CN212762444U - Numerical control machine tool for canned motor pump - Google Patents

Numerical control machine tool for canned motor pump Download PDF

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Publication number
CN212762444U
CN212762444U CN202021817196.0U CN202021817196U CN212762444U CN 212762444 U CN212762444 U CN 212762444U CN 202021817196 U CN202021817196 U CN 202021817196U CN 212762444 U CN212762444 U CN 212762444U
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fixedly connected
block
fuselage
gear
machine tool
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CN202021817196.0U
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Chinese (zh)
Inventor
田喜军
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Dalian Connell Pump Co ltd
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Dalian Connell Pump Co ltd
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Abstract

The utility model discloses a digit control machine tool for canned motor pump, including fuselage, base and operation ware, fuselage bottom fixedly connected with base, fuselage front end right side fixedly connected with operation ware, inside collection device that is provided with in the middle of the fuselage, the first fixed block of fixedly connected with in the middle of the fuselage bottom, fuselage front end right side is provided with reinforcing apparatus. The utility model discloses when needing to collect iron fillings, through removing a collection bits case with the hand, a collection bits case removes and drives first slider and removes in that the second spout is inside, then inside inserting the round hole with the bolt, so that fixed collection bits case, it rotates to make the motor drive the toothed disc, the toothed disc rotates and drives gear rod and remove inside first spout, gear rod removes simultaneously and drives a collection bits case and removes, will collect bits case and send into the fuselage inside, so that collect iron fillings, avoid the staff to clean iron fillings, the operating time is saved, the efficiency of device is improved, the practicality of device is improved simultaneously.

