CN212340849U - Portable full-automatic cement anti-bending and anti-compression integrated machine - Google Patents

Portable full-automatic cement anti-bending and anti-compression integrated machine Download PDF

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Publication number
CN212340849U
CN212340849U CN202021223195.3U CN202021223195U CN212340849U CN 212340849 U CN212340849 U CN 212340849U CN 202021223195 U CN202021223195 U CN 202021223195U CN 212340849 U CN212340849 U CN 212340849U
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chassis
base
integrated machine
workbench
bending
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CN202021223195.3U
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Chinese (zh)
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杨胜国
钱国立
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Shenzhen Yidongyang Building Material Co ltd
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Shenzhen Yidongyang Building Material Co ltd
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Abstract

The utility model relates to a portable full-automatic cement bending and compression resistant integrated machine, which comprises a workbench, wherein a mounting rack is arranged on the workbench, a liftable pressing component is arranged at the upper end of the mounting rack, and a chassis for collecting scraps is arranged at the lower end of the mounting rack; a base used for placing cement mortar is arranged in the chassis, and the base is arranged right below the pressing assembly; after the cement mortar is placed into the base, the pressing component descends to press the cement mortar. The utility model discloses can collect the piece, need not people and all clear up the piece on the workstation after the test at every turn, have the effect of being convenient for clear up the piece.

