CN204019244U - A kind of Automatic-feeding borehole drill construction - Google Patents

A kind of Automatic-feeding borehole drill construction Download PDF

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Publication number
CN204019244U
CN204019244U CN201420465050.2U CN201420465050U CN204019244U CN 204019244 U CN204019244 U CN 204019244U CN 201420465050 U CN201420465050 U CN 201420465050U CN 204019244 U CN204019244 U CN 204019244U
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CN
China
Prior art keywords
automatic
borehole drill
drill construction
feeding
material road
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201420465050.2U
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Chinese (zh)
Inventor
张灿钢
张杲
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XINCHANG HENGSHENG MACHINERY Co Ltd
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XINCHANG HENGSHENG MACHINERY Co Ltd
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Priority to CN201420465050.2U priority Critical patent/CN204019244U/en
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Publication of CN204019244U publication Critical patent/CN204019244U/en
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Abstract

The utility model provides a kind of Automatic-feeding borehole drill construction, relate to machining equipment technical field, comprise borehole drill construction, described borehole drill construction comprises actuating unit and is arranged on the drill bit of on described actuating unit, part being holed, also comprise vibrator for part is arranged by certain way, for by part from described vibrator output Liao road and at boring procedure for clamping the clamping seats of part.The Automatic-feeding borehole drill construction that the utility model provides, overall structure is simple, can realize the work of automatic charging in boring procedure, greatly reduce workload, increase work efficiency, and can realize the mode of operation of people's multimachine, effectively reduce artificial fringe cost, increase economic efficiency.

