CN214741890U - Emulsion matrix delivery pump for bulk emulsion explosive - Google Patents

Emulsion matrix delivery pump for bulk emulsion explosive Download PDF

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Publication number
CN214741890U
CN214741890U CN202120191359.7U CN202120191359U CN214741890U CN 214741890 U CN214741890 U CN 214741890U CN 202120191359 U CN202120191359 U CN 202120191359U CN 214741890 U CN214741890 U CN 214741890U
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China
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piston
pump
motor
head
piston rod
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CN202120191359.7U
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Inventor
唐秀永
段海霞
刘彤
陶东波
舒常平
毛伟杰
邹敏
陈龙
舒秋霖
赵鹏辉
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Hunan Jinshi Zhizao Technology Co.,Ltd.
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Hunan Huashun Rio Tinto Technology Co ltd
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Abstract

The utility model discloses a bulk emulsion explosive emulsion matrix delivery pump relates to the on-spot system of mixing of bulk emulsion explosive and conveying equipment field, mainly includes pump suction joint, entry end pump support, pump head, cylinder body, export shell, pull rod, choke nut, piston, motor support, this pump simple structure, safe and reliable, difficult breakdown of emulsion, idle running do not have the temperature rise, the measurement is accurate, the explosive steady quality of production, operation and maintenance convenience, cost of maintenance are low.

