CN215122499U - Non-woven fabric substrate seedling-raising forming machine - Google Patents

Non-woven fabric substrate seedling-raising forming machine Download PDF

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Publication number
CN215122499U
CN215122499U CN202121358091.8U CN202121358091U CN215122499U CN 215122499 U CN215122499 U CN 215122499U CN 202121358091 U CN202121358091 U CN 202121358091U CN 215122499 U CN215122499 U CN 215122499U
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woven fabric
woven fabrics
vacuum
unloading
pipe
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CN202121358091.8U
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肖尊祥
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Wenzhou Xiangyuan Packaging Machinery Co ltd
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Ruian Wanyuan Plastic Packaging Machinery Factory
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Abstract

The utility model discloses a non-woven fabrics matrix make-up machine of growing seedlings, which comprises a frame, be equipped with non-woven fabrics unwinding mechanism in the frame, its characterized in that: the machine frame is also sequentially provided with a blanking mechanism, a material pipe forming mechanism, a vacuum material sucking mechanism, a traction mechanism and a cutting mechanism; unloading mechanism is including hopper and unloading pipe, and the entry end intercommunication hopper lower extreme export of unloading pipe, and the exit end of unloading pipe is through material pipe forming mechanism and intercommunication vacuum material suction mechanism, the non-woven fabrics that non-woven fabrics unwinding mechanism unreeled forms the tubulose via material pipe forming mechanism and the cladding on the unloading pipe, and tubulose non-woven fabrics is in proper order through vacuum material suction mechanism, drive mechanism and cut the mechanism. The utility model discloses it is rational in infrastructure, realize the vacuum adsorption unloading of matrix, and can effectively avoid the matrix to the wearing and tearing of unloading part.