Description

Numerical control machine tool for canned motor pump
Technical Field
The utility model relates to a digit control machine tool technical field specifically is a digit control machine tool for canned motor pump.
Background
Along with the rapid development of science and technology and economy, the machine tool is also in the rapid development, from ordinary lathe before to present digit control machine tool, the appearance of digit control machine tool just obtains extensive application, is slowly replacing ordinary lathe, and the digit control machine tool is the automatic machine tool that is equipped with program control system, does not need operating personnel to control the lathe tool when using, and operating personnel only need with the program input can, present digit control machine tool that is used for the canned motor pump basically satisfies people's demand, but still has some problems.
Present digit control machine tool for canned motor pump, at digit control machine tool during operation, iron fillings generally can drop inside the digit control machine tool, and inconvenient staff cleans, leads to cleaning the extravagant plenty of time of iron fillings, reduces the efficiency nature of device, reduces the practicality of device simultaneously.
And present digit control machine tool for canned motor pump, the operator generally settles on digit control machine tool housing, and easy collision damage takes place, and the staff can not clearly see the data on the operator under the highlight, reduces the security of device, reduces the accuracy of device simultaneously, therefore urgently needed a digit control machine tool for canned motor pump to solve above-mentioned problem.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a digit control machine tool for canned motor pump to solve the traditional digit control machine tool for canned motor pump that provides in the above-mentioned background art, the iron fillings that the digit control machine tool during operation produced generally are not convenient for the staff and clean, and the easy collision of operator damages, and the data problem on the operator under the staff can not clearly see the highlight.
In order to achieve the above object, the utility model provides a following technical scheme: the utility model provides a digit control machine tool for canned motor pump, includes fuselage, base and operation ware, fuselage bottom fixedly connected with base, fuselage front end right side fixedly connected with operation ware, inside collection device that is provided with in the middle of the fuselage, the first fixed block of fixedly connected with in the middle of the fuselage bottom, first spout has been seted up in the middle of the first fixed block, first spout is embedded to have a gear lever, the gear lever meshing has the toothed disc, gear disc bottom fixedly connected with round bar, round bar bottom fixed connection is in the motor output end, round bar bottom fixed connection is in base bottom inner wall, fuselage front end right side is provided with reinforcing apparatus.
Preferably, collection device includes motor, round bar, toothed disc, first fixed block, first spout, toothed bar, second spout, first slider and collection bits case, base bottom inner wall fixedly connected with motor, motor output end fixedly connected with round bar, round bar top fixedly connected with toothed disc, the toothed disc meshing has the toothed bar, the toothed bar is embedded in first spout, the first fixed block of fuselage bottom inner wall fixedly connected with, first spout has been seted up in the middle of the first fixed block, the second spout has been seted up on toothed bar top, the second spout is embedded to have first slider, first slider top fixedly connected with collection bits case.
Preferably, the gear rod and the first sliding block are provided with round holes, and bolts are inserted into the round holes.
Preferably, reinforcing apparatus includes second fixed block and dead lever, the equal fixedly connected with second fixed block in both sides about the operation ware top, the equal fixedly connected with dead lever in the operation ware left and right sides, two sets of be provided with rotating device in the middle of the second fixed block, two sets of all be provided with the mobile device in the middle of the dead lever.
Preferably, the rotating device comprises a connecting block, a baffle and a connecting rod, and is two groups, the second fixing block is connected with the connecting block and the connecting block, and is two groups, the baffle is fixedly connected with the bottom end of the connecting block, and the left side and the right side of the bottom end of the baffle are connected with the connecting rod through the rotating shaft.
Preferably, the moving device comprises a second sliding block, a slot hole, a first limiting block, second stopper, spring, third spout and spacing hole, it is two sets of the third spout has all been seted up in the middle of the dead lever, and is two sets of spacing hole has all evenly been seted up on both sides about the dead lever, and is two sets of the third spout all embeds has the second slider, two sets of institute, and second slider top all is connected with the connecting rod through the pivot, and is two sets of slotted hole has all been seted up in the middle of the second slider, and two sets of slotted hole right-hand member all embeds has first stopper, two sets of the one end of first stopper left end all fixedly connected with spring, two sets of the other end all fixed connection of spring is in second stopper right-hand member, and is two sets of the second stopper all embeds in the slotted hole left end, and is two sets of first stopper all laminates with spacing hole, and.