Description

Emulsion matrix delivery pump for bulk emulsion explosive
Technical Field
The utility model relates to a field mixing and conveying equipment for bulk emulsion explosives, in particular to a latex matrix conveying pump for bulk emulsion explosives.
Background
At present, two blasting modes of the packaged emulsion explosive blasting and the bulk emulsion explosive blasting exist in China, the packaged emulsion explosive is high in cost, inconvenient and unsafe to produce, store and transport, and easy to pollute the environment during blasting, and the bulk emulsion explosive is safe, environment-friendly and low in cost and is strongly supported by national policies, but the usage ratio of the bulk emulsion explosive in China in the total usage amount of the explosive is not more than 30% every year, while the usage ratio of the bulk emulsion explosive in developed countries in Europe and America is more than 90%, so that the low usage ratio of the bulk emulsion explosive in China is mainly caused by the fact that the field mixing production process and the transportation technology of the bulk emulsion explosive are lagged.
In addition, at present, more than 3 thousands of mining enterprises exist in China, the mining modes of the mining enterprises mainly adopt open-air packaged emulsion explosive blasting, dust and noise generated by the blasting modes are particularly serious to environmental pollution, the national policy leads and supports the mining enterprises to gradually change from open-air blasting to underground blasting, and simultaneously with the vigorous investment of national infrastructure construction and highway, railway and tunnel construction, the market demands of mixed bulk emulsion explosives and blasting mechanical charging equipment in underground, tunnel and roadway fields become obvious day by day.
At present, equipment for mixing bulk emulsion explosives in underground, tunnel and roadway fields and conveying the bulk emulsion explosives to blast holes is completed by a screw pump and a peristaltic pump, namely, when an emulsion matrix is conveyed by the screw pump, a sensitizing agent is added into an emulsion matrix conveying pipeline by the peristaltic pump and is mixed, and then the mixture is conveyed to the blast holes to form the bulk emulsion explosives for blasting
The prior art scheme has the following defects: when the screw pump rotates to convey the latex matrix, the latex matrix is extruded out of the cavity by virtue of interference fit of the rotor and the stator, the rotor is directly contacted with the stator, the rotor and the stator are greatly abraded, the rotor and the stator are generally required to be replaced once a year, and the maintenance cost is very high; the flow measurement is carried out by controlling the rotating speed of the screw pump, and the measurement is inaccurate; when the emulsion matrix is extruded out of the cavity by the interference fit of the rotor and the stator, the emulsion matrix is subjected to large shearing force, the emulsion matrix is seriously damaged, the temperature rise is fast, the emulsion breaking and crystallization are started after the emulsion matrix is pumped for 3 times repeatedly, and the explosive performance is seriously influenced; when the outlet is blocked or the feeding is not smooth, the screw pump repeatedly rubs the materials in the cavity, so that safety accidents are easily caused; when no material exists, the rotor and the stator are repeatedly rubbed, the temperature rise can reach more than 100 ℃ within 5 minutes, the safety risk is extremely high, and 20 detonation accidents happen only in the civil explosion industry, almost every year.
SUMMERY OF THE UTILITY MODEL
The utility model aims to overcome the defects of the prior art that the abrasion of a rotor and a stator of a screw pump is fast, the emulsion breaking is easy during the emulsion matrix conveying, the idling temperature rises and the metering is inaccurate, thereby providing a bulk emulsion explosive emulsion matrix conveying pump which has simple structure, safety and reliability, is not easy to break the emulsion, has no temperature rise during the idling and is accurate in metering, comprising a pump suction joint 1, an inlet end pump support 2, a pump head 3, an outer cylinder 4, an outlet shell 5, a cylinder body pull rod 8, a throat nut 6, a piston rod 7, a matrix pump U-shaped clamp 9, a power end U-shaped clamp 11, a motor end foot rest 16, a motor support frame 17, a motor 18, a motor pull rod 19, a connecting nut 13, a connecting rod 12, a U-shaped clamp plate 10, a sealing ring 33, a wear-resisting ring 32, a sealing ring 31, a wear-resisting sealing ring 30, a sensitizer pump rotating pin 14, a catalyst pump rotating pin 15, a piston rod left tapered end 29, a piston rod barrel 28, The pump suction joint 1 and the pump head 3 are welded into a whole in a butt welding mode, inner rabbets at two ends of the outer cylinder 4 are respectively sleeved on the outer rabbets of the pump suction joint 1 and the outlet shell 5, the pump suction joint 1 and the outlet shell 5 are tensioned through a cylinder pull rod 8 and the outer cylinder 4 is clamped, and the motor 18 is connected with the outer cylinder 4 through a motor support frame 17 and a motor pull rod 19 through the motor 18.
Furthermore, a left water inlet and a right water inlet are welded on the pump suction joint 1, the end flange of the pump suction joint is connected with the inlet end pump support 2 through a bolt, and the motor end foot rest 16 is connected with the motor support frame 17 through a bolt.
Furthermore, a lower ball stop pin 21 is welded in the pump head 3, a feeding ball hole matched with the lower ball 20 is formed in the end part, and the lower ball 20 can move up and down in a limiting area formed by the lower ball stop pin 21, so that the opening and closing of the lower feeding ball hole are realized.
