CN206136613U - Air explosion fertilizer distributor loose deeply that hammering device and device constitute - Google Patents

Air explosion fertilizer distributor loose deeply that hammering device and device constitute Download PDF

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Publication number
CN206136613U
CN206136613U CN201621214463.9U CN201621214463U CN206136613U CN 206136613 U CN206136613 U CN 206136613U CN 201621214463 U CN201621214463 U CN 201621214463U CN 206136613 U CN206136613 U CN 206136613U
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China
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hammer
cylinder
cavity
hole
cylinder body
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CN201621214463.9U
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Inventor
贾首星
左忠华
沈从举
周艳
李帆
代亚猛
索继明
严希龙
邹玮璐
张景
倪正国
栾和福
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Yantai Jiahua Vehicle Parts Co ltd
Xinjiang Academy of Agricultural and Reclamation Sciences
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Yantai Jiahua Vehicle Parts Co ltd
Xinjiang Academy of Agricultural and Reclamation Sciences
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Publication of CN206136613U publication Critical patent/CN206136613U/en
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Abstract

The utility model discloses an air explosion fertilizer distributor loose deeply that hammering device and device constitute, fertilizer distributor contain hammering device at least, hammering device's structure does: including the cylinder body that is equipped with the cylinder body inlet port, the cylinder body inner chamber is equipped with the jar hammer, and the jar hammer separates the cylinder body inner chamber for three independent cavity, cavity A, cavity B and cavity C, and above -mentioned cylinder body inlet port and cavity B intercommunication, be equipped with jar hammer hole A and jar hammer hole B on the jar hammer, be equipped with the hammer core in the jar hammer, be equipped with hammer core hole A and hammer core hole B on the hammer core, hammer core hole A's one end is connected with cavity C, and hammer core hole B's one end is connected with cavity A, and when hole A intercommunication was hammered into shape with the jar to hammer core hole A's the other end, hammer core hole B's the other end and jar hammer hole B did not communicate, when hammer core hole B's the other end communicate with jar hammer hole B, hammer core hole A's the other end and jar hammer hole A did not communicate. The utility model has the characteristics of simple structure, convenient and practical, the hammering is effectual etc.

Description

The air blasting subsoiling fertilizer applicator that hammering device and the device are constituted
Technical field
This utility model belongs to agricultural mechanical field, and in particular to a kind of to apply fertilizer for the air blasting subsoiling that applying fruit trees with fertilizer is used Machine and constitute the hammering device of the fertilizer applicator.
Background technology
A kind of soil improver disclosed in CN102318462A, is new fertilizer applicator for orchard tool, after use, fertilization effect It is good, high working efficiency, but the service condition in Xinjiang is unsatisfactory, and after use, fertilization effect and work efficiency do not reach pre- Provisioning request.
Therefore, it is a kind of suitable for the harder plot in Xinjiang using orchard air blasting fertilizer applicator be suggested.
The content of the invention
The purpose of this utility model is to provide a kind of simple structure, convenient and practical, the good hammering device of hammer effect.
