Tension detection device for constructional engineering detection

By using a telescopic slide bar and slide tube structure, combined with a motor-driven tensile testing device, the problems of large device size and difficult material installation are solved, and convenient length adjustment and testing operations are realized.

CN223711244UActive Publication Date: 2025-12-23哈尔滨兴旺建设工程质量检测有限公司
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202423145498.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-19
Publication Date
2025-12-23
Estimated Expiration
2034-12-19

AI Technical Summary

Technical Problem

Existing tensile testing devices for building engineering testing are large in size, inconvenient to operate, difficult to transport, and some materials are too long to be installed, making testing difficult.

Method used

It adopts a telescopic sliding rod and sliding tube structure, combined with a motor-driven tensile testing box and motor box. The measuring length is adjusted by adjusting the overlapping part of the sliding rod and sliding tube, and the material is fixed by clamps and fastening seats. The motor drives the tensile test.

Benefits of technology

It enables convenient length adjustment and fixation, simplifies the material installation process, and improves the portability and operational efficiency of testing.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223711244U_ABST
    Figure CN223711244U_ABST
Patent Text Reader

Abstract

The utility model belongs to the technical field of engineering instruments, and particularly relates to a tension detection device for constructional engineering detection, which comprises a tension detection box, the right side of the tension detection box is provided with a motor box with the same size, and the right end of the tension detection box is fixedly connected with two horizontally arranged sliding rods and is close to the bottom end of the tension detection box. Two sliding pipes are fixedly connected to the left end of the motor box and are slidably inserted into the two sliding rods respectively, four fixing blocks which are rotationally symmetrical about the centers of the sliding pipes are fixedly connected to the left ends of the sliding pipes, and a vertically-arranged baffle ring is jointly and fixedly connected to the left ends of the four fixing blocks. According to the utility model, the telescopic sliding rod and the sliding pipe are adopted, a detection instrument and a tension machine are independently operated and combined together, and different measurement lengths can be adjusted according to actual conditions to install materials needing to be measured.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to engineering instrument technical field especially relates to a building engineering detects with tension detection device. BACKGROUND

[0002] The tension detection device for building engineering detection is usually used for measuring the tensile force of building components, materials or connecting pieces under the stress state to ensure the safety and reliability of the structure, and is widely applied to the detection of steel structure, concrete structure, rigging and other components.

[0003] But most of the detection equipment is large in size, or inconvenient to operate, inconvenient for personnel detection and carrying, and part of the materials to be detected is inconvenient to cut, so that the material is too long to cause difficult installation, which brings inconvenience to the subsequent detection.

[0004] To solve the above problems, we propose a tension detection device for building engineering detection. UTILITY MODEL CONTENTS

[0005] The utility model aims at solving the problems in the background art and proposes a tension detection device for building engineering detection.

[0006] In order to achieve the above purpose, the utility model adopts the following technical scheme: a tension detection device for building engineering detection, including tension detection box, the right side of tension detection box is provided with the motor box of same size, the right end of tension detection box is fixedly connected with two horizontally arranged slide rods and is close to the bottom end of tension detection box, the left end of motor box is fixedly connected with two slide pipes and is respectively slidably inserted on two slide rods, the left end of slide pipe is fixedly connected with four fixed blocks which are rotationally symmetrical about the center of slide pipe, the left end of four fixed blocks is fixedly connected with the vertically arranged blocking ring, the right end of blocking ring is fixedly connected with four clamping plates and is respectively located between two adjacent fixed blocks, the outer wall of slide pipe is rotatably sleeved with rotating drum one, and the front end of rotating drum one is sleeved on four clamping plates, the outer wall of rotating drum one is fixedly connected with four rotating handles which are rotationally symmetrical about rotating drum one, the right end center of tension detection box is fixedly connected with support seat and fastening seat and is connected with the instrument in its interior;

[0007] The right end of the motor box is provided with a sliding groove one, a supporting seat is slidingly inserted in the sliding groove one, two horizontally arranged sliding blocks are fixedly connected to the outer side wall of the supporting seat and close to the rear end of the supporting seat, a horizontally arranged fastening seat is fixedly connected to the center of the left end of the supporting seat, a horizontally arranged threaded rod is fixedly connected to the center of the right end of the supporting seat, a rotary table is fixedly connected to the driving end of the motor in the motor box and located in the sliding groove one, a rotary drum two is fixedly connected to the center of the left end of the rotary table and threadedly sleeved with the right end of the threaded rod, and a power supply is arranged in the motor box and the lead wire is connected between the tension detection box and the motor box and located between the two sliding rods.

[0008] In the tension detection device for building engineering detection, rotating seats are arranged at the centers of the top ends of the tension detection box and the motor box, handles are fixedly connected to the two rotating seats and engaged with each other at the ends close to each other, and round holes one are formed in the ends close to each other of the two handles and plug rods are fixedly connected to the round holes one and slidingly inserted in the round holes one.

[0009] In the tension detection device for building engineering detection, a display screen for conveniently observing data is arranged at the center of the front end of the tension detection box.