Further, the piston 34 is formed by welding a piston rod 7, a piston rod left lock 29, a piston rod cylinder 28 and a piston rod right lock 27 in a splicing manner, the piston head is hung in the cylinder body through a bolt and a piston bolt cushion cylinder 22 by the piston rod right lock 27, an upper ball 24 is arranged in the piston head, the upper ball 24 can move up and down in a limiting area formed by the piston bolt cushion cylinder 22 to realize opening and closing of an upper feeding ball hole, the piston head is formed by sleeving a piston seat 23, a piston ring 25 and a piston fixer 26, a wear-resistant sealing ring 30 is arranged on the piston head, and the piston 34 divides the cylinder body into a lower cavity 36 and an upper cavity 35.
Furthermore, the outer part of the throat nut 6 is provided with threads to be connected and fixed with the outlet shell 5, a plurality of annular grooves are arranged in the throat nut, a sealing ring 33, a wear-resistant ring 32 and a sealing ring 31 are arranged in the throat nut, one end of a connecting rod 12 of the motor 18 is connected with the piston rod 7 through a sensitizer pump rotating pin 14, a catalyst pump rotating pin 15, a substrate pump U-shaped clamp 9 and a power end U-shaped clamp 11, and the other end of the connecting rod is connected with the motor 18 through a connecting nut 13.
The working principle of the utility model is as follows: when the matrix pump is driven by the reciprocating motor, the piston of the matrix pump makes reciprocating linear motion, when the piston rod moves upwards, the spherical hole of the piston seat 23 clings to the upper ball 24 to move upwards together, the lower cavity 36 forms negative pressure, the lower ball 20 moves upwards, the latex matrix enters the lower cavity 36 from the spherical hole in the pump head 3, and meanwhile, the latex matrix stored in the upper cavity 35 is discharged from the outlet of the outlet shell 5 by the piston seat 23 moving upwards; when the piston rod moves downwards, the upper ball 24 on the spherical hole of the piston seat 23 is pushed away by the latex matrix in the lower cavity 36, the latex matrix enters the upper cavity 35 and is discharged from the outlet of the outlet housing 5, and the latex matrix is continuously discharged in a reciprocating and circulating motion.
The utility model discloses the advantage as follows:
1. the utility model discloses an interference fit of piston and cylinder body produces the high pressure, and the plunger is direct and the explosive contact not, does not have friction repeatedly and heat accumulation, is difficult for the breakdown of emulsion.
2. The utility model can realize the continuous discharge of the latex matrix in the reciprocating motion of the pump, so that the metering of the latex matrix is accurate.
3. The utility model discloses simple structure, convenient operation easily realizes automated production.
Drawings
FIG. 1 is a front elevation view of a bulk emulsion explosive emulsion matrix delivery pump
1-pump suction joint, 2-inlet end pump support, 3-pump head, 4-outer cylinder, 5-outlet shell, 8-cylinder body pull rod, 6-throat pipe nut, 7-piston rod, 9-matrix pump U-shaped clamp, 11-power end U-shaped clamp, 16-motor end foot rest, 17-motor support frame, 18-motor and 19-motor pull rod.
FIG. 2 is a sectional view of a bulk emulsion explosive emulsion matrix delivery pump
13-connecting nut, 12-connecting rod, 10-U-shaped clamping plate, 33-sealing ring, 32-wear-resistant ring, 31-sealing ring, 30-wear-resistant sealing ring, 14-sensitizer pump rotating pin, 15-catalyst pump rotating pin, 29-piston rod left lock, 28-piston rod cylinder, 27-piston rod right lock, 22-piston bolt cushion cylinder, 24-upper ball, 23-piston seat, 25-piston ring, 26-piston fixer, 21-lower ball baffle pin, 20-lower ball, 34 piston, 35-upper cavity and 36-lower cavity.
Detailed Description
The following describes the present invention with reference to an embodiment, but the present invention is not limited thereto.
1. Referring to fig. 1, a pump suction connector 1 and a pump head 3 are butt welded into a whole, inner rabbets at two ends of an outer cylinder 4 are respectively sleeved on outer rabbets of the pump suction connector 1 and an outlet housing 5, the pump suction connector 1 and the outlet housing 5 are tensioned through a cylinder body pull rod 8 and the outer cylinder 4 is clamped, and a motor 18 is connected with the outer cylinder 4 through a motor support frame 17 and a motor pull rod 19.
2. Referring to fig. 1, a pump suction joint 1 is welded with left and right water inlets, and an end flange thereof is connected with an inlet end pump support 2 through bolts, and a motor end foot rest 16 is connected with a motor support frame 17 through bolts.
3. Referring to fig. 2, a lower ball stop pin 21 is welded in the pump head 3, a feeding ball hole matched with the lower ball 20 is formed at the end part, and the lower ball 20 can move up and down in a limit area formed by the lower ball stop pin 21 to realize the opening and closing of the lower feeding ball hole.
4. Referring to fig. 2, the piston 34 is formed by welding a piston rod 7, a piston rod left lock 29, a piston rod cylinder 28 and a piston rod right lock 27 in a splicing manner, the piston head is hung in the cylinder body by the piston rod right lock 27 through a bolt and a piston bolt cushion cylinder 22, an upper ball 24 is arranged in the piston head, the upper ball 24 can move up and down in a limiting area formed by the piston bolt cushion cylinder 22 to realize opening and closing of an upper feeding ball hole, the piston head is formed by sleeving a piston seat 23, a piston ring 25 and a piston fixer 26, a wear-resistant sealing ring 30 is arranged on the piston head, and the piston 34 divides the cylinder body into a lower cavity 36 and an upper cavity 35.
5. Referring to fig. 2, the outer part of the throat nut 6 is provided with threads to be connected and fixed with the outlet shell 5, the inner part of the throat nut is provided with a plurality of annular grooves and is provided with a sealing ring 33, a wear-resistant ring 32 and a sealing ring 31, one end of a connecting rod 12 of the motor 18 is connected with the piston rod 7 through a sensitizer pump rotating pin 14, a catalyst pump rotating pin 15, a substrate pump U-shaped clamp 9 and a power end U-shaped clamp 11, and the other end of the connecting rod is connected with the motor 18 through a connecting nut 13.

