Golf tee grinding head machine
Technical Field
The utility model relates to a golf tee bistrique machine belongs to golf tee processing equipment technical field.
Background
In the prior art, the processing equipment for processing golf nails mostly has the defects of uneven grinding head of the golf nail, lack of stability and high qualification rate. When the processing equipment in the prior art is adopted to process the wooden golf tee, the modes of manual feeding and manual semi-mechanical grinding head are generally adopted in the grinding head process part, and the production mode not only wastes labor, time and labor, but also has certain potential safety hazard. Therefore, a processing device capable of realizing an automatic grinding head is urgently needed.
SUMMERY OF THE UTILITY MODEL
The utility model relates to a solve the low and time-consuming, hard problem of qualification rate that exists when processing wooden golf ball nail of current processing equipment, and then provide a golf ball nail bistrique machine.
The utility model discloses a solve the technical scheme that above-mentioned technical problem adopted and be:
a golf nail grinding head machine comprises a vibration disc, a workbench, a feeding guide rail, a vibration motor, a material ejecting cylinder, a grinding head motor, a lifting cylinder, a pneumatic finger and a feeding cylinder, wherein the feeding guide rail, the vibration motor, the material ejecting cylinder, the grinding head motor, the lifting cylinder, the pneumatic finger and the feeding cylinder are arranged on the workbench, one end of the feeding guide rail is in butt joint with a discharge port of the vibration disc, the vibration motor is arranged on the lower portion of the feeding guide rail, the material ejecting cylinder is arranged in a horizontal direction perpendicular to the feeding guide rail, the pneumatic finger is horizontally arranged on the workbench in a sliding mode through the feeding cylinder, the grinding head motor is vertically arranged on the workbench in a sliding mode through the lifting cylinder, when the pneumatic finger is located at an initial position, the grinding head motor is located right above a clamping position of the pneumatic finger, a limiting block is fixedly arranged at a movable end of the material ejecting cylinder, a U-shaped through groove is formed in the limiting block, when the movable end of the material ejecting cylinder is located at the initial position, the open end of the U-shaped through groove is arranged right opposite to the discharge port at the other end of the feeding guide rail, when the movable end of the material ejecting cylinder is at the limit extending position, the grinding head motor and the U-shaped through groove are arranged vertically and oppositely, the workbench is provided with a discharging channel, and when the pneumatic finger is pushed to the limit sliding position by the material feeding cylinder, the clamping position of the pneumatic finger and the top material receiving opening of the discharging channel are arranged vertically and oppositely.
Further, the feeding guide rail comprises two guide rail main bodies which are arranged in parallel, each guide rail main body is fixedly arranged above the vibration motor through a support, and each golf tee to be processed is vertically erected between the two guide rail main bodies.
Furthermore, the pneumatic finger is horizontally connected to the workbench in a sliding manner through a sliding rail, and one side wall of the pneumatic finger is fixedly connected with the movable end of the feeding cylinder.
Further, the slide rail is arranged in parallel with the feeding guide rail.
Furthermore, a material blocking cylinder is installed on one side of the other end of the feeding guide rail.
Furthermore, an electric cabinet is further installed on the workbench, and the vibration disc, the vibration motor, the material blocking cylinder, the grinding head motor, the lifting cylinder, the pneumatic finger and the feeding cylinder are all electrically connected with the electric cabinet.
Furthermore, an alarm is also arranged on the workbench, and the holding right alarm is electrically connected with the electric cabinet.
Compared with the prior art, the utility model has the following effect:
this application realizes the material loading through the vibrations dish, realizes the feeding through the feeding guide rail, will wait to process ball nail propelling movement to processing position through the liftout cylinder, presss from both sides tightly the ball nail through pneumatic finger, carries out the bistrique operation through the bistrique motor, and the back is accomplished to the bistrique process, promotes the bistrique motor through elevator motor, and the ball nail of centre gripping on with pneumatic finger through the feeding cylinder removes to discharging channel and sees off. Whole equipment structure is simple, easily operates, and can realize full automatization bistrique processing operation, compares with prior art, and machining efficiency is higher. The position change of the ball nail is realized through the air cylinder, the position precision is effectively guaranteed, and the qualification rate of the grinding head is further guaranteed.
Drawings
Fig. 1 is a first perspective view of the present application;
fig. 2 is a second perspective view (partially schematic) of the present application.
Detailed Description
The first embodiment is as follows: the embodiment is described with reference to fig. 1-2, a golf nail grinding head machine, which comprises a vibration plate 1, a workbench 2, a feeding guide rail 3 mounted on the workbench 2, a vibration motor 4, a material ejection cylinder 5, a grinding head motor 6, a lifting cylinder 7, a pneumatic finger 8 and a feeding cylinder 9, wherein one end of the feeding guide rail 3 is butted with a discharge port of the vibration plate 1, the vibration motor 4 is mounted at the lower part of the feeding guide rail 3, the material ejection cylinder 5 is arranged in the horizontal direction perpendicular to the feeding guide rail 3, the pneumatic finger 8 is horizontally arranged on the workbench 2 in a sliding manner through the feeding cylinder 9, the grinding head motor 6 is vertically mounted on the workbench 2 through the lifting cylinder 7, when the pneumatic finger 8 is located at an initial position, the grinding head motor 6 is located right above a clamping position of the pneumatic finger 8, a limit block 10 is fixedly mounted at the movable end of the material ejection cylinder 5, and the stopper 10 is provided with a U-shaped through groove, when the movable end of the material ejecting cylinder 5 is at an initial position, the open end of the U-shaped through groove is arranged right opposite to the discharge port at the other end of the feeding guide rail 3, when the movable end of the material ejecting cylinder 5 is at a limit extending position, the grinding head motor 6 and the U-shaped through groove are arranged right up and down, the workbench 2 is provided with a discharge passage 11, when the pneumatic finger 8 is pushed to a limit sliding position by the feeding cylinder 9, the clamping position of the pneumatic finger 8 and the top of the discharge passage 11 are arranged right up and down.
