Foundry goods cutting device

文档序号:1279915 发布日期:2020-08-28 浏览:21次 中文

阅读说明:本技术 一种铸件切割装置 (Foundry goods cutting device ) 是由 张海军 于 2020-05-24 设计创作,主要内容包括:本发明公开了一种铸件切割装置,包括机体,机体上设有驱动装置驱动的切割元件,位于所述切割元件一侧的所述机体上设有挡板,位于所述切割元件上方的所述机体上设有冷却机构,位于所述切割元件下方的所述机体上设有出料机构。通过驱动装置驱动的切割元件来将铸件进行切割,通过挡板对切割过程中的铸件进行阻挡,防止飞出,起到了安全防护作用,通过冷却机构来对切割元件进行冷却降温,通过出料机构来对切割后的铸件进行导出,以便进行集中收集。综上所述,采用该切割装置,实现了对铸件的机械化切割,工作连续性强,大大提高了工作效率,且使用可靠性和安全性高。(The invention discloses a casting cutting device which comprises a machine body, wherein a cutting element driven by a driving device is arranged on the machine body, a baffle is arranged on the machine body positioned on one side of the cutting element, a cooling mechanism is arranged on the machine body positioned above the cutting element, and a discharging mechanism is arranged on the machine body positioned below the cutting element. Cutting the foundry goods through drive arrangement driven cutting element, blockking the foundry goods in the cutting process through the baffle, preventing the departure, played the safety protection effect, come to cool off the cutting element through cooling body, derive the foundry goods after the cutting through discharge mechanism to concentrate the collection. In conclusion, the cutting device has the advantages that the mechanical cutting of castings is realized, the working continuity is high, the working efficiency is greatly improved, and the use reliability and the safety are high.)

1. The utility model provides a foundry goods cutting device, includes the organism, its characterized in that: the machine body is provided with a cutting element driven by a driving device, a baffle is arranged on the machine body and positioned on one side of the cutting element, a cooling mechanism is arranged on the machine body and positioned above the cutting element, and a discharging mechanism is arranged on the machine body and positioned below the cutting element.

2. The cutting device of claim 1, wherein: the same driving device synchronously drives two coaxially arranged cutting elements, and a distance is arranged between the two cutting elements.

3. The cutting device of claim 2, wherein: the combined structure of the driving device and the cutting element is provided with at least two sets of the combined structure on the machine body side by side.

4. A cutting device as claimed in claim 3, characterized in that: the baffle is equipped with a plurality ofly, every the baffle is the same with the row number on the piece of being cut, and one-to-one sets up.

5. The cutting device of claim 4, wherein: the baffle is vertically arranged on the adjusting rod, and the adjusting rod is provided with a first adjusting long hole arranged along the width direction of the machine body; the adjusting rod is arranged on the machine body and corresponds to the adjusting rod, the adjusting seat is provided with at least two second adjusting long holes arranged along the length direction of the machine body, and a fixing element penetrating through the first adjusting long holes and the second adjusting long holes is arranged between the adjusting rod and the adjusting seat.

6. The cutting device of claim 5, wherein: the discharging mechanism comprises a material guide plate which is arranged on the machine body and positioned on the side surfaces of the two cutting elements, and the material guide plate is arranged on the machine body and is obliquely arranged; the material receiving plate is obliquely arranged and extends to the discharge hole.

7. The cutting device according to any one of claims 1 to 6, wherein: the cooling mechanism comprises a support arranged on the machine body, a reciprocating linear driving element is arranged on the support, a nozzle is arranged at the driving end of the reciprocating linear driving element, and the nozzle is communicated with a cooling liquid tank arranged at the bottom of the machine body through a pipeline.

Technical Field

The invention belongs to the technical field of casting cutting equipment, and particularly relates to a casting cutting device.

Background

At present, in order to improve the production efficiency of castings and reasonably utilize production resources, a plurality of castings can be formed in one casting mold at one time, at the moment, all the castings formed in the same mold are connected together (cut pieces), so the castings need to be cut off, the current cutting mode is manual cutting, the working labor intensity is high, the working efficiency is low, and in order to solve the problems, a cutting device for mechanically cutting the castings needs to be designed.

Disclosure of Invention

The technical problem to be solved by the invention is as follows: provides a casting cutting device to achieve the aim of cutting castings mechanically.

In order to solve the technical problems, the technical scheme of the invention is as follows: the casting cutting device comprises a machine body, wherein a cutting element driven by a driving device is arranged on the machine body, the cutting element