CN204453884U - A kind of energy-efficient polymeric powder conveyer - Google Patents

A kind of energy-efficient polymeric powder conveyer Download PDF

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Publication number
CN204453884U
CN204453884U CN201520022688.3U CN201520022688U CN204453884U CN 204453884 U CN204453884 U CN 204453884U CN 201520022688 U CN201520022688 U CN 201520022688U CN 204453884 U CN204453884 U CN 204453884U
Authority
CN
China
Prior art keywords
transfer pot
oxygen increasing
increasing pump
sealing runner
air draft
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
CN201520022688.3U
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Chinese (zh)
Inventor
江承平
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Hangzhou Boyi Jintuo Machinery Co Ltd
Original Assignee
Hangzhou Boyi Jintuo Machinery Co Ltd
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Hangzhou Boyi Jintuo Machinery Co Ltd filed Critical Hangzhou Boyi Jintuo Machinery Co Ltd
Priority to CN201520022688.3U priority Critical patent/CN204453884U/en
Application granted granted Critical
Publication of CN204453884U publication Critical patent/CN204453884U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model discloses a kind of energy-efficient polymeric powder conveyer, comprise transfer pot, inlet point, oxygen increasing pump and electric cabinet, described oxygen increasing pump is connected with transfer pot top by an air draft pipe, a sealing runner is also provided with in described transfer pot, described sealing runner top is communicated with air draft pipe, sealing runner top is provided with a filter core, described filter core is positioned at below air draft pipe, sealing runner side is communicated with inlet point, a sealed thin lid is provided with bottom sealing runner, described sealed thin lid is compressed by a hold-down mechanism, described electric cabinet is electrically connected with oxygen increasing pump, side, described transfer pot top is provided with pulse valve, described pulse valve passes through storage tank and the sealing runner of pipeline communication oxygen increasing pump, described oxygen increasing pump is provided with a flow regulating valve with air draft pipe junction.The utility model only need be equipped with a feed hose and get final product remote or high-altitude conveying polymeric powder, and structure is simple, easy to use, can reduce labor strength, improves transport efficiency, minimizing conveying cost.

