Building material strength detection device
By introducing high-precision sensors and an automated conveying system into the building material strength testing device, the problem of component damage caused by external impact during the handling of the testing device has been solved, thereby improving accuracy and efficiency.
Patent Information
- Application Number
- CN202423104900.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-16
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2034-12-16
AI Technical Summary
Existing building material strength testing devices are prone to deformation or damage to their components due to external impacts during handling, affecting the accuracy of test results.
A building material strength testing device was designed, which includes a testing mechanism and a conveying mechanism. It adopts a high-precision sensor and an automated conveying system. The automated handling of building materials is achieved through a drive mechanism and a conveying structure, avoiding collisions with the testing mechanism and protecting the testing mechanism from external impacts.
This ensured the accuracy of building material strength testing and the integrity of testing institutions, reduced the labor intensity of manual handling, and improved work efficiency.
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Figure CN223611263U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to detection equipment technical field, concretely relates to a building material strength detection device. BACKGROUND
[0002] Building materials are various materials applied in building engineering, and are general terms of materials used in civil engineering and building engineering, and can be divided into structural materials, decorative materials and some special materials. These materials, as the main raw materials of buildings, are very important in strength. In order to ensure the building construction quality, the strength of these materials needs to be tested first, and a strength detection device needs to be used when the strength is tested.
[0003] The Chinese patent application for invention with the publication number CN117388064A discloses a building material strength detection device, which specifically discloses a base and a strength detection mechanism. The strength detection mechanism includes two vertical seats fixedly connected to the top of the base, a horizontal movement rod movably arranged between the two vertical seats, a top connecting plate fixedly connected to the top of the two vertical seats, a back stop plate fixedly connected between the base and the two vertical seats, a collection groove symmetrically formed in the top of the base, a pushing plate slidingly connected to the inner side of the back stop plate at the top of the collection groove, two bidirectional screws rotatably connected between the two vertical seats, and the pushing plate is screwedly connected to the outside of the two bidirectional screws, and the end of the two bidirectional screws is provided with a linkage mechanism linked with the horizontal movement rod.
[0004] However, in the above technical solution, the staff needs to manually carry the building materials to the base, and the strength detection mechanism is likely to be hit during the carrying process, which may cause deformation or damage of the components in the strength detection mechanism when subjected to external force impact, thereby affecting the normal work, making the test result inaccurate, and affecting the evaluation of the building quality. UTILITY MODEL CONTENTS
[0005] Therefore, in order to solve the problem that the components in the strength detection mechanism may be deformed or damaged when subjected to external force impact during the carrying process of the staff, thereby affecting the normal work, the utility model aims to provide a building material strength detection device, and the specific technical solution is as follows:
[0006] A building material strength detection device includes a control console, a detection mechanism, and a conveying mechanism. The detection mechanism is arranged on the control console and fixedly connected with the control console. The conveying mechanism is arranged on the control console and fixedly connected with the control console. The conveying mechanism includes a driving mechanism, a conveying structure, and a bearing table. The driving mechanism and the conveying structure are respectively fixedly connected with the control console. The driving mechanism is fixedly connected with the conveying structure. The bearing table is fixedly connected with the conveying structure.
[0007] Further, the driving mechanism comprises a driving motor, a connecting seat and a rotating screw rod, one end of the rotating screw rod is fixedly connected with the output end of the driving motor, and the other end of the rotating screw rod is rotatably connected with the connecting seat.
[0008] Further, the conveying structure comprises a conveying rail, a conveying plate and a conveying sleeve block, the conveying rail is fixedly connected with the control console, the conveying plate is slidably connected with the conveying rail, and the conveying sleeve block is fixedly connected with the conveying plate.
[0009] Further, the conveying structure comprises a conveying rail, a conveying plate and a conveying sleeve block, the conveying rail is fixedly connected with the control console, the conveying plate is slidably connected with the conveying rail, and the conveying sleeve block is fixedly connected with the conveying plate.
[0010] Further, the detection mechanism comprises a lifting mechanism, a connecting mechanism and a pressing plate, the lifting mechanism is fixedly connected with the control console, the lifting mechanism is fixedly connected with the connecting mechanism, and the connecting mechanism is fixedly connected with the pressing plate.
[0011] Further, the detection mechanism comprises a lifting mechanism, a connecting mechanism and a pressing plate, the lifting mechanism is fixedly connected with the control console, the lifting mechanism is fixedly connected with the connecting mechanism, and the connecting mechanism is fixedly connected with the pressing plate.
[0012] Further, one side of the lifting screw rod is provided with a guide rod, and the outer side of the guide rod is slidably connected with a guide sleeve, and the guide sleeve is embedded in the lifting plate.
