CN215509823U - Automatic assembling machine for gear and screw of machine core frame - Google Patents

Automatic assembling machine for gear and screw of machine core frame Download PDF

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Publication number
CN215509823U
CN215509823U CN202121083907.0U CN202121083907U CN215509823U CN 215509823 U CN215509823 U CN 215509823U CN 202121083907 U CN202121083907 U CN 202121083907U CN 215509823 U CN215509823 U CN 215509823U
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screw
core frame
manipulator
machine
radiator
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CN202121083907.0U
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Chinese (zh)
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王关根
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Guangdong Ouleya Intelligent Technology Co ltd
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Guangdong Ouleya Intelligent Technology Co ltd
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Abstract

The utility model discloses an automatic assembly machine for a gear screw of a machine core frame, which comprises a machine case: a machine core frame to be provided with screws is horizontally arranged on the surface of the case; a frame: one end of the connecting rod is vertically and fixedly connected with the horizontal plane at the top of the chassis; the method comprises the following steps: an organism: one end of the manipulator is connected with a manipulator which can move up and down; screw tripper: two sides of the vibrating plate are provided with vibrating plates which are matched with the screw distributor to operate; a radiator: and a radiator with a heat radiation function for the devices in the case is arranged on one side of the case. This core frame gear screw automatic assembly machine is equipped with two screws electricity batch above through the manipulator, fixes to the cylinder, and after the manipulator moved to getting the screw position, the cylinder was downwards, utilizes the vacuum suction nozzle of breathing in on the cylinder to suck the screw up, and the manipulator moves to automatic assembly line position again, and the cylinder is downwards, breaks the vacuum and breathes in, and electricity batch work assembles the screw to the core frame to the realization utilizes automatic the automatic equipment of accomplishing the gear screw to the core frame.

