CN117848264A - Portable spraying check out test set - Google Patents
Portable spraying check out test set Download PDFInfo
- Publication number
- CN117848264A CN117848264A CN202410267771.0A CN202410267771A CN117848264A CN 117848264 A CN117848264 A CN 117848264A CN 202410267771 A CN202410267771 A CN 202410267771A CN 117848264 A CN117848264 A CN 117848264A
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- Prior art keywords
- block
- groove
- detection
- rod
- fixedly connected
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- Granted
Links
- 238000005507 spraying Methods 0.000 title description 3
- 238000001514 detection method Methods 0.000 claims abstract description 95
- 239000007921 spray Substances 0.000 claims abstract description 14
- 238000003860 storage Methods 0.000 claims description 30
- 238000007689 inspection Methods 0.000 claims description 6
- 230000000903 blocking effect Effects 0.000 claims description 4
- 239000003973 paint Substances 0.000 claims description 4
- 239000003292 glue Substances 0.000 claims description 3
- 239000011248 coating agent Substances 0.000 abstract description 40
- 238000000576 coating method Methods 0.000 abstract description 40
- 239000000463 material Substances 0.000 abstract description 6
- 238000009413 insulation Methods 0.000 description 27
- 239000006260 foam Substances 0.000 description 8
- 229920002635 polyurethane Polymers 0.000 description 7
- 239000004814 polyurethane Substances 0.000 description 7
- 230000007547 defect Effects 0.000 description 2
- 230000000694 effects Effects 0.000 description 2
- 238000001125 extrusion Methods 0.000 description 2
- 239000011810 insulating material Substances 0.000 description 2
- 238000005259 measurement Methods 0.000 description 2
- 230000009286 beneficial effect Effects 0.000 description 1
- 238000010276 construction Methods 0.000 description 1
- 238000010586 diagram Methods 0.000 description 1
- 238000005553 drilling Methods 0.000 description 1
- 238000000034 method Methods 0.000 description 1
- 238000012986 modification Methods 0.000 description 1
- 230000004048 modification Effects 0.000 description 1
- 239000002245 particle Substances 0.000 description 1
- 238000003825 pressing Methods 0.000 description 1
- 238000005096 rolling process Methods 0.000 description 1
- 238000007711 solidification Methods 0.000 description 1
- 230000008023 solidification Effects 0.000 description 1
- 239000011493 spray foam Substances 0.000 description 1
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 description 1
Classifications
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01B—MEASURING LENGTH, THICKNESS OR SIMILAR LINEAR DIMENSIONS; MEASURING ANGLES; MEASURING AREAS; MEASURING IRREGULARITIES OF SURFACES OR CONTOURS
- G01B21/00—Measuring arrangements or details thereof, where the measuring technique is not covered by the other groups of this subclass, unspecified or not relevant
- G01B21/02—Measuring arrangements or details thereof, where the measuring technique is not covered by the other groups of this subclass, unspecified or not relevant for measuring length, width, or thickness
- G01B21/08—Measuring arrangements or details thereof, where the measuring technique is not covered by the other groups of this subclass, unspecified or not relevant for measuring length, width, or thickness for measuring thickness
Landscapes
- Physics & Mathematics (AREA)
- General Physics & Mathematics (AREA)
- Building Environments (AREA)
- Coating Apparatus (AREA)
Abstract
The invention relates to the technical field of spray material detection equipment, in particular to portable spray material detection equipment, which comprises: the mounting rack and the mounting rod; the mounting rod is fixedly connected in the mounting frame; the mounting rod is provided with a first groove and a second groove, and the mounting rod is in sliding fit with a first block and a second block; the first block and the second block are respectively in sliding fit with the first groove and the second groove; a pair of detection grooves are formed in the second telescopic block; the detection groove is internally and slidably connected with a detection rod, and a detection pressure sensor is fixedly connected in the detection groove; a detection spring is fixedly connected between the detection pressure sensor and the detection rod; according to the invention, a hole is drilled on the heat-insulating coating by rotating the drill bit, then one detection rod is inserted into the hole, the other detection rod is contacted with the heat-insulating coating, and the thickness of the heat-insulating coating is calculated by the pressure difference transmitted to the detection pressure sensor by the two detection rods and the detection spring, so that the detection is completed.
Description
Technical Field
The invention relates to the technical field of spray material detection equipment, in particular to portable spray material detection equipment.
