CN223581683U - Mortar consistency measuring device - Google Patents
Mortar consistency measuring deviceInfo
- Publication number
- CN223581683U CN223581683U CN202520262381.4U CN202520262381U CN223581683U CN 223581683 U CN223581683 U CN 223581683U CN 202520262381 U CN202520262381 U CN 202520262381U CN 223581683 U CN223581683 U CN 223581683U
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- mortar
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- clamping
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Abstract
The utility model belongs to the technical field of mortar consistency measurement, and discloses a mortar consistency measurement device. The mortar consistency measuring device comprises a supporting component, a clamping component and a measuring component. The support assembly comprises a support base, a support upright post and a guide piece, wherein the support upright post is vertically connected to the support base, the guide piece is connected to the support upright post, a guide through hole is formed in the guide piece along the vertical direction, the clamping assembly is arranged on the guide piece, the measurement assembly comprises a measurement piece, a storage container and a displacement sensor, the measurement piece is arranged in the guide through hole in a sliding penetrating mode and can be clamped by the clamping assembly, the storage container is connected with the support base and located below the measurement piece, and the displacement sensor can measure the distance from the storage container to the top end of the measurement piece. The mortar consistency measuring device provided by the utility model is simple to operate, reduces the labor of workers, improves the measuring efficiency, simultaneously, the sensor measures the depth value of the measuring piece immersed in mortar, reduces the man-made reading error and improves the measuring precision.
Description
Technical Field
The utility model relates to the technical field of mortar consistency measurement, in particular to a mortar consistency measurement device.
Background
In the field of constructional engineering, the mortar is used as an indispensable building material and is widely applied to construction links such as wall building, plastering and the like. The consistency of the mortar is used as a key index for measuring the working performance of the mortar, and accurate measurement of the consistency of the mortar has important significance for ensuring smooth construction and improving the stability and durability of a building structure.
Mortar consistency is expressed in millimeters of depth of penetration of the vertebral body into the mortar after natural descent. The device for measuring the mortar consistency in the prior art has the advantages of complex structure, complex operation, and low measurement efficiency because a great deal of manpower and time are consumed in the measurement process. In addition, most of the existing measuring devices are provided with graduated scales, the readings of the graduated scales are required to be read manually, large human errors exist, and the measuring accuracy requirements are difficult to meet.
Disclosure of utility model
The utility model aims to provide a mortar consistency measuring device which is used for accurately measuring mortar consistency, simplifying operation steps, reducing labor burden of workers and improving measuring efficiency of the mortar consistency.
To achieve the purpose, the utility model adopts the following technical scheme:
A mortar consistency measuring device, comprising:
The support assembly comprises a support base, a support upright post and a guide piece, wherein the support upright post is vertically connected with the support base, the guide piece is fixedly connected with the support upright post, and a guide through hole is formed in the guide piece along the vertical direction;
A clamping assembly disposed on the guide;
The measuring assembly comprises a measuring part, a storage container and a displacement sensor, wherein the measuring part is arranged in the guide through hole in a sliding mode and can be clamped by the clamping assembly, the storage container is connected with the supporting base and located below the measuring part, the displacement sensor is fixedly connected with the supporting upright post and located above the measuring part, and the displacement sensor can measure the distance from the displacement sensor to the top end of the measuring part.
The mortar consistency measuring device comprises the clamping assembly and the clamping piece, wherein the clamping assembly comprises the driving piece and the two clamping pieces, the driving piece can drive the two clamping pieces to be close to each other so as to clamp the measuring piece, and the driving piece can drive the two clamping pieces to be far away from each other so as to release the measuring piece.
Above-mentioned mortar consistence measuring device, wherein, this clamping assembly still includes locating part and two-way screw rod, and two this clamping pieces sliding connection are in this locating part, and the spiro union is in the both ends of this two-way screw rod respectively, and this drive piece can drive this two-way screw rod and rotate in order to drive two this clamping pieces and be close to each other or keep away from.
The mortar consistency measuring device further comprises a limiting piece and a sliding rod, wherein one clamping piece is fixedly connected to the limiting piece, the other clamping piece is slidably connected to the limiting piece and fixedly connected to the sliding rod, and the driving piece drives the sliding rod to slide so as to drive the two clamping pieces to be close to or far away from each other.