Compared with the prior art, the beneficial effects of the utility model are that:
1. the numerical control machine tool for the canned motor pump is provided with a motor, a gear disc, a first sliding groove, a gear rod, a second sliding groove, a first sliding block, a scrap collecting box, a round hole and a bolt, when scrap iron needs to be collected, the scrap collecting box is moved by hands, the first sliding block is driven to move inside the second sliding groove by the movement of the scrap collecting box, then the bolt is inserted into the round hole so as to fix the scrap collecting box, the motor is connected with a power supply to enable the motor to drive the gear disc to rotate, the gear disc rotates to drive the gear rod to move inside the first sliding groove, meanwhile, the gear rod moves to drive the scrap collecting box to move, the scrap collecting box is sent into a machine body so as to collect the scrap iron, the scrap iron is prevented from being cleaned by workers, the working time is saved, the efficiency of the device is improved;
2. the numerical control machine tool for the shielding pump is provided with a baffle, a second sliding block, a first limiting block, a second limiting block, a spring, a third sliding groove and a limiting hole, when an operator needs to be protected, the baffle is turned by hands, the baffle drives a connecting block to rotate on a rotating shaft, the baffle rotates to push a connecting rod to move, the connecting rod moves to drive the second sliding block to move in the third sliding groove, the second sliding block moves to separate the first limiting block and the second limiting block from the limiting hole, the spring is compressed, when the operator needs to observe data on the operator under strong light, the baffle is turned by hands to drive the second sliding block to move in the third sliding groove, when the baffle is turned to block the strong light, the first limiting block and the second limiting block are attached to the limiting hole so as to fix the baffle, and a worker can conveniently see the data on the operator under the strong light, the collision damage of the operator is avoided, the safety of the device is improved, and meanwhile, the accuracy of the device is improved.
Drawings
Fig. 1 is a schematic front view of a cross-sectional structure of the present invention;
fig. 2 is an enlarged schematic structural view of a point a in fig. 1 according to the present invention;
fig. 3 is an enlarged schematic structural view of the utility model at the position B in fig. 1;
fig. 4 is a schematic side view of the cross-sectional structure of the present invention.
In the figure: 1. a body; 2. a base; 3. an operator; 410. a motor; 411. a round bar; 412. a gear plate; 413. a first fixed block; 414. a first chute; 415. a gear lever; 416. a second chute; 417. a first slider; 418. a scrap collecting box; 419. a circular hole; 420. a bolt; 510. a second fixed block; 511. connecting blocks; 512. a baffle plate; 513. a connecting rod; 514. a second slider; 515. a slot; 516. a first stopper; 517. a second limiting block; 518. a spring; 519. a third chute; 520. fixing the rod; 521. and a limiting hole.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-4, the present invention provides an embodiment: a numerical control machine tool for a shield pump comprises a machine body 1, a base 2 and an operator 3, wherein the base 2 is fixedly connected with the bottom end of the machine body 1, the operator 3 is fixedly connected with the right side of the front end of the machine body 1, a collecting device is arranged in the middle of the machine body 1, a first fixed block 413 is fixedly connected with the middle of the bottom end of the machine body 1, a first sliding groove 414 is formed in the middle of the first fixed block 413, a gear rod 415 is embedded in the first sliding groove 414, the gear rod 415 is meshed with a gear disc 412, a round rod 411 is fixedly connected with the bottom end of the gear disc 412, the bottom end of the round rod 411 is fixedly connected with the output end of a motor 410, the collecting device comprises a motor 410, a round rod 411, a gear disc 412, a first fixed block 413, a first sliding groove 414, a gear rod 415, a second sliding groove 416, a first sliding block 417 and a chip collecting box 418, a motor 410, the top end of the round rod 411 is fixedly connected with a gear disc 412, the gear disc 412 is engaged with a gear rod 415, the gear rod 415 is embedded in a first chute 414, the inner wall of the bottom end of the machine body 1 is fixedly connected with a first fixed block 413, the middle of the first fixed block 413 is provided with the first chute 414, the top end of the gear rod 415 is provided with a second chute 416, the second chute 416 is embedded with a first sliding block 417, the top end of the first sliding block 417 is fixedly connected with a scrap collecting box 418, the gear rod 415 and the first sliding block 417 are both provided with a round hole 419, a bolt 420 is inserted into the round hole 419, the scrap collecting box 418 is further fixed through the bolt 420 so as to better collect scrap, the practicability of the device is improved, the scrap collecting box 418 is moved by hand to drive the first sliding block 417 to move in the second chute 416, then the bolt 420 is inserted into the round hole 419 so as to fix the scrap collecting box 418, the motor 410 is connected with a power supply, the gear disc 412 rotates to drive the gear rod 415 to move in the first sliding groove 414, meanwhile, the gear rod 415 moves to drive the scrap collecting box 418 to move, and the scrap collecting box 418 is sent into the machine body 1, so that scrap iron is collected, workers are prevented from cleaning scrap iron, the working time is saved, the efficiency of the device is improved, and meanwhile, the practicability of the device is improved;
