Dry-mixed mortar sampling analysis detection device

By combining the design of sampling and vibration mechanisms, the problems of high equipment cost and air bubble formation in the sampling process of dry-mixed mortar were solved, achieving uniform sampling and air bubble elimination, and improving the accuracy of detection.

CN223565704UActive Publication Date: 2025-11-18HEBEI MINHE NEW BUILDING MATERIALS CO LTD
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Patent Information

Application Number
CN202423051481.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-11
Publication Date
2025-11-18
Estimated Expiration
2034-12-11

AI Technical Summary

Technical Problem

Existing dry-mixed mortar testing devices require multiple motors to work together during the sampling process, which increases equipment costs. Furthermore, air bubbles are easily generated in the mortar after sampling, affecting the testing results.

Method used

The design combines a sampling mechanism and a vibration mechanism. The sampling pipe and auger conveyor blades are used to collect samples evenly, and the drive motor drives the bearing cylinder to vibrate to eliminate air bubbles and prevent the formation of cavities.

Benefits of technology

It enables uniform sampling and air bubble elimination of dry-mixed mortar, improving the accuracy and reliability of testing and reducing equipment costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a dry-mixed mortar sampling analysis detection device which comprises a storage tank and a feeding pipeline inserted into the left side of the upper end of the storage tank, and a sampling mechanism and a vibration mechanism are arranged on the right side of the storage tank. The vibrating mechanism comprises a group of mounting plates, a group of driving motors, a group of driving shafts, a group of transmission shafts, a group of eccentric rods, a group of swinging blocks, a group of swinging shafts, a group of swinging frames and a group of bearing cylinders; the sampling mechanism comprises a group of sampling pipelines, a group of feeding holes, a group of conveying shafts, a plurality of auger conveying blades and a group of discharging holes. The dry-mixed mortar sampling device has the beneficial effects that a group of sampling pipelines are matched with a plurality of auger conveying blades, the dry-mixed mortar at the inner top and the inner bottom of the storage tank can be uniformly sampled, and the vibration mechanism adopts a group of driving motors to drive a group of bearing cylinders to vibrate through a group of swinging shafts, so that bubbles in the sampled mortar are eliminated; a cavity is prevented from being formed, and subsequent detection is facilitated.
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Description

TECHNICAL FIELD

[0001] The utility model relates to dry -mixed mortar technical field, concretely is a dry -mixed mortar sampling analysis detection device. BACKGROUND

[0002] Dry -mixed mortar usually called hydraulic cement mixed mortar, it is the aggregate (such as quartz sand) of dry screening treatment, inorganic cementitious material (such as cement) and additive (such as polymer) etc. are mixed physically according to certain proportion and become a granular or powder, with the form of bagged or bulk, and add water and mix and then can be directly used material. Also called mortar dry powder material, dry -mixed material, dry -mixed powder, and some building adhesives also belong to this category. Dry -mixed mortar plays the role of bonding, backing, protection and decoration in the form of thin layer in the construction industry, and is widely used in construction and decoration engineering.

[0003] The dry -mixed mortar after being made needs to be stored in the bunker, and the dry -mixed mortar is sampled and detected. The existing patent with the application number CN202321503981.2 discloses a dry -mixed mortar detection analysis sample taking device, which can take the mortar of multiple positions of the storage cylinder by driving the fixed plate to move vertically, so that the detection analysis result of the mortar is more accurate. However, in the sampling process, multiple motors need to be matched to complete, which increases the equipment cost, and the mortar after sampling is easy to produce bubbles and form cavities, which affects the subsequent detection effect.

[0004] It should be noted that the above content belongs to the technical cognition of the inventor and does not necessarily constitute the prior art. UTILITY MODEL CONTENT

[0005] In view of the above defects, the utility model provides a dry -mixed mortar sampling analysis detection device to solve the dry -mixed mortar detection sampling problem.