The mortar consistency measuring device comprises the measuring piece, wherein the measuring piece comprises the connecting part and the measuring part, the measuring part is positioned at the bottom end of the connecting part, the connecting part is arranged in the guide through hole in a penetrating mode and can be clamped by the clamping assembly, and the measuring part can extend into the storage container.
The mortar consistency measuring device, wherein the connecting part is cylindrical, and the measuring part is in an inverted cone shape.
The mortar consistency measuring device comprises the supporting base, wherein the supporting base comprises a supporting plane, the supporting plane is used for supporting the storage container, a plurality of leveling bolts penetrate through the supporting base along the vertical direction, and the levelness of the supporting plane can be adjusted through the leveling bolts.
The mortar consistency measuring device is characterized in that the supporting plane is rectangular, and four leveling bolts are respectively arranged at four corner points of the supporting plane.
The mortar consistency measuring device is characterized in that two levels are arranged on the supporting plane and are vertically arranged to detect the levelness of the supporting plane
The mortar consistency measuring device, wherein the storage container is provided with an upward-opening reverse-cone-shaped storage space for storing the mortar sample.
The utility model has the beneficial effects that:
When the mortar consistency measuring device provided by the utility model is used, the supporting base is horizontally placed, the measuring piece penetrates through the guide through hole, the guide through hole has a guide effect on the measuring piece, the clamping component clamps the measuring piece until the measuring piece is adjusted to a proper height, a mortar sample is injected into the storage container, the storage container containing the mortar sample is arranged on the supporting base below the measuring piece, the clamping component loosens the measuring piece, the measuring piece is regulated until the measuring piece contacts the surface of the mortar sample, the clamping component clamps the measuring piece again, then loosens the measuring piece, the measuring piece freely falls, the displacement sensor measures the distance between the measuring piece and the top end of the measuring piece, and the depth value of the measuring piece sinking into the mortar, namely the mortar consistency, is calculated. The mortar consistency measuring device provided by the utility model is simple to operate, reduces the labor of workers, improves the measuring efficiency, simultaneously measures the depth value of the measuring piece immersed in the mortar by the displacement sensor, reduces the man-made reading error and improves the measuring precision.
Drawings
FIG. 1 is a first schematic view of a mortar consistency measuring apparatus according to an embodiment of the utility model;
FIG. 2 is a second schematic structural view of a mortar consistency measuring apparatus provided by an embodiment of the utility model;
fig. 3 is a schematic structural view of a clamping assembly according to an embodiment of the present utility model.
In the figure:
1. the device comprises a supporting component, a supporting base, 111, a supporting plane, 12, supporting upright posts, 13 and a guide piece;
2. the clamping assembly, 21, a driving piece, 22, a clamping piece, 23, a limiting piece, 24 and a bidirectional screw;
3. Measuring assembly 31, measuring piece 311, connecting part 312, measuring part 32, storage container 321, storage part 322, placing part 33, displacement sensor;
4. Leveling bolts;
5. A level gauge;
6. And a controller.
Detailed Description
Embodiments of the present utility model are described in detail below, examples of which are illustrated in the accompanying drawings, wherein like or similar reference numerals refer to like or similar parts throughout, or parts having like or similar functions. The embodiments described below by referring to the drawings are illustrative and intended to explain the present utility model and should not be construed as limiting the utility model.
In the description of the present utility model, unless explicitly stated and limited otherwise, the terms "connected," "connected," and "fixed" are to be interpreted broadly, as for example, they may be fixedly connected, or may be detachably connected, or may be electrically connected, or may be directly connected, or may be indirectly connected through an intermediary, or may be in communication with one another in two elements or in an interaction relationship between two elements. The specific meaning of the above terms in the present utility model can be understood by those of ordinary skill in the art according to the specific circumstances.
In the description of the present utility model, unless explicitly stated and limited otherwise, a first feature "above" or "below" a second feature may include the first feature and the second feature being in direct contact, or may include the first feature and the second feature not being in direct contact but being in contact by another feature therebetween. Moreover, a first feature being "above," "over" and "on" a second feature includes the first feature being directly above and obliquely above the second feature, or simply indicating that the first feature is higher in level than the second feature. The first feature being "under", "below" and "beneath" the second feature includes the first feature being directly under and obliquely below the second feature, or simply means that the first feature is less level than the second feature.