Description

Non-woven fabric substrate seedling-raising forming machine
Technical Field
The utility model relates to the field of cultivation substrate production and manufacturing, in particular to an improved invention of a non-woven fabric substrate seedling forming machine.
Background
The cultivation matrix container is by the pipeline section that the non-woven fabrics is constituteed, fill cultivation matrix in the pipeline section the inside, this traditional production of product is mainly semi-automatization, low in production efficiency, be difficult to adapt to large batch production demand, and the current production of this product is automatic, the unloading mode of matrix adopts the extrusion formula ejection of compact, adopt the hopper to deposit the matrix promptly, and set up the impeller of extrusion ejection of compact in the hopper, because contain a large amount of silt in the matrix, make the impeller serious at rotatory extruded in-process wearing and tearing, need often change equipment unit, the increase cost, and influence production efficiency.
SUMMERY OF THE UTILITY MODEL
The utility model aims to solve the technical problem that overcome prior art not enough, provide a non-woven fabrics matrix make-up machine of growing seedlings of rational in infrastructure, absorption ejection of compact.
In order to solve the technical problem, the utility model discloses an adopt following technical scheme to realize: this kind of non-woven fabrics matrix machine of growing seedlings, including the frame, be equipped with non-woven fabrics unwinding mechanism in the frame, its characterized in that: the machine frame is also sequentially provided with a blanking mechanism, a material pipe forming mechanism, a vacuum material sucking mechanism, a traction mechanism and a cutting mechanism; unloading mechanism is including hopper and unloading pipe, and the entry end intercommunication hopper lower extreme export of unloading pipe, and the exit end of unloading pipe is through material pipe forming mechanism and intercommunication vacuum material suction mechanism, the non-woven fabrics that non-woven fabrics unwinding mechanism unreeled forms the tubulose via material pipe forming mechanism and the cladding on the unloading pipe, and tubulose non-woven fabrics is in proper order through vacuum material suction mechanism, drive mechanism and cut the mechanism.
The vacuum material sucking mechanism comprises an upper template, a lower template and a negative pressure source, a vacuum die cavity is formed between the upper template and the lower template and communicated with the negative pressure source, a blanking guide pipe connecting port is arranged at the front end of the vacuum die cavity, a tubular non-woven fabric outlet is arranged at the rear end of the vacuum die cavity, a tubular non-woven fabric support frame is further arranged in the vacuum die cavity corresponding to the blanking guide pipe connecting port to the tubular non-woven fabric outlet, and a clearance is reserved between the excircle of the tubular non-woven fabric support frame and the inner wall of the vacuum die cavity.
And a circle of sealing strip and a sealing groove which are in sealing fit are arranged on the end surfaces of the upper template and the lower template which are matched.
The tubular non-woven fabric support frame comprises a plurality of transverse support bars and an annular seat, wherein the transverse support bars and the annular seat are enclosed to form a tubular shape, the transverse support bars are arranged at equal intervals along the circumferential direction, and two ends of each transverse support bar are connected to the annular seat.
The tubular non-woven fabric support frame is divided into an upper half part and a lower half part and is respectively arranged on the upper template and the lower template.
The material pipe forming mechanism comprises a shaping ring and a heat-sealing component, the shaping ring can be sleeved on the blanking conduit in a tensioning mode, and the heat-sealing component is located behind the shaping ring and is in heat-sealing fit with the blanking conduit.
Non-woven fabrics unwinding mechanism is including unreeling roller and non-woven fabrics fifty percent discount support, and non-woven fabrics fifty percent discount support sets up on the non-woven fabrics unreels the route.
And a stirrer is arranged in the hopper and is in transmission connection with a power source.
The traction mechanism comprises a traction seat capable of moving back and forth, a clamping opening is formed in the traction seat, and a pneumatic clamping block is arranged in the clamping opening.
The cutting mechanism comprises a cutter and a discharge pipe, a fracture is arranged in the middle of the discharge pipe, and the cutter is arranged at the fracture.
The beneficial effects of the utility model are that non-woven fabrics matrix after the improvement is grown seedlings make-up machine adopts the vacuum to inhale the matrix of material in with the feed bin, adsorbs to fill in the tubulose non-woven fabrics, carries out the fixed length to cut off the tubulose non-woven fabrics that will fill the matrix, finally forms the culture medium container, and this process adopts automation, high efficiency production, and the vacuum adsorption unloading of matrix can effectively avoid the wearing and tearing of matrix to the unloading part.
Drawings
The following describes the present invention in further detail with reference to the accompanying drawings.
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a structural sectional view of the present invention.
Fig. 3 is a perspective view of the present invention with a partial structure.
Fig. 4 is a diagram illustrating an opened state of the upper plate of fig. 3 according to the present invention.
Detailed Description
The drawings show the structure of the present invention, and the details thereof will be further described with reference to the drawings. In the embodiment, the non-woven fabric substrate seedling raising forming machine comprises a rack, wherein a non-woven fabric unreeling mechanism 1 is arranged on the rack, and a blanking mechanism 2, a material pipe forming mechanism 3, a vacuum material sucking mechanism 4, a traction mechanism 5 and a cutting mechanism 6 are sequentially arranged on the rack; unloading mechanism 2 is including hopper 21 and unloading pipe 22, and the export of 21 lower extremes of hopper is communicated to the entry end of unloading pipe 22, and unloading pipe 22's exit end is through material pipe forming mechanism 3 and the vacuum of intercommunication inhales material mechanism 4, the non-woven fabrics that non-woven fabrics unwinding mechanism 1 unreeled forms the tubulose via material pipe forming mechanism 3 and the cladding is on unloading pipe 22, and the tubulose non-woven fabrics is in proper order through vacuum inhale material mechanism 4, drive mechanism 5 and cut mechanism 6.