[0013] Further, the outer side of the guide rod and the lifting screw rod is provided with a protective cover, one end of the protective cover is fixedly connected with the cross beam, and the other end of the protective cover is fixedly connected with the control console.
[0014] Further, the connecting mechanism comprises fixing plates, engaging rods, a partition plate and a second elastic member, the fixing plates are provided with two and symmetrically fixed on the two sides of the lifting plate, the two ends of the two fixing plates are penetrated by the engaging rods, each engaging rod is fixedly connected with the lower pressing plate, the upper end of the engaging rod is fixedly connected with the partition plate, the second elastic member is arranged between the partition plate and the fixing plate, and the second elastic member is sleeved on the engaging rod.
[0015] Further, the bottom of the control console is provided with anti-skid supports.
[0016] Compared with the prior art, the building material strength detection device has the advantages that: the detection mechanism is responsible for measuring the strength of the building material. By using high-precision sensors and measurement technology, the detection mechanism can accurately measure the strength value of the building material, thereby providing reliable data support for the evaluation of the building quality. The conveying mechanism includes a driving mechanism, a conveying structure and a bearing table. The driving mechanism and the conveying structure realize the automatic carrying of the building material, so that the building material can be carried smoothly and accurately to the lower side of the detection mechanism, avoiding the risk of collision with the strength detection mechanism during the carrying process, helping to protect the strength detection mechanism from external impact damage, and ensuring the accuracy of the test results. BRIEF DESCRIPTION OF DRAWINGS
[0017] The present application can be further understood from the following description in conjunction with the accompanying drawings in which the components are not necessarily drawn to scale, but emphasis is instead placed upon illustrating the principles of the embodiments, and in which like reference numerals designate corresponding parts in the different views.
[0018] Figure 1 is a structural schematic view of the building material strength detection device according to an embodiment of the present application;
[0019] Figure 2 is a structural schematic view of the detection mechanism according to an embodiment of the present application;
[0020] Figure 3 is Figure 2 is an enlarged structural schematic view of A in FIG. 4;
[0021] Figure 4 is Figure 2 is an enlarged structural schematic view of B in FIG. 4;
[0022] Figure 5 is a structural schematic view of the conveying mechanism according to an embodiment of the present application;
[0023] Figure 6 is a bottom view of the conveying mechanism according to an embodiment of the present application;
[0024] Figure 7 is an exploded view of the bearing table according to an embodiment of the present application.
[0025] BRIEF DESCRIPTION OF DRAWINGS
[0026] 1, control console; 11, anti-skid support; 2, detection mechanism; 21, lifting mechanism; 211, lifting motor; 212, lifting screw; 213, cross beam; 214, lifting plate; 215, guide rod; 216, guide sleeve; 217, protective cover; 22, connecting mechanism; 221, fixed plate; 222, joint rod; 223, partition plate; 224, second elastic member; 23, lower pressing plate; 24, pressure sensor; 3, conveying mechanism; 31, driving mechanism; 311, driving motor; 312, connecting seat; 313, rotating screw; 32, conveying structure; 321, conveying rail; 322, conveying plate; 323, conveying sleeve block; 33, bearing table; 331, support frame; 332, placing frame; 333, first elastic member; 334, anti-skid plate. DETAILED DESCRIPTION
[0027] In order to make the purpose, technical scheme and advantages of the present application more clear, the present application will be further described in detail below with reference to the embodiments, and it should be understood that the specific embodiments described herein are only used to explain the present application and do not limit the protection scope of the present application.
[0028] It should be noted that when an element is referred to as being "fixed" to another element, it can be directly on the other element or there can be an intervening element between them, and when an element is referred to as being "connected" to another element, it can be directly connected to the other element or there can be an intervening element between them. The terms "vertical", "horizontal", "left", "right" and similar expressions used herein are for illustrative purposes only and are not intended to be the only implementation.
[0029] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs, and the terms used herein should be interpreted only as the terms are commonly used by those in the art to which this application belongs and not as an overly limiting term or terms. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.
[0030] The "first", "second" in the present application do not represent the specific number and order, but only for the name of the distinction.