The technical scheme of the utility model is further described below by the specific embodiments with reference to the accompanying drawings.
The utility model provides a mortar consistency measuring device which is used for accurately measuring mortar consistency, simplifying operation steps, reducing labor burden of workers and improving measuring efficiency of the mortar consistency.
As shown in fig. 1 to 3, the mortar consistency measuring apparatus includes a support assembly 1, a clamping assembly 2, and a measuring assembly 3. The support assembly 1 comprises a support base 11, a support upright 12 and a guide piece 13, wherein the support upright 12 is vertically connected with the support base 11, the guide piece 13 is fixedly connected with the support upright 12, a guide through hole is formed in the guide piece 13 along the vertical direction, the clamping assembly 2 is arranged on the guide piece 13, the measuring assembly 3 comprises a measuring piece 31, a storage container 32 and a displacement sensor 33, the measuring piece 31 is arranged in the guide through hole in a sliding mode and can be clamped by the clamping assembly 2, the storage container 32 is connected with the support base 11 and is located below the measuring piece 31, the displacement sensor 33 is fixedly connected with the support upright 12 and located above the measuring piece 31, and the displacement sensor 33 can measure the distance from the measuring device to the top end of the measuring piece 31.
When the mortar consistency measuring device provided by the utility model is used, the supporting base 11 is horizontally placed, the measuring piece 31 penetrates through the guide through hole, the guide through hole has a guide effect on the measuring piece 31, the measuring piece 31 is clamped by the clamping component 2 after the measuring piece 31 is adjusted to a proper height, a mortar sample is injected into the storage container 32, the storage container 32 containing the mortar sample is arranged on the supporting base 11 below the measuring piece 31, the measuring piece 31 is loosened by the clamping component 2, the measuring piece 31 is adjusted until the surface of the measuring piece 31 contacts the mortar sample, the measuring piece 31 is clamped again by the clamping component 2, the measuring piece 31 is loosened, the measuring piece 31 falls freely, and the distance between the measuring piece and the top end of the measuring piece 31 is measured by the displacement sensor 33, so that the depth value of the measuring piece 31, namely the mortar consistency, is calculated. The mortar consistency measuring device provided by the utility model is simple to operate, reduces the labor of workers, improves the measuring efficiency, simultaneously, the displacement sensor 33 measures the distance from itself to the top end of the measuring piece 31, reduces the human reading error and improves the measuring precision.
The support assembly 1 is used to support the clamping assembly 2 and the measuring assembly 3. The supporting base 11 and the supporting upright post 12 can be integrally processed, and can also be detachably connected. Illustratively, the support base 11 and the support post 12 are detachably connected for ease of transportation. The shape of the support base 11 and the support column 12 is not particularly limited in this embodiment. Optionally, the supporting base 11 is plate-shaped, so that the weight can be reduced, the cost can be saved, the supporting upright post 12 is cylindrical, the edge transition is smooth, and the scratch of measuring personnel is avoided.
The supporting base 11 further comprises a supporting plane 111, the supporting plane 111 is used for supporting the storage container 32, a plurality of leveling bolts 4 penetrate through the supporting base 11 along the vertical direction, and the levelness of the supporting plane 111 can be adjusted through the leveling bolts 4. The leveling bolts 4 are adjusted to adjust the levelness of the supporting plane 111, so that the storage container 32 on the supporting plane 111 is ensured to be horizontally placed, and the accuracy of mortar consistency measurement is improved.
Specifically, referring to fig. 1 and 2, the supporting plane 111 is rectangular, four leveling bolts 4 are respectively arranged at four corner points of the supporting plane 111, the rectangular supporting plane 111 is convenient to process, the leveling bolts 4 are distributed at the four corner points of the supporting plane 111, the load can be uniformly born, the bearing capacity of the supporting base 11 is improved, and each leveling bolt 4 can be independently adjusted, so that the levelness of the supporting base 11 is convenient to adjust.