[0006] To achieve the above object, the utility model adopts the following technical scheme:

[0007] A dry -mixed mortar sampling analysis detection device, including storage tank and plug -in in the left side feed pipe of storage tank upper end, the right side of storage tank is equipped with sampling mechanism and vibration mechanism respectively;

[0008] The vibrating mechanism comprises a set of mounting plates, a set of driving motors, a set of driving shafts, a set of transmission shafts, a set of eccentric rods, a set of swing blocks, a set of swing shafts, a set of swing frames and a set of bearing cylinders, the set of mounting plates are mounted on the right side of the storage tank, the set of driving motors are horizontally mounted on the rear end of the set of mounting plates, the set of driving shafts are mounted on the rotating end of the set of driving motors, the set of transmission shafts are movably mounted on the set of mounting plates, the set of eccentric rods are mounted on the front end of the set of transmission shafts, the set of swing blocks are mounted on the front end of the set of eccentric rods, the set of swing shafts are movably mounted on the front end of the set of mounting plates, the set of swing frames are mounted on the set of swing shafts and are sleeved outside the set of swing blocks, and the set of bearing cylinders are mounted on the right end of the set of swing shafts.

[0009] Further, the sampling mechanism comprises a set of sampling pipes, a set of feeding ports, a set of conveying shafts, a plurality of auger conveying blades and a set of discharging ports, the set of sampling pipes are inserted on the top and bottom of the right side of the storage tank, the set of feeding ports are opened on the left side of the set of sampling pipes, the set of conveying shafts are movably inserted in the set of sampling pipes, the plurality of auger conveying blades are uniformly mounted on the set of conveying shafts, and the set of discharging ports are opened on the right side of the bottom of the set of sampling pipes.

[0010] Further, the set of driving shafts and the transmission shafts are connected through the bevel gear set, and the set of driving shafts and the conveying shafts are connected through the transmission belt.

[0011] Further, the top and bottom of the set of swing blocks are movably mounted in the corresponding swing frames through the pin shafts.

[0012] Further, the two sides of the set of bearing cylinders are movably inserted with the set of sliding rods, the inner end outer surfaces of the set of sliding rods are sleeved with springs, and the inner ends of the set of sliding rods are respectively provided with the arc-shaped clamping plates.

[0013] Further, the bottom of the storage tank is inserted with the discharging pipe.

[0014] The sampling analysis detection device for dry-mixed mortar has the following beneficial effects: the sampling mechanism arranged on the right side of the storage tank is used to uniformly sample the dry-mixed mortar on the top and bottom of the storage tank by adopting the set of sampling pipes and the plurality of auger conveying blades, the vibrating mechanism is used to eliminate the internal bubbles of the mortar after sampling by adopting the set of driving motors to drive the set of bearing cylinders to vibrate through the set of swing shafts, so that the cavity is prevented from being formed, and the subsequent detection is facilitated. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 It is a schematic view of the sampling analysis detection device for dry-mixed mortar.

[0016] Figure 2 It is a schematic view of the vibrating mechanism.

[0017] Figure 3 The driving motor top view is described in the utility model.

[0018] Figure 4 The bearing cylinder top view is described in the utility model.

[0019] Figure 5 The sampling mechanism schematic view is described in the utility model.

[0020] In the figure: 1, storage tank;2, feed pipeline;3, mounting plate;4, driving motor;5, driving shaft;6, transmission shaft;7, eccentric rod;8, swing block;9, swing shaft;10, swing frame;11, bearing cylinder;12, sampling pipeline;13, feed inlet;14, conveying shaft;15, auger conveying blade;16, discharge port;17, bevel gear set;18, transmission belt;19, pin shaft;20, sliding rod;21, spring;22, arc clamping plate;23, discharge pipeline. DETAILED DESCRIPTION

