CN201712167U - Heating box device - Google Patents

Heating box device Download PDF

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Publication number
CN201712167U
CN201712167U CN2010201021074U CN201020102107U CN201712167U CN 201712167 U CN201712167 U CN 201712167U CN 2010201021074 U CN2010201021074 U CN 2010201021074U CN 201020102107 U CN201020102107 U CN 201020102107U CN 201712167 U CN201712167 U CN 201712167U
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China
Prior art keywords
heating
support body
cabinet device
sides
heating cabinet
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Expired - Fee Related
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CN2010201021074U
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Chinese (zh)
Inventor
何佳南
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Individual
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Individual
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Abstract

The utility model provides a heating box device, particularly to a heating box device applied to a blow molding machine or a bottle mouth crystallization molding machine. The heating box device comprises two frame plates and heat-insulating plates arranged on the inner sides of the two frame plates respectively. The heating box device also comprises at least one heating device which is composed of a heating support and a reflection support and is perpendicularly arranged between the two frame plates; each heating device at least comprises a heating source and two reflecting plates arranged on the two sides of the heating source respectively; and a row of blank bottle holders on a heating track pass through the space between the heating source and the reflecting plates. The heating box device further comprises a top plate made of a heat-insulating material and arranged on the upper side of each heating device, and at least two air holes are formed on the top plate. The utility model achieves the purposes of low energy consumption, uniform heating and enhanced effect of preserving the heat inside the box.