This utility model includes cylinder body (7-19), it is characterised in that cylinder body (7-19) is hollow column, its two opening End is provided with end cap A (7-2) and end cap B (7-9), and end cap B (7-9) is provided with steam vent (7-11), cylinder body (7-19) inner chamber Step B (7-6) is provided with, cylinder body (7-19) inner chamber is divided into two different columns of bore, the cylinder body by step B (7-6) (7-19) cylinder body air inlet (7-16) is provided with, cylinder body (7-19) inner chamber is provided with cylinder hammer (7-8), and cylinder hammers (7-8) into shape by cylinder body (7- 19) inner chamber is divided into three independent cavitys, i.e.,:Cavity A (7-3), cavity B (7-5) and cavity C (7-13), the cavity A (7-3) end cap A (7-2) ends are located at, cavity B (7-5) is located at step A (7-4) place of cylinder body (7-19) inner chamber, cavity C (7-13) End cap B (7-9) ends are located at, above-mentioned cylinder body air inlet (7-16) is connected with cavity B (7-5), cylinder hammer (7-8) is provided with cylinder hammer Hole A (7-7) and cylinder hammer hole B (7-17), are provided with hammer core (7-10) in cylinder hammer (7-8), hammer core (7-10) is provided with hammer Core bore A (7-12) and hammer core bore B (7-18), one end of hammer core bore A (7-12) are connected with cavity C (7-13), hammer core bore B into shape (7-18) one end is connected with cavity A (7-3), and hammer core (7-10) cylinder hammer (7-8) relatively moves reciprocatingly, i.e., in state A Move back and forth and state B between, during state A:The other end of hammer core bore A (7-12) is connected with cylinder hammer hole A (7-7), this hour hammer core The other end of hole B (7-18) is not connected with cylinder hammer hole B (7-17), during state B:The other end of hammer core bore B (7-18) hammers hole B into shape with cylinder (7-17) connect, the other end of this hour hammer core bore A (7-12) is not connected with cylinder hammer hole A (7-7), is provided with the cavity A (7-3) Piston (7-1), the other end of piston (7-1) are located at cylinder body (7-19) outside, and piston (7-1) does reciprocal in cavity A (7-3) Motion.
As improvement, stopping means between cylinder hammer (7-8) and hammer core (7-10), are provided with, stopping means are located at cylinder hammer (7-8) Interior, stopping means are included:Spring (7-14) and pellet (7-15), the spring (7-14) is by pellet (7-15) to hammer core (7-10) Extruding, makes pellet (7-15) fit with hammer core (7-10).
It is specifically used as follows:Cavity B (7-6) of the gases at high pressure from cylinder body air inlet (7-16) into inner chamber of cylinder block, now, If cylinder hammer hole B (7-17) is connected with hammer core bore B (7-18), but cylinder hammer hole A (7-7) is not connected with hammer core bore A (7-12), high Calming the anger body can be through cylinder hammer hole B (7-17) and hammer core bore B (7-18) into cavity A (7-3), with the pressure in cavity A (7-3) Power becomes big, and cylinder hammer (7-8) and hammer core (7-10) can be promoted to move upwards, when hammer core (7-10) maximum displacement is moved upward to, Hammer core (7-10) cannot be moving upwards, but cylinder hammer (7-8) can be continued up to maximum displacement, now cylinder hammer hole A (7-7) connect with hammer core bore A (7-12), the gases at high pressure after connection in cavity A (7-3) can be into cavity C (7-13), and by arranging Pore (7-11) is discharged, and in gravity or figure in the presence of F active forces, hammer core (7-10) and cylinder hammer (7-8) can be moved downward, and transport Move to cylinder hammer hole B (7-17) and hammer core bore B (7-18) state, back and forth realize hammer effect successively;Or if cylinder hammer hole B (7- 17) do not connect with hammer core bore B (7-18), the pressure in cavity B (7-5) can increase, cylinder hammer (7-8) can be promoted to move downward, transported After dynamic, cylinder hammer hole B (7-17) can be connected with hammer core bore B (7-18), back and forth realize hammer effect successively.
A kind of fertilizer applicator, including at least hammering device, the structure of the hammering device is:Including being provided with cylinder body air inlet Cylinder body, inner chamber of cylinder block are provided with cylinder hammer, and inner chamber of cylinder block is divided into three independent cavitys by cylinder hammer, cavity A, cavity B and cavity C, Above-mentioned cylinder body air inlet is connected with cavity B, and the cylinder hammer is provided with cylinder hammer hole A and cylinder hammer hole B, is provided with hammer core in the cylinder hammer, The hammer core is provided with hammers core bore A and hammer core bore B into shape, and one end of hammer core bore A is connected with cavity C, hammers one end and the sky of core bore B into shape Chamber A connects, and when the other end for hammering core bore A into shape is connected with cylinder hammer hole A, the other end for hammering core bore B into shape is not connected with cylinder hammer hole B;Work as hammer When the other end of core bore B is connected with cylinder hammer hole B, the other end for hammering core bore A into shape is not connected with cylinder hammer hole A.This utility model has knot Structure is simple, convenient and practical, the features such as hammer effect is good.