The utility model discloses an operating principle, non-woven fabrics unwinding mechanism 1 unreels out the non-woven fabrics, the non-woven fabrics forms the tubulose via material pipe forming mechanism 3, and the cladding is on unloading pipe 22, the matrix in hopper 21 is under the adsorption of vacuum material suction mechanism 4, the matrix is along unloading pipe 22 unloading, and fill the tubulose non-woven fabrics in the vacuum material suction mechanism 4, it has the tubulose non-woven fabrics of matrix to fill, antedisplacement under drive mechanism 5's effect, and advance and cut mechanism 6 and carry out the fixed length and cut off, form one section cultivation matrix container.
As a further improved specific embodiment, the vacuum suction mechanism 4 includes an upper mold plate 41, a lower mold plate 42 and a negative pressure source 43, the upper mold plate 41 can be arranged on the lower mold plate 42 in a lifting or turning manner, and a mold clamping and locking structure is provided, a vacuum mold cavity 44 is formed between the upper mold plate 41 and the lower mold plate 42, the vacuum mold cavity 44 is communicated with the negative pressure source 43, a suction hole connected with the negative pressure source 43 is arranged on the corresponding lower mold plate 42, a connecting port 45 of the blanking conduit 22 is arranged at the front end of the vacuum mold cavity 44, a tubular non-woven fabric outlet 46 is arranged at the rear end of the vacuum mold cavity 44, a tubular non-woven fabric support frame 47 is further arranged in the vacuum mold cavity 44 corresponding to the connecting port 45 of the blanking conduit 22 to the tubular non-woven fabric outlet 46 for supporting the tubular non-woven fabric filled with the matrix, and a gap is reserved between the outer circle of the tubular non-woven fabric support frame 47 and the inner wall of the vacuum mold cavity 44 for facilitating vacuum suction, so that the tubular non-woven fabric is uniformly filled with the matrix. Wherein, when vacuum material suction is carried out, the tubular non-woven fabric outlet 46 at the rear end of the vacuum cavity 44 is blocked by the tubular non-woven fabric filled with the matrix, so as to be convenient for maintaining the negative pressure environment of the vacuum cavity 44.
As a further improved specific embodiment, a circle of sealing strips and sealing grooves 48 which are in sealing fit are arranged on the end surfaces of the upper template 41 and the lower template 42, so that when the upper template 41 and the lower template 42 are matched, the sealing performance of the vacuum cavity 44 is ensured.
As a further improved specific embodiment, the tubular non-woven fabric support frame 47 includes a plurality of transverse support bars 471 and an annular seat 472, which are enclosed to form a tubular shape, the plurality of transverse support bars 471 are arranged at equal intervals along the circumferential direction, and two ends of the transverse support bars 471 are connected to the annular seat 472, i.e. a hollow tubular support structure is formed.
As a further improved embodiment, the tubular nonwoven fabric support frame 47 is divided into an upper half and a lower half, and is respectively mounted on the upper template 41 and the lower template 42, so as to facilitate loading the tubular nonwoven fabric in the support frame 47 of the vacuum cavity 44.
As a further improved embodiment, the material pipe forming mechanism 3 includes a shaping ring 31 and a heat sealing member 32, the shaping ring 31 can be tensioned and sleeved on the feeding pipe 22, the specific plastic ring 31 is divided into two parts which can move radially respectively and is provided with a spring, when the non-woven fabric passes through the plastic ring 31 and the feeding pipe 22, two side edges of the non-woven fabric can be overlapped with each other, the heat sealing member 32 is located behind the shaping ring and is in heat-sealing fit with the feeding pipe 22, the heat sealing member 32 includes a heat sealing joint which can be lifted and positioned above the feeding pipe 22 and weld two side edges of the non-woven fabric overlapped with each other.
As the further improved embodiment, the non-woven fabric unwinding mechanism 1 comprises an unwinding roller 11 and a non-woven fabric folding support 12, the non-woven fabric folding support 12 is arranged on the non-woven fabric unwinding path, and the non-woven fabric folding support 12 is provided with a V-shaped opening and used for folding the non-woven fabric.
As a further improved specific embodiment, a stirrer 23 is arranged in the hopper 21, and the stirrer 23 is in transmission connection with a power source and is used for stirring the matrix in the hopper 21 so as to enable the matrix to be fed more smoothly.
As a further improved embodiment, the traction mechanism 5 comprises a traction seat 51 capable of moving back and forth, a clamping opening 52 is arranged on the traction seat 51, and a pneumatic clamping block 53 is arranged in the clamping opening 52 and is used for clamping the tubular non-woven fabric filled with the matrix and driving the tubular non-woven fabric to move forward together.
As a more improved embodiment, the cutting mechanism 6 includes a cutting knife 61 and a discharge pipe 62, a fracture 63 is provided in the middle of the discharge pipe 62, the cutting knife 61 is disposed at the fracture 63, the cutting knife 61 can move up and down, and the cutting knife 61 is disposed in an inclined manner, and the tubular non-woven fabric filled with the substrate and passing through the discharge pipe is cut by using a shearing force.
In summary, the above is only a preferred embodiment of the present invention, and is not intended to limit the scope of the present invention. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (10)

