Device for detecting compressive strength of autoclaved sand-lime brick
Through the sliding operation of the sliding rod, sliding frame and handle, combined with the adjustment of the camera, the problems of inconvenient observation and dangerous adjustment in the existing device are solved, and the high efficiency and safety of the compressive strength test of autoclaved fly ash sand bricks are achieved.
Patent Information
- Application Number
- CN202422683207.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-05
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2034-11-05
AI Technical Summary
The existing autoclaved fly-lime brick compressive strength testing device is not convenient for efficient observation after testing, and the adjustment of the testing position is prone to cause danger.
By adopting the sliding operation of the sliding rod, sliding frame and handle, combined with the adjustment of the camera, and through the transmission of the arm base and the hinged mechanical arm, the detection device can adaptively adjust to the appropriate observation position, reducing user operation risks.
It achieves efficient observation and adaptive adjustment, reduces the risk of user operation, and improves the safety and efficiency of detection.
Smart Images

Figure CN223449692U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the steam pressure sand lime brick industrial technology field especially relates to a steam pressure sand lime brick compressive strength detection device. BACKGROUND
[0002] Steam pressure sand lime brick and steam pressure fly ash brick are made of fly ash or other slag or sand lime, adding lime, gypsum and aggregate, through embryo preparation, pressing forming, high-efficiency steam curing process, etc., steam pressure brick complete equipment includes: mixer, digester, steam pressure brick machine, edge runner, autoclave and other main equipment, and box type feeder, screw conveyor, climbing bucket, aggregate scale, belt conveyor, maintenance trolley, transfer car and other auxiliary equipment, the frost resistance, corrosion resistance, compressive strength and other performances of steam pressure brick are better than those of solid clay brick artificial stone.
[0003] The existing compressive strength detection device is inconvenient for efficient observation after detection, and the adjustment of the detection position of the product is prone to danger, therefore, the utility model provides a steam pressure sand lime brick compressive strength detection device to solve the problems in the prior art. UTILITY MODEL CONTENTS
[0004] In view of the above problems, the utility model provides a steam pressure sand lime brick compressive strength detection device, which mainly utilizes the sliding operation of the sliding rod, the sliding frame and the handle to adjust the observation position of the camera, and the hinge transmission operation of the arm base, the hinge mechanical arm and the hinge clamp, so that the product can be self-adaptively adjusted according to the specific needs of the test, thereby reducing the risk of user operation.
[0005] To achieve the purpose of the utility model, the utility model realizes the following technical scheme: a steam pressure sand lime brick compressive strength detection device, which comprises a cleaning assembly and a high-pressure test mechanism, a bolted position detection component is arranged above the side of the cleaning assembly, and a bolted high-pressure test mechanism is arranged at the top of the position detection component.
[0006] The strong pressure testing mechanism comprises a top cover, a cylinder base, a hydraulic cylinder, a push rod, a lifting base, a bolt sleeve and a pressure head, the top cover is arranged at the top end of the position detection component, the top end of the top cover is provided with the bolted cylinder base, the top end of the cylinder base is provided with the hydraulic cylinder, the output end of the hydraulic cylinder is provided with the push rod, the bottom end of the push rod is provided with the lifting base, the inner side of the lifting base is provided with the bolted bolt sleeve, and the inner bottom side of the bolt sleeve is provided with the pressure head.
[0007] As a preferred embodiment of the utility model, the push rod is symmetrically distributed along the central axis of the lifting base, and the central axes of the lifting base, the bolt sleeve and the pressure head are in the same straight line.
[0008] As a preferred embodiment of the utility model, the cleaning assembly comprises a pad, a base table, a side plate, a valve plate, a control panel, a bolt disc, a damping group frame and a mounting base plate, the top side of the pad is provided with the base table of the mounting side plate, the inner top side of the base table is provided with the valve plate, and the front side of the base table is provided with the control panel.