the right side of the front end of the machine body 1 is provided with a reinforcing device, the reinforcing device comprises second fixed blocks 510 and fixed rods 520, the left side and the right side of the top end of the operator 3 are fixedly connected with the second fixed blocks 510, the left side and the right side of the operator 3 are fixedly connected with the fixed rods 520, a rotating device is arranged between the two groups of second fixed blocks 510, a moving device is arranged between the two groups of fixed rods 520 and comprises a connecting block 511, a baffle 512 and a connecting rod 513, the two groups of second fixed blocks 510 are connected with the connecting block 511 through rotating shafts, the bottom ends of the two groups of connecting blocks 511 are fixedly connected with the baffle 512, the left side and the right side of the bottom ends of the two groups of baffles 512 are connected with the connecting rod 513 through rotating shafts, the moving device comprises a second sliding block 514, a slotted hole 515, a first limiting block 516, a second limiting block 517, a spring 518, two sets of third sliding grooves 519 are embedded with second sliding blocks 514, two sets of sliding blocks are provided, top ends of the second sliding blocks 514 are connected with connecting rods 513 through rotating shafts, slotted holes 515 are provided in the middle of the two sets of second sliding blocks 514, right ends of the two sets of slotted holes 515 are embedded with first limiting blocks 516, left ends of the two sets of first limiting blocks 516 are fixedly connected with one ends of springs 518, the other ends of the two sets of springs 518 are fixedly connected with right ends of second limiting blocks 517, the two sets of second limiting blocks 517 are embedded in left ends of the slotted holes 515, the two sets of first limiting blocks 516 are attached to limiting holes 521, the two sets of second limiting blocks 517 are attached to the limiting holes 521, the baffle 512 is turned by hand to drive the connecting block 511 to rotate on the rotating shafts, meanwhile, the baffle 512 rotates to push the connecting rods 513 to move, the connecting rods 513 move to drive the second sliding blocks 514 to move in the third sliding grooves 519, the second sliding blocks 514 move to separate, simultaneously compression spring 518, it can to cover operator 3 when baffle 512, when the data on the operator 3 is observed to needs under the highlight, through turning over baffle 512 with the hand, baffle 512 rotates and drives second slider 514 and move in third spout 519 is inside, when turning over baffle 512 to block the highlight, first stopper 516 and second stopper 517 laminate with spacing hole 521 mutually, so that fixed stop 512, make things convenient for the staff to see the data on operator 3 clearly under the highlight, avoid operator 3 to collide with the damage, the security of high-speed device, the accuracy of high-speed device simultaneously.
The working principle is as follows: when scrap iron needs to be collected, the scrap collecting box 418 is moved by hands, the scrap collecting box 418 is moved to drive the first sliding block 417 to move inside the second sliding groove 416, then the bolt 420 is inserted into the round hole 419 by hands so as to fix the scrap collecting box 418, then the motor 410 is connected with a power supply, the output end of the motor 410 is rotated, the output end of the motor 410 drives the round rod 411 to rotate, the round rod 411 rotates to drive the gear disc 412 to rotate, the gear disc 412 rotates to drive the gear rod 415 to move inside the first sliding groove 414, meanwhile, the first sliding groove 414 is fixed in the middle of the first fixing block 413, the gear rod 415 moves to drive the scrap collecting box 418 to move, and the scrap collecting box 418 is sent into the machine body 1 so that the scrap collecting box 418 can collect scrap iron;
when the operator 3 needs to be protected, the baffle 512 is turned by hand, so that the baffle 512 drives the connecting block 511 to rotate on the rotating shaft and is fixed in the middle of the second fixing block 510 in a rotating manner, the baffle 512 rotates to drive the connecting rod 513 to rotate, the connecting rod 513 rotates to push the second sliding block 514 to move in the third sliding groove 519, the third sliding groove 519 is fixed in the middle of the fixing rod 520, the second sliding block 514 moves to enable the first limiting block 516 and the second limiting block 517 to approach each other, the spring 518 is compressed, the first limiting block 516 and the second limiting block 517 move to be separated from the limiting hole 521, when the baffle 512 covers the operator 3, when a worker needs to observe data on the operator 3 under the strong light, the baffle 512 is turned by hand to drive the connecting rod 513 to rotate, the connecting rod 513 rotates to push the second sliding block 514 to move in the third sliding groove 519 to turn the baffle 512 to the strong light, meanwhile, the spring 518 pushes the first limiting block 516 and the second limiting block 517 to enter the limiting hole 521, so that the first limiting block 516 and the second limiting block 517 fix the second sliding block 514 to move, and the fixed baffle 512 rotates.
It is obvious to a person skilled in the art that the invention is not restricted to details of the above-described exemplary embodiments, but that it can be implemented in other specific forms without departing from the spirit or essential characteristics of the invention. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.