Description

A kind of heating cabinet device
Technical field
The utility model relates to a kind of heating cabinet device, is specifically related to a kind of heating cabinet device that is applied to blow molding machine or bottleneck crystallization machine.
Background technology
At present, track of the equal tool of general blow molding machine or bottleneck crystallization machine, and be located at the some carriers that are used to carry stock on this track and advance in regular turn, when each carrier advances along this track bearing of trend, by being located at several other work stations of this track, and respectively this work station includes with in regular turn: conveying device, feeding device, heating cabinet, shaped device and go out bottle.
As the heating cabinet device that Fig. 1 disclosed, the heater that all vertical side of its heating cabinet is parallel to the carriage direction extension of stock constitutes, for in regular turn stock being added hot work,, heats by its inner heater but only having the heat energy of a side can be applied to stock.
In addition as heating cabinet device that Fig. 2 disclosed, for the heat energy that makes this heating cabinet inside can evenly distribute, prevent the generation of hot-air flow-disturbing, most likely take out seal apparatus in this heating cabinet top device, it utilizes the cross-ventilation effect, the hot-air of inside is extracted out, and the cold air suction of outside is heated, avoid heating cabinet internal cause hot-air flow-disturbing to cause the part space temperature to concentrate and be difficult to control, add hot-air even flow effect in heating cabinet to reach; Yet, in this process,, when the cross-ventilation excessive velocities, cause this heating cabinet temperature inside cooling too fast again easily because of directly hot-air being extracted out, so that scattering and disappearing, temperature too fast, difficultly makes the certain heat energy of inner sustain, cause a large amount of energy wastes.
The transporting velocity of conveying device can be carried stock heat time heating time slowly because of need cooperate, maybe must increase the quantity and the length of heating cabinet, the stock quantity that this heating cabinet heated is quite limited, and then have influence on the output of follow-up shaped device, and the production capacity of whole production line only has the heat energy of a side can be applied to the stock heating, in other words, the heat energy of relative another side can produce waste, and the heat energy of rough estimate waste is higher than 50%
The utility model content
Can't be fully utilized for solving heat energy, cause the waste of heat energy easily, and in the heat radiation process, too fast to cause temperature to be scattered and disappeared too fast because of cooling off easily, and cause the shortcoming of a large amount of energy wastes, and the utility model provides a kind of heating cabinet apparatus structure.
The utility model comprises a casing, it comprises two deckle boards, each deckle board inboard respectively is provided with a thermal insulation board, be vertically installed between this two deckle board, have a heater at least between described two deckle boards, described heater comprises heating support body and reflection support body, and each heater comprises at least one heating source, described heating source both sides respectively are provided with a reflecting plate, can pass through for the row bottle blank seat on the heating track between described heating source and each reflecting plate; It also comprises the top board of being located at each heater top in the casing that a heat insulation material is made, and described top board is provided with at least two air-vents.
Row bottle blank seat on the heating track of the present utility model passes through in the heating source both sides, heating source can be simultaneously to about the bottle embryos of two row heat, avoiding thermal waste, so as to improving the efficiency of heating surface, and then promote the whole production line production capacity.
Top board of the present utility model is that heat insulation material is made, can strengthen heat insulation effect, keep the temperature in the casing.
Deckle board of the present utility model inboard is provided with thermal insulation board, for isolated temperature, borrows cooperating of this thermal insulation board and this top board, and heat energy and temperature are kept for a long time, and the interior heat insulation effect of this casing is more being shown; Moreover the outer surface temperature of this deckle board that metal material is made is unlikely to too high, avoids personnel injured because of touching this deckle board surface accidentally.
Hot-air in the casing of the present utility model can be discharged by the air-vent on this top board, and sees through this wind scooper and make the inside and outside hot cold air of this casing can convection current, makes with the convection current by air that temperature evenly distributes in the casing.
The position of the utility model by air-vent is provided with, and can avoid the hot-air around bottle embryo directly to be drawn out of, and cause the temperature cooling too fast, and the temperature too fast situation of scattering and disappearing effectively to slow down cross-ventilation speed, reaches the purpose of energy savings whereby.
In the utility model, because each fluorescent tube upper and lower surface is provided with the reflecting layer, top board is provided with the reflecting layer, can be for the reflecting plate of this heating source and its both sides and the tripartite reflection mutually of the top board thermal source of its upside, so as to reaching the purpose of even this bottle of heating embryo.
The utility model is that the lock of this heating support body establishes the position and can readjust by a small margin, and when desire strengthens that wherein a row bottle embryo adds thermal effect, can be moved near these row bottle embryo, to heat.
Description of drawings
Fig. 1 is the structural representation of known heating cabinet device.
Fig. 2 is the structural representation of another known heating cabinet.
Fig. 3 is a stereo appearance figure of the present utility model.
Fig. 4 is a three-dimensional exploded view of the present utility model.
Fig. 5 is generalized section of the present utility model (one).
Fig. 6 is generalized section of the present utility model (two).
Fig. 7 is the reflecting layer schematic diagram on the utility model fluorescent tube.
Fig. 8 is an another kind of embodiment schematic diagram of the present utility model.
Fig. 9 is two kinds of embodiment schematic diagrames in addition of the present utility model.
The specific embodiment
Fig. 3 and shown in Figure 4, the utility model are a kind of heating cabinet device device, mainly comprise a casing 1, at least one heater 4, and a top board 12, a wind scooper 15.
This casing 1 comprises two deckle boards 2, and this deckle board 2 is a metal material, and each deckle board 2 inboard is provided with a thermal insulation board 3.