Description

A kind of Automatic-feeding borehole drill construction
Technical field
The utility model relates to machining equipment technical field, relates in particular to a kind of borehole drill construction that can realize Automatic-feeding in process.
Background technology
Boring is a kind of comparatively general processing mode in machining, at present, it when part is holed, is generally the mode that adopts manual material loading, be that staff fixes part to be processed by chuck, then chuck drives in part moving process and completes boring work, after having holed, needs manually the part after processing to be taken off, fix again next part to be processed and put, so circulation.
For small size part, the work of material loading and blanking is comparatively loaded down with trivial details and workload is large, inefficiency, and each staff can only operate a machine, and artificial fringe cost is large, and economic benefit is low.
Utility model content
In order to solve the shortcoming and defect existing in above-mentioned prior art, the utility model provides a kind of Automatic-feeding borehole drill construction that can realize part automatic charging in boring procedure.
In order to reach above-mentioned technical purpose, the Automatic-feeding borehole drill construction that the utility model provides, comprise borehole drill construction, described borehole drill construction comprises actuating unit and is arranged on the drill bit of on described actuating unit, part being holed, also comprise vibrator for part is arranged by certain way, for by part from described vibrator output Liao road and at boring procedure for clamping the clamping seats of part.
Vibrator arranges part by certain way after, by material road, enter clamping seats, clamping seats is delivered to Working position by part after clamping part, and actuating unit drives drill bit to rotate the boring work of part.
Preferably, also comprise and the holder of the corresponding setting in bottom, described material road, described holder is vertically provided with the hopper with part adaptation, described holder be laterally provided with the groove with described part adaptation.
Preferably, also comprise that the piston rod one of described propulsion cylinder is corresponding with described groove for part is pushed into the propulsion cylinder of clamping seats from described holder.
Part falls in the hopper of holder after departing from material road, and propulsion cylinder drives piston rod one to travel forward, and by being positioned at the part of below, from groove, pushing away holder and enters clamping seats.
Preferably, in described clamping seats, be provided with gathering sill, in described gathering sill, be provided with the upper clamping block and the lower clamp that cooperatively interact; Described upper clamping block and lower clamp are being respectively equipped with near on the apparent surface of drill bit one side upper draw-in groove and the lower bayonet slot coordinating with part; The opposite side of described upper clamping block and lower clamp is rotatably connected by bearing pin.
Preferably, also comprise that the piston rod two of described clamping cylinder is fixed together with the end that upper clamping block or lower clamp interconnect a side for driving described upper clamping block and lower clamp to clamp or unclamp the clamping cylinder of part.
Upper and lower clamp is when releasing orientation, and propulsion cylinder is pushed into part in upper and lower draw-in groove, and clamping cylinder drives upper and lower clamp motion to clamp part by piston rod two.
Preferably, the inherent side near described drill bit of gathering sill is provided with block, and described block is between described upper clamping block and lower clamp.
Block is used for avoiding upper and lower clamp excessively tighten up or open, the normal operation of assurance mechanism integral body.
Preferably, also comprise for the part machining being pushed away to the discharging cylinder of described clamping seats, the piston rod three of described discharging cylinder and described upper clamping block and the lower clamp position when releasing orientation is corresponding.
After drilling part completes, clamping seats returns to original position, and upper and lower clamping seats unclamps, and discharging cylinder drive piston rod three enters in collecting box along collecting material road after moving forward part being released to clamping seats.
Preferably, the top of described vibrator is for for putting the storage cavity of part, and the inwall of described storage cavity is provided with spiral material road and picks plate one for what reject orientation mistake part; The bottom in described spiral material road, together with the diapire smooth connection of described storage cavity, is provided with and turns to material road between the upper end in described spiral material road and the upper end in described material road.
Preferably, turn to the side extension near described spiral material road on material road to be provided with blend stop, described blend stop with described in turn to and expect that road is vertical and arrange; The described material road that turns to is provided with and picks plate two near the side extension in described material road, described in pick plate two with described in turn to width and the part of expecting between road corresponding.
After bobbing machine effect, part moves upward gradually along spiral material road, and in this process, the part of orientation mistake is after picking the effect of plate one and blend stop in disallowable time storage cavity.
Preferably, also comprise for drive described clamping seats carry out planar movement transverse shifting seat, vertically move seat and Connection Block; Described in described transverse shifting is slidably arranged in, vertically move seat upper, described Connection Block is arranged on described transverse shifting seat, and described clamping seats is fixedly installed on the upper surface of described Connection Block; Described Connection Block at least comprises be slidably connected upper and lower two-layer.
Transverse shifting seat and vertically move seat and drive clamping seats to carry out planar movement for combining, is arranged to by Connection Block the structure that layering is slidably connected, when need to be at part same direction continuous drilling time, Connection Block can successively drive clamping seats to move.
The Automatic-feeding borehole drill construction that the utility model provides, overall structure is simple, can realize the work of automatic charging in boring procedure, greatly reduce workload, increase work efficiency, and can realize the mode of operation of people's multimachine, effectively reduce artificial fringe cost, increase economic efficiency.
Accompanying drawing explanation
Fig. 1 is the overall structure schematic diagram of the Automatic-feeding borehole drill construction in the utility model embodiment;
Fig. 2 is the structure for amplifying schematic diagram at A place in Fig. 1;
Fig. 3 is the internal structure schematic diagram of clamping seats in the utility model embodiment;
Fig. 4 is the structural scheme of mechanism of holder in the utility model embodiment;
Fig. 5 is the schematic diagram before and after part processing in the utility model embodiment.