Background
After construction is completed, the building is often required to be sprayed with heat-insulating materials to meet heat-insulating requirements, and common heat-insulating materials include polyurethane spray foam, water-based spray heat-insulating paint and the like; the polyurethane heat-insulating foam is sprayed on the surface of a building by adopting a spray gun and is adhered to the building, and the heat-insulating foam provides a heat-insulating effect for the building after solidification;
after the polyurethane heat-insulating foam is cured on a building, the cured polyurethane heat-insulating foam needs to be detected, wherein the thickness measurement is the most important, after the polyurethane heat-insulating foam is cured on the wall surface of the building, the surface of the polyurethane heat-insulating foam is rough, foam particles are uneven, the thickness of the polyurethane heat-insulating foam is thinner, the whole wall surface is covered, and the measurement is inconvenient, so that the limitation is caused.
To this end, we propose a portable spray inspection device.
Disclosure of Invention
Aiming at the defects of the prior art, the invention provides portable spraying detection equipment, overcomes the defects of the prior art and aims at solving the problems in the background art.
In order to achieve the above purpose, the present invention provides the following technical solutions: a portable spray detection device comprising:
the mounting rack and the mounting rod; the mounting rod is fixedly connected in the mounting frame; the mounting rod is provided with a first groove and a second groove, and the mounting rod is in sliding fit with a first block and a second block; the first block and the second block are respectively in sliding fit with the first groove and the second groove; a first motor and a second motor are fixedly connected in the first groove and the second groove respectively; the output shafts of the first motor and the second motor are fixedly connected with screw rods which are in threaded fit with the first block and the second block;
a first expansion groove is formed in the first block; the first telescopic groove is in sliding connection with a first telescopic block, and a first telescopic electric push rod is fixedly connected in the first telescopic groove; the output end of the first telescopic electric push rod is fixedly connected with the first telescopic block; a second telescopic groove is formed in the second block; the second telescopic groove is in sliding connection with a second telescopic block, and a second telescopic electric push rod is fixedly connected in the second telescopic groove; the output end of the second telescopic electric push rod is fixedly connected with the second telescopic block;
a rotating motor is fixedly connected in the first telescopic block; the first telescopic block is rotatably connected with a rotating seat; a rotary drill bit is arranged on the rotary seat; a pair of detection grooves are formed in the second telescopic block; the detection groove is internally and slidably connected with a detection rod, and a detection pressure sensor is fixedly connected in the detection groove; and a detection spring is fixedly connected between the detection pressure sensor and the detection rod.
Preferably, the rotating seat is provided with a square groove; the rotary drill bit is connected in the square groove in a sliding mode, and a jacking spring is fixedly connected between the rotary drill bit and the square groove.
And (3) drilling a hole in the heat-insulating coating by rotating the drill bit, inserting one detection rod into the hole, contacting the other detection rod with the heat-insulating coating, and calculating the thickness of the heat-insulating coating by transmitting the pressure difference to the detection pressure sensor through the two detection rods and the detection spring, thereby completing detection.
Preferably, a square storage tube is arranged on the second telescopic block; the square storage tube is internally fixedly connected with a pushing electric push rod, and the square storage tube is internally connected with a pushing block in a sliding manner; repair blocks are stored in the square storage tubes side by side; glue is coated on the end face, away from the top block, of the repairing block; open slots are formed in two sides of the square storage tube; and the front end of the second telescopic block is fixedly connected with a top block.
Preferably, the top block is located on the same side of the two detection rods.
Preferably, a sliding groove is formed in the side wall of the second telescopic block; a sliding block is connected in the sliding groove in a sliding way, and a sliding spring is fixedly connected between the sliding groove and the sliding block; the square storage tube is fixedly connected with the sliding block.
Through setting up square storage tube and kicking block on the flexible piece of No. two to after the detection is accomplished, paste the interior piece of repairing of square storage tube in the hole that bores on the thermal insulation coating, the piece material of repairing is the same with the thermal insulation coating, thereby repair the thermal insulation coating, it is more pleasing to the eye.
Preferably, the detection rod consists of a first rod and a second rod; the first rod is of a tubular structure; the second rod is connected in the first rod in a sliding way; a first return spring is fixedly connected in the first rod; a clamping groove is formed in the inner wall of the first rod; a clamping block is connected in a sliding manner in the clamping groove; a clamping spring is fixedly connected between the clamping block and the clamping groove; the lower end of the second rod is obliquely arranged; the end surface of the clamping block, which is contacted with the second rod, is arranged in an inclined shape;
preferably, a blocking block is fixedly connected in the detection groove.