Description

A kind of energy-efficient polymeric powder conveyer
Technical field
The utility model relates to a kind of means of delivery, particularly relates to a kind of energy-efficient polymeric powder conveyer.
Background technology
Existing polymeric powder is transported in use equipment in material box, general employing a dead lift and directly pouring into, once use device height higher or use equipment and material box distant, need flower larger energy and time polymeric powder could be transported in use equipment by a dead lift, not only increase labor strength, and transport efficiency is low, conveying cost is high.
Utility model content
The utility model, in order to solve the defect and deficiency that exist in above-mentioned prior art, provides a kind of structure simple, easy to use, can reduce labor strength, improves transport efficiency, reduces the energy-efficient polymeric powder conveyer of conveying cost.
The technical solution of the utility model: a kind of energy-efficient polymeric powder conveyer, comprise transfer pot, be arranged on the inlet point in transfer pot, be arranged on the oxygen increasing pump of transfer pot side and be arranged on the electric cabinet of transfer pot opposite side, described oxygen increasing pump is connected with transfer pot top by an air draft pipe, a sealing runner is also provided with in described transfer pot, described sealing runner top is communicated with air draft pipe, sealing runner top is provided with a filter core, described filter core is positioned at below air draft pipe, sealing runner side is communicated with inlet point, a sealed thin lid is provided with bottom sealing runner, described sealed thin lid is compressed by a hold-down mechanism, described electric cabinet is electrically connected with oxygen increasing pump, side, described transfer pot top is provided with pulse valve, described pulse valve passes through storage tank and the sealing runner of pipeline communication oxygen increasing pump, described oxygen increasing pump is provided with a flow regulating valve with air draft pipe junction.
The utility model adopts the collocation of oxygen increasing pump and transfer pot, make it be equipped with a feed hose and get final product remote or high-altitude conveying polymeric powder, and structure is simple, easy to use, can reduce labor strength, improve transport efficiency, minimizing conveying cost.
Adopt sealed thin lid and hold-down mechanism in the utility model, when to make in sealing runner without polymeric powder, hold-down mechanism can the work of press seal thin lid cooperation oxygen increasing pump; Meanwhile, when oxygen increasing pump quits work, pulse valve is opened and is washed open by sealed thin lid by air pulse, and now the polymeric powder sealed in runner can rely on own wt to drop in use equipment.
In the utility model, arranging of filter core can prevent polymeric powder from extracting out from air draft pipe.
In the utility model, the setting of flow regulating valve is can the action of fast shut-off oxygen increasing pump, prevents oxygen increasing pump because the draft that inertia continues to produce affects pulse valve wash sealed thin lid open, thus saves inertia pumpdown time, raise the efficiency, cost-saving.
Preferably, described hold-down mechanism comprises a balance block, a connection sealed thin lid and the trammel beam of balance block and the fulcrum of a balance support bar, and described fulcrum is arranged in transfer pot.
The utility model balance block is outside transfer pot, and under normal circumstances, balance block weight presses down trammel beam one end, and sealed thin lid is propped press seal by the trammel beam other end.
This kind of structure makes the sealing property of sealed thin lid better, also facilitates air pulse to wash sealed thin lid open simultaneously.
Preferably, described transfer pot comprises the upper tank body and lower tank that are mutually tightly connected and the cover be sealedly connected on upper tank body, described air draft pipe is connected on cover, described inlet point is arranged on upper tank body, described sealing runner extends to lower tank from upper tank body, and described lower tank sidewall is provided with observation access opening.
This kind of structure makes it can easy disassembly and repair and maintenance.
Preferably, in described electric cabinet, be provided with PLC, described PLC control linkage oxygen increasing pump and pulse valve.
This kind of structure makes it more convenient to operate, and efficiency is more increased.
The utility model adopts the collocation of oxygen increasing pump and transfer pot, make it be equipped with a feed hose and get final product remote or high-altitude conveying polymeric powder, and structure is simple, easy to use, can reduce labor strength, improve transport efficiency, minimizing conveying cost.
Accompanying drawing explanation
Fig. 1 is structural representation of the present utility model;
Fig. 2 is control circuit block diagram of the present utility model;
1. transfer pot, 2. inlet point in figure, 3. seal runner, 4. oxygen increasing pump, 5. filter core, 6. flow regulating valve, 7. air draft pipe, 8. trammel beam, 9. pulse valve, 10. sealed thin lid, 11. upper tank bodies, 12. lower tanks, 13. covers, 14. balance blocks, 15. observe access opening, 16. electric cabinets.
Detailed description of the invention
Below in conjunction with accompanying drawing, the utility model is described in further detail, but is not the restriction to the utility model protection domain.
As illustrated in fig. 1 and 2, a kind of energy-efficient polymeric powder conveyer, comprise transfer pot 1, be arranged on the inlet point 2 in transfer pot 1, be arranged on the oxygen increasing pump 4 of transfer pot 1 side and be arranged on the electric cabinet 16 of transfer pot 1 opposite side, oxygen increasing pump 4 is connected with transfer pot 1 top by an air draft pipe 7, a sealing runner 3 is also provided with in transfer pot 1, sealing runner 3 top is communicated with air draft pipe 7, sealing runner 3 top is provided with a filter core 5, filter core 5 is positioned at below air draft pipe 7, sealing runner 3 side is communicated with inlet point 2, a sealed thin lid 10 is provided with bottom sealing runner 3, sealed thin lid 10 is compressed by a hold-down mechanism, electric cabinet 16 is electrically connected with oxygen increasing pump 4, side, transfer pot 1 top is provided with pulse valve 9, pulse valve 9 passes through storage tank and the sealing runner 3 of pipeline communication oxygen increasing pump 4, oxygen increasing pump 4 is provided with a flow regulating valve 6 with air draft pipe 7 junction.Hold-down mechanism comprises a balance block 14, and connects sealed thin lid 10 and the trammel beam 8 of balance block 14 and the fulcrum of a balance support bar 8, and fulcrum is arranged in transfer pot 1.Transfer pot 1 comprises the upper tank body 11 and lower tank 12 that are mutually tightly connected and the cover 13 be sealedly connected on upper tank body 11, air draft pipe 7 is connected on cover 13, inlet point 2 is arranged on upper tank body 11, sealing runner 3 extends to lower tank 12 from upper tank body 11, and lower tank 12 sidewall is provided with observes access opening 15.PLC is provided with, PLC control linkage oxygen increasing pump 4, pulse valve 9 and flow regulating valve 6 in electric cabinet 16.
The pipeline connecting the storage tank of oxygen increasing pump, pulse valve and sealing runner in the utility model is conventional tracheae, does not draw in FIG;
During embodiment work of the present utility model, inlet point place connects the polymeric powder raw material in material box by a flexible pipe; Then open switch, PLC controls oxygen increasing pump work; When the polymeric powder in sealing runner is almost taken out full, PLC controls oxygen increasing pump and power supply disconnects, and oxygen increasing pump quits work, and now PLC controls flow regulating valve work, disconnects oxygen increasing pump instantaneously, removes the draft that oxygen increasing pump inertia produces; Then, PLC control wave valve is opened, and air pulse washes sealed thin lid open, and now polymeric powder relies on own wt to drop in use equipment, and after polymeric powder has fallen, PLC control wave valve and power supply disconnect; This is a working process completed; Then, PLC then controls oxygen increasing pump work, so circulates.
PLC in the utility model is the PLC purchased on the market, it can be write oxygen increasing pump work-hours and pulse valve pulse time.
In the utility model, oxygen increasing pump, pulse valve, flow regulating valve, electric cabinet are the parts that market is purchased, therefore its concrete structure is not carefully stated.
The utility model adopts the collocation of oxygen increasing pump and transfer pot, make it be equipped with a feed hose and get final product remote or high-altitude conveying polymeric powder, and structure is simple, easy to use, can reduce labor strength, improve transport efficiency, minimizing conveying cost.