A kind of air blasting subsoiling fertilizer applicator, including self propelled chassis (3), it is characterised in that:Self propelled chassis (3) is provided with hammering dress Put, air compressor (4), air accumulator (9), receptacle (8) and cycle type fertilizer quantifier (21), the hammering device be located at from Walk the front end of chassis (3).
The hammering device includes cylinder body (7-19), it is characterised in that cylinder body (7-19) is hollow column, and which two is opened Mouth end is provided with end cap A (7-2) and end cap B (7-9), and end cap B (7-9) is provided with steam vent (7-11), the cylinder body (7-19) Chamber is provided with step B (7-6), and cylinder body (7-19) inner chamber is divided into two different columns of bore, the cylinder by step B (7-6) Body (7-19) is provided with cylinder body air inlet (7-16), and cylinder body (7-19) inner chamber is provided with cylinder hammer (7-8), and cylinder hammers (7-8) into shape by cylinder body (7-19) inner chamber is divided into three independent cavitys, i.e.,:Cavity A (7-3), cavity B (7-5) and cavity C (7-13), the cavity A (7-3) is located at end cap A (7-2) ends, and cavity B (7-5) is located at step A (7-4) place of cylinder body (7-19) inner chamber, cavity C (7- 13) end cap B (7-9) ends are located at, above-mentioned cylinder body air inlet (7-16) is connected with cavity B (7-5), cylinder hammer (7-8) is provided with Cylinder hammer hole A (7-7) and cylinder hammer hole B (7-17), are provided with hammer core (7-10), set on hammer core (7-10) in cylinder hammer (7-8) The one end for having hammer core bore A (7-12) and hammer core bore B (7-18), hammer core bore A (7-12) is connected with cavity C (7-13), hammers core into shape One end of hole B (7-18) is connected with cavity A (7-3), and hammer core (7-10) cylinder hammer (7-8) relatively moves reciprocatingly, i.e., in shape Move back and forth between state A and state B, during state A:The other end of hammer core bore A (7-12) is connected with cylinder hammer hole A (7-7), this hour hammer The other end of core bore B (7-18) is not connected with cylinder hammer hole B (7-17), during state B:The other end of hammer core bore B (7-18) is hammered into shape with cylinder Hole B (7-17) is connected, and the other end of this hour hammer core bore A (7-12) is not connected with cylinder hammer hole A (7-7), in the cavity A (7-3) Piston (7-1) is provided with, the other end of piston (7-1) is located at cylinder body (7-19) outside, and piston (7-1) is done in cavity A (7-3) Move back and forth.
Stopping means are provided between above-mentioned cylinder hammer (7-8) and hammer core (7-10), stopping means are located in cylinder hammer (7-8), limit Position device is included:Pellet (7-15) is extruded by spring (7-14) and pellet (7-15), the spring (7-14) to hammer core (7-10), Pellet (7-15) is made to fit with hammer core (7-10).
As improvement, supporting mechanism is provided with, the supporting mechanism is located at the afterbody of self propelled chassis (3), and supporting mechanism is at least Comprising:Hydraulic means (22), one end of the hydraulic means (22) are fixed on self propelled chassis (3), and the other end is free end, and Earthward can extend in direction.
Used as further improving, the one end for being additionally provided with supporting leg (23) supporting leg (23) is hinged with self propelled chassis (3), The other end is free end, is hinged in the middle part of the free end of hydraulic means (22) and supporting leg (23).