[0031] As Figures 1-7The utility model discloses a building material strength detection device, including control platform 1, detection mechanism 2 and conveying mechanism 3, detection mechanism 2 sets up on control platform 1 and is fixedly connected with control platform 1, conveying mechanism 3 sets up on control platform 1 and is fixedly connected with control platform 1, and conveying mechanism 3 includes drive mechanism 31, conveying structure 32 and bearing station 33, and drive mechanism 31 and conveying structure 32 are fixedly connected with control platform 1 respectively, drive mechanism 31 is fixedly connected with conveying structure 32, and bearing station 33 is fixedly connected with conveying structure 32. Through setting detection mechanism 2, responsible measurement building material's strength. Through adopting high accuracy sensor and measurement technique, detection mechanism 2 can accurately measure the strength value of building material, to provide reliable data support for the evaluation of building quality. Through setting conveying mechanism 3, conveying mechanism 3 includes drive mechanism 31, conveying structure 32 and bearing station 33, and the automatic handling of building material is realized through drive mechanism 31 and conveying structure 32, so that building material can be smoothly, accurately carried to the below of detection mechanism 2, avoids the risk of collision with strength detection mechanism 2 in the carrying process, helps to protect strength detection mechanism 2 from the damage of external force impact, and ensures the accuracy of test result.
[0032] As a preferred embodiment of the utility model, it can also have the following additional technical features: drive mechanism 31 includes drive motor 311, connecting seat 312 and rotating lead screw 313, drive motor 311 and connecting seat 312 are fixedly connected with the two ends of control platform 1 respectively, to ensure that drive motor 311 does not move or shake when working, one end of rotating lead screw 313 is fixedly connected with the output end of drive motor 311, the end of rotating lead screw 313 away from drive motor 311 is rotatably connected with connecting seat 312, and conveying structure 32 is rotatably connected with rotating lead screw 313.
[0033] As the preferred embodiment of the utility model, it can also have the following additional technical features: the conveying structure 32 includes conveying rail 321, conveying plate 322 and conveying sleeve block 323, conveying rail 321 is fixedly connected with control cabinet 1, conveying plate 322 is slidably connected with conveying rail 321, conveying sleeve block 323 is fixedly connected with conveying plate 322, conveying sleeve block 323 is sleeved on rotating lead screw 313 and is rotationally connected with rotating lead screw 313, and bearing table 33 is fixedly connected with the side of conveying plate 322 away from conveying sleeve block 323.The conveying rail 321 provides a stable moving path for the conveying plate 322, ensuring that the conveying plate 322 can smoothly slide along it, and the conveying sleeve block 323 is internally designed with a threaded hole that threadedly cooperates with the rotating lead screw 313, so that when the rotating lead screw 313 rotates, it can drive the conveying plate 322 to move along the rotating lead screw 313.When the driving motor 311 is started, it will drive the rotating lead screw 313 to rotate, and since the conveying sleeve block 323 is rotationally connected with the rotating lead screw 313 and is fixedly connected with the conveying plate 322, the rotation of the rotating lead screw 313 will be converted into linear movement of the conveying plate 322.In this way, the building materials can be placed on the bearing table 33 and transported to the detection mechanism 2 for strength detection by the conveying structure 32.
[0034] As the preferred embodiment of the utility model, it can also have the following additional technical features: the bearing table 33 includes support frame 331, placement frame 332, first elastic member 333 and anti-skid plate 334, the support frame 331 is fixedly connected with the conveying structure 32, the placement frame 332 is arranged on the support frame 331 and is detachably connected with the support frame 331, the first elastic member 333 is fixedly installed inside the placement frame 332, and the end of the first elastic member 333 away from the placement frame 332 is fixedly connected with the anti-skid plate 334.In this embodiment, the first elastic member 333 is set as a spring, when the building materials are placed on the bearing table 33, at this time, the first elastic member 333 will play a role of buffering and shock absorption, absorbing part of the impact force, protecting the building materials from being damaged.At the same time, the anti-skid plate 334 will increase the friction force of the building materials, preventing the building materials from sliding or shifting during transportation or detection.In this way, the bearing table 33 can provide a stable and reliable support platform for the strength detection of the building materials.
[0035] As the preferred embodiment of the utility model, it can also have the following additional technical features: the detection mechanism 2 includes lifting mechanism 21, connecting mechanism 22 and lower pressing plate 23, lifting mechanism 21 is fixedly connected with control cabinet 1, lifting mechanism 21 is fixedly connected with connecting mechanism 22, connecting mechanism 22 is fixedly connected with lower pressing plate 23, pressure sensor 24 is arranged on lifting mechanism 21, and pressure sensor 24 is in close contact with lower pressing plate 23. When the detection mechanism 2 starts to work, the lifting mechanism 21 will drive the lower pressing plate 23 to move downwards until it is in close contact with the building material placed on the bearing table 33. At this time, the pressure sensor 24 will start to measure and record the pressure value applied on the lower pressing plate 23. With the continuous application of pressure by the lifting mechanism 21, the building material will be subjected to gradually increasing pressure. By monitoring the reading change of the pressure sensor 24, whether the strength of the building material meets the requirements can be evaluated.