For convenience of description, the four leveling bolts 4 are a first leveling bolt, a second leveling bolt, a third leveling bolt and a fourth leveling bolt, respectively, the first leveling bolt and the second leveling bolt are distributed along the length direction of the support plane 111, the first leveling bolt and the third leveling bolt are distributed along the width direction of the support plane 111, and the first leveling bolt and the fourth leveling bolt are distributed at two corner points which are oppositely arranged on the support plane 111. When the support device is used, if the support plane 111 is inclined along the length direction, the first leveling bolt and the second leveling bolt or the third leveling bolt and the fourth leveling bolt can be adjusted to enable the support plane 111 to be horizontal along the length direction, and if the support plane 111 is inclined along the width direction, the first leveling bolt and the third leveling bolt or the second leveling bolt and the fourth leveling bolt can be adjusted to enable the support plane 111 to be horizontal along the width direction.
In other embodiments, the support plane 111 may be circular, and the plurality of leveling bolts 4 are uniformly distributed around the circumference on the support plane 111. The leveling bolts 4 may be four, five or more, and illustratively, five leveling bolts 4 are spaced around the center of the supporting plane 111, and an included angle of 72 ° is formed between adjacent leveling bolts 4, so as to facilitate adjustment of levelness of the supporting plane 111.
In this embodiment, referring to fig. 2, two levels 5 are disposed on the supporting plane 111, and the two levels 5 are vertically disposed to detect the levelness of the supporting plane 111, where the levels 5 are widely available and are convenient to obtain.
Two spirit levels 5 set up perpendicularly, and one of them spirit level 5 can detect whether supporting plane 111 is horizontal along its length direction, and another spirit level 5 can detect whether supporting plane 111 is horizontal along its width direction, judges the incline direction of supporting plane 111 through spirit level 5, and then adjusts leveling bolt 4 and makes supporting plane 111 be in the horizontality, guarantees that the storage container 32 on the supporting plane 111 is placed horizontally, improves mortar consistency measurement's precision.
The guide member 13 provides a guiding function for the measuring member 31, avoids the inclination of the measuring member 31 when the measuring member falls freely, and improves the measuring accuracy of the mortar consistency. The shape of the guide member 13 is not specifically limited in this embodiment, and optionally, the guide member 13 is a rectangular block, so that the processing is convenient, and the edge of the guide member 13 is smoothly transited, so as to avoid scratching the tester.
The guide 13 and the support column 12 can be designed as one piece or can be connected detachably. Illustratively, the guide member 12 is detachably connected to the support column 12, and the guide member 13 is connected to the support column 12 by an existing bolt, which is convenient and firm.
The storage container 32 has an upwardly open, inverted cone-shaped storage space for storing the mortar sample, which saves the amount of mortar and reduces the cost. Meanwhile, the flow of the mortar in the reverse-cone-shaped storage space is more in accordance with the flow characteristic of the mortar in a natural state, so that the flow of the mortar in the natural state can be better simulated, and the measurement accuracy of the consistency of the mortar is improved.
In this embodiment, the storage container 32 further includes a storage portion 321 and a placement portion 322, the storage portion 321 is provided with an inverted conical storage space, the storage portion 321 is located above the placement portion 322, the placement portion 322 has a placement plane, and the placement plane is overlapped with the support plane 111 so that the support plane 111 supports the storage container 32. Alternatively, the placement plane is a rectangular surface, and the size of the placement plane is larger than the size of the inverted cone-shaped storage space cone opening, so that the stability of placing the storage container 32 on the support base 11 can be improved.
Storage portion 321 and placing portion 322 can integrated into one piece, also can dismantle the connection, and illustratively, storage portion 321 can dismantle with placing portion 322 and be connected, and storage portion 321 is located the central region of placing portion 322 top surface, and the top surface of placing portion 322 is provided with two draw-in grooves relatively, and the bottom of storage portion 321 is provided with the connecting rod, and rotatory storage portion 312 makes two draw-in grooves of both ends screw in respectively of connecting rod to fixed placing portion 322 and storage portion 321, fixed firm and the dismouting of being convenient for.
The placement portion 322 is mounted on the supporting plane 111 of the supporting base 11, in this embodiment, the placement portion 322 can be directly placed on the supporting plane 111, and since the supporting plane 111 is a horizontal plane, the placement portion 322 has a larger contact area with the supporting plane 111, and the placement portion 322 can be stably placed on the supporting base 11.