Description

Automatic assembling machine for gear and screw of machine core frame
Technical Field
The utility model relates to the technical field of electronic assembly, in particular to an automatic assembly machine for a gear screw of a core frame.
Background
The technical process of reasonably arranging and reliably interconnecting and mounting various electronic components, devices and electromechanical components according to an electrical or logic diagram is called the assembly of electronic equipment, and the operation process of a machine core frame gear screw automatic assembly machine belongs to one type of electronic assembly, and the machine core frame gear screw automatic assembly machine automatically completes the gear screw automatic assembly of a machine core frame by utilizing automation.
The gear screw is a common fastener at present, is widely used on machinery, electrical appliances and buildings, and is generally made of metal or plastic; when the gear screws are manually installed by manpower, the installation quantity is large, so that the operation process is long and complicated, and the manpower efficiency is low, so that the automatic assembly of the gear screws is automatically completed by using the automatic assembly machine for the gear screws of the machine core frame.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide an automatic assembling machine for a gear screw of a core frame, which aims to solve the problems that the prior gear screw proposed by the background technology is a common fastener, is widely used on machinery, electrical appliances and buildings, and is generally made of metal or plastic; when the gear screws are manually installed by manpower, the installation quantity is large, so that the operation process is long and complicated, and the manpower efficiency is low.
In order to achieve the purpose, the utility model provides the following technical scheme: an automatic assembling machine for a gear screw of a machine core frame;
a case: a machine core frame to be provided with screws is horizontally arranged on the surface of the case;
a frame: one end of the connecting rod is vertically and fixedly connected with the horizontal plane at the top of the chassis;
the method comprises the following steps:
an organism: one end of the manipulator is connected with a manipulator which can move up and down;
screw tripper: two sides of the vibrating plate are provided with vibrating plates which are matched with the screw distributor to operate;
a radiator: and a radiator with a heat radiation function for the devices in the case is arranged on one side of the case.
Preferably, the cylinder is vertically connected to the bottom of the manipulator, the manipulator operating mechanism is a four-axis structure, the manipulator and the cylinder are in a linkage structure, the cylinder faces downwards after the manipulator moves to a screw taking position, the screw is sucked by the aid of a vacuum suction nozzle on the cylinder, the manipulator moves to an automatic assembly line position again, the cylinder faces downwards, vacuum suction is cut off, electric screwdriver work is conducted, the screw is assembled on the movement frame, and accordingly automatic assembly of the gear screw of the movement frame is achieved automatically.
Preferably, one side of the screw distributor is connected with an upright post with a supporting function, and the screw distributor and the bottom of the vibration disc are vertically and fixedly connected with a fixed bottom plate; the outlet of the vibrating disc is provided with a sensor, after the sensor senses the screws, the rotating cylinder acts, and the screw distributor rotationally distributes the screws to the material taking port, so that the screws are automatically taken.
Preferably, the heat sink includes:
installing a ring: the radiator is fixedly connected to one side of the case, the radiator is sleeved in the radiator, a sliding groove is formed in the inner portion of the installation ring, a sliding block is movably connected in the sliding groove, a sliding connection structure is formed between the sliding block and the sliding groove, the extrusion block is pressed towards the middle of the radiator to drive the sliding block to slide along the inner track of the sliding groove and then extrude the spring, the butt joint block is separated from two sides of the clamping block, the radiator is disassembled after the clamping connection relation between the butt joint block and the clamping block is removed, and therefore the radiator is convenient to maintain and repair;
extruding a block: the surface of the sliding block is connected with an extrusion block, one end of the sliding block is connected with a spring, and the sliding block and the spring form an elastic telescopic structure through the extrusion block.
Preferably, the two ends of the radiator are connected with clamping blocks, the outer parts of the clamping blocks are in a T shape, notches matched with the outer sizes of the butt-joint blocks are formed in the two sides of the clamping blocks, and the butt-joint blocks are fixedly clamped on the two sides of the clamping blocks.
Preferably, the one end that the spring was kept away from to the slider is connected with the butt joint piece, and the butt joint piece is provided with two sets ofly, and every group butt joint piece is provided with two to constitute block connection structure between butt joint piece and the fixture block.
Compared with the prior art, the utility model has the beneficial effects that: according to the automatic assembling machine for the core frame gear screws, the vibrating disc and the screw distributor are matched to work, screws are rotationally distributed to the material taking port, and therefore automatic material taking is achieved; assembling the screw on the core frame through a manipulator and a cylinder, thereby realizing automatic assembly of the gear screw of the core frame by utilizing automation; and finally, after the clamping connection relation between the butt joint block and the clamping block is removed, the radiator is detached, and the radiator is convenient to maintain and repair.
1. According to the automatic assembling machine for the machine core frame gear screws, the vibrating disc respectively carries out array and ordered discharging on the screws, the outlet of the vibrating disc is provided with the sensor, after the screws are sensed, the rotating cylinder acts, and the screw distributor rotationally distributes the screws to the material taking port, so that automatic material taking is achieved.