Claims (5)

1. A bulk emulsion explosive emulsion matrix delivery pump comprises a pump suction joint (1), an inlet end pump support (2), a pump head (3), an outer cylinder (4), an outlet shell (5), a cylinder body pull rod (8), a throat pipe nut (6), a piston rod (7), a matrix pump U-shaped clamp (9), a power end U-shaped clamp (11), a motor end foot rest (16), a motor support frame (17), a motor (18), a motor pull rod (19), a connecting nut (13), a connecting rod (12), a U-shaped clamping plate (10), a sealing ring (33), a wear-resisting ring (32), a sealing ring (31), a wear-resisting sealing ring (30), a sensitizer pump rotating pin (14), a catalyst pump rotating pin (15), a piston rod left locking head (29), a piston rod cylinder (28), a piston rod right locking head (27), a piston bolt cushion cylinder (22), an upper ball (24), a piston seat (23), a catalyst pump rotating pin (14), a catalyst pump rotating pin (15), a catalyst pump rotating pin (29), a piston rod cylinder (28), a piston bolt cushion cylinder (27), a piston bolt cushion cylinder (24) and a piston seat (23), Piston ring (25), piston fixer (26), next ball backing pin (21), next ball (20), piston (34), its characterized in that: the pump suction connector (1) and the pump head (3) are welded into a whole in a butt welding mode, inner rabbets at two ends of the outer cylinder (4) are respectively sleeved on the outer rabbets of the pump suction connector (1) and the outlet shell (5), the pump suction connector (1) and the outlet shell (5) are tensioned through the cylinder body pull rod (8) and the outer cylinder (4) is clamped, and the motor (18) is connected with the outer cylinder (4) through the motor support frame (17) by the motor pull rod (19).
2. The bulk emulsion explosive emulsion matrix transfer pump of claim 1, wherein: a left water inlet and a right water inlet are welded on the pump suction joint (1), a flange at the end part of the pump suction joint is connected with the inlet end pump support (2) through a bolt, and a motor end foot rest (16) is connected with a motor support frame (17) through a bolt.
3. The bulk emulsion explosive emulsion matrix transfer pump of claim 1, wherein: the pump head (3) is internally welded with a lower ball stop pin (21), the end part of the pump head is provided with a feeding ball hole matched with the lower ball (20), and the lower ball (20) can move up and down in a limiting area formed by the lower ball stop pin (21) to realize the opening and closing of the lower feeding ball hole.
4. The bulk emulsion explosive emulsion matrix transfer pump of claim 1, wherein: piston (34) are formed by piston rod (7), piston rod left tapered end (29), a piston rod section of thick bamboo (28), piston rod right tapered end (27) splice welding, piston rod right tapered end (27) are hung the piston head in the cylinder body through bolt and piston bolt pad section of thick bamboo (22), upper ball (24) are equipped with in the piston head, upper ball (24) can reciprocate in the spacing region that piston bolt pad section of thick bamboo (22) formed, realize the switching of last feeding ball hole, the piston head is by piston seat (23), piston ring (25), constitute after piston fixer (26) cup joints, wear-resisting sealing ring (30) are equipped with on the piston head, piston (34) divide into cavity (36) and epicoele (35) down to the cylinder body.
5. The bulk emulsion explosive emulsion matrix transfer pump of claim 1, wherein: the outer part of the throat pipe nut (6) is provided with threads and is fixedly connected with the outlet shell (5), a plurality of annular grooves are formed in the throat pipe nut, a sealing ring (33), a wear-resistant ring (32) and a sealing ring (31) are arranged in the throat pipe nut, one end of a connecting rod (12) of the motor (18) is connected with the piston rod (7) through a sensitizing agent pump rotating pin (14), a catalyst pump rotating pin (15), a matrix pump U-shaped clamp (9) and a power end U-shaped clamp (11), and the other end of the connecting rod is connected with the motor (18) through a connecting nut (13).
CN202120191359.7U 2021-01-18 2021-01-18 Emulsion matrix delivery pump for bulk emulsion explosive Active CN214741890U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120191359.7U CN214741890U (en) 2021-01-18 2021-01-18 Emulsion matrix delivery pump for bulk emulsion explosive

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120191359.7U CN214741890U (en) 2021-01-18 2021-01-18 Emulsion matrix delivery pump for bulk emulsion explosive

Publications (1)

Publication Number Publication Date
CN214741890U true CN214741890U (en) 2021-11-16

Family

ID=78640947

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120191359.7U Active CN214741890U (en) 2021-01-18 2021-01-18 Emulsion matrix delivery pump for bulk emulsion explosive

Country Status (1)

Country Link
CN (1) CN214741890U (en)

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GR01 Patent grant
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TR01 Transfer of patent right

Effective date of registration: 20220401

Address after: 410205 room 402-173, floor 4, building 9, phase I, Changsha Zhongdian Software Park, No. 39, Jianshan Road, high tech Development Zone, Changsha, Hunan

Patentee after: Hunan Jinshi Zhizao Technology Co.,Ltd.

Address before: 8172, 8th floor, building 2, Xincheng Science Park, 588 Yuelu West Avenue, Changsha hi tech Development Zone, Hunan Province, 410205

Patentee before: Hunan Huashun Rio Tinto Technology Co.,Ltd.

TR01 Transfer of patent right