The clamping assembly 2 is used for clamping the measuring member 31, the clamping assembly 2 comprises a driving member 21 and two clamping pieces 22, the driving member 21 can drive the two clamping pieces 22 to be close to each other so as to clamp the measuring member 31, and the driving member 21 can drive the two clamping pieces 22 to be far away from each other so as to release the measuring member 31. The two jaws 22 clamp the measuring element 31 in order to place the storage container 32 on the support base 11, the two jaws 22 unclamping the measuring element 31, the measuring element 31 being able to fall freely to the storage container 32.
Optionally, referring to fig. 3, the clamping assembly 2 further includes a limiting member 23 and a bidirectional screw 24, where the two clamping pieces 22 are slidably connected to the limiting member 23 and are respectively screwed to two ends of the bidirectional screw 24, and the driving member 21 can drive the bidirectional screw 24 to rotate so as to drive the two clamping pieces 22 to approach or separate from each other, so as to facilitate clamping or loosening the measuring member 31.
The limiting member 23 may be provided one or two. Optionally, two limiting pieces 23 are provided, the limiting pieces 23 are rod-shaped, and each clamping piece 22 is provided with two limiting holes for penetrating the limiting pieces 23. Threaded holes are formed between the two limiting holes on each clamping piece 22 and are used for being connected with the bidirectional screw rods 24 in a threaded mode. The driving member 21 may be an existing motor, and the driving member 21 is coupled to the bi-directional screw 24 through a coupling. Because the threads at the two ends of the bi-directional screw 24 are threaded in opposite directions, the two jaws 22 will move in opposite directions as the bi-directional screw 24 rotates. Illustratively, when the driving member 21 is rotated forward, the two jaws 22 move toward each other to clamp the measuring member 31, and when the driving member 21 is rotated backward, the two jaws 22 move toward each other to unclamp the measuring member 31.
In other embodiments, the clamping assembly 2 further includes a limiting member 23 and a sliding rod, wherein one clamping piece 22 is fixedly connected to the limiting member 23, the other clamping piece 22 is slidably connected to the limiting member 23 and fixedly connected to the sliding rod, and the driving member 21 drives the sliding rod to slide so as to drive the two clamping pieces 22 to approach or separate from each other, so as to facilitate clamping or loosening the measuring member 31.
For convenience of description, the clamping piece 22 fixedly connected with the limiting piece 23 is a first clamping piece, the clamping piece 22 fixedly connected with the sliding rod is a second clamping piece, the first clamping piece can be welded on the limiting piece 23, the operation is simple, two sliding holes are formed in the second clamping piece, and the limiting piece 23 penetrates through the sliding holes. The driving member 21 may be an existing cylinder, where a piston rod of the cylinder is fixedly connected with the sliding rod, and when the piston rod moves linearly, the sliding rod can be driven to move linearly, so as to drive the second clamping piece to be close to or far away from the first clamping piece, so as to clamp or loosen the measuring member 31.
The measuring member 31 is used for measuring the mortar consistency. Mortar consistency refers to the property of a mortar to flow under its own weight or external force, and is generally expressed in terms of consistency value. Specifically, the mortar consistency is determined by the depth (mm) of the cone of the mortar consistency meter immersed in the mortar. The greater the penetration depth of the cone, the greater the fluidity of the mortar.
In this embodiment, the measuring member 31 includes a connecting portion 311 and a measuring portion 312, the measuring portion 312 is located at the bottom end of the connecting portion 311, the connecting portion 311 is disposed in the guiding through hole in a penetrating manner and can be clamped by the clamping assembly 2, and the measuring portion 312 can extend into the storage container 32. The clamping assembly 2 clamps the connecting part 311, the storage container 32 can be arranged below the measuring part 312, the clamping assembly 2 loosens the connecting part 311, the measuring piece 31 freely falls under the action of gravity, and the measuring part 312 is immersed in the mortar sample in the storage container 32.
Specifically, referring to fig. 2, the connecting portion 311 is cylindrical, the measuring portion 312 is in the shape of an inverted cone, the edge of the cylindrical connecting portion 311 is smooth in transition, abrasion between the falling portion and the inner wall of the guide through hole is reduced, service life is prolonged, the inverted cone-shaped measuring portion 312 is easier to sink into mortar, and the falling process is not easy to shake, so that accuracy of a measuring result can be improved.