Fruit tree carries out needing for fertilization gun to insert soil layer when the accurate subsoiling of gas-explosion-type, fertilising operation, now usually relies on car Deadweight is squeezed into using hydraulic pressure is direct insertion, can often run into harder hardened soil layer during insertion, and now pipette tips are difficult to break plate Tie soil layer rifle to be difficult to penetrate enough depth, and machine nose phenomenon occur and cause fertilization gun press-bending deformation.
Squeezed into using drilling form in association area research application more, when taking drill-bit type fertilization gun, deposit just many problems, Such as:In order to ensure there is enough space conveying high-pressure gas and fertilizer, drill-bit type rifle inside gun body intensity itself and fertilising gun barrel Head diameter can exceed more than one times of plug-in type pipette tips diameter, increase the destroying infection fruit tree normal growth to root system, and drill bit pair The agitation of soil layer makes the soft impact hole air-tightness of soil layer around drilling affect subsoiling, fertilization effect.
This utility model has simple structure, convenient and practical, the features such as hammer effect is good.
Description of the drawings
Fig. 1 is this utility model air blasting fertilizer applicator main structure diagram.
Fig. 2 is this utility model air blasting fertilizer applicator overlooking the structure diagram.
Fig. 3 is cylinder hammer and hammers core motion structure schematic diagram upwards into shape.
Fig. 4 is that cylinder hammer and hammer core move downward structural representation.
Fig. 5 is the structural scheme of mechanism of embodiment 3.
Shown in figure:1 spray gun, 2 is shield, and 3 is self propelled chassis, and 4 is air compressor, and 5 is depression bar, and 6 is storage battery, and 7 are Hammering generating mechanism,
7-1 is piston, and 7-2 is end cap A, and 7-3 is cavity A, and 7-4 is step A, and 7-5 is cavity B, and 7-6 is step B, 7-7 It is cylinder hammer hole A, 7-8 is cylinder hammer, and 7-9 is end cap B, and 7-10 is hammer core, and 7-11 is steam vent, and 7-12 is hammer core bore A, and 7-13 is empty Chamber C, 7-14 are springs, and 7-15 is pellet, and 7-16 is cylinder body air inlet, and 7-17 is cylinder hammer hole B, and 7-18 is to hammer core bore B into shape, and 7-19 is Cylinder body,
8 is receptacle, and 9 is air accumulator, and 10 is engine radiator, and 11 is workbox, and 12 is electromotor, and 13 is diesel oil Case, 14 is control station, and 15 is seat, and 16 is workbox, and 17 is solenoid valve control case, and 18 is high pressure gas generator, and 19 is liquid Force feed case, 20 is hydraulic fluid temperature meter, and 21 is cycle type fertilizer quantifier, and 22 is hydraulic means, and 23 is supporting leg.
Specific embodiment
Embodiment 1:With reference to Fig. 1~4, it is the structural representation of this utility model embodiment 1, a kind of hammering device, including Cylinder body (7-19), it is characterised in that cylinder body (7-19) is hollow column, its two opening is provided with end cap A (7-2) and end cap B (7-9), end cap B (7-9) are provided with steam vent (7-11), and cylinder body (7-19) inner chamber is provided with step B (7-6), step B (7- 6) cylinder body (7-19) inner chamber is divided into into two different columns of bore, the cylinder body (7-19) is provided with cylinder body air inlet (7- 16), cylinder body (7-19) inner chamber is provided with cylinder hammer (7-8), cylinder hammer into shape (7-8) by cylinder body (7-19) inner chamber be divided into three it is independent Cavity, i.e.,:Cavity A (7-3), cavity B (7-5) and cavity C (7-13), the cavity A (7-3) are located at end cap A (7-2) ends, empty Chamber B (7-5) is located at step A (7-4) place of cylinder body (7-19) inner chamber, and cavity C (7-13) is located at end cap B (7-9) ends, above-mentioned cylinder body Air inlet (7-16) is connected with cavity B (7-5), and cylinder hammer (7-8) is provided with cylinder hammer hole A (7-7) and cylinder hammer hole B (7-17), Hammer core (7-10) is provided with cylinder hammer (7-8), hammer core (7-10) is provided with hammer core bore A (7-12) and hammer core bore B (7- 18), one end of hammer core bore A (7-12) is connected with cavity C (7-13), hammers one end and the cavity A (7-3) of core bore B (7-18) into shape Connection, hammer core (7-10) cylinder hammer (7-8) relatively move reciprocatingly, i.e., move back and forth between state A and state B, state A When:The other end of hammer core bore A (7-12) is connected with cylinder hammer hole A (7-7), and the other end and the cylinder of this hour hammer core bore B (7-18) hammer hole B into shape (7-17) do not connect, during state B:The other end of hammer core bore B (7-18) is connected with cylinder hammer hole B (7-17), this hour hammer core bore A (7- 12) the other end and cylinder hammer hole A (7-7) are not connected, and are provided with piston (7-1) in the cavity A (7-3), piston (7-1) it is another End is located at cylinder body (7-19) outside, and piston (7-1) moves reciprocatingly in cavity A (7-3).