As Fig. 4 and shown in Figure 5, described heater 4 is vertically installed between this two deckle board 2, each heater 4 comprises at least two heating support bodys 5 and a reflection support body 7, and this reflection support body 7 is located between the described heating support body 5, and each top, both sides of heating support body 5 respectively is provided with a junction 6; Each heats, and line is provided with at least one heating source 8 on the support body 5, and each bottle blank seat 18 on the heating track 17 is reflected between the support body 7 by each heating support body 5 and each; This heating source 8 is stacked on this heating support body 5 mutually by at least two fluorescent tubes 9 to be formed, and wherein, this fluorescent tube 9 is an infrared lamp, and each fluorescent tube 9 is equipped with a reflecting layer 10 in upper and lower surface, and this reflecting layer 10 is a plated film layer or a sheet metal; Each both sides of reflecting support body 7 respectively is provided with a reflecting plate 11, and this reflecting plate 11 is a metal material.
But described top board 12 is the metal material of heat insulation and reflection source, it is located at the top of this casing 1, this top board 12 equidistantly is provided with at least two protuberances 13, makes these top board 12 surfaces be one recessed one protruding being staggered, and described protuberance 13 is circular-arc or triangle taper or polygon; This top board 12 is provided with at least two air-vents 14, and these air-vent 14 equidistant column are located at the both sides of this protuberance 13.
Described wind scooper 15 is located at the top of this top board 12, and these wind scooper 15 each extensions outside two sides are provided with side plate 16, and these side plate 16 belows are provided with at least two perforatings, are locked in this perforating for the connecting portion 6 on this heating support body 5.
Now be described in further detail at operation principles of the present utility model:
As shown in Figure 5, carry bottle blank seat 18 on the heating track 17, one bottle of embryo 19 of carrying on each bottle blank seat 18, when this bottle blank seat 18 is delivered to this casing 1 outside with this bottle embryo 19, can make the entry position of 5 of two row bottle blank seats 18 of the left and right sides and a inner side edge that this bottle embryo 19 corresponds to this casing 1 respectively and this heating support bodys, all the other every row bottle blank seats 18 and this bottle embryo 19 then correspond to the entry position of heating between support body 5 and the reflection support body 7, enter this casing 1 with preparation and add hot work.
As Fig. 5 and shown in Figure 6, when a bottle blank seat 18 and a bottle embryo 19 enter in this casing 1, each fluorescent tube 9 that heats on the support body 5 can heat the bottle embryo 19 on each row bottle blank seat 18, and because this fluorescent tube 9 is an infrared lamp, it heats in the infrared radiation mode, therefore its heated perimeter is quite wide, and the radiant heat that is given off because of each fluorescent tube 9, can see through the reflecting plate 11 that is arranged on the reflection support body 7 that respectively heats support body 5 both sides, and the reflex of top board 12, thermal source is reflexed on bottle embryo 19, whereby, the heating source 8 on each heating support body 5 can heat by the bottle embryos 19 of two row about the while, to avoid thermal waste, so as to the lifting efficiency of heating surface, and then promote the whole production line production capacity.
As shown in Figure 7, by each reflecting layer 10 of each fluorescent tube 9 upper and lower surface, and top board 12, can be for the reflecting plate 11 of heating source 8 with its both sides, with and the tripartite reflection mutually of the top board thermal source of upside so that a bottle embryo 19 is subjected to even heating.
In above-mentioned heating process, top board 12 also has effect of heat insulation except that the function with reflection thermal source, can strengthen heat insulation effect, keep temperature in the casing 1; In addition, described deckle board 2 inboards are provided with thermal insulation board 3, for isolated temperature, therefore, borrow cooperating of this thermal insulation board 3 and this top board 12, heat energy and temperature in this casing 1 can be kept for a long time, so that this casing 1 interior heat insulation effect is more showing; Moreover these deckle board 2 hull-skin temperatures that metal material is made are unlikely to too high, therefore can avoid personnel because of touching this injured situation in deckle board 2 surfaces accidentally.
Hot-air in this casing 1 can be discharged by this air-vent 14 on this top board 12, and makes the inside and outside hot cold air of this casing 1 can convection current by this wind scooper 15, makes with the convection current of borrowing air that temperature evenly distributes in the casing 1; At this moment, be positioned at the both sides of this protuberance 13 because of this air-vent 14, when being, this bottle blank seat 18 and this bottle embryo 19 stop mobile status when heating, this air-vent 14 be not be positioned at this bottle embryo 19 directly over, whereby, can avoid the hot-air around this bottle embryo 19 directly to be drawn out of, cause the temperature cooling too fast, the temperature too fast situation of scattering and disappearing effectively to slow down cross-ventilation speed, can reach the energy savings purpose whereby.
As shown in Figure 5, when desire strengthen this wherein a row bottles embryo 19 add thermal effect the time, can readjust by a small margin the position of this heating support body 5, moving to, and the perforating that this connecting portion 6 is established by former lock is moved to another perforating lock establish and be fixed in below the side plate near this row bottle embryo 19.
As shown in Figure 8, as another kind of embodiment of the present utility model, it considers that this bottle embryo 19 is in heating process, because of close this heating source in this bottle embryo 19 upper ends, the end of this bottle embryo 70 is then relatively away from this heating source, so its heating degree is lower, yet, for the end of avoiding this bottle embryo 19 produces softening phenomenon, this embodiment system provides the structural design that adds thermal effect that can strengthen this bottle embryo 19 ends; Its rear and front end in this reflection support body respectively connects establishes an adjustable lamp bracket 20, and each adjustable lamp bracket 20 is provided with another heating source, and has another reflecting plate 11 with this reflecting plate 11 identical functions; This reflection support body is established this adjustable lamp bracket 20 places in connecing, be provided with a plurality of adjustment hole (figure does not show), this adjusts the hole can adjust the fixed position for these adjustable lamp bracket 20 places, whereby, can strengthen the intensity that adds thermal effect of this bottle embryo 19 according to institute's desire, adjust the distance of this adjustable lamp bracket 20 and this bottle embryo 19.
The above-mentioned operation principles that is applied to the Bottle ﹠ Can make-up machine for the utility model, certainly, the utility model also not only is confined to this, also can be applicable to the bottleneck crystallization machine, as shown in Figure 9, it is two kinds of embodiment in addition of the present utility model, it is to carry another bottle blank seat 18 on another heating track 17, and this bottle embryo 19 is placed on this this bottle blank seat 18, when this heating track 17 carries this bottle embryos 19 to enter this casing, so that the bottleneck end of each bottle embryo 19 reflects between support body by each heating support body and each, and make the bottleneck end of this bottle embryo 18 be adjacent to this heating source, to carry out the above-mentioned hot work that adds, whereby, the bottleneck end of this bottle embryo 18 can reach even heating, the purpose of crystallization.