[0021] The utility model will be concretely described below in combination with the drawings, such as Figures 1-5As shown: a dry-mixed mortar sampling analysis detection device, including storage tank 1 and plug-in on the left side of the storage tank 1 upper end feed pipe 2, the right side of the storage tank 1 is respectively provided with sampling mechanism and vibration mechanism; vibration mechanism includes a group of mounting plate 3, a group of drive motor 4, a group of drive shaft 5, a group of transmission shaft 6, a group of eccentric rod 7, a group of swing block 8, a group of swing shaft 9, a group of swing frame 10 and a group of bearing cylinder 11, a group of mounting plate 3 is installed on the right side of the storage tank 1, a group of drive motor 4 is installed horizontally on the back end of a group of mounting plate 3, a group of drive shaft 5 is installed on the rotating end of a group of drive motor 4, a group of transmission shaft 6 is movably installed on a group of mounting plate 3, a group of eccentric rod 7 is installed on the front end of a group of transmission shaft 6, a group of swing block 8 is installed on the front end of a group of eccentric rod 7, a group of swing shaft 9 is movably installed on the front end of a group of mounting plate 3, a group of swing frame 10 is installed on a group of swing shaft 9, and is sleeved on the outside of a group of swing block 8, a group of bearing cylinder 11 is installed on the right end of a group of swing shaft 9; sampling mechanism includes a group of sampling pipeline 12, a group of feed port 13, a group of conveying shaft 14, a plurality of auger conveying blades 15 and a group of discharge port 16, a group of sampling pipeline 12 is plug-in on the right side of the top and bottom of the storage tank 1, a group of feed port 13 is opened on the left side of a group of sampling pipeline 12, a group of conveying shaft 14 is movably plug-in in a group of sampling pipeline 12, a plurality of auger conveying blades 15 are evenly installed on a group of conveying shaft 14, a group of discharge port 16 is opened on the right side of the bottom of a group of sampling pipeline 12; relative to a group of drive shaft 5 and transmission shaft 6 is driven connected through bevel gear set 17, relative to a group of drive shaft 5 and conveying shaft 14 is driven connected through transmission belt 18; the top and bottom of a group of swing block 8 are movably installed in the corresponding swing frame 10 through pin shaft 19 respectively; a group of bearing cylinder 11 is movably plug-in on both sides of a group of sliding rods 20, a group of spring 21 is sleeved on the inner end outer surface of a group of sliding rods 20 respectively, and an arc clamping plate 22 is installed in the inner end of a group of sliding rods 20 respectively; the bottom of the storage tank 1 is plug-in with discharge pipeline 23.

[0022] The working principle of the embodiment is: the electrical equipment used by the device is controlled by the external controller, a group of bearing cylinder 11 is movably plug-in on both sides of a group of sliding rods 20, a group of spring 21 is sleeved on the inner end outer surface of a group of sliding rods 20 respectively, and an arc clamping plate 22 is installed in the inner end of a group of sliding rods 20 respectively, as shown, Figure 4 When in use, the user first places the sampling cylinder in a group of bearing cylinder 11 respectively, and clamps and fixes the sampling cylinder through a group of arc clamping plates 22;

[0023] Sampling time: a group of sampling pipes 12 are inserted on the right side top and bottom of the storage tank 1, a group of feeding ports 13 are opened on the left side of the group of sampling pipes 12, a group of conveying shafts 14 are movably inserted in the group of sampling pipes 12, a plurality of auger conveying blades 15 are uniformly arranged on the group of conveying shafts 14, a group of discharge ports 16 are opened on the right side of the bottom of the group of sampling pipes 12, and the group of drive shafts 5 and the conveying shafts 14 are drivingly connected through a group of transmission belts 18, as shown in Figure 5 , the group of discharge ports 16 correspond to the positions of the group of bearing cylinders 11, the group of drive motors 4 drive the group of conveying shafts 14 to rotate through the group of drive shafts 5 and the group of transmission belts 18, and cooperate with the plurality of auger conveying blades 15 to uniformly sample the dry-mixed mortar on the top and bottom of the storage tank 1, and the sampled mortar falls into the group of sampling cylinders;

[0024] Vibration time: a group of mounting plates 3 are mounted on the right side of the storage tank 1, a group of drive motors 4 are horizontally mounted on the rear end of the group of mounting plates 3, a group of drive shafts 5 are mounted on the rotating end of the group of drive motors 4, a group of transmission shafts 6 are movably mounted on the group of mounting plates 3 through fastening bearings, a group of eccentric rods 7 are mounted on the front end of the group of transmission shafts 6, a group of swing blocks 8 are mounted on the front end of the group of eccentric rods 7, a group of swing shafts 9 are movably mounted on the front end of the group of mounting plates 3 through fastening bearings, a group of swing frames 10 are mounted on the group of swing shafts 9 and are sleeved on the outside of the group of swing blocks 8, a group of bearing cylinders 11 are mounted on the right end of the group of swing shafts 9, and the group of drive shafts 5 and the transmission shafts 6 are drivingly connected through a group of bevel gear sets 17, the top and bottom of the group of swing blocks 8 are movably mounted in the corresponding swing frames 10 through pin shafts 19, as shown in Figure 2 and Figure 3 , sampling time, the group of drive motors 4 drive the group of transmission shafts 6 and the group of eccentric rods 7 on the front end to rotate through the group of drive shafts 5 and the group of bevel gear sets 17, the group of eccentric rods 7 drive the group of swing blocks 8 to swing in the group of swing frames 10, and the group of bearing cylinders 11 are shaken through the group of swing shafts 9 to eliminate the internal bubbles of the mortar after sampling, prevent the formation of cavities, facilitate subsequent detection, the group of transmission belts 18 are located behind the group of bearing cylinders 11, and the shaking angle of the group of bearing cylinders 11 is small, which does not affect the normal sampling.