Preferably, the ball is hinged on the upper spherical surface of the clamping block.
The invention has the beneficial effects that:
1. according to the invention, a hole is drilled on the heat-insulating coating by rotating the drill bit, then one detection rod is inserted into the hole, the other detection rod is contacted with the heat-insulating coating, and the thickness of the heat-insulating coating is calculated by the pressure difference transmitted to the detection pressure sensor by the two detection rods and the detection spring, so that the detection is completed.
2. According to the invention, the square storage pipe and the top block are arranged on the second telescopic block, so that after detection is finished, the repairing block in the square storage pipe is stuck in the hole drilled on the heat insulation coating, and the repairing block is made of the same material as the heat insulation coating, so that the heat insulation coating is repaired, and the heat insulation coating is more attractive.
Drawings
FIG. 1 is a schematic diagram of the structure of the present invention;
FIG. 2 is an enlarged view of FIG. 1 at A;
FIG. 3 is a schematic view of another view of the present invention;
FIG. 4 is an enlarged view at B in FIG. 3;
FIG. 5 is a partial cross-sectional view of the first block, the first expansion block and the swivel mount from the cross-sectional view at C-C of FIG. 3;
FIG. 6 is a partial cross-sectional view of the second block, second expansion block and test stick from the cross-sectional view at D-D in FIG. 3;
fig. 7 is an enlarged view at E in fig. 6.
In the figure: 1. a mounting frame; 11. a mounting rod; 12. a first groove; 13. a second groove; 14. a first block; 15. a second block; 16. a motor I; 17. a motor II; 2. a first expansion groove; 21. a first telescopic block; 22. a first telescopic electric push rod; 23. a rotating motor; 24. a rotating seat; 25. rotating the drill bit; 3. a second telescopic groove; 31. a second telescopic block; 32. a second telescopic electric push rod; 33. a detection groove; 34. a detection rod; 35. detecting a pressure sensor; 36. detecting a spring; 4. square storage tube; 41. pushing the electric push rod; 42. repairing the block; 43. a top block; 5. a sliding groove; 51. a sliding block; 52. a sliding spring; 6. a square groove; 61. a top-moving spring; 341. a first rod; 342. a second rod; 7. a first return spring; 71. a clamping groove; 72. a clamping block; 73. a clamping spring; 74. a blocking piece; 75. and (3) rolling balls.
Detailed Description
The following description of the embodiments of the present invention will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present invention, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the invention without making any inventive effort, are intended to be within the scope of the invention.
Embodiment one: referring to fig. 1, 2 and 3 of the drawings, a portable spray inspection device comprises:
a mounting frame 1 and a mounting rod 11; the mounting rod 11 is fixedly connected in the mounting frame 1; the mounting rod 11 is provided with a first groove 12 and a second groove 13, and the mounting rod 11 is in sliding fit with a first block 14 and a second block 15; the first block 14 and the second block 15 are respectively in sliding fit with the first groove 12 and the second groove 13; a first motor 16 and a second motor 17 are respectively and fixedly connected in the first groove 12 and the second groove 13; the output shafts of the first motor 16 and the second motor 17 are fixedly connected with screw rods which are in threaded fit with the first block 14 and the second block 15;
the first block 14 is provided with a first expansion groove 2; a first telescopic block 21 is connected in a sliding manner in the first telescopic groove 2, and a first telescopic electric push rod 22 is fixedly connected in the first telescopic groove 2; the output end of the first telescopic electric push rod 22 is fixedly connected with the first telescopic block 21; a second telescopic groove 3 is formed in the second block 15; a second telescopic block 31 is connected in the second telescopic groove 3 in a sliding way, and a second telescopic electric push rod 32 is fixedly connected in the second telescopic groove 3; the output end of the second telescopic electric push rod 32 is fixedly connected with the second telescopic block 31;
a rotary motor 23 is fixedly connected in the first telescopic block 21; the first telescopic block 21 is rotatably connected with a rotating seat 24; the rotary seat 24 is provided with a rotary drill bit 25; the second telescopic block 31 is provided with a pair of detection grooves 33; a detection rod 34 is slidably connected in the detection groove 33, and a detection pressure sensor 35 is fixedly connected in the detection groove 33; a detection spring 36 is fixedly connected between the detection pressure sensor 35 and the detection rod 34.
