in one figure, it does not need to be further defined and explained in subsequent figures.

Claims

1. A portable pipeline detection device, characterized in that, It includes a clamp (110), a bracket (140), an assembly mechanism (130), a transmission mechanism (150), a first extension mechanism (160), a second extension mechanism (170), and a binding mechanism (180). One end of the bracket (140) is fixed on a second sleeve (133), and different handles of the clamp (110) are respectively inserted into the second sleeve (133) and the first sleeve (131). The assembly mechanism (130) is mounted on the clamp (110), and the assembly mechanism (130) is configured to assemble clamps (110) of different models; The transmission mechanism (150) is mounted on the bracket (140) and the first ferrule (131). The transmission mechanism (150) enables the clamp (110) to open or close. The first extension mechanism (160) is mounted on the bracket (140), and the first extension mechanism (160) is configured to adjust the distance between the hand handle (165) and the second sleeve (133); The second extension mechanism (170) is mounted on the first cross post (152), and the second extension mechanism (170) is configured to adjust the distance between the threaded rod (172) and the first cross post (152); The binding mechanism (180) is mounted on the hand lever (165) and is configured to bind the hand lever (165) to the metal tube.

2. The portable pipeline detection device according to claim 1, characterized in that, It also includes a cable storage component (120) disposed on the clamp (110).

3. The portable pipeline detection device according to claim 1, characterized in that, The assembly mechanism (130) includes a first ferrule (131), a first locking member (132), and a second ferrule (133). The first ferrule (131) and the second ferrule (133) are fitted onto different handles of the clamp (110), and different first locking members (132) are threaded through the first ferrule (131) and the second ferrule (133), respectively.

4. A portable pipeline detection device according to claim 3, characterized in that, The transmission mechanism (150) includes a gear ring (151), a first horizontal column (152), a first vertical column (153), a first bevel gear transmission component (154), a second bevel gear transmission component (155), a third bevel gear transmission component (156), a U-shaped rod (157), a gear (158), a second horizontal column (159), and a second vertical column (1590). One end of the gear ring (151) is fixed to the outer wall of the first sleeve (131). The lower end of the first vertical column (153) is rotatably disposed on the upper surface of the bracket (140). One end of the U-shaped rod (157) is fixed to the upper surface of the bracket (140). The upper end of the second vertical column (1590) is rotatably disposed on the other end of the U-shaped rod (157) through a bearing. The first horizontal column (152) and the second horizontal column (159) are rotatably mounted on the bracket (140) via bearings. The first horizontal column (152) and the first vertical column (153) are connected together by the first bevel gear transmission member (154). The first vertical column (153) and the second horizontal column (159) are connected together by the second bevel gear transmission member (155). The second horizontal column (159) and the second vertical column (1590) are connected together by the third bevel gear transmission member (156). The gear (158) is fixed on the second vertical column (1590). The gear (158) meshes with the gear ring (151).

5. A portable pipeline detection device according to claim 1, characterized in that, The first extension mechanism (160) includes a connecting rod (161), a threaded post (163), a first nut (164), and a handheld rod (165). One end of the connecting rod (161) is fixed to the outer wall of the bracket (140), and the handheld rod (165) is slidably inserted into the connecting rod (161). A first through hole (162) is provided on the connecting rod (161). One end of the threaded post (163) is fixed to the outer wall of the handheld rod (165), and the threaded post (163) passes through the first through hole (162). The first nut (164) is threaded onto the threaded post (163).

6. A portable pipeline detection device according to claim 4, characterized in that, The second extension mechanism (170) includes a frame (171), a threaded rod (172), a second nut (173), and a slider (175). One end of the first crossbar (152) is fixed to the outer wall of the frame (171). The threaded rod (172) passes through the frame (171). The second nut (173) is threaded onto the threaded rod (172). There are two second nuts (173), which are distributed on both sides of the frame (171). The slider (175) is fixed to one end of the threaded rod (172). A groove (176) is provided on the frame (171), and the slider (175) is slidably disposed on the groove (176).

7. A portable pipeline detection device according to claim 6, characterized in that, It also includes a knob (174) which is fixed to the other end of the threaded rod (172).

8. A portable pipeline detection device according to claim 5, characterized in that, The binding mechanism (180) includes a strap (181), a Velcro strap (182), a connecting strap (183), and a guide sleeve (184). One end of the strap (181) and one end of the connecting strap (183) are fixed to the end of the hand handle (165). The Velcro strap (182) is disposed on the strap (181). The other end of the connecting strap (183) is fixed to the guide sleeve (184). A second through hole (185) is provided on both the connecting strap (183) and the guide sleeve (184).