[0025] The above technical solution only reflects the preferred technical solution of the technical solution of the present application, and some changes made by the technical personnel in the technical field to some parts of the above technical solution also reflect the principle of the present application and belong to the protection scope of the present application.

Claims

1. A dry-mixed mortar sampling analysis detection device, comprising a storage tank (1) and a feeding pipe (2) inserted on the left side of the upper end of the storage tank (1), characterized in that, The sampling mechanism and the vibrating mechanism are arranged on the right side of the storage tank (1) respectively. The vibrating mechanism comprises a group of mounting plates (3), a group of driving motors (4), a group of driving shafts (5), a group of transmission shafts (6), a group of eccentric rods (7), a group of swing blocks (8), a group of swing shafts (9), a group of swing frames (10) and a group of bearing cylinders (11). The group of mounting plates (3) are arranged on the right side of the storage tank (1). The group of driving motors (4) are horizontally arranged on the rear end of the group of mounting plates (3). The group of driving shafts (5) are arranged on the rotating end of the group of driving motors (4). The group of transmission shafts (6) are movably arranged on the group of mounting plates (3). The group of eccentric rods (7) are arranged on the front end of the group of transmission shafts (6). The group of swing blocks (8) are arranged on the front end of the group of eccentric rods (7). The group of swing shafts (9) are movably arranged on the front end of the group of mounting plates (3). The group of swing frames (10) are arranged on the group of swing shafts (9) and are sleeved on the outside of the group of swing blocks (8). The group of bearing cylinders (11) are arranged on the right end of the group of swing shafts (9).

2. A device for sampling and analyzing dry-mixed mortar according to claim 1, characterized in that, The sampling mechanism comprises a group of sampling pipelines (12), a group of feeding ports (13), a group of conveying shafts (14), a plurality of auger conveying blades (15) and a group of discharging ports (16). The group of sampling pipelines (12) are inserted into the right side top and bottom of the storage tank (1). The group of feeding ports (13) are arranged on the left side of the group of sampling pipelines (12). The group of conveying shafts (14) are movably inserted into the group of sampling pipelines (12). The plurality of auger conveying blades (15) are evenly arranged on the group of conveying shafts (14). The group of discharging ports (16) are arranged on the right side of the bottom of the group of sampling pipelines (12).

3. The device for sampling and analyzing dry-mixed mortar according to claim 1, characterized in that, The group of driving shafts (5) and the transmission shafts (6) are connected through the bevel gear set (17). The group of driving shafts (5) and the conveying shafts (14) are connected through the transmission belt (18).

4. The device for sampling and analyzing dry-mixed mortar according to claim 1, characterized in that, The top and bottom of the group of swing blocks (8) are movably arranged in the corresponding swing frames (10) through the pin shafts (19).

5. The device for sampling and analyzing dry-mixed mortar according to claim 1, characterized in that, The two sides of the group of bearing cylinders (11) are movably inserted into the group of sliding rods (20). The inner end outer surfaces of the group of sliding rods (20) are sleeved with the springs (21). The inner ends of the group of sliding rods (20) are respectively arranged with the arc-shaped clamping plates (22).

6. The device for sampling and analyzing dry-mixed mortar according to claim 1, characterized in that, The bottom of the storage tank (1) is inserted with the discharging pipeline (23).

Citation Information

Patent Citations

  • Dry-mixed mortar detection and analysis sample taking device

    CN220104546U