Claims (4)

1. an energy-efficient polymeric powder conveyer, comprise transfer pot, be arranged on the inlet point in transfer pot, be arranged on the oxygen increasing pump of transfer pot side and be arranged on the electric cabinet of transfer pot opposite side, it is characterized in that: described oxygen increasing pump is connected with transfer pot top by an air draft pipe, a sealing runner is also provided with in described transfer pot, described sealing runner top is communicated with air draft pipe, sealing runner top is provided with a filter core, described filter core is positioned at below air draft pipe, sealing runner side is communicated with inlet point, a sealed thin lid is provided with bottom sealing runner, described sealed thin lid is compressed by a hold-down mechanism, described electric cabinet is electrically connected with oxygen increasing pump, side, described transfer pot top is provided with pulse valve, described pulse valve passes through storage tank and the sealing runner of pipeline communication oxygen increasing pump, described oxygen increasing pump is provided with a flow regulating valve with air draft pipe junction.
2. the energy-efficient polymeric powder conveyer of one according to claim 1, it is characterized in that: described hold-down mechanism comprises a balance block, a connection sealed thin lid and the trammel beam of balance block and the fulcrum of a balance support bar, and described fulcrum is arranged in transfer pot.
3. the energy-efficient polymeric powder conveyer of one according to claim 2, it is characterized in that: described transfer pot comprises the upper tank body and lower tank that are mutually tightly connected and the cover be sealedly connected on upper tank body, described air draft pipe is connected on cover, described inlet point is arranged on upper tank body, described sealing runner extends to lower tank from upper tank body, and described lower tank sidewall is provided with observation access opening.
4. the energy-efficient polymeric powder conveyer of one according to claim 3, is characterized in that: be provided with PLC in described electric cabinet, described PLC control linkage oxygen increasing pump, pulse valve and flow regulating valve.
CN201520022688.3U 2015-01-12 2015-01-12 A kind of energy-efficient polymeric powder conveyer Expired - Fee Related CN204453884U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520022688.3U CN204453884U (en) 2015-01-12 2015-01-12 A kind of energy-efficient polymeric powder conveyer

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201520022688.3U CN204453884U (en) 2015-01-12 2015-01-12 A kind of energy-efficient polymeric powder conveyer

Publications (1)

Publication Number Publication Date
CN204453884U true CN204453884U (en) 2015-07-08

Family

ID=53660805

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201520022688.3U Expired - Fee Related CN204453884U (en) 2015-01-12 2015-01-12 A kind of energy-efficient polymeric powder conveyer

Country Status (1)

Country Link
CN (1) CN204453884U (en)

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C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20150708

Termination date: 20190112

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