Description

Portable full-automatic cement anti-bending and anti-compression integrated machine
Technical Field
The utility model belongs to the technical field of cement mortar performance check out test set's technique and specifically relates to an anti resistance to compression all-in-one of anti book of portable full-automatic cement is related to.
Background
The full-automatic cement anti-bending and anti-pressing integrated machine is equipment integrating an anti-bending machine and an anti-pressing machine, has the test functions of cement mortar anti-bending property and anti-pressing property, and is used for the anti-bending and anti-pressing strength test of cement mortar.
The full-automatic cement anti-bending and anti-pressing integrated machine comprises a workbench, and the anti-bending machine and the anti-pressing machine are installed on the workbench of the full-automatic cement anti-bending and anti-pressing integrated machine. Wherein the anti machine of rolling over is including installing the base on the workstation, has seted up the recess on the base for place cement mortar. A pressing block is arranged above the base and can ascend or descend. Be connected with controller and display screen on the briquetting, the controller can control the lift of briquetting, when the briquetting descends, presses on cement mortar, test data can show through the display screen. When the cement mortar was crushed, the test was ended.
The above prior art solutions have the following drawbacks: because cement mortar has certain hardness, cement mortar is crushed the back usually, and cement mortar can divide into two to three bold to along with the piece drops on the workstation, need clear up the piece on the workstation this moment, with the clean and tidy of assurance workstation. However, the need to clean the debris after each test presents a certain inconvenience to people.
SUMMERY OF THE UTILITY MODEL
Not enough to prior art existence, the utility model aims at providing an anti resistance to compression all-in-one of portable full-automatic cement, it can collect the piece, need not people and all clears up the piece on the workstation after the test at every turn, has the effect of being convenient for clear up the piece.
The above utility model discloses an above-mentioned utility model purpose can realize through following technical scheme:
a portable full-automatic cement bending and compression resistant integrated machine comprises a workbench, wherein a mounting rack is arranged on the workbench, a liftable pressing assembly is arranged at the upper end of the mounting rack, and a chassis for collecting scraps is arranged at the lower end of the mounting rack; a base used for placing cement mortar is arranged in the chassis, and the base is arranged right below the pressing assembly; after the cement mortar is placed into the base, the pressing component descends to press the cement mortar.
Through adopting above-mentioned technical scheme, through locating the base in the chassis, the chassis is located between base and the workstation, also namely the chassis separates base and workstation for when having the piece to drop in the base, the piece can not directly drop on the workstation, but drops on the chassis. The chassis plays the effect of collecting the piece, and it makes people all clear up the piece on the workstation after need not to test at every turn, can collect through test many times, chassis and clear up again after having full up the piece, has the effect of the clearance piece of being convenient for, helps keeping the workstation clean and tidy.
The present invention may be further configured in a preferred embodiment as: at least one side of the bottom plate is provided with an opening.
Through adopting above-mentioned technical scheme, after the opening on the chassis, the piece can be followed chassis open-ended one side and directly cleaned out, has the effect of being convenient for clear up the piece in the chassis.
The present invention may be further configured in a preferred embodiment as: the chassis is detachably connected to the base through screws.
Through adopting above-mentioned technical scheme, can dismantle the chassis with the base through the screw and be connected, make the base can follow the chassis and dismantle to be convenient for clear up the piece in gap between base and the chassis, further be favorable to people to clear up the piece in the chassis.
The present invention may be further configured in a preferred embodiment as: the base plate is connected to the workbench, a bolt is arranged on the base plate and penetrates through the base plate and the mounting frame, and the base plate is detachably connected with the mounting frame.
Through adopting above-mentioned technical scheme, the bolt passes chassis and mounting bracket, realizes installing the chassis on the mounting bracket, takes off the back with the bolt from chassis and mounting bracket, can make the chassis dismantle from the mounting bracket, then pours the piece, and such clastic mode of clearance is more convenient.
The present invention may be further configured in a preferred embodiment as: there is the clearance between chassis and the workstation, be equipped with the screw rod on the chassis, threaded connection has the nut behind the screw rod passes chassis and mounting bracket, the chassis can rotate on the mounting bracket.
Through adopting above-mentioned technical scheme, the chassis passes through the bolt and can rotate on the mounting bracket, and the chassis open-ended one side rotates the back downwards, and the bottom surface on chassis forms the inclined plane, makes the piece can slide along the inclined plane under the effect of gravity to it is more convenient to make clastic clearance.
The present invention may be further configured in a preferred embodiment as: an elastic part for supporting the chassis is arranged between the chassis and the workbench, and two ends of the elastic part are respectively connected to the chassis and the workbench.
Through adopting above-mentioned technical scheme, the elastic component is used for supporting the chassis, makes the chassis can stabilize more, difficult rotation when normal work to guarantee the machining accuracy of cement mortar.
The present invention may be further configured in a preferred embodiment as: the fixing piece is placed on the workbench and is a balancing weight, and the fixing piece can be pressed on the bottom surface, close to the side face of the opening, of the chassis to limit the rotation of the chassis.
Through adopting above-mentioned technical scheme, under the effect of elastic component, the chassis rotates the state that just can keep the slope under the effect of external force after, and the mounting can regard as the source of this external force, and the mounting presses back on the chassis, provides pressure for the chassis to the rotation on restriction chassis.
The present invention may be further configured in a preferred embodiment as: the surface of the chassis is a smooth surface.
Through adopting above-mentioned technical scheme, smooth surface can reduce the frictional force between piece and the chassis to more help the slip of piece on the chassis.
To sum up, the utility model discloses a following at least one useful technological effect:
1. through locating the base in the chassis, the chassis is located between base and the workstation, and the chassis separates base and workstation promptly for when having the piece to drop in the base, the piece can not directly drop on the workstation, but drops on the chassis. The chassis plays the effect of collecting the piece, and it makes people all clear up the piece on the workstation after need not to test at every turn, can collect through test many times, chassis and clear up again after having full up the piece, has the effect of the clearance piece of being convenient for, helps keeping the workstation clean and tidy.
2. Through setting up base and chassis, chassis and workstation into to dismantle and be connected, be convenient for clear up the piece in the chassis.
3. Through setting up the bolt, the chassis passes through the bolt and can rotate on the mounting bracket, and the one side of chassis open-ended rotates the back down, and the bottom surface on chassis forms the inclined plane, makes the piece can slide along the inclined plane under the effect of gravity to it is more convenient to make clastic clearance.
Drawings
Fig. 1 is a schematic view of an overall structure of a first embodiment of the present invention.
Fig. 2 is a schematic structural diagram of an anti-bending machine in a first embodiment of the present invention.
Fig. 3 is a schematic structural view of the second chassis of the embodiment of the present invention when not rotating.
Fig. 4 is a schematic structural view of the second chassis according to the embodiment of the present invention after rotating.