The vibration of the feeding guide rail 3 is controlled by the vibration motor 4 to realize feeding.
After being fed by the vibration disc 1, the golf nails 100 to be processed enter the feeding guide rail 3 and are sequentially arranged along the length direction of the feeding guide rail 3, and the golf nails 100 to be processed are controlled to be fed forwards under the vibration action of the vibration motor 4.
The initial position of the movable end of the cylinder is the position before the movable end of the cylinder acts; the limit extending position of the movable end of the cylinder is the limit position when the movable end of the cylinder extends.
The top end of the discharging channel 11 is a material receiving opening, the bottom end is a material discharging opening 110, and the processed golf tee 100 is discharged through the discharging channel 11.
This application realizes the material loading through vibrations dish 1, realize the feeding through feeding guide rail 3, will wait to process ball nail 100 propelling movement to processing position through liftout cylinder 5, press from both sides tightly ball nail 100 through pneumatic finger 8, carry out the bistrique operation through bistrique motor 6, the back is accomplished to the bistrique process, promote bistrique motor 6 through lift cylinder 7, move pneumatic finger 8 and the ball nail 100 of centre gripping on it to discharging channel 11 through feeding cylinder 9 and see off. Whole equipment structure is simple, easily operates, and can realize full automatization bistrique processing operation, compares with prior art, and machining efficiency is higher. The position change of the ball nail 100 is realized through the air cylinder, the position precision is effectively ensured, and the qualification rate of the grinding head is further ensured.
The feeding guide rail 3 comprises two guide rail main bodies 31 which are arranged in parallel, each guide rail main body 31 is fixedly arranged above the vibration motor 4 through a support 32, and each golf tee 100 to be processed is vertically erected between the two guide rail main bodies 31.
The pneumatic finger 8 is horizontally connected to the workbench 2 in a sliding manner through a sliding rail 12, and one side wall of the pneumatic finger is fixedly connected with the movable end of the feeding cylinder 9. By means of the design, the horizontal sliding of the pneumatic finger 8 on the workbench 2 is facilitated through the sliding rail 12.
The slide rails 12 are arranged in parallel with the feed guide 3.
A material blocking cylinder 13 is arranged at one side of the other end of the feeding guide rail 3. Through setting up the material stopping cylinder 13, realize more conveniently, reliably control wait to process golf ball nail 100 and break up before getting into the logical groove of U-shaped, effectively avoid waiting to process golf ball nail 100 and pile up in the discharge gate department of feeding guide rail 3, further guarantee the normal action of liftout cylinder 5. The material blocking cylinder 13 adopted by the application is the prior art and is not described again here.
An electric cabinet 14 and an alarm 15 are further mounted on the workbench 2, and the vibration disc 1, the vibration motor 4, the material blocking cylinder 13, the grinding head motor 6, the lifting cylinder 7, the pneumatic finger 8, the feeding cylinder 9 and the alarm are all electrically connected with the electric cabinet 14. By the design, the whole grinding head machine is controlled through the electric cabinet 14, and full-automatic machining is further realized.
The working principle is as follows:
firstly, a batch of golf nails 100 (materials for short) to be ground are placed into a vibration disc 1, the materials are conveyed to a feeding guide rail 3 through vibration feeding of the vibration disc 1, the materials are sequentially arranged on the feeding guide rail 3 to move forwards under the action of a vibration motor 4, the quantity of the materials entering a U-shaped through groove in a limiting block 10 is controlled by a material blocking cylinder 13 near a discharge port of the feeding guide rail 3, and the material blocking cylinder 13 only passes through one material through one preset action. After the material enters the U-shaped through groove, the material ejecting cylinder 5 acts to push the limiting block 10 to a position to be processed, namely, right below the grinding head motor 6. The pneumatic finger 8 clamps the material, then the lifting cylinder 7 acts to drive the grinding head motor 6 to move downwards to perform grinding head machining, and after the machining is completed, the lifting cylinder 7 drives the grinding head motor 6 to lift, and the tool bit is separated from the material. And finally, the feeding cylinder 9 acts to push the pneumatic finger 8 to horizontally move to the upper part of the discharging channel 11, the pneumatic finger 8 acts to open, and the material is discharged through the discharging channel 11.
After the primary processing is finished, the movable end of the material ejecting cylinder 5 drives the limiting block 10 to reset, and the processing procedure of the next material is continued.