In figure, 1-vibrator, 11-storage cavity, 12-spiral material road, 13-picks plate one, and 14-turns to material road, 15-blend stop, 16-picks plate two, 2-Liao road, 3-holder, 31-hopper, 4-borehole drill construction, 41-actuating unit, 42-drill bit, 5-clamping seats, 51-gathering sill, 52-fixture block, 53-upper clamping block, 531-draw-in groove, clamp under 54-, 541-lower bayonet slot, 55-bearing pin, 6-propulsion cylinder, 61-piston rod one, 7-clamping cylinder, 71-piston rod two, 8-discharging cylinder, 81-piston rod three, 91-transverse holder, the longitudinal holder of 92-, 93-Connection Block.
The specific embodiment
Below in conjunction with the drawings and specific embodiments, the utility model is described in further detail.
As shown in the figure, the Automatic-feeding borehole drill construction that the utility model embodiment provides, comprise borehole drill construction 4, for part being pressed to the vibrator 1 that certain way is arranged, for part is exported to Liao road 2 from vibrator, the corresponding holder 3 arranging in bottom, Yu Liao road, and in boring procedure for clamping the clamping seats 5 of part.
The top of vibrator 1 is for for putting the storage cavity 11 of part, spiral material road 12 is installed on the inwall of storage cavity and picks plate 1 for what reject orientation mistake part.The bottom in spiral material road is together with the diapire smooth connection of storage cavity, and the top in spiral material road is near the top of storage cavity.The width picking between plate one 13 lower surfaces and spiral material road upper surface is less than length and the width of part, and is greater than the thickness of part.
Between 2 upper ends, He Liao road, upper end in spiral material road, be provided with and turn to material road 14, turn to the side extension near spiral material road 12 on material road 14 to be provided with blend stop 15, blend stop is expected that road is vertical and is arranged with turning to.Turn to material road to be provided with and to pick plate 2 16 near a side extension of expecting road 2, pick plate two and turn to the width of expecting between road to be slightly larger than the thickness of part.During the utility model is implemented, turning to the angle of reversing between material two ends, road is 90 °, the width of blend stop 15 is part thickness 0.5~0.7 times.
Hopper 2 is spill, and the width between inwall is slightly larger than the thickness of part, and hopper flat shape is smoothed curve shape.
Holder 3 is vertically provided with the hopper 31 with part adaptation, holder be laterally provided with the groove 32 with part adaptation, borehole drill construction comprises actuating unit 41 and is arranged on the drill bit 42 of on actuating unit, part being holed.
Clamping seats 5 setting corresponding to holder, is provided with gathering sill 51 in clamping seats, be provided with the upper clamping block 53 and the lower clamp 54 that cooperatively interact in gathering sill.Upper clamping block and lower clamp are being respectively equipped with near on the apparent surface of drill bit one side upper draw-in groove 531 and the lower bayonet slot 541 coordinating with part, and the opposite side of upper clamping block and lower clamp is rotatably connected by bearing pin 55.The inherent side near drill bit 42 of gathering sill 51 is provided with block 52, and this block is between upper clamping block 53 and lower clamp 54.
The Automatic-feeding borehole drill construction that the utility model embodiment provides also comprises for part is pushed into the propulsion cylinder 6 of clamping seats 5 from holder 3, be used for driving upper clamping block 53 and lower clamp 54 to clamp or unclamp the clamping cylinder 7 of part, and for the part machining being pushed away to the discharging cylinder 8 of clamping seats 5.
Propulsion cylinder 6 Yu Liao roads 2 are arranged on the homonymy of holder 3, and the piston rod 1 of propulsion cylinder is corresponding with the groove 32 of holder.
Clamping cylinder 7 and drill bit 42 are separately positioned on the both sides of clamping seats 5, and the piston rod 2 72 of clamping cylinder stretches into gathering sill 51 and is fixed together with the end that upper clamping block or lower clamp interconnect a side.
Discharging cylinder 8 and propulsion cylinder 6 lay respectively at the both sides of clamping seats 5, and the piston rod 3 81 of discharging cylinder and upper clamping block 53 and lower clamp 54 position when releasing orientation is corresponding.
The Automatic-feeding borehole drill construction that the utility model embodiment provides also comprise for drive clamping seats 5 carry out planar movement transverse shifting seat 91, vertically move seat 92 and Connection Block 93.Transverse shifting is slidably arranged in and vertically moves seat above, and Connection Block is fixedly mounted on transverse shifting seat, and clamping seats 5 is fixedly mounted on the upper surface of Connection Block 93.Connection Block 93 at least comprises be slidably connected upper and lower two-layer, and the Connection Block in the utility model embodiment comprises upper, middle and lower-ranking.
As shown in Figure 5, the utility model embodiment take that on the same straight line of flat part, to process three holes be example, and surperficial both sides of part are provided with chamfering.By part storage, in storage cavity 11, after vibrator 1 energization action, part moves upward gradually along spiral material road 12, and through picking after the rejecting effect of plate 1, blend stop 15, the satisfactory part of arrangement mode enters in the hopper 31 of holder 3 along material road 2.Propulsion cylinder 6 drives piston rods one 61 motions that part is pushed away to holder 3, and enters in the upper and lower draw-in groove of upper and lower clamp of clamping seats 5, and clamping cylinder 7 is by piston rod 2 71 motions, and upper and lower clamp clamps part.Transverse shifting seat 91, vertically move seat 92 synergy and drive parts to Working position place by clamping seats 5, part completes boring in fill process.The Working position place that the middle level of Connection Block and upper strata move to second hole with respect to lower floor, then completes secondary drilling.Finally, the upper strata of Connection Block moves to the 3rd empty Working position place with respect to middle level, completes three boring.
After having holed, Connection Block, transverse shifting seat, vertically move seat and drive a clamping seats return, clamping cylinder unclamps upper clamping block 53 and lower clamp 54 by piston rod 2 71, discharging cylinder 8 drives piston rod 3 81 motions, piston rod three pushes away clamping seats by the part after processing, and part enters in collecting box along collecting material road.
The Automatic-feeding borehole drill construction that the utility model embodiment provides, overall structure is simple, can realize the work of automatic charging in boring procedure, greatly reduce workload, increase work efficiency, and can realize the mode of operation of people's multimachine, effectively reduce artificial fringe cost, increase economic efficiency.
In a word, the foregoing is only preferred embodiment of the present utility model, every equalization of doing according to the utility model changes and modifies, and all should belong to the protection domain that the utility model is applied for a patent.