[0010] In the tension detection device for building engineering detection, the thicknesses of the four fixed blocks are smaller than the thickness of the sliding pipe and the fixed blocks are attached to the inner wall of the sliding pipe, and the outer diameter of the blocking ring is equal to the outer diameter of the rotary drum one.

[0011] In the tension detection device for building engineering detection, two sliding grooves two parallel to the sliding groove one are formed in the front end of the motor box and the same as the sliding groove one, and the two sliding blocks are slidingly inserted in the two sliding grooves two respectively.

[0012] In the tension detection device for building engineering detection, a square recess is formed in the right end of the fastening seat, two round holes two penetrating through the fastening seat are arranged at the front end of the fastening seat and communicated with the recess, and bolts are rotatably inserted in the front and rear ends of the round hole two on the left side.

[0013] Compared with the prior art, the tension detection device for building engineering detection has the following advantages:

[0014] The tension detection device for building engineering detection can adjust different measurement lengths according to actual conditions to install materials to be measured. BRIEF DESCRIPTION OF DRAWINGS

[0015] Fig. 1 The utility model discloses a kind of tension detection devices for building engineering detection, as shown in the figure, including tension detection box, motor box, sliding pipe, sliding block, fixed block, blocking ring, rotary drum one, rotary table, threaded rod, handle, round hole one, plug rod, display screen, sliding groove one, fastening seat, round hole two, bolt, power supply and lead wire.

[0016] Fig. 2 A three-dimensional view of the tensile testing device for building engineering detection is provided in the utility model.

[0017] Fig. 3 A partial exploded view of the tensile testing device for building engineering detection is provided in the utility model.

[0018] In the figure: 1 tensile testing box, 2 motor box, 3 sliding rod, 4 sliding pipe, 5 blocking ring, 6 fixed block, 7 clamping plate, 8 rotating drum one, 9 rotating handle, 10 support seat, 11 sliding block, 12 fastening seat, 13 bolt, 14 threaded rod, 15 rotating drum two, 16 rotating table, 17 wire, 18 rotating seat, 19 handle, 20 insertion rod, 21 display screen. DETAILED DESCRIPTION

[0019] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments.

[0020] Referring to Figs. 1-3 A tensile testing device for building engineering detection, comprising a tensile testing box 1, a motor box 2 of the same size is arranged on the right side of the tensile testing box 1, two horizontally arranged sliding rods 3 are fixedly connected to the right end of the tensile testing box 1 and close to the bottom end of the tensile testing box 1, two sliding pipes 4 are fixedly connected to the left end of the motor box 2 and are slidingly inserted into the two sliding rods 3 respectively, four fixed blocks 6 that are rotationally symmetrical about the center of the sliding pipe 4 are fixedly connected to the left end of the sliding pipe 4, the thickness of the four fixed blocks 6 is less than the thickness of the sliding pipe 4 and the four fixed blocks 6 are attached to the inner wall of the sliding pipe 4, a vertically arranged blocking ring 5 is fixedly connected to the left end of the four fixed blocks 6, the outer diameter of the blocking ring 5 is equal to the outer diameter of the rotating drum one 8, four clamping plates 7 are fixedly connected to the right end of the blocking ring 5 and are located between the adjacent two fixed blocks 6 respectively, the rotating drum one 8 is rotatably sleeved on the outer side wall of the sliding pipe 4 and the front end of the rotating drum one 8 is sleeved on the four clamping plates 7, the outer diameter of the blocking ring 5 is equal to the outer diameter of the rotating drum one 8, four rotating handles 9 that are rotationally symmetrical about the rotating drum one 8 are fixedly connected to the outer side wall of the rotating drum one 8, a support seat 10 and a fastening seat 12 are fixedly connected to the center of the right end of the tensile testing box 1 and are connected to the instruments inside the tensile testing box 1;

[0021] The right end of the motor box 2 is provided with a sliding groove one, a supporting seat 10 is slidingly inserted in the sliding groove one, two horizontally arranged sliding blocks 11 are fixedly connected to the outer side wall of the supporting seat 10 and close to the rear end of the supporting seat 10, the front end of the motor box 2 is provided with two sliding grooves two parallel to the sliding groove one and same as the sliding groove one, the two sliding blocks 11 are respectively slidingly inserted in the two sliding grooves two, the left end center of the supporting seat 10 is fixedly connected with a horizontally arranged fastening seat 12, a square recess is formed in the right end of the fastening seat 12, two round holes two penetrating through the whole fastening seat 12 are arranged in the front end of the fastening seat 12 and all communicate with the recess, the front and rear ends of the round hole two on the left side are rotatably inserted with bolts 13, the right end center of the supporting seat 10 is fixedly connected with a horizontally arranged threaded rod 14, the motor driving end in the motor box 2 is fixedly connected with a rotating table 16 and located in the sliding groove one, the center of the left end of the rotating table 16 is fixedly connected with a rotating drum two 15 and threadedly sleeved with the right end of the threaded rod 14, a power supply is arranged in the motor box 2 and wires 17 are connected between the tension detection box 1 and the motor box 2 and located between the two slide rods 3.

