Reinforced belt for lap joint detection of soft mattress and soft mattress structure
By installing red and blue reflective strips and a binding structure on the underwater soft raft, the accuracy and stability issues of underwater soft raft overlap detection were resolved, the operation process was simplified, and the detection efficiency and the labor efficiency of the staff were improved.
Patent Information
- Application Number
- CN202520825329.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-28
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-04-28
AI Technical Summary
In the inspection of underwater soft slab overlaps, existing technologies cannot effectively identify reinforcing strips, resulting in inaccurate test results. Furthermore, the stability of underwater soft slab overlaps is poor, and the use of long sandbags is time-consuming and labor-intensive, making it difficult to guarantee stability.
The sandbags are reinforced with red and blue reflective tape and a binding structure. The red reflective tape is used to check the design overlap width, and the blue reflective tape is used to check the minimum overlap width. The binding structure secures the sandbags with threaded heads and fastening nuts to ensure stability.
It has improved the accuracy and stability of underwater soft panel splicing inspection, simplified the operation process, and improved inspection efficiency and staff productivity.
Smart Images

Figure CN223949354U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to soft body row technical field, concretely is reinforced belt and soft body row structure for soft body row lap joint detection. BACKGROUND
[0002] In the underwater soft body row laying acceptance process, underwater exploration is often needed: the diver dives to detect the soft body row lap joint condition. The soft body row refers to the plastic cloth made of artificial synthetic polyolefin material for the construction of revetment.
[0003] The current soft body row lap joint detection technical scheme is to set red reinforced belts at the position of the designed lap joint width, and set blue reinforced belts at the position of half of the designed lap joint width. When the diver does not see the red reinforced belt after diving, it meets the soft body row lap joint requirement, and when the diver does not see the blue reinforced belt, it meets the minimum lap joint requirement. However, in the actual exploration process, the underwater visibility is often insufficient or the reinforced belts cannot be identified due to equipment reasons, which leads to the inability to inspect the underwater soft body row lap joint quality.
[0004] The existing soft body row lap joint has poor stability, and the sand rib soft body row generally has a ring for fixing the sand rib pre-sewn on the geotextile. Then, sand is filled in the long sand bag, and then the staff moves the long sand bag filled with sand segment by segment and inserts it into the rings one by one. The overall operation is time-consuming and labor-intensive, increases the labor intensity of the staff, and cannot guarantee the stability of the long sand bag. Therefore, it is necessary to provide a reinforced belt and soft body row structure for soft body row lap joint detection to solve the above problems. UTILITY MODEL CONTENTS
[0005] In view of the deficiencies of the prior art, the utility model provides a reinforced belt and soft body row structure for soft body row lap joint detection, which solves the problems mentioned in the background.
[0006] The utility model provides the following technical scheme: a reinforced belt for soft body row lap joint detection is arranged on non-woven geotextile, comprising a first mark reinforced belt and a second mark reinforced belt, a red reflective belt is arranged on the first mark reinforced belt, and a blue reflective belt is arranged on the second mark reinforced belt.
[0007] Preferably, the distance between the second mark reinforced belt and the edge of the non-woven geotextile is the minimum lap joint width requirement, and the distance between the first mark reinforced belt and the edge of the non-woven geotextile is the designed lap joint width requirement.
[0008] Preferably, the red reflective belt and the blue reflective belt are both arranged with a plurality of high-reflectivity materials, a plurality of red reflective belts are arranged equidistantly on the first mark reinforced belt, and a plurality of blue reflective belts are arranged equidistantly on the second mark reinforced belt.
[0009] The soft body row structure comprises a non-woven geotextile, a reinforcing belt and a plurality of sandbags, the sandbags are equidistantly arranged on the non-woven geotextile, and a plurality of binding structures are equidistantly arranged on the front surface of the non-woven geotextile and located on both sides of the sandbags.
[0010] Preferably, the binding structure comprises a binding belt, a threaded head and a fastening nut, the binding belt is fixedly connected with the non-woven geotextile through a sewing line, the threaded head is arranged at one end of the binding belt, and the threaded head is threadedly connected with the fastening nut.
[0011] Preferably, a plurality of fixing holes are equidistantly arranged at one end of the binding belt away from the threaded head.
[0012] Preferably, a first tie is arranged on one side of the non-woven geotextile, and a second tie is arranged on the side of the non-woven geotextile away from the first tie.
[0013] Preferably, a plurality of anchor rod holes are equidistantly arranged on both sides of the non-woven geotextile.