Referring to fig. 5 of the drawings, in the present invention, a square groove 6 is formed in a rotating seat 24; the rotary drill bit 25 is connected in the square groove 6 in a sliding way, and a jacking spring 61 is fixedly connected between the rotary drill bit 25 and the square groove 6.
In the invention, a worker holds the mounting frame 1 by hand, the first block 14 and the second block 15 are aligned with the wall surface sprayed with the heat-insulating coating, then the controller controls the first motor 16 in the first groove 12 to drive the corresponding screw rod to rotate, so that the first block 14 moves to the middle, then the telescopic electric push rod in the first block 14 pushes the first telescopic block 21 to move forwards, the rotary motor 23 on the first telescopic block 21 drives the rotary seat 24 and the rotary drill bit 25 to rotate, so that the rotary drill bit 25 drills holes on the heat-insulating coating on the wall surface after contacting with the heat-insulating coating on the wall surface, then the first telescopic block 21 moves backwards to expose the holes on the heat-insulating coating, and the wall surface after the hole, the first block 14 and the second block 15 move, the first block 14 moves aside, the second block 15 moves to the middle position, then the second telescopic electric push rod 32 pushes the second telescopic block 31 to move forward, so that one detection rod 34 is inserted into the hole of the heat insulation coating and is contacted with the wall surface, the other detection rod 34 is contacted with the heat insulation coating, at the moment, the pressure values transmitted to the corresponding detection pressure sensors 35 by the two detection rods 34 through the detection springs 36 have a difference value, and the controller carries the pressure difference value F and the precision coefficient value K into the heat insulation coating according to the stiffness coefficient formula F=KX of the detection springs 36 to calculate X, thereby obtaining the thickness of the heat insulation coating;
in the invention, the rotary drill bit 25 is connected to the rotary seat 24 in a sliding way, the thrust of the pushing spring 61 enables the rotary drill bit 25 to be in contact with the heat insulation coating, and when a hole is drilled in the heat insulation coating, the thrust of the pushing spring 61 is insufficient to enable the rotary drill bit 25 to drill in the wall surface, so that only the heat insulation coating is ensured to drill in the hole, the wall surface is not drilled, and the condition that the hole in the wall surface is prevented from influencing the detection effect is prevented;
according to the invention, a hole is drilled on the thermal insulation coating by rotating the drill bit 25, then one detection rod 34 is inserted into the hole, the other detection rod 34 is contacted with the thermal insulation coating, and the thickness of the thermal insulation coating is calculated through the pressure difference transferred to the detection pressure sensor 35 by the two detection rods 34 and the detection spring 36, so that the detection is completed.
Referring to fig. 4 of the specification, in the present invention, a square storage tube 4 is mounted on a second expansion block 31; the square storage tube 4 is internally fixedly connected with a pushing electric push rod 41, and the square storage tube 4 is internally and slidably connected with a pushing block; the square storage tube 4 is internally provided with repair blocks 42 side by side; the end face of the repair block 42 facing away from the top block 43 is coated with glue; open slots are formed in two sides of the square storage tube 4; the front end of the second telescopic block 31 is fixedly connected with a top block 43.
In the present invention, the top block 43 is located on the same side of the two detection bars 34.
In the invention, the side wall of the second telescopic block 31 is provided with the sliding groove 5; a sliding block 51 is connected in the sliding groove 5 in a sliding way, and a sliding spring 52 is fixedly connected between the sliding groove 5 and the sliding block 51; the square storage tube 4 is fixedly connected with the sliding block 51.
In the invention, after detection is completed, the second telescopic block 31 is received in the second telescopic groove 3, then the second block 15 moves again, so that the top block 43 on the second telescopic block 31 is aligned with the hole on the heat insulation coating, then the electric push rod 41 is pushed forward to push the repairing block 42, the repairing block 42 is arranged in front of the top block 43, then the second telescopic electric push rod 32 pushes the second telescopic block 31 again, so that the top block 43 and the square storage tube 4 move forward together, and after the square storage tube 4 contacts with the heat insulation coating, the second telescopic block 31 and the top block 43 move forward again, so that the top block 43 presses the repairing block 42 into the hole on the heat insulation coating, and the hole drilled on the heat insulation coating is repaired; in the invention, the square storage tube 4 is in sliding fit with the second telescopic block 31, so that when the repair block 42 is pressed into the hole, the square storage tube 4 and the top block 43 relatively move;
in the present invention, the top block 43 is located on the same side of the two detection bars 34, so that the positions between the detection bars 34 and the square storage tube 4 do not interfere with each other;
according to the invention, the square storage tube 4 and the top block 43 are arranged on the second telescopic block 31, so that after detection is completed, the repairing block 42 in the square storage tube 4 is stuck in a hole drilled on the heat insulation coating, and the repairing block 42 is the same as the heat insulation coating, so that the heat insulation coating is repaired and more attractive.