Claims (10)

1. an Automatic-feeding borehole drill construction, comprise borehole drill construction (4), described borehole drill construction comprises actuating unit (41) and is arranged on the drill bit (42) of on described actuating unit, part being holed, it is characterized in that, also comprise vibrator (1) for part is arranged by certain way, for by part from described vibrator output Liao road (2) and at boring procedure for clamping the clamping seats (5) of part.
2. Automatic-feeding borehole drill construction according to claim 1, it is characterized in that, also comprise the holder (3) with the corresponding setting in bottom, described material road (2), described holder is vertically provided with the hopper (31) with part adaptation, described holder be laterally provided with the groove (32) with described part adaptation.
3. Automatic-feeding borehole drill construction according to claim 2, it is characterized in that, also comprise that the piston rod one (61) of described propulsion cylinder is corresponding with described groove (32) for part is pushed into the propulsion cylinder (6) of clamping seats (5) from described holder (3).
4. according to the Automatic-feeding borehole drill construction described in claim 1-3 any one, it is characterized in that, in described clamping seats (5), be provided with gathering sill (51), in described gathering sill, be provided with the upper clamping block (53) and the lower clamp (54) that cooperatively interact; Described upper clamping block and lower clamp are being respectively equipped with near on the apparent surface of drill bit one side upper draw-in groove (531) and the lower bayonet slot (541) coordinating with part; The opposite side of described upper clamping block and lower clamp is rotatably connected by bearing pin (55).
5. Automatic-feeding borehole drill construction according to claim 4, it is characterized in that, also comprise that the piston rod two (71) of described clamping cylinder is fixed together with the end that upper clamping block or lower clamp interconnect a side for driving described upper clamping block (53) and lower clamp (54) to clamp or unclamp the clamping cylinder (7) of part.
6. Automatic-feeding borehole drill construction according to claim 4, it is characterized in that, the inherent side near described drill bit (42) of described gathering sill (51) is provided with block (52), and described block is positioned between described upper clamping block (53) and lower clamp (54).
7. Automatic-feeding borehole drill construction according to claim 5, it is characterized in that, also comprise for the part machining being pushed away to the discharging cylinder (8) of described clamping seats (5), the piston rod three (81) of described discharging cylinder and described upper clamping block (53) and lower clamp (54) position when releasing orientation is corresponding.
8. Automatic-feeding borehole drill construction according to claim 4, it is characterized in that, the top of described vibrator (1) is for for putting the storage cavity (11) of part, and the inwall of described storage cavity is provided with spiral material road (12) and picks plate one (13) for what reject orientation mistake part; The bottom in described spiral material road, together with the diapire smooth connection of described storage cavity, is provided with between the upper end in described spiral material road and the upper end in described material road (2) and turns to material road (14).
9. Automatic-feeding borehole drill construction according to claim 8, is characterized in that, described in turn to the upper side extension near described spiral material road (12) in material road (14) to be provided with blend stop (15), described blend stop with described in turn to and expect that road is vertical and arrange; The described material road that turns to is provided with and picks plate two (16) near the side extension in described material road (2), described in pick plate two with described in turn to width and the part of expecting between road corresponding.
10. Automatic-feeding borehole drill construction according to claim 8, is characterized in that, also comprise for drive described clamping seats (5) carry out planar movement transverse shifting seat (91), vertically move seat (92) and a Connection Block (93); Described in described transverse shifting is slidably arranged in, vertically move seat upper, described Connection Block is arranged on described transverse shifting seat, and described clamping seats (5) is fixedly installed on the upper surface of described Connection Block; Described Connection Block at least comprises be slidably connected upper and lower two-layer.
CN201420465050.2U 2014-08-18 2014-08-18 A kind of Automatic-feeding borehole drill construction Expired - Fee Related CN204019244U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201420465050.2U CN204019244U (en) 2014-08-18 2014-08-18 A kind of Automatic-feeding borehole drill construction