The mortar consistency measuring device provided by the utility model further comprises a controller 6, wherein the controller 6 is detachably connected to the supporting upright post 12, the controller 6 is electrically connected with the displacement sensor 33, and the controller 6 is electrically connected with the clamping assembly 2. The data measured by the displacement sensor 33 can be transmitted to the controller 6, and the controller 6 judges the displacement of the measuring member 31 in the vertical direction based on the data.
Specifically, the controller 6 includes a display screen for displaying the distance between the displacement sensor 33 measured by the displacement sensor 33 to the tip of the measuring member 31. The controller 6 further comprises operating buttons for controlling the displacement sensor 33 and the clamping assembly 2. The operation buttons are "save", "cancel", "determine", "switch", "release", "clamp", "end read" and "initial read", respectively. The displacement sensor 33 can be an existing laser displacement sensor, and has high measurement accuracy and high measurement speed. It should be noted that the laser displacement sensor belongs to the mature technology in the field, and other displacement sensors 33 may be alternatively used in the present utility model.
The mortar consistency measuring device provided by the utility model comprises the following steps when in use:
S1, checking whether the mortar consistency measuring device is normal, checking whether the clamping assembly 2 can work normally, checking whether the measuring piece 31 can slide in the guide through hole smoothly, checking whether the bubble of the level meter 5 is centered, and if the bubble is not in a centered state, adjusting the leveling bolt 4 to center the bubble in the level meter 5, so as to ensure that the supporting base 11 is in a horizontal state.
S2, pressing a switch operation button on the controller 6, after the controller 6 is started, holding the measuring piece 31 tightly, pressing a release operation button, manually adjusting the position of the measuring piece 31, facilitating the installation of the storage container 32 below the measuring piece 31, and then pressing a clamping operation button, so that the clamping assembly 2 clamps the measuring piece 31.
S3, firstly, placing a mortar sample into a storage container 32, enabling the surface of the mortar sample to be lower than an opening 8-12cm of the storage container 32, such as 8cm, 9cm, 10cm, 11cm or 12cm, preferably enabling the surface of the mortar sample to be lower than the opening 10cm of the storage container 32, afterwards, tamping a fixed block in the mortar sample 20-30 times from the center of the storage container 32 to the edge by using a stirring rod, tamping the fixed block in the mortar sample and being capable of discharging air bubbles, such as 20 times, 25 times or 30 times, preferably, tamping the stirring rod 25 times from the center of the storage container 32 to the edge, then lightly beating four positions with equal intervals on the outer surface of the storage container 32 by using a wood hammer for 5-6 times, enabling the mortar sample in the storage container 32 to be distributed more uniformly, enabling the surface of the mortar sample to be more flat, and finally, mounting the storage container 32 containing the mortar sample on a support base 11 and being located right below a measuring piece 31.
S4, holding the measuring piece 31, pressing the 'loosening' operation button, adjusting the bottom end of the measuring piece 31 to a position flush with the surface of the mortar sample, pressing the 'clamping' operation button, clamping the measuring piece 31, then pressing the 'initial reading' operation button, and collecting the distance h1 between the measuring piece 31 and the top end measured by the displacement sensor 33.
S5, pressing a 'loosening' operation button, freely sinking the measuring piece 31, simultaneously enabling the controller 6 to enter a timing state, controlling the clamping assembly 2 to automatically clamp the measuring piece 31 after 10 seconds, pressing a 'final reading' operation button after the clamping assembly 2 clamps the measuring piece 31, and acquiring distances h2, h2-h1 between the measuring piece 31 and the measuring piece 31 measured by the displacement sensor 33 to obtain mortar consistency.
And S6, pressing a 'determination' operation button, recording test data, entering the next mortar consistency measurement test, solving the difference value of the two tests, if the difference value of the two tests is more than 10cm, pressing a 'cancellation' operation button, not recording the test data by the controller 6, carrying out the mortar consistency measurement test again, and if the difference value of the two tests is less than 10cm, pressing a 'preservation' operation button, taking the arithmetic average value of the two test results as the test result and storing the arithmetic average value into the cloud.