Embodiment two: on the basis of the first embodiment, referring to fig. 6 and 7 of the specification, in the present invention, the detection lever 34 is composed of a first lever 341 and a second lever 342; the first rod 341 has a tubular structure; the rod number two 342 is slidably connected within the rod number one 341; a first return spring 7 is fixedly connected in the first rod 341; the inner wall of the first rod 341 is provided with a clamping groove 71; a clamping block 72 is connected in a sliding way in the clamping groove 71; a clamping spring 73 is fixedly connected between the clamping block 72 and the clamping groove 71; the lower end of the second rod 342 is obliquely arranged; the end surface of the clamping block 72, which is contacted with the second rod 342, is arranged in an inclined shape; a stopper 74 is fixedly connected to the inside of the detection groove 33.
In the invention, the ball 75 is hinged on the sphere of the clamping block 72.
In the invention, in the process that the top block 43 presses the repairing block 42 into the hole on the heat insulation coating, the detection rod 34 is extruded, and the extrusion degree is larger than the extrusion degree for detecting the thickness of the heat insulation coating, so when the top block 43 presses the repairing block 42 into the hole on the heat insulation coating, the acting force of the second rod 342 on the clamping block 72 causes the clamping block 72 to be received into the clamping groove 71, and the second rod 342 is received into the first rod 341, thereby preventing the detection rod 34 and the detection pressure sensor 35 from being damaged; the inclined surface between the clamping block 72 and the second rod 342 is such that in normal detection, the acting force is insufficient to push the clamping block 72 into the clamping groove 71, and only when the force is large, the clamping block 72 is pushed into the clamping groove 71; a stopper 74 in the detection groove 33 prevents the detection rod 34 from moving greatly and from pressing and damaging the detection pressure sensor 35; after the clamping block 72 is retracted into the clamping groove 71, the balls 75 on the clamping block 72 are in contact with the side face of the second rod 342, the balls 75 reduce friction force between the clamping block 72 and the second rod 342, the clamping block 72 is prevented from being in the clamping groove, the clamping spring 73 pushes the clamping block 72 to be in contact with the second rod 342, friction force is increased, and the reset spring cannot eject the second rod 342.
The foregoing has shown and described the basic principles, principal features and advantages of the invention. It will be understood by those skilled in the art that the present invention is not limited to the embodiments described above, and that the above embodiments and descriptions are merely illustrative of the principles of the present invention, and various changes and modifications may be made therein without departing from the spirit and scope of the invention, which is defined by the appended claims; the scope of the invention is defined by the appended claims and equivalents thereof.
Claims (8)
1. A portable spray detection device, characterized by: comprising the following steps:
a mounting rack (1) and a mounting rod (11); the mounting rod (11) is fixedly connected in the mounting frame (1); a first groove (12) and a second groove (13) are formed in the mounting rod (11), and a first block (14) and a second block (15) are slidably matched on the mounting rod (11); the first block (14) and the second block (15) are respectively in sliding fit with the first groove (12) and the second groove (13); a first motor (16) and a second motor (17) are respectively and fixedly connected in the first groove (12) and the second groove (13); the output shafts of the first motor (16) and the second motor (17) are fixedly connected with screw rods which are in threaded fit with the first block (14) and the second block (15);
a first telescopic groove (2) is formed in the first block (14); a first telescopic block (21) is connected in the first telescopic groove (2) in a sliding way, and a first telescopic electric push rod (22) is fixedly connected in the first telescopic groove (2); the output end of the first telescopic electric push rod (22) is fixedly connected with the first telescopic block (21); a second telescopic groove (3) is formed in the second block (15); a second telescopic block (31) is connected in the second telescopic groove (3) in a sliding way, and a second telescopic electric push rod (32) is fixedly connected in the second telescopic groove (3); the output end of the second telescopic electric push rod (32) is fixedly connected with the second telescopic block (31);
a rotating motor (23) is fixedly connected in the first telescopic block (21); a rotating seat (24) is rotatably connected to the first telescopic block (21); a rotary drill bit (25) is arranged on the rotary seat (24); a pair of detection grooves (33) are formed in the second telescopic block (31); a detection rod (34) is slidably connected in the detection groove (33), and a detection pressure sensor (35) is fixedly connected in the detection groove (33); a detection spring (36) is fixedly connected between the detection pressure sensor (35) and the detection rod (34).