[0014] Compared with the prior art, the utility model has the following beneficial effects:
[0015] 1. The soft body row joint detection reinforcing belt, by setting up red reflective belt and blue reflective belt, when the diver dives to detect the quality of the underwater soft body row joint, the lighting equipment is used to irradiate the joint, when the lighting beam irradiates to the reflective belt, the reflective material reflects the light to form obvious light spot, through identifying the reflective condition and the reflective color, the underwater soft body row joint condition is judged, and the detection result is real and reliable.
[0016] 2. The soft body row structure, through setting up the binding structure, the staff can directly place the sandbag filled with sand between the two binding structures, because the amount of sand filled in the different sandbags is different, the girth of the sandbag is different, according to the girth of the sandbag, the threaded head on the binding belt on one side of the sandbag is selected and passed through the fixing hole on the binding belt on the other side of the sandbag, and then the fastening nut is tightened, so that the binding belt can effectively bind the sandbag, the stability of the sandbag is guaranteed, the overall operation is simple, time and labor are saved. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 It is a structure schematic view of the soft body row joint detection reinforcing belt and the soft body row structure in the joint state.
[0018] Figure 2 It is a partial structure schematic view of the soft body row.
[0019] Figure 3 It is an installation structure schematic view of the reinforcing belt.
[0020] Figure 4The utility model discloses soft body row away from the structure schematic drawing of reinforcing belt one end.
[0021] Figure 5 The utility model discloses the structure schematic drawing of binding structure.
[0022] In the drawing: 1, non-woven geotextile; 2, first sign reinforcing belt; 201, red reflective tape; 3, second sign reinforcing belt; 301, blue reflective tape; 4, long sandbag; 5, binding structure; 501, binding belt; 502, screw head; 503, fastening nut; 504, fixed hole; 6, first tie; 7, second tie; 8, anchor hole. Specific implementation
[0023] The technical scheme in the embodiments of the utility model will be apparently and completely described below with the drawings in the embodiments of the utility model, and apparently, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by the person skilled in the art without making creative labor belong to the range of protection of the utility model.
[0024] Please refer to Figures 1-5 The reinforcing belt is arranged on the non-woven geotextile 1 and comprises the first sign reinforcing belt 2 and the second sign reinforcing belt 3.
[0025] The distance between the second sign reinforcing belt 3 and the edge of the non-woven geotextile 1 is the minimum lap width requirement, the distance between the first sign reinforcing belt 2 and the edge of the non-woven geotextile 1 is the design lap width requirement, the red reflective tape 201 and the blue reflective tape 301 are all arranged in plurality and are made of high reflectivity material, the plurality of red reflective tapes 201 are arranged equidistantly on the first sign reinforcing belt 2, and the plurality of blue reflective tapes 301 are arranged equidistantly on the second sign reinforcing belt 3. When a diver detects the lap quality of the underwater soft body row, a lighting device is used to irradiate the lap, when the illumination beam irradiates the reflective tape, the light reflected by the reflective material forms obvious light spots. According to the reflective color and distribution of the reflective tape, the diver can quickly judge whether the lap width meets the standard: if there is no red reflective tape 201 light spot in the lap area, it indicates that the lap width meets the design requirement; if there is only red reflective tape 201 light spot but no blue reflective tape 301 light spot, it indicates that the lap width meets the minimum requirement; if there are red and blue light spots at the same time, the lap width is insufficient and needs to be adjusted; by identifying the reflective condition and reflective color, the lap condition of the underwater soft body row can be judged, so that the detection result is real and reliable.
[0026] The soft body row structure comprises a non-woven geotextile 1, a reinforcing belt and a plurality of sandbags 4, the sandbags 4 are arranged at equal distances on the non-woven geotextile 1, and a plurality of binding structures 5 are arranged at equal distances on the front side of the non-woven geotextile 1 and on both sides of the sandbags 4.
[0027] The binding structure 5 comprises a binding belt 501, a threaded head 502 and a fastening nut 503, the binding belt 501 is fixedly connected to the non-woven geotextile 1 through a sewing line, the threaded head 502 is arranged at one end of the binding belt 501, the threaded head 502 is threadedly connected to the fastening nut 503, a plurality of fixing holes 504 are arranged at equal distances at the end of the binding belt 501 away from the threaded head 502, the sandbag 4 filled with sand can be directly placed between the two binding structures 5, the circumference of the sandbag 4 is different due to the difference in the amount of sand filled in the sandbag 4, the threaded head 502 on one side of the binding belt 501 of the sandbag 4 is selected according to the circumference of the sandbag 4, the fixing hole 504 on the other side of the binding belt 501 of the sandbag 4 is selected and passed through, and then the fastening nut 503 is tightened, so that the binding belt 501 can effectively bind the sandbag 4, the stability of the sandbag 4 is ensured, the overall operation is simple, time and labor are saved.