It is to be understood that the above examples of the present utility model are provided for clarity of illustration only and are not limiting of the embodiments of the present utility model. Other variations or modifications of the above teachings will be apparent to those of ordinary skill in the art. It is not necessary here nor is it exhaustive of all embodiments. Any modification, equivalent replacement, improvement, etc. which come within the spirit and principles of the utility model are desired to be protected by the following claims.
Claims (10)
1. A mortar consistency measuring device, comprising:
The support assembly (1) comprises a support base (11), a support upright (12) and a guide piece (13), wherein the support upright (12) is vertically connected to the support base (11), the guide piece (13) is fixedly connected to the support upright (12), and a guide through hole is formed in the guide piece (13) along the vertical direction;
-a clamping assembly (2), the clamping assembly (2) being arranged to the guide (13);
Measurement component (3), including measuring piece (31), deposit container (32) and displacement sensor (33), measuring piece (31) slip wear to locate the direction through-hole and can by clamping component (2) clamp, deposit container (32) with support base (11) are connected and are located measuring piece (31) below, displacement sensor (33) fixed connection in support post (12) and be located measuring piece (31) top, displacement sensor (33) can measure self to distance between the top of measuring piece (31).
2. Mortar consistency measuring device according to claim 1, characterized in that the clamping assembly (2) comprises a driving member (21) and two jaws (22), the driving member (21) being able to drive the two jaws (22) towards each other to clamp the measuring member (31), and the driving member (21) being able to drive the two jaws (22) away from each other to release the measuring member (31).
3. Mortar consistency measuring device according to claim 2, characterized in that the clamping assembly (2) further comprises a limiting piece (23) and a bidirectional screw (24), the two clamping pieces (22) are slidably connected to the limiting piece (23) and are respectively screwed at two ends of the bidirectional screw (24), and the driving piece (21) can drive the bidirectional screw (24) to rotate so as to drive the two clamping pieces (22) to be close to or far away from each other.
4. Mortar consistency measuring device according to claim 2, characterized in that the clamping assembly (2) further comprises a limiting member (23) and a sliding rod, wherein one clamping piece (22) is fixedly connected to the limiting member (23), the other clamping piece (22) is slidably connected to the limiting member (23) and fixedly connected to the sliding rod, and the driving member (21) drives the sliding rod to slide so as to drive the two clamping pieces (22) to move closer to or farther away from each other.
5. Mortar consistency measuring device according to claim 1, characterized in that the measuring element (31) comprises a connecting part (311) and a measuring part (312), the measuring part (312) being located at the bottom end of the connecting part (311), the connecting part (311) being arranged in the guiding through hole in a penetrating manner and being able to be clamped by the clamping assembly (2), the measuring part (312) being able to extend into the storage container (32).
6. Mortar consistency measuring device according to claim 5, characterized in that the connecting portion (311) is cylindrical in shape and the measuring portion (312) is inverted cone-shaped in shape.
7. Mortar consistency measurement device according to claim 1, characterized in that the support base (11) comprises a support plane (111), the support plane (111) being used for supporting the storage container (32), a plurality of leveling bolts (4) being arranged on the support base (11) in a vertical direction in a penetrating way, a plurality of leveling bolts (4) being able to adjust the levelness of the support plane (111).
8. Mortar consistency measuring device according to claim 7, characterized in that the supporting plane (111) is rectangular, and in that four leveling bolts (4) are arranged at four corner points of the supporting plane (111), respectively.
9. Mortar consistency measuring device according to claim 7, characterized in that two levels (5) are provided on the support plane (111), two levels (5) being arranged vertically to detect the levelness of the support plane (111).
10. Mortar consistency measuring device according to any of claims 1-9, characterized in that the storage container (32) has an upwardly open, inverted cone-shaped storage space for the mortar sample.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202520262381.4U CN223581683U (en) | 2025-02-19 | 2025-02-19 | Mortar consistency measuring device |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202520262381.4U CN223581683U (en) | 2025-02-19 | 2025-02-19 | Mortar consistency measuring device |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN223581683U true CN223581683U (en) | 2025-11-21 |
Family
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Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202520262381.4U Active CN223581683U (en) | 2025-02-19 | 2025-02-19 | Mortar consistency measuring device |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN223581683U (en) |
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2025
- 2025-02-19 CN CN202520262381.4U patent/CN223581683U/en active Active
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