2. A portable spray inspection device according to claim 1, wherein: square grooves (6) are formed in the rotating seat (24); the rotary drill bit (25) is slidably connected in the square groove (6), and a jacking spring (61) is fixedly connected between the rotary drill bit (25) and the square groove (6).
3. A portable paint test apparatus as claimed in claim 2, wherein: a square storage tube (4) is arranged on the second telescopic block (31); the square storage tube (4) is internally fixedly connected with a pushing electric push rod (41), and the square storage tube (4) is internally and slidably connected with a pushing block; repair blocks (42) are stored in the square storage tube (4) side by side; glue is coated on the end face, away from the top block (43), of the repair block (42); open grooves are formed in two sides of the square storage tube (4); the front end of the second telescopic block (31) is fixedly connected with a top block (43).
4. A portable spray inspection device according to claim 3, wherein: the top block (43) is positioned on the same side of the two detection rods (34).
5. A portable spray inspection device according to claim 4, wherein: a sliding groove (5) is formed in the side wall of the second telescopic block (31); a sliding block (51) is connected in the sliding groove (5) in a sliding way, and a sliding spring (52) is fixedly connected between the sliding groove (5) and the sliding block (51); the square storage tube (4) is fixedly connected with the sliding block (51).
6. A portable paint test apparatus as claimed in claim 5, wherein: the detection rod (34) consists of a first rod (341) and a second rod (342); the first rod (341) is of a tubular structure; the second rod (342) is slidably connected in the first rod (341); a first return spring (7) is fixedly connected in the first rod (341); a clamping groove (71) is formed in the inner wall of the first rod (341); a clamping block (72) is connected in a sliding way in the clamping groove (71); a clamping spring (73) is fixedly connected between the clamping block (72) and the clamping groove (71); the lower end of the second rod (342) is obliquely arranged; the end surface of the clamping block (72) contacted with the second rod (342) is arranged in an inclined shape; a blocking block (74) is fixedly connected in the detection groove (33).
7. A portable spray inspection device according to claim 6, wherein: a blocking block (74) is fixedly connected in the detection groove (33).
8. A portable paint test apparatus as claimed in claim 7, wherein: the ball (75) is hinged on the spherical surface of the clamping block (72).
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202410267771.0A CN117848264B (en) | 2024-03-08 | 2024-03-08 | Portable spraying check out test set |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202410267771.0A CN117848264B (en) | 2024-03-08 | 2024-03-08 | Portable spraying check out test set |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| CN117848264A true CN117848264A (en) | 2024-04-09 |
| CN117848264B CN117848264B (en) | 2024-05-28 |
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| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202410267771.0A Active CN117848264B (en) | 2024-03-08 | 2024-03-08 | Portable spraying check out test set |
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| Country | Link |
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| CN (1) | CN117848264B (en) |
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| CN214893184U (en) * | 2021-07-07 | 2021-11-26 | 南通正特检测服务有限公司 | A pressure vessel coating thickness gauge |
| CN114111514A (en) * | 2021-12-04 | 2022-03-01 | 安徽万纬工程管理有限责任公司 | Engineering supervision site pile hole sediment thickness detection device |
| CN216925386U (en) * | 2022-01-18 | 2022-07-08 | 沈阳建设监理有限公司 | Civil engineering is managed with device that detects insulation material thickness |
| CN116735486A (en) * | 2023-06-15 | 2023-09-12 | 南通正特检测服务有限公司 | Pipeline inner wall coating uniformity detection device |
| CN116713550A (en) * | 2023-07-19 | 2023-09-08 | 江西荣晖电子有限公司 | A spot welding device for PCB board processing |
| CN117433474A (en) * | 2023-12-11 | 2024-01-23 | 常州市昌隆电机股份有限公司 | Motor axial clearance and shaft extension size detection device |
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