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201420465050.2U CN204019244U (en) 2014-08-18 2014-08-18 A kind of Automatic-feeding borehole drill construction

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CN204019244U true CN204019244U (en) 2014-12-17

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Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105436970A (en) * 2015-12-25 2016-03-30 台州市益福机械制造有限公司 Processing equipment for workpieces
CN105619158A (en) * 2016-03-04 2016-06-01 宁波夏亿机电科技有限公司 Feeding mechanism used for piston machining device and piston machining device
CN106112433A (en) * 2016-07-26 2016-11-16 龙胜电器有限公司 A kind of single dual control functor kludge
CN106312665A (en) * 2016-10-27 2017-01-11 绵阳柏瑞电子有限公司 Automatic drilling machine
CN107322028A (en) * 2017-06-30 2017-11-07 佳兴紧固件工业(苏州)有限公司 A kind of drilling machine and its boring method
CN108381136A (en) * 2018-04-23 2018-08-10 广州市振宇拉链机械有限公司 A kind of zipper granule tooth assembly machine
CN108480678A (en) * 2018-03-26 2018-09-04 全椒县金台数控机床制造有限公司 High-precision drilling hole machine tool and preparation method thereof

Cited By (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105436970A (en) * 2015-12-25 2016-03-30 台州市益福机械制造有限公司 Processing equipment for workpieces
CN105619158A (en) * 2016-03-04 2016-06-01 宁波夏亿机电科技有限公司 Feeding mechanism used for piston machining device and piston machining device
CN105619158B (en) * 2016-03-04 2018-03-09 宁波夏亿机电科技有限公司 Feed mechanism and Piston Machining device for Piston Machining device
CN106112433A (en) * 2016-07-26 2016-11-16 龙胜电器有限公司 A kind of single dual control functor kludge
CN106112433B (en) * 2016-07-26 2019-02-15 龙胜电器有限公司 A kind of list dual control functor kludge
CN106312665A (en) * 2016-10-27 2017-01-11 绵阳柏瑞电子有限公司 Automatic drilling machine
CN106312665B (en) * 2016-10-27 2018-09-25 绵阳柏瑞电子有限公司 Automatic drilling machine
CN107322028A (en) * 2017-06-30 2017-11-07 佳兴紧固件工业(苏州)有限公司 A kind of drilling machine and its boring method
CN107322028B (en) * 2017-06-30 2024-02-09 佳兴紧固件工业(苏州)有限公司 Drilling machine and drilling method thereof
CN108480678A (en) * 2018-03-26 2018-09-04 全椒县金台数控机床制造有限公司 High-precision drilling hole machine tool and preparation method thereof
CN108381136A (en) * 2018-04-23 2018-08-10 广州市振宇拉链机械有限公司 A kind of zipper granule tooth assembly machine

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GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20141217