As improvement, stopping means between cylinder hammer (7-8) and hammer core (7-10), are provided with, stopping means are located at cylinder hammer (7-8) Interior, stopping means are included:Spring (7-14) and pellet (7-15), the spring (7-14) is by pellet (7-15) to hammer core (7-10) Extruding, makes pellet (7-15) fit with hammer core (7-10).
It is specifically used as follows:Cavity B (7-6) of the gases at high pressure from cylinder body air inlet (7-16) into inner chamber of cylinder block, now, If cylinder hammer hole B (7-17) is connected with hammer core bore B (7-18), but cylinder hammer hole A (7-7) is not connected with hammer core bore A (7-12), high Calming the anger body can be through cylinder hammer hole B (7-17) and hammer core bore B (7-18) into cavity A (7-3), with the pressure in cavity A (7-3) Power becomes big, and cylinder hammer (7-8) and hammer core (7-10) can be promoted to move upwards, when hammer core (7-10) maximum displacement is moved upward to, Hammer core (7-10) cannot be moving upwards, but cylinder hammer (7-8) can be continued up to maximum displacement, now cylinder hammer hole A (7-7) connect with hammer core bore A (7-12), the gases at high pressure after connection in cavity A (7-3) can be into cavity C (7-13), and by arranging Pore (7-11) is discharged, and in gravity or figure in the presence of F active forces, hammer core (7-10) and cylinder hammer (7-8) can be moved downward, and transport Move to cylinder hammer hole B (7-17) and hammer core bore B (7-18) state, back and forth realize hammer effect successively;Or if cylinder hammer hole B (7- 17) do not connect with hammer core bore B (7-18), the pressure in cavity B (7-5) can increase, cylinder hammer (7-8) can be promoted to move downward, transported After dynamic, cylinder hammer hole B (7-17) can be connected with hammer core bore B (7-18), back and forth realize hammer effect successively.
Embodiment 2:A kind of air blasting subsoiling fertilizer applicator, including self propelled chassis (3), it is characterised in that:Self propelled chassis is set on (3) There are hammering device, air compressor (4), air accumulator (9), receptacle (8) and cycle type fertilizer quantifier (21), the hammering dress It is set in the front end of self propelled chassis (3).