Claims (10)

1. heating cabinet device, comprise a casing, described casing both sides comprise two deckle boards, described casing comprises heater, and described heater comprises heating support body and reflection support body, and described heater is vertically installed between two deckle boards, described heater comprises a heating source, it is characterized in that: described heating source both sides respectively are provided with a reflecting plate, and described bottle blank seat passes through in the heating source both sides, can pass through for the row bottle blank seat on the heating track between described heating source and reflecting plate; Heating source in the described casing and reflecting plate top are provided with the top board that a heat insulation material is made, and described top board is provided with at least two air-vents.
2. heating cabinet device according to claim 1 is characterized in that: described top board equidistantly is provided with at least two protuberances, and that described protuberance is is circular-arc, triangle taper or polygon.
3. heating cabinet device according to claim 1 is characterized in that: described air-vent equidistant column is located at the both sides of this protuberance.
4. heating cabinet device according to claim 1 is characterized in that: but described top board is the reflection source metal material.
5. heating cabinet device according to claim 1 is characterized in that: described top board top is provided with a wind scooper, and each extension outside two sides of described wind scooper is provided with side plate, and described side plate below is provided with at least two perforatings.
6. heating cabinet device according to claim 1 is characterized in that: described heating source line is located on the heating support body, and each heats top, support body both sides and respectively is provided with a junction, is locked on this perforating for activity.
7. heating cabinet device according to claim 1 is characterized in that: described heating source is stacked on the described heating support body mutually by at least two fluorescent tubes.
8. heating cabinet device according to claim 7 is characterized in that: described each fluorescent tube is equipped with a reflecting layer in upper and lower surface, and described reflecting layer is a plated film layer or a sheet metal.
9. heating cabinet device according to claim 1 is characterized in that: described reflecting plate is located at the both sides of a reflection support body respectively.
10. heating cabinet device according to claim 9, it is characterized in that: the rear and front end of described reflection support body respectively connects establishes an adjustable lamp bracket, this adjustable lamp bracket is provided with another heating source, and has another reflecting plate with this reflecting plate identical function, described reflection support body is established this adjustable lamp bracket place in connecing, and is provided with the adjustment hole that at least two described adjustable lamp bracket locks of confession are established.
CN2010201021074U 2010-01-25 2010-01-25 Heating box device Expired - Fee Related CN201712167U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2010201021074U CN201712167U (en) 2010-01-25 2010-01-25 Heating box device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2010201021074U CN201712167U (en) 2010-01-25 2010-01-25 Heating box device

Publications (1)

Publication Number Publication Date
CN201712167U true CN201712167U (en) 2011-01-19

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN2010201021074U Expired - Fee Related CN201712167U (en) 2010-01-25 2010-01-25 Heating box device

Country Status (1)

Country Link
CN (1) CN201712167U (en)

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105643905A (en) * 2016-04-21 2016-06-08 苏州市东雄精密模具塑业有限公司 Temperature averaging device for bottle blowing die
CN108773056A (en) * 2018-06-26 2018-11-09 平湖市浩鑫塑胶有限公司 Heating system for bottle blowing machine
CN108773055A (en) * 2018-06-26 2018-11-09 平湖市浩鑫塑胶有限公司 Heating mantles for bottle blowing machine
CN108773049A (en) * 2018-06-26 2018-11-09 平湖市浩鑫塑胶有限公司 Bottle blowing machine

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105643905A (en) * 2016-04-21 2016-06-08 苏州市东雄精密模具塑业有限公司 Temperature averaging device for bottle blowing die
CN108773056A (en) * 2018-06-26 2018-11-09 平湖市浩鑫塑胶有限公司 Heating system for bottle blowing machine
CN108773055A (en) * 2018-06-26 2018-11-09 平湖市浩鑫塑胶有限公司 Heating mantles for bottle blowing machine
CN108773049A (en) * 2018-06-26 2018-11-09 平湖市浩鑫塑胶有限公司 Bottle blowing machine

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Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
EE01 Entry into force of recordation of patent licensing contract

Assignee: JINZHUN (FUJIAN) PRECISION MACHINERY INDUSTRY CO., LTD.

Assignor: He Jianan

Contract record no.: 2012990000270

Denomination of utility model: Heating box device

Granted publication date: 20110119

License type: Exclusive License

Record date: 20120426

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

Granted publication date: 20110119

Termination date: 20180125

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