[0009] As a preferred embodiment of the utility model, the inner top side of the base table is provided with the bolt disc, the top side of the bolt disc is provided with the damping group frame, and the top side of the damping group frame is provided with the mounting base plate.
[0010] As a preferred embodiment of the utility model, the position detection component comprises a lifting frame, a slotted bin, a sliding rod, a sliding frame, a handle, a camera, a side wall, a robot base, a hinge robot arm and a position clamp, the lifting frame is bolted above the side of the base table, the inner side of the lifting frame is provided with the slotted bin, the slotted bin is slidably connected with the sliding frame of the mounting handle through the sliding rod, and the inner side of the sliding frame is provided with the camera.
[0011] As a preferred embodiment of the utility model, the outer side of the lifting frame is provided with the side wall, the outer side of the side wall is provided with the robot base, the inner end of the robot base is provided with the hinge robot arm, and one end of the hinge robot arm is provided with the position clamp.
[0012] The utility model discloses a position detection component, a cleaning assembly and a strong pressure testing mechanism, and belongs to the technical field of testing equipment.
[0013] The utility model mainly utilizes the sliding operation of the sliding rod, the sliding frame and the handle, so that the camera can be adjusted to a suitable observation position, and the hinge transmission operation of the robot base, the hinge robot arm and the position clamp can make the product self-adaptively adjusted according to the specific needs of testing, thereby reducing the risk of user operation. BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1The utility model discloses a three-dimensional structure schematic diagram of the utility model;
[0015] Figure 2 The utility model discloses a three-dimensional structure schematic diagram of the utility model from the top;
[0016] Figure 3 The utility model discloses a three-dimensional structure schematic diagram of the utility model from the top;
[0017] Figure 4 The utility model discloses a three-dimensional structure schematic diagram of the utility model from the top;
[0018] Figure 5 The utility model discloses a three-dimensional structure schematic diagram of the utility model from the top.
[0019] Among them: 1, carry cleaning assembly, 101, cushion block, 102, base station, 103, side plate, 104, valve plate, 105, control panel, 106, bolt disc, 107, shock absorbing group frame, 108, carry base plate, 2, position detection component, 201, raise frame, 202, slotted bin, 203, sliding rod, 204, sliding frame, 205, handle, 206, camera, 207, side wall, 208, arm base, 209, hinge mechanical arm, 2010, position clamp, 3, strong pressure test mechanism, 301, top cover, 302, oil cylinder base, 303, hydraulic oil cylinder, 304, push rod, 305, lifting base, 306, bolt sleeve, 307, pressure head. DETAILED DESCRIPTION
[0020] In order to deepen the understanding of the utility model, the utility model will be further described below in conjunction with examples, and the present embodiment is only used to explain the utility model, and does not constitute the limitation to the protection scope of the utility model.
[0021] According to Figures 1-5 The utility model discloses a kind of steam pressure sand-lime brick compressive strength detection device, including carry cleaning assembly 1 and strong pressure test mechanism 3, carry cleaning assembly 1 is provided with bolt assembly position detection component 2 on the side upper side, and the top of position detection component 2 is provided with bolt assembly strong pressure test mechanism 3;
[0022] The strong pressure test mechanism 3 comprises a top cover 301, a cylinder base 302, a hydraulic cylinder 303, a push rod 304, a lifting base 305, a bolt sleeve 306 and a pressure head 307. The top cover 301 is arranged at the top end of the position detection component 2. The top end of the top cover 301 is provided with the bolted cylinder base 302. The top end of the cylinder base 302 is provided with the hydraulic cylinder 303. The output end of the hydraulic cylinder 303 is provided with the push rod 304. The bottom end of the push rod 304 is provided with the lifting base 305. The inner side of the lifting base 305 is provided with the bolted bolt sleeve 306. The inner bottom side of the bolt sleeve 306 is provided with the pressure head 307.