Claims (6)

1. The utility model provides a digit control machine tool for canned motor pump, includes fuselage (1), base (2) and operation ware (3), fuselage (1) bottom fixedly connected with base (2), fuselage (1) front end right side fixedly connected with operation ware (3), its characterized in that: the inside collection device that is provided with in the middle of fuselage (1), the first fixed block of fixedly connected with (413) in the middle of fuselage (1) bottom, first spout (414) have been seted up in the middle of first fixed block (413), first spout (414) are embedded to have gear pole (415), gear pole (415) meshing has gear dish (412), gear dish (412) bottom fixedly connected with round bar (411), round bar (411) bottom fixed connection is in motor (410) output, round bar (411) bottom fixed connection is in base (2) bottom inner wall, fuselage (1) front end right side is provided with reinforcing apparatus.
2. A numerically controlled machine tool for canned pumps according to claim 1, characterized in that: the collecting device comprises a motor (410), a round rod (411), a gear disc (412), a first fixing block (413), a first chute (414), a gear rod (415), a second chute (416), a first sliding block (417) and a chip collecting box (418), wherein the inner wall of the bottom end of the base (2) is fixedly connected with the motor (410), the output end of the motor (410) is fixedly connected with the round rod (411), the top end of the round rod (411) is fixedly connected with the gear disc (412), the gear disc (412) is meshed with the gear rod (415), the gear rod (415) is embedded in the first chute (414), the inner wall of the bottom end of the machine body (1) is fixedly connected with the first fixing block (413), the first chute (414) is formed in the middle of the first fixing block (413), the top end of the gear rod (415) is provided with the second chute (416), and the second chute (416) is embedded with the first sliding block (, the top end of the first sliding block (417) is fixedly connected with a scrap collecting box (418).
3. A numerically controlled machine tool for canned pumps according to claim 2, characterized in that: round holes (419) are formed in the gear rod (415) and the first sliding block (417), and a bolt (420) is inserted into each round hole (419).
4. A numerically controlled machine tool for canned pumps according to claim 1, characterized in that: reinforcing apparatus includes second fixed block (510) and dead lever (520), all fixedly connected with second fixed block (510) in both sides about operation ware (3) top, all fixedly connected with dead lever (520) in the both sides about operation ware (3), two sets of be provided with rotating device in the middle of second fixed block (510), two sets of all be provided with the mobile device in the middle of dead lever (520).
5. A numerically controlled machine tool for canned pumps according to claim 4, characterized in that: rotating device includes connecting block (511), baffle (512) and connecting rod (513), and is two sets of second fixed block (510) all is connected with connecting block (511) through the pivot, and is two sets of connecting block (511) bottom fixedly connected with baffle (512), two sets of both sides all are connected with connecting rod (513) through the pivot about baffle (512) bottom.
6. A numerically controlled machine tool for canned pumps according to claim 4, characterized in that: the moving device comprises a second sliding block (514), slotted holes (515), first limiting blocks (516), second limiting blocks (517), springs (518), third sliding grooves (519) and limiting holes (521), wherein the middle of each of two groups of fixing rods (520) is provided with the third sliding groove (519), the left side and the right side of each of two groups of fixing rods (520) are respectively and uniformly provided with the limiting holes (521), the two groups of third sliding grooves (519) are respectively embedded with the second sliding block (514), the top ends of the two groups of fixing rods (514) are respectively connected with a connecting rod (513) through a rotating shaft, the middle of each of the two groups of second sliding blocks (514) is provided with the slotted hole (515), the right ends of the two groups of slotted holes (515) are respectively embedded with the first limiting blocks (516), the left ends of the two groups of first limiting blocks (516) are respectively and fixedly connected with one end of the springs (518), and the other ends of, the two groups of second limiting blocks (517) are embedded in the left end of the slotted hole (515), the two groups of first limiting blocks (516) are attached to the limiting hole (521), and the two groups of second limiting blocks (517) are attached to the limiting hole (521).
CN202021817196.0U 2020-08-27 2020-08-27 Numerical control machine tool for canned motor pump Active CN212762444U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021817196.0U CN212762444U (en) 2020-08-27 2020-08-27 Numerical control machine tool for canned motor pump

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021817196.0U CN212762444U (en) 2020-08-27 2020-08-27 Numerical control machine tool for canned motor pump

Publications (1)

Publication Number Publication Date
CN212762444U true CN212762444U (en) 2021-03-23

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ID=75055143

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021817196.0U Active CN212762444U (en) 2020-08-27 2020-08-27 Numerical control machine tool for canned motor pump

Country Status (1)

Country Link
CN (1) CN212762444U (en)

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