In the figure, 1, a workbench; 2. an anti-bending machine; 21. a mounting frame; 211. a support pillar; 212. a protective cover; 22. a base; 221. mounting a plate; 222. a placement body; 23. a pressing assembly; 231. a connecting portion; 232. a detection unit; 3. resisting a press; 4. a top plate; 5. an electric wire; 6. a chassis; 7. a screw; 8. a bolt; 91. a screw; 92. a nut; 101. an elastic member; 102. and a fixing member.
Detailed Description
The present invention will be described in further detail with reference to the accompanying fig. 1-4.
Example one
Referring to fig. 1, for the utility model discloses an anti resistance to compression all-in-one of portable full-automatic cement, including workstation 1, 1 length direction both ends of workstation are equipped with anti machine 2 and resistance to compression machine 3 respectively. Wherein anti machine 2 of rolling over includes mounting bracket 21, is equipped with the base 22 that is used for placing cement mortar on the mounting bracket 21 to and be used for pressing the subassembly 23 that presses of cement mortar. The anti-bending machine 2 further comprises a controller and a display screen (the controller and the display screen are shown in the figure), the controller, the display screen and the pressing component 23 are electrically connected, the controller controls the pressing component 23 to press the cement mortar, and the display screen displays test data of the pressing component 23 after pressing the cement mortar. Wherein, a protective cover 212 for preventing the fragments from splashing when the cement mortar is crushed is detachably arranged on the supporting column 211.
Referring to fig. 2, the mounting frame 21 includes two vertical supporting columns 211, the lower ends of the supporting columns 211 are fixedly connected to the upper surface of the workbench 1 (see fig. 1), the upper ends of the supporting columns 211 are connected to a top plate 4, and two ends of the top plate 4 are respectively connected to the upper ends of the two supporting columns 211. The pressing member 23 is attached to the middle of the top plate 4.
The pressing unit 23 includes a connecting portion 231 connected to the lower surface of the top plate 4, a detecting portion 232 is connected to the lower end of the connecting portion 231, and one side of the detecting portion 232 is electrically connected to the controller through an electric wire 5. The detection unit 232 can be raised or lowered on the connection unit 231.
Under detection portion 232 is located to base 22, base 22 includes circular mounting panel 221, and mounting panel 221 upper surface is connected with places the body 222, places the whole U type that is basically of body 222, places the middle groove that is used for placing cement mortar that forms of body 222, and cement mortar can be put into the groove perpendicularly.
Referring to fig. 2, the lower end of the supporting column 211 is connected with a bottom plate 6 for collecting debris, the bottom plate 6 is arranged between the two supporting columns 211, the two sides of the bottom plate 6 are both provided with bolts 8, and the bolts 8 penetrate through the bottom plate 6 and the supporting columns 211 to install the bottom plate 6 on the supporting columns 211. The chassis 6 is disposed below the detection portion 232, and the lower surface of the chassis 6 is attached to the upper surface of the table 1 (see fig. 1). The whole body of the chassis 6 is basically a rectangular body, the chassis 6 is of a hollow structure, the top of the chassis 6 is open, the opening is communicated with the inside of the chassis 6, and a groove for collecting debris is formed in the chassis 6. The mounting plate 221 is mounted in the chassis 6 by screws 7.
In this embodiment, the chassis 6 is made of stainless steel, so that the surface of the chassis 6 is smooth, but in other embodiments, the chassis is not limited thereto, and may also be made of glass, plastic with a smooth coating on the surface, and the like, as long as the surface of the chassis 6 is ensured to be smooth in principle.
Referring to fig. 1 and 2, after placing the cement mortar to be tested into the groove of the placement body 222, the detection portion 232 descends, and the detection portion 232 can press the cement mortar, so as to detect the breaking strength of the cement mortar. When the strength applied to the cement mortar is enough, the cement mortar can be broken and crushed, and broken fragments of the cement mortar can fall off. The fallen scraps can be swept out by hands or other tools, and then the scraps can be cleaned. Because chassis 6 locates between placing body 222 and the workstation 1, the piece that drops on the cement mortar can directly drop on chassis 6, and can not drop on workstation 1, chassis 6 plays the effect of collecting the piece, it makes people all clear up the piece on workstation 1 after need not at every turn to test, can pass through many times of tests, chassis 6 collects and clears up again after having full up the piece, has the clastic effect of the clearance of being convenient for, help keeping workstation 1 clean and tidy.
Referring to fig. 2, when the bottom plate 6 is full of debris, the bottom plate 6 needs to be cleaned to provide enough space for the debris to continue to collect. Preferably, the chassis 6 is far away from the opening of the electric wire 5, and after the opening of the side surface of the chassis 6, the scraps can be directly cleaned from the opening of the chassis 6, so that the effect of cleaning the scraps in the chassis 6 is achieved.
Simultaneously, because mounting panel 221 passes through the screw 7 with the chassis 6 and is connected, chassis 6 passes through bolt 8 with support column 211 and is connected, namely mounting panel 221 and chassis 6, be connected between chassis 6 and the support column 211 for can dismantling the connection, consequently take out screw 7 and bolt 8 after, chassis 6 can follow mounting panel 221, separate on the support column 211, overturn chassis 6 this moment, can pour the piece, such clastic mode of clearance is more convenient, and the piece that drops gap between mounting panel 221 and chassis 6 also can obtain the clearance, just so clear up cleaner.
Example two
Referring to fig. 3, for the utility model discloses an anti resistance to compression all-in-one of portable full-automatic cement, with the difference of embodiment one, workstation 1 top is located to chassis 6 in this embodiment, has the clearance between chassis 6 and the workstation 1. Both sides of the base plate 6 are provided with screws 91, the screws 91 are connected with nuts 92 through the base plate 6 and the supporting columns 211 in a threaded manner, and the base plate 6 is mounted on the supporting columns 211. The nut 92 is screwed on the screw 91, so that the chassis 6 is stably fixed between the two support columns 211 after the nut 92 is tightly abutted against the support columns 211; after loosening the nut 92 on the screw 91, the chassis 6 can be turned between the two support posts 211. After the one side of 6 open-ended on chassis rotated downwards, the bottom surface on chassis 6 formed the inclined plane, made the piece can slide along the inclined plane under the effect of gravity to it is more convenient to make the clearance of piece.
After the nuts 92 are screwed on the screws 91, in order to enable the chassis 6 to be more stably mounted on the supporting posts 211, the four corners of the chassis 6 are provided with elastic members 101. The elastic member 101 is a spring, the elastic member 101 can be compressed and deformed, one end of the elastic member 101 is connected to the upper surface of the table 1, and the other end is connected to the lower surface of the chassis 6. When elastic component 101 is in the natural state, elastic component 101 can support chassis 6 to make chassis 6 can stabilize more, be difficult for rotating when normal work, and then guarantee the machining accuracy of cement mortar. When the elastic element 101 is compressed, the chassis 6 can be rotated.
Referring to fig. 4, further, after the chassis 6 rotates under the supporting action of the elastic member 101, in order to keep the chassis 6 in a tilted state, a fixing member 102 is placed on the worktable 1, the fixing member 102 is a counterweight, and the fixing member 102 has a large weight. After the open side of the chassis 6 is rotated downwards and the fixing member 102 is placed on the bottom surface of the chassis 6 close to the side of the opening, the fixing member 102 can press the bottom surface of the chassis 6, thereby limiting the rotation of the chassis 6 and facilitating the cleaning of the debris in the chassis 6.
The embodiment of this specific implementation mode is the preferred embodiment of the present invention, not limit according to this the utility model discloses a protection scope, so: all equivalent changes made according to the structure, shape and principle of the utility model are covered within the protection scope of the utility model.