The hammering device includes cylinder body (7-19), it is characterised in that cylinder body (7-19) is hollow column, and which two is opened Mouth end is provided with end cap A (7-2) and end cap B (7-9), and end cap B (7-9) is provided with steam vent (7-11), the cylinder body (7-19) Chamber is provided with step B (7-6), and cylinder body (7-19) inner chamber is divided into two different columns of bore, the cylinder by step B (7-6) Body (7-19) is provided with cylinder body air inlet (7-16), and cylinder body (7-19) inner chamber is provided with cylinder hammer (7-8), and cylinder hammers (7-8) into shape by cylinder body (7-19) inner chamber is divided into three independent cavitys, i.e.,:Cavity A (7-3), cavity B (7-5) and cavity C (7-13), the cavity A (7-3) is located at end cap A (7-2) ends, and cavity B (7-5) is located at step A (7-4) place of cylinder body (7-19) inner chamber, cavity C (7-13) End cap B (7-9) ends are located at, above-mentioned cylinder body air inlet (7-16) is connected with cavity B (7-5), cylinder hammer (7-8) is provided with cylinder hammer Hole A (7-7) and cylinder hammer hole B (7-17), are provided with hammer core (7-10) in cylinder hammer (7-8), hammer core (7-10) is provided with hammer Core bore A (7-12) and hammer core bore B (7-18), one end of hammer core bore A (7-12) are connected with cavity C (7-13), hammer core bore B into shape (7-18) one end is connected with cavity A (7-3), and hammer core (7-10) cylinder hammer (7-8) relatively moves reciprocatingly, i.e., in state A Move back and forth and state B between, during state A:The other end of hammer core bore A (7-12) is connected with cylinder hammer hole A (7-7), this hour hammer core The other end of hole B (7-18) is not connected with cylinder hammer hole B (7-17), during state B:The other end of hammer core bore B (7-18) hammers hole B into shape with cylinder (7-17) connect, the other end of this hour hammer core bore A (7-12) is not connected with cylinder hammer hole A (7-7), is provided with the cavity A (7-3) Piston (7-1), the other end of piston (7-1) are located at cylinder body (7-19) outside, and piston (7-1) does reciprocal in cavity A (7-3) Motion.
Stopping means are provided between above-mentioned cylinder hammer (7-8) and hammer core (7-10), stopping means are located in cylinder hammer (7-8), limit Position device is included:Pellet (7-15) is extruded by spring (7-14) and pellet (7-15), the spring (7-14) to hammer core (7-10), Pellet (7-15) is made to fit with hammer core (7-10).
As improvement, supporting mechanism is provided with, the supporting mechanism is located at the afterbody of self propelled chassis (3), and supporting mechanism is at least Comprising:Hydraulic means (22), one end of the hydraulic means (22) are fixed on self propelled chassis (3), and the other end is free end, and Earthward can extend in direction.
Fruit tree carries out needing for fertilization gun to insert soil layer when the accurate subsoiling of gas-explosion-type, fertilising operation, now usually relies on car Deadweight is squeezed into using hydraulic pressure is direct insertion, can often run into harder hardened soil layer during insertion, and now pipette tips are difficult to break plate Tie soil layer rifle to be difficult to penetrate enough depth, and machine nose phenomenon occur and cause fertilization gun press-bending deformation.
Squeezed into using drilling form in association area research application more, when taking drill-bit type fertilization gun, deposit just many problems, Such as:In order to ensure there is enough space conveying high-pressure gas and fertilizer, drill-bit type rifle inside gun body intensity itself and fertilising gun barrel Head diameter can exceed more than one times of plug-in type pipette tips diameter, increase the destroying infection fruit tree normal growth to root system, and drill bit pair The agitation of soil layer makes the soft impact hole air-tightness of soil layer around drilling affect subsoiling, fertilization effect.
Embodiment 3:With reference to Fig. 5, it is the structural representation of this utility model embodiment 3, compared with Example 2, this enforcement Example difference be:Supporting mechanism is additionally provided with one end of supporting leg (23) supporting leg (23) and self propelled chassis (3) cuts with scissors Connect, the other end is free end, be hinged in the middle part of the free end of hydraulic means (22) and supporting leg (23).