2. This core frame gear screw automatic assembly machine is equipped with two screwdriver above the manipulator, fixes to the cylinder, and after the manipulator moved to getting the screw position, the cylinder was downwards, utilizes the vacuum suction nozzle of breathing in on the cylinder to get up the screw suction, and the manipulator moves to automatic assembly line position again, and the cylinder is downwards, breaks the vacuum and breathes in, and the electric work of criticizing is assembled the screw to the core frame to the realization utilizes automatic the automatic equipment of accomplishing the gear screw to the core frame.
3. According to the automatic assembling machine for the core frame gear screws, the extrusion block is pressed towards the middle of the radiator, the sliding block is driven to slide along the inner track of the sliding groove and then extrude the spring, the butt joint block is separated from the two sides of the clamping block, and after the clamping connection relation between the butt joint block and the clamping block is removed, the radiator is disassembled, so that the radiator is convenient to maintain and repair.
Drawings
FIG. 1 is a schematic front view of the present invention;
FIG. 2 is a schematic view of the vibration plate according to the present invention;
FIG. 3 is a schematic side view of the present invention;
fig. 4 is a schematic view of a connection structure of a cross-sectional portion of a heat sink according to the present invention.
In the figure: 1. a chassis; 2. a frame; 3. a movement frame; 4. a body; 5. a manipulator; 6. a cylinder; 7. a vibrating pan; 8. a screw distributor; 9. a column; 10. fixing the bottom plate; 11. a heat sink; 12. a mounting ring; 13. a chute; 14. a slider; 15. extruding the block; 16. a spring; 17. a clamping block; 18. and (6) butting the blocks.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Referring to fig. 1-4, the present invention provides a technical solution: an automatic assembling machine for a gear screw of a machine core frame;
the machine case 1: a machine core frame 3 to be provided with screws is horizontally arranged on the surface of the case 1;
a rack 2: one end of the connecting rod is vertically and fixedly connected to the horizontal plane at the top of the case 1;
the method comprises the following steps:
the body 4: one end of the manipulator is connected with a manipulator 5 which can move up and down;
screw distributor 8: two sides of the vibrating plate are provided with vibrating plates 7 which are matched with the screw distributor 8 to operate;
the heat sink 11: a radiator 11 with a function of radiating devices in the case 1 is arranged on one side of the case 1;
the cylinder 6 is connected with perpendicularly in 5 bottoms of manipulator, and 5 operating device of manipulator is the four-axis, and manipulator 5 is the interlock structure with cylinder 6, after manipulator 5 moved to and gets the screw position, cylinder 6 is downward, utilize the vacuum on the cylinder 6 to breathe in the suction nozzle and inhale the screw, manipulator 5 rerunning arrives automatic assembly line position, cylinder 6 is downward, the vacuum that breaks is breathed in, the electric batch work, assemble the screw on core frame 3, thereby realize utilizing the automatic equipment of accomplishing the gear screw to core frame 3 of automation.
One side of the screw distributor 8 is connected with a vertical column 9 with a supporting function, and the screw distributor 8 and the bottom of the vibration disc 7 are vertically and fixedly connected with a fixed bottom plate 10; the outlet of the vibrating disc 7 is provided with a sensor, after the sensor senses the screws, the air cylinder 6 and the screw distributor 8 rotate to distribute the screws to the material taking port, and therefore automatic screw taking is achieved.
The heat sink 11 includes:
mounting ring 12: the heat radiator is fixedly connected to one side of the case 1, the heat radiator 11 is sleeved inside the heat radiator, a sliding groove 13 is formed in the mounting ring 12, a sliding block 14 is movably connected inside the sliding groove 13, a sliding connection structure is formed between the sliding block 14 and the sliding groove 13, the extrusion block 15 is pressed towards the middle of the heat radiator 11, the sliding block 14 is driven to slide along the inner track of the sliding groove 13 and then extrude a spring 16, the butt-joint block 18 is separated from two sides of the clamping block 17, the heat radiator 11 is disassembled after the clamping connection relation between the butt-joint block 18 and the clamping block 17 is removed, and therefore the heat radiator 11 is convenient to maintain and repair;
the extrusion block 15: the surface of the sliding block 14 is connected with an extrusion block 15, one end of the sliding block 14 is connected with a spring 16, and the sliding block 14 and the spring 16 form an elastic telescopic structure through the extrusion block 15.
The two ends of the heat sink 11 are connected with the fixture blocks 17, the exterior of the fixture block 17 is T-shaped, and notches matched with the exterior size of the butt-joint blocks 18 are formed in the two sides of the fixture block 17, so that the butt-joint blocks 18 are fixedly clamped on the two sides of the fixture block 17.
One end of the sliding block 14, which is far away from the spring 16, is connected with two butt-joint blocks 18, the butt-joint blocks 18 are arranged in two groups, two butt-joint blocks 18 are arranged in each group, and a clamping connection structure is formed between the butt-joint blocks 18 and the clamping blocks 17.
The working principle is as follows: when the automatic assembling machine for the machine core frame gear screws is used, firstly, the vibration disc 7 and the screw distributor 8 are matched to work, and screws are rotationally distributed to the material taking port, so that automatic screw taking is realized; assembling the screw on the core frame 3 through a manipulator 5 and a cylinder 6, thereby realizing automatic assembly of the gear screw of the core frame 3 by utilizing automation; finally, after the clamping connection relationship between the butting block 18 and the clamping block 17 is released, the heat sink 11 is disassembled, so that the heat sink 11 is convenient to maintain and repair, which is the characteristic of the automatic assembling machine for the gear and the screw of the machine core frame, and the content which is not described in detail in the description belongs to the prior art which is well known to a person skilled in the art.
Although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that various changes in the embodiments and/or modifications of the utility model can be made, and equivalents and modifications of some features of the utility model can be made without departing from the spirit and scope of the utility model.