Claims (8)

1. The utility model provides an anti resistance to compression all-in-one of anti book of portable full-automatic cement which characterized in that: the device comprises a workbench (1), wherein a mounting rack (21) is arranged on the workbench (1), a liftable pressing assembly (23) is arranged at the upper end of the mounting rack (21), and a chassis (6) for collecting scraps is arranged at the lower end of the mounting rack (21); a base (22) for placing cement mortar is arranged in the chassis (6), and the base (22) is arranged right below the pressing component (23); after cement mortar is put into the base (22), the pressing component (23) descends to press the cement mortar.
2. The portable full-automatic cement bending and compression resistant integrated machine according to claim 1, is characterized in that: at least one side of the chassis (6) is provided with an opening.
3. The portable full-automatic cement bending and compression resistant integrated machine according to claim 2, characterized in that: the chassis (6) is detachably connected to the base (22) through screws (7).
4. The portable full-automatic cement bending and compression resistant integrated machine according to claim 3, characterized in that: the base plate (6) is connected to the workbench (1), a bolt (8) is arranged on the base plate (6), the bolt (8) penetrates through the base plate (6) and the mounting frame (21), and the base plate (6) is detachably connected with the mounting frame (21).
5. The portable full-automatic cement bending and compression resistant integrated machine according to claim 3, characterized in that: there is the clearance between chassis (6) and workstation (1), be equipped with screw rod (91) on chassis (6), threaded connection has nut (92) behind chassis (6) and mounting bracket (21) is passed in screw rod (91), chassis (6) can rotate on mounting bracket (21).
6. The portable full-automatic cement bending and compression resistant integrated machine according to claim 5, characterized in that: an elastic part (101) used for supporting the chassis (6) is arranged between the chassis (6) and the workbench (1), and two ends of the elastic part (101) are connected to the chassis (6) and the workbench (1) respectively.
7. The portable full-automatic cement bending and compression resistant integrated machine according to claim 6, characterized in that: a fixing piece (102) is placed on the workbench (1), the fixing piece (102) is a balancing weight, and the fixing piece (102) can be pressed on the bottom surface, close to the side face of the opening, of the chassis (6) to limit the rotation of the chassis (6).
8. The portable full-automatic cement bending and compression resistant integrated machine according to claim 7, is characterized in that: the surface of the chassis (6) is a smooth surface.
CN202021223195.3U 2020-06-28 2020-06-28 Portable full-automatic cement anti-bending and anti-compression integrated machine Active CN212340849U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021223195.3U CN212340849U (en) 2020-06-28 2020-06-28 Portable full-automatic cement anti-bending and anti-compression integrated machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021223195.3U CN212340849U (en) 2020-06-28 2020-06-28 Portable full-automatic cement anti-bending and anti-compression integrated machine

Publications (1)

Publication Number Publication Date
CN212340849U true CN212340849U (en) 2021-01-12

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ID=74078247

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021223195.3U Active CN212340849U (en) 2020-06-28 2020-06-28 Portable full-automatic cement anti-bending and anti-compression integrated machine

Country Status (1)

Country Link
CN (1) CN212340849U (en)

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