[0023] The push rod 304 is symmetrically distributed along the central axis of the lifting base 305. The central axis of the lifting base 305 is in line with the central axes of the bolt sleeve 306 and the pressure head 307.
[0024] In this embodiment, when detection is needed, the hydraulic cylinder 303 at the top side of the cylinder base 302 outputs power to drive the output end to operate, so that the push rod 304 descends, so that the bolt sleeve 306 and the pressure head 307 effectively detect the product on the top side of the mounting base plate 108.
[0025] The mounting and cleaning assembly 1 comprises a pad 101, a base table 102, a side plate 103, a valve plate 104, a control panel 105, a bolt disc 106, a shock absorbing group frame 107 and a mounting base plate 108. The top side of the pad 101 is provided with the base table 102 on which the side plate 103 is mounted. The inner top side of the base table 102 is provided with the valve plate 104. The front side of the base table 102 is provided with the control panel 105.
[0026] In this embodiment, the valve plate 104 is inserted and closed with the base table 102, so that the device is effectively closed, and the control panel 105 on the front side of the base table 102 is effectively adjusted and set.
[0027] The inner top side of the base table 102 is provided with the bolt disc 106. The top side of the bolt disc 106 is provided with the shock absorbing group frame 107. The top side of the shock absorbing group frame 107 is provided with the mounting base plate 108.
[0028] In this embodiment, when in use, the shock absorbing group frame 107 is bolted to the inner top side of the base table 102 through the bolt disc 106, so that the detected object is placed on the mounting base plate 108 on the top side of the shock absorbing group frame 107.
[0029] The position adjusting detection component 2 comprises a lifting frame 201, a slotted bin 202, a sliding rod 203, a sliding frame 204, a handle 205, a camera 206, a side wall 207, a robot arm base 208, a hinge robot arm 209 and a position adjusting clamp 2010. The lifting frame 201 is bolted on the side of the base table 102, and the inner side of the lifting frame 201 is provided with the slotted bin 202. The slotted bin 202 is slidably connected with the sliding frame 204 through the sliding rod 203, and the sliding frame 204 is provided with the handle 205. The inner side of the sliding frame 204 is provided with the camera 206.
[0030] In the embodiment, the handle 205 is used to pull the sliding frame 204 to make the slotted bin 202 slide along the sliding rod 203, so that the camera 206 is aligned with the detection material.
[0031] The outer side of the lifting frame 201 is provided with the side wall 207, and the outer side of the side wall 207 is provided with the robot arm base 208. The inner end of the robot arm base 208 is provided with the hinge robot arm 209, and one end of the hinge robot arm 209 is provided with the position adjusting clamp 2010.
[0032] In the embodiment, when positioning is needed, the robot arm base 208 on the side wall 207 is used to output operation, so that the hinge robot arm 209 at one end of the position adjusting clamp 2010 is clamped and positioned according to the detection requirements after the robot arm base 208 outputs operation.
[0033] The working principle of the autoclaved sand lime brick compressive strength detection device is as follows. When in use, the damping group frame 107 is bolted on the inner top side of the base table 102 through the bolt disc 106, so that the detection object is placed on the carrying base plate 108 on the top side of the damping group frame 107, and the base table 102 is inserted and closed by the valve plate 104, so that the equipment is effectively closed, and the control panel 105 on the front side of the base table 102 is effectively adjusted and set. When positioning is needed, the robot arm base 208 on the side wall 207 is used to output operation, so that the hinge robot arm 209 at one end of the position adjusting clamp 2010 is clamped and positioned according to the detection requirements after the robot arm base 208 outputs operation, and the handle 205 is used to pull the sliding frame 204 to make the slotted bin 202 slide along the sliding rod 203, so that the camera 206 is aligned with the detection material after the slotted bin 202 slides. When detection is needed, the hydraulic oil cylinder 303 on the top side of the oil cylinder base 302 is used to output power to drive the output end to operate, so that the push rod 304 descends, and the bolt sleeve 306 and the pressure head 307 effectively detect the product on the top side of the carrying base plate 108.