1. Non-woven fabrics matrix machine of growing seedlings, including the frame, be equipped with non-woven fabrics unwinding mechanism in the frame, its characterized in that: the machine frame is also sequentially provided with a blanking mechanism, a material pipe forming mechanism, a vacuum material sucking mechanism, a traction mechanism and a cutting mechanism; unloading mechanism is including hopper and unloading pipe, and the entry end intercommunication hopper lower extreme export of unloading pipe, and the exit end of unloading pipe is through material pipe forming mechanism and intercommunication vacuum material suction mechanism, the non-woven fabrics that non-woven fabrics unwinding mechanism unreeled forms the tubulose via material pipe forming mechanism and the cladding on the unloading pipe, and tubulose non-woven fabrics is in proper order through vacuum material suction mechanism, drive mechanism and cut the mechanism.
2. The non-woven fabric substrate seedling raising forming machine according to claim 1, characterized in that: the vacuum material sucking mechanism comprises an upper template, a lower template and a negative pressure source, a vacuum die cavity is formed between the upper template and the lower template and communicated with the negative pressure source, a blanking guide pipe connecting port is arranged at the front end of the vacuum die cavity, a tubular non-woven fabric outlet is arranged at the rear end of the vacuum die cavity, a tubular non-woven fabric support frame is further arranged in the vacuum die cavity corresponding to the blanking guide pipe connecting port to the tubular non-woven fabric outlet, and a clearance is reserved between the excircle of the tubular non-woven fabric support frame and the inner wall of the vacuum die cavity.
3. The non-woven fabric substrate seedling raising forming machine according to claim 2, characterized in that: and a circle of sealing strip and a sealing groove which are in sealing fit are arranged on the end surfaces of the upper template and the lower template which are matched.
4. The non-woven fabric substrate seedling raising forming machine according to claim 2, characterized in that: the tubular non-woven fabric support frame comprises a plurality of transverse support bars and an annular seat, wherein the transverse support bars and the annular seat are enclosed to form a tubular shape, the transverse support bars are arranged at equal intervals along the circumferential direction, and two ends of each transverse support bar are connected to the annular seat.
5. The non-woven fabric substrate seedling raising forming machine according to claim 4, characterized in that: the tubular non-woven fabric support frame is divided into an upper half part and a lower half part and is respectively arranged on the upper template and the lower template.
6. The non-woven fabric substrate seedling raising forming machine according to claim 1, characterized in that: the material pipe forming mechanism comprises a shaping ring and a heat-sealing component, the shaping ring can be sleeved on the blanking conduit in a tensioning mode, and the heat-sealing component is located behind the shaping ring and is in heat-sealing fit with the blanking conduit.
7. The non-woven fabric substrate seedling raising forming machine according to claim 1, characterized in that: non-woven fabrics unwinding mechanism is including unreeling roller and non-woven fabrics fifty percent discount support, and non-woven fabrics fifty percent discount support sets up on the non-woven fabrics unreels the route.
8. The non-woven fabric substrate seedling raising forming machine according to claim 1, characterized in that: and a stirrer is arranged in the hopper and is in transmission connection with a power source.
9. The non-woven fabric substrate seedling raising forming machine according to claim 1, characterized in that: the traction mechanism comprises a traction seat capable of moving back and forth, a clamping opening is formed in the traction seat, and a pneumatic clamping block is arranged in the clamping opening.
10. The non-woven fabric substrate seedling raising forming machine according to claim 1, characterized in that: the cutting mechanism comprises a cutter and a discharge pipe, a fracture is arranged in the middle of the discharge pipe, and the cutter is arranged at the fracture.
CN202121358091.8U 2021-06-18 2021-06-18 Non-woven fabric substrate seedling-raising forming machine Active CN215122499U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121358091.8U CN215122499U (en) 2021-06-18 2021-06-18 Non-woven fabric substrate seedling-raising forming machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121358091.8U CN215122499U (en) 2021-06-18 2021-06-18 Non-woven fabric substrate seedling-raising forming machine

Publications (1)

Publication Number Publication Date
CN215122499U true CN215122499U (en) 2021-12-14

Family

ID=79388240

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121358091.8U Active CN215122499U (en) 2021-06-18 2021-06-18 Non-woven fabric substrate seedling-raising forming machine

Country Status (1)

Country Link
CN (1) CN215122499U (en)

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GR01 Patent grant
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TR01 Transfer of patent right
TR01 Transfer of patent right

Effective date of registration: 20230531

Address after: No. 501, Xinbu Road, development zone, Rui'an Economic Development Zone, Wenzhou, Zhejiang 325000

Patentee after: Wenzhou Xiangyuan Packaging Machinery Co.,Ltd.

Address before: 325200 No. 501, Xinbu Road, development zone, Rui'an Economic Development Zone, Wenzhou City, Zhejiang Province

Patentee before: RUIAN WANYUAN PLASTIC PACKAGING MACHINERY FACTORY