Claims (6)

1. An automatic assembling machine for a gear screw of a machine core frame;
a case: a machine core frame to be provided with screws is horizontally arranged on the surface of the case;
a frame: one end of the connecting rod is vertically and fixedly connected with the horizontal plane at the top of the chassis;
it is characterized by comprising:
an organism: one end of the manipulator is connected with a manipulator which can move up and down;
screw tripper: two sides of the vibrating plate are provided with vibrating plates which are matched with the screw distributor to operate;
a radiator: and a radiator with a heat radiation function for the devices in the case is arranged on one side of the case.
2. The automatic assembling machine for machine core frame gear screws as claimed in claim 1, wherein: the cylinder is connected with perpendicularly in manipulator bottom, and manipulator operating device is the four-axis to manipulator and cylinder are the interlock structure.
3. The automatic assembling machine for machine core frame gear screws as claimed in claim 1, wherein: one side of the screw distributor is connected with a stand column with a supporting function, and the screw distributor and the bottom of the vibration disc are vertically and fixedly connected with a fixed bottom plate.
4. The automatic assembling machine for machine core frame gear screws as claimed in claim 1, wherein: the heat sink includes:
installing a ring: the radiator is fixedly connected to one side of the case, the radiator is sleeved in the radiator, a sliding groove is formed in the inner portion of the mounting ring, a sliding block is movably connected in the sliding groove, and a sliding connection structure is formed between the sliding block and the sliding groove;
extruding a block: the surface of the sliding block is connected with an extrusion block, one end of the sliding block is connected with a spring, and the sliding block and the spring form an elastic telescopic structure through the extrusion block.
5. The automatic assembling machine for machine core frame gear screws as claimed in claim 1, wherein: the two ends of the radiator are connected with clamping blocks, the outer portions of the clamping blocks are T-shaped, and notches matched with the outer sizes of the butt-joint blocks are formed in the two sides of each clamping block.
6. The automatic assembling machine for machine core frame gear screws as claimed in claim 1, wherein: the one end that the spring was kept away from to the slider is connected with the butt joint piece, and the butt joint piece is provided with two sets ofly, and every group butt joint piece is provided with two to constitute block connection structure between butt joint piece and the fixture block.
CN202121083907.0U 2021-05-20 2021-05-20 Automatic assembling machine for gear and screw of machine core frame Active CN215509823U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121083907.0U CN215509823U (en) 2021-05-20 2021-05-20 Automatic assembling machine for gear and screw of machine core frame

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121083907.0U CN215509823U (en) 2021-05-20 2021-05-20 Automatic assembling machine for gear and screw of machine core frame

Publications (1)

Publication Number Publication Date
CN215509823U true CN215509823U (en) 2022-01-14

Family

ID=79804758

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121083907.0U Active CN215509823U (en) 2021-05-20 2021-05-20 Automatic assembling machine for gear and screw of machine core frame

Country Status (1)

Country Link
CN (1) CN215509823U (en)

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