[0028] The first tie 6 is arranged on one side of the non-woven geotextile 1, the second tie 7 is arranged on the side of the non-woven geotextile 1 away from the first tie 6, a plurality of anchor rod holes 8 are arranged at equal distances on both sides of the non-woven geotextile 1, when the two soft body row structures are overlapped, one underwater soft body row is pressed and covered on the other underwater soft body row, the anchor rod holes 8 at the overlapping position are corresponded one by one and inserted into the anchor rod, and the first tie 6 and the second tie 7 are tied to each other, so that the stability of the overlapping position of the two soft body rows can be effectively ensured.
[0029] The sandbag 4 filled with sand can be directly placed between the two binding structures 5, the circumference of the sandbag 4 is different due to the difference in the amount of sand filled in the sandbag 4, the threaded head 502 on one side of the binding belt 501 of the sandbag 4 is selected according to the circumference of the sandbag 4, the fixing hole 504 on the other side of the binding belt 501 of the sandbag 4 is selected and passed through, and then the fastening nut 503 is tightened, so that the binding belt 501 can effectively bind the sandbag 4, the stability of the sandbag 4 is ensured, the overall operation is simple, time and labor are saved, when the two soft body row structures are overlapped, one underwater soft body row is pressed and covered on the other underwater soft body row, the anchor rod holes 8 at the overlapping position are corresponded one by one and inserted into the anchor rod, and the first tie 6 and the second tie 7 are tied to each other, so that the stability of the overlapping position of the two soft body rows can be effectively ensured.
[0030] Further, when the diver dives to detect the joint quality of the underwater flexible pipeline, the lighting device is used to irradiate the joint, when the lighting beam irradiates the reflective tape, the reflective material reflects the light to form obvious light spots. According to the color and distribution of the reflective tape, the diver can quickly judge whether the joint width meets the standard: if there is no red light spot reflected by the red reflective tape 201 in the joint area, it indicates that the joint width meets the design requirement; if only the red reflective tape 201 has a light spot but no blue light spot, it indicates that the joint width meets the minimum requirement; if red and blue light spots appear at the same time, the joint width is insufficient and needs to be adjusted; by identifying the reflective condition and the reflective color, the joint condition of the underwater flexible pipeline can be judged, so that the detection result is true and reliable.
[0031] Although the embodiments of the present application have been shown and described, it should be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.
Claims
1. A reinforcing tape for detecting a soft body overlap, provided on a nonwoven geotextile (1), characterized in that, Including first sign reinforced band (2) and second sign reinforced band (3), the first sign reinforced band (2) is provided with red reflective tape (201), the second sign reinforced band (3) is provided with blue reflective tape (301).
2. The belt according to claim 1, wherein The second sign reinforced band (3) is away from the edge of non-woven geotextile (1) minimum lap width requirement, the first sign reinforced band (2) is away from the edge of non-woven geotextile (1) design lap width requirement.
3. The belt according to claim 1, wherein The red reflective tape (201) and blue reflective tape (301) are provided with several, and are made of high reflectivity material, several red reflective tape (201) are equidistantly arranged on the first sign reinforced band (2), and several blue reflective tape (301) are equidistantly arranged on the second sign reinforced band (3).
4. The software arrangement, characterized by Including non-woven geotextile (1), reinforced band and long sandbag (4), the long sandbag (4) is provided with several, several long sandbag (4) are equidistantly arranged on the non-woven geotextile (1), and the front of the non-woven geotextile (1) and the two sides of the long sandbag (4) are equidistantly provided with several binding structures (5).
5. The soft body armor structure of claim 4, wherein, The binding structure (5) includes binding band (501), threaded head (502) and fastening nut (503), the binding band (501) is fixedly connected with the non-woven geotextile (1) through sewing thread, the threaded head (502) is arranged at one end of the binding band (501), and the threaded head (502) is threadedly connected with the fastening nut (503).
6. The soft body armor structure of claim 5, wherein, The binding band (501) is equidistantly provided with several fixing holes (504) away from one end of the threaded head (502).
7. The soft body armor structure of claim 6, wherein, One side of the non-woven geotextile (1) is provided with first tie (6), and the side of the non-woven geotextile (1) away from the first tie (6) is provided with second tie (7).
8. The soft body armor structure of claim 7, wherein, The non-woven geotextile (1) is provided with several anchor rod holes (8) equidistantly on both sides.