[0034] The basic principle, main features and advantages of the present application are shown and described above. Those skilled in the art should understand that the present application is not limited by the above examples, and the above examples and descriptions in the specification are only to illustrate the principles of the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the claimed present application. The scope of protection of the present application is defined by the appended claims and their equivalents.
Claims
1. A device for testing the compressive strength of autoclaved fly-lime bricks, comprising a cleaning assembly (1) and a high-pressure testing mechanism (3), characterized in that: A position adjustment detection component (2) assembled with bolts is provided above the side of the cleaning component (1), and a high-pressure testing mechanism (3) assembled with bolts is provided at the top of the position adjustment detection component (2); The high-pressure testing mechanism (3) comprises a top cover (301), a cylinder base (302), a hydraulic cylinder (303), a push rod (304), a lifting base (305), a bolt sleeve (306) and a pressure head (307); the top cover (301) is arranged at the top of the position adjustment detection component (2); the top of the top cover (301) is provided with a cylinder base (302) assembled with bolts, and the top of the cylinder base (302) is provided with a hydraulic cylinder (303); the output end of the hydraulic cylinder (303) is provided with a push rod (304), and the bottom end of the push rod (304) is provided with a lifting base (305); the inner side of the lifting base (305) is provided with a bolt sleeve (306) assembled with bolts, and the inner bottom side of the bolt sleeve (306) is provided with a pressure head (307).
2. The compressive strength testing device for autoclaved fly-lime bricks according to claim 1, characterized in that: The push rods (304) are symmetrically distributed with respect to the central axis of the lifting base (305), and the central axes of the lifting base (305), the bolt sleeve (306) and the pressure head (307) are on the same straight line.
3. The compressive strength testing device for autoclaved fly-lime brick according to claim 1, characterized in that: The mounting cleaning component (1) comprises a cushion block (101), a base platform (102), a side plate (103), a valve plate (104), a control panel (105), a bolt plate (106), a shock-absorbing assembly frame (107) and a mounting base plate (108); the top side of the cushion block (101) is provided with a base platform (102) for mounting the side plate (103); the inner side of the top end of the base platform (102) is provided with a valve plate (104); and the front side of the base platform (102) is provided with a control panel (105).
4. The compressive strength testing device for autoclaved fly-lime bricks according to claim 3, characterized in that: A bolt plate (106) is provided on the inner top side of the base platform (102), a shock-absorbing assembly frame (107) is provided on the top side of the bolt plate (106), and a mounting base plate (108) is provided on the top side of the shock-absorbing assembly frame (107).
5. The compressive strength testing device for autoclaved fly-lime bricks according to claim 3, characterized in that: The position adjustment detection component (2) includes a lifting frame (201), a slotted bin (202), a sliding rod (203), a sliding frame (204), a handle (205), a camera (206), a side wall (207), an arm base (208), a hinged mechanical arm (209) and a position adjustment fixture (2010). The lifting frame (201) is bolted to the upper side of the base platform (102). The slotted bin (202) is provided on the inner side of the lifting frame (201), and the slotted bin (202) is slidably connected to the sliding frame (204) with the mounting handle (205) through the sliding rod (203). The inner side of the sliding frame (204) is provided with a camera (206).
6. The compressive strength testing device for autoclaved fly-lime bricks according to claim 5, characterized in that: The outer side of the lifting frame (201) is provided with a side wall (207), and the outer side of the side wall (207) is provided with an arm base (208), the inner end of the arm base (208) is provided with a hinged mechanical arm (209), and one end of the hinged mechanical arm (209) is provided with a positioning fixture (2010).
Citation Information
Patent Citations
Device for detecting compressive strength of autoclaved sand-lime brick
CN220626048U