Claims (5)

1. a kind of hammering device, including cylinder body (7-19), it is characterised in that cylinder body (7-19) is hollow column, which two is opened Mouth end is provided with end cap A (7-2) and end cap B (7-9), and end cap B (7-9) is provided with steam vent (7-11), the cylinder body (7-19) Chamber is provided with step B (7-6), and cylinder body (7-19) inner chamber is divided into two different columns of bore, the cylinder by step B (7-6) Body (7-19) is provided with cylinder body air inlet (7-16), and cylinder body (7-19) inner chamber is provided with cylinder hammer (7-8), and cylinder hammers (7-8) into shape by cylinder body (7-19) inner chamber is divided into three independent cavitys, i.e.,:Cavity A (7-3), cavity B (7-5) and cavity C (7-13), the cavity A (7-3) is located at end cap A (7-2) ends, and cavity B (7-5) is located at step A (7-4) place of cylinder body (7-19) inner chamber, cavity C (7-13) End cap B (7-9) ends are located at, above-mentioned cylinder body air inlet (7-16) is connected with cavity B (7-5), cylinder hammer (7-8) is provided with cylinder hammer Hole A (7-7) and cylinder hammer hole B (7-17), are provided with hammer core (7-10) in cylinder hammer (7-8), hammer core (7-10) is provided with hammer Core bore A (7-12) and hammer core bore B (7-18), one end of hammer core bore A (7-12) are connected with cavity C (7-13), hammer core bore B into shape (7-18) one end is connected with cavity A (7-3), and hammer core (7-10) cylinder hammer (7-8) relatively moves reciprocatingly, i.e., in state A Move back and forth and state B between, during state A:The other end of hammer core bore A (7-12) is connected with cylinder hammer hole A (7-7), this hour hammer core The other end of hole B (7-18) is not connected with cylinder hammer hole B (7-17), during state B:The other end of hammer core bore B (7-18) hammers hole B into shape with cylinder (7-17) connect, the other end of this hour hammer core bore A (7-12) is not connected with cylinder hammer hole A (7-7), is provided with the cavity A (7-3) Piston (7-1), the other end of piston (7-1) are located at cylinder body (7-19) outside, and piston (7-1) does reciprocal in cavity A (7-3) Motion.
2. hammering device according to claim 1, it is characterised in that:Cylinder to be hammered into shape and be provided with limit between (7-8) and hammer core (7-10) Position device, stopping means are located in cylinder hammer (7-8), and stopping means are included:Spring (7-14) and pellet (7-15), the spring (7-14) by pellet (7-15) to hammer core (7-10) extruding, pellet (7-15) is made to fit with hammer core (7-10).
3. a kind of air blasting subsoiling fertilizer applicator, including self propelled chassis (3), it is characterised in that:Self propelled chassis (3) is provided with right such as will Hammering device described in 1~2, air compressor (4), air accumulator (9), receptacle (8) and cycle type fertilizer quantifier (21) are asked, The hammering device is located at the front end of self propelled chassis (3).
4. air blasting subsoiling fertilizer applicator according to claim 3, it is characterised in that:It is provided with supporting mechanism, the supporting mechanism The afterbody of self propelled chassis (3) is located at, supporting mechanism is included at least:Hydraulic means (22), one end of the hydraulic means (22) are solid It is scheduled on self propelled chassis (3), the other end is free end, and earthward can extends in direction.
5. air blasting subsoiling fertilizer applicator according to claim 4, it is characterised in that:It is additionally provided with supporting leg (23) supporting leg (23) one end is hinged with self propelled chassis (3), and the other end is free end, the free end and supporting leg (23) of hydraulic means (22) Middle part is hinged.
CN201621214463.9U 2016-10-24 2016-11-10 Air explosion fertilizer distributor loose deeply that hammering device and device constitute Active CN206136613U (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201621151667 2016-10-24
CN2016211516672 2016-10-24

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106416484A (en) * 2016-10-24 2017-02-22 新疆农垦科学院 Hammering device and gas-explosion deep-scarification fertilizer applicator composed of hammering device

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106416484A (en) * 2016-10-24 2017-02-22 新疆农垦科学院 Hammering device and gas-explosion deep-scarification fertilizer applicator composed of hammering device
CN106416484B (en) * 2016-10-24 2018-10-09 新疆农垦科学院 The gas explosion subsoiling fertilizer applicator that hammering device and the device are constituted

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