[0022] The device can adjust the installation length to be measured by adjusting the overlapping part of the sliding pipe 4 and the slide rod 3, when the distance is determined, the four clamping plates 7 on the sliding pipe 4 can move to the left under the rotation of the rotating drum one 8, the clamping plates 7 are fastened to be attached to the slide rod 3, the measuring distance is fixed, then the measuring material is placed on the fastening seat 12 of the tension detection box 1 and the motor box 2, then the motor is started, the rotating drum two 15 rotates to retract the threaded rod 14, drives the supporting seat 10 on the motor box 2 to move to the right, and the measuring material is subjected to the tension test.

[0023] The top centers of the tension detection box 1 and the motor box 2 are rotatably provided with rotating seats 18, the two rotating seats 18 are fixedly connected with handles 19 and the mutually close ends of the two handles 19 are engaged with each other, the mutually close ends of the two handles 19 are provided with round holes one and fixedly connected with insertion rods 20 and the insertion rods 20 are slidingly inserted in the round holes one, the front center of the tension detection box 1 is provided with a display screen 21 for conveniently observing data.

[0024] The measured data is displayed on the display screen 21, and the handles 19 on the tension detection box 1 and the motor box 2 can be conveniently lifted on one side when separated, and the whole can be conveniently carried when engaged.

[0025] The above only describes the preferred embodiments of the present application and is not used to limit the present application, any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A tension detection device for construction engineering detection, comprising a tension detection box (1), characterized in that, The right side of the tension detection box (1) is provided with a motor box (2) of the same size, the right end of the tension detection box (1) is fixedly connected with two horizontally arranged slide rods (3) and is close to the bottom end of the tension detection box (1), the left end of the motor box (2) is fixedly connected with two slide pipes (4) and is slidably inserted into the two slide rods (3) respectively, the left end of the slide pipe (4) is fixedly connected with four fixed blocks (6) which are rotationally symmetrical about the center of the slide pipe (4), the left end of the four fixed blocks (6) is fixedly connected with a vertically arranged blocking ring (5) in common, the right end of the blocking ring (5) is fixedly connected with four clamping plates (7) and is located between the adjacent two fixed blocks (6) respectively, a rotating cylinder one (8) is rotatably sleeved on the outer side wall of the slide pipe (4) and the front end of the rotating cylinder one (8) is sleeved on the four clamping plates (7), four rotating handles (9) which are rotationally symmetrical about the rotating cylinder one (8) are fixedly connected to the outer side wall of the rotating cylinder one (8), the right end center of the tension detection box (1) is fixedly connected with a support seat (10) and a fastening seat (12) and is connected with the instruments in the inside thereof; A sliding groove one is formed in the right end of the motor box (2), the support seat (10) is slidably inserted into the sliding groove one, two horizontally arranged slide blocks (11) are fixedly connected to the outer side wall of the support seat (10) and are close to the rear end of the support seat (10), a horizontally arranged fastening seat (12) is fixedly connected to the left end center of the support seat (10), a horizontally arranged threaded rod (14) is fixedly connected to the right end center of the support seat (10), a rotating table (16) is fixedly connected to the driving end of the motor in the motor box (2) and is located in the sliding groove one, a rotating cylinder two (15) is fixedly connected to the left end center of the rotating table (16) and is threadedly sleeved on the right end of the threaded rod (14), a power supply is arranged in the motor box (2) and wires (17) are connected between the tension detection box (1) and the motor box (2) and are located between the two slide rods (3).

2. The tension detection device for construction engineering detection according to claim 1, characterized in that, Rotating seats (18) are rotatably arranged at the top centers of the tension detection box (1) and the motor box (2), handles (19) are fixedly connected to the rotating seats (18) and are engaged with each other at the ends close to each other, circular holes one are formed in the ends close to each other of the two handles (19) and insertion rods (20) are fixedly connected to the circular holes one and are slidably inserted into the circular holes one.

3. The tension detection device for construction work detection according to claim 1, characterized by A display screen (21) is arranged at the front end center of the tension detection box (1) for conveniently observing data.

4. The tension detection device for construction work detection according to claim 1, characterized by The thicknesses of the four fixed blocks (6) are all less than the thickness of the slide pipe (4) and are attached to the inner wall of the slide pipe (4), the outer diameter of the blocking ring (5) is equal to the outer diameter of the rotating cylinder one (8).

5. The tension detection device for construction work detection according to claim 1, characterized by Two sliding grooves two which are parallel to the sliding groove one and are the same as the sliding groove one are formed in the front end of the motor box (2), the two slide blocks (11) are slidably inserted into the two sliding grooves two respectively.

6. The tension detection device for construction work detection according to claim 1, characterized by A square recess is formed in the right end of the fastening seat (12), two circular holes two which penetrate through the whole fastening seat (12) are formed in the front end of the fastening seat (12) and are communicated with the recess, the bolts (13) are rotatably inserted into the circular holes two at the left side.