[0036] As the preferred embodiment of the utility model, it can also have the following additional technical features: the lifting mechanism 21 includes lifting motor 211, lifting screw rod 212, cross beam 213 and lifting plate 214, the output end of lifting motor 211 is fixedly connected with one end of lifting screw rod 212, the end of lifting screw rod 212 away from lifting motor 211 is rotatably connected with cross beam 213 through a bearing, and lifting plate 214 is sleeved on lifting screw rod 212 and rotatably connected with lifting screw rod 212. Pressure sensor 24 is arranged in the middle of lifting plate 214. When the lifting mechanism 21 starts to work, the lifting motor 211 will drive the lifting screw rod 212 to rotate. Since the lifting plate 214 is rotatably connected with the lifting screw rod 212 and is sleeved on the lifting screw rod 212, with the rotation of the lifting screw rod 212, the lifting plate 214 will perform lifting movement along the lifting screw rod 212. When the lifting plate 214 contacts the building material placed on the bearing table 33, it will continue to move downwards and apply pressure. At this time, the pressure sensor 24 will start to measure and record the pressure value applied on the building material. By monitoring the reading change of the pressure sensor 24, whether the strength of the building material meets the requirements can be evaluated.
[0037] As the preferred embodiment of the utility model, it can also have the following additional technical features: one side of the lifting screw rod 212 is provided with a guide rod 215, the outer side of the guide rod 215 is slidably connected with a guide sleeve 216, and the guide sleeve 216 is embedded in the lifting plate 214. The introduction of the guide rod 215 and the guide sleeve 216 enhances the stability of the lifting mechanism 21, reduces the error caused by deviation or shaking, and enables the lifting plate 214 to maintain a stable and accurate movement trajectory during lifting, thereby improving the accuracy and reliability of detection.
[0038] As the preferred embodiment of the utility model, it can also have the following additional technical features: the outer side of the guide rod 215 and the lifting screw rod 212 is provided with a protective cover 217, one end of the protective cover 217 is fixedly connected with the cross beam 213, and the end of the protective cover 217 away from the cross beam 213 is fixedly connected with the control console 1. The protective cover 217 separates the guide rod 215 and the lifting screw rod 212 from the outside world, avoids the outside world from entering and affecting normal work, at the same time, avoids the staff from contacting them and hurting the body, and improves the safety.
[0039] As the preferred embodiment of the utility model, it can also have the following additional technical features: the connecting mechanism 22 includes a fixed plate 221, a joint rod 222, a partition plate 223 and a second elastic member 224, two fixed plates 221 are symmetrically fixedly arranged on the two sides of the lifting plate 214, the two ends of the two fixed plates 221 are penetrated by the joint rod 222, each joint rod 222 is fixedly connected with the pressing plate 23, the upper end of the joint rod 222 is fixedly connected with the partition plate 223, the second elastic member 224 is arranged between the partition plate 223 and the fixed plate 221, and the second elastic member 224 is sleeved on the joint rod 222. The fixed plate 221 and the joint rod 222 enhance the stability of the connecting mechanism 22, and ensure the accuracy and reliability of the lifting movement. In the embodiment, the second elastic member 224 is arranged as a spring, which plays a buffering and damping role in the lifting process, can absorb part of the impact force, and protects the pressing plate 23 and the building material from being damaged.
[0040] As the preferred embodiment of the utility model, it can also have the following additional technical features: the bottom of the control console 1 is provided with an anti-skid support 11, which can increase the contact area between the control console 1 and the ground, thereby providing greater friction to prevent the control console 1 from sliding or shifting during operation due to external forces (such as personnel touching, vibration, etc.).
[0041] The structure of the building material strength detection device is reasonable, convenient to use, and can also be used for other devices with similar use requirements, and the building material strength detection device in the embodiment realizes efficient, accurate, safe and flexible building material strength detection by integrating the control console 1, the detection mechanism 2 and the conveying mechanism 3, reduces the labor intensity of manual carrying, improves the work efficiency, and effectively protects the precision parts in the strength detection mechanism 2.
[0042] In the description of the above embodiments, greater, less, more than, etc. are understood as not including the number, the meaning of several or multiple is more than one, above, below, etc. are understood as including the number, if there is a description of the first, second, only for the purpose of distinguishing technical features, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of indicated technical features or implicitly indicating the sequence of indicated technical features.
[0043] Each of the technical features of the above-described embodiments can be combined arbitrarily, and for the sake of brevity, all possible combinations of the technical features in the above-described embodiments are not described, but as long as the combinations of the technical features do not have contradictory relations, they should be considered as the range described in the specification.
[0044] The above-described embodiments only express several implementation manners of the utility model, the description is more specific and detailed, but it cannot be understood as the limitation of the utility model patent range, it should be pointed out that for ordinary skilled person in the art, on the premise of not departing from the utility model concept, a number of deformation and improvement can be made, these all belong to the protection range of the utility model, therefore, the protection range of the utility model patent should be based on the appended claims.
Claims
1. A device for detecting the strength of a building material, characterized by, include: Console; A testing organization, which is mounted on the control console and fixedly connected to the control console; A conveying mechanism is disposed on the control console and fixedly connected to the control console. The conveying mechanism includes a driving mechanism, a conveying structure, and a carrying platform. The driving mechanism and the conveying structure are fixedly connected to the control console, the driving mechanism is fixedly connected to the conveying structure, and the carrying platform is fixedly connected to the conveying structure.
2. The apparatus for detecting the strength of a building material according to claim 1, wherein The driving mechanism includes a drive motor, a connecting seat, and a rotating lead screw. The drive motor and the connecting seat are fixedly connected to both ends of the control console, respectively. One end of the rotating lead screw is fixedly connected to the output end of the drive motor, and the end of the rotating lead screw away from the drive motor is rotatably connected to the connecting seat. The transmission structure is rotatably connected to the rotating lead screw.
3. The apparatus for detecting the strength of a building material according to claim 2, wherein The conveying structure includes a conveying rail, a conveying plate, and a conveying sleeve. The conveying rail is fixedly connected to the control console, the conveying plate is slidably connected to the conveying rail, the conveying sleeve is fixedly connected to the conveying plate, the conveying sleeve is sleeved on the rotating lead screw and rotatably connected to the rotating lead screw, and the support platform is fixedly connected to the side of the conveying plate away from the conveying sleeve.
4. The apparatus for detecting the strength of a building material according to claim 1, wherein The support platform includes a support frame, a placement frame, a first elastic element, and an anti-slip plate. The support frame is fixedly connected to the conveying structure. The placement frame is disposed on the support frame and detachably connected to the support frame. The first elastic element is fixedly installed inside the placement frame, and the end of the first elastic element away from the placement frame is fixedly connected to the anti-slip plate.
5. The apparatus for detecting the strength of a building material according to claim 1, wherein The detection mechanism includes a lifting mechanism, a connecting mechanism, and a lower pressure plate. The lifting mechanism is fixedly connected to the control console, the lifting mechanism is fixedly connected to the connecting mechanism, and the connecting mechanism is fixedly connected to the lower pressure plate. A pressure sensor is provided on the lifting mechanism, and the pressure sensor is in close contact with the lower pressure plate.
6. The apparatus for detecting the strength of a building material according to claim 5, wherein The lifting mechanism includes a lifting motor, a lifting screw, a crossbeam, and a lifting plate. The output end of the lifting motor is fixedly connected to one end of the lifting screw. The end of the lifting screw away from the lifting motor is rotatably connected to the crossbeam through a bearing. The lifting plate is sleeved on the lifting screw and rotatably connected to the lifting screw. The pressure sensor is located in the middle of the lifting plate.
7. The apparatus for detecting the strength of a building material according to claim 6, wherein A guide rod is provided on one side of the lifting screw, and a guide sleeve is slidably connected to the outside of the guide rod, the guide sleeve being embedded in the lifting plate.
8. The apparatus for detecting the strength of a building material according to claim 7, wherein The guide rod and the lifting screw are provided with protective covers on their outer sides. One end of the protective cover is fixedly connected to the crossbeam, and the end of the protective cover away from the crossbeam is fixedly connected to the control console.
9. The apparatus for detecting the strength of a building material according to claim 6, wherein The connecting mechanism comprises fixing plates, engaging rods, a partition plate and a second elastic member, the fixing plates are symmetrically arranged on both sides of the lifting plate, the engaging rods are arranged through the two ends of the fixing plates, the engaging rods are fixedly connected with the lower pressing plate, the upper end of the engaging rod is fixedly connected with the partition plate, and the second elastic member is arranged between the partition plate and the fixing plate and sleeved on the engaging rod.
10. The apparatus for detecting the strength of a building material according to claim 1, wherein The bottom of the control console is provided with anti-skid supports.
Citation Information
Patent Citations
Building material strength detection device
CN117388064A
Cited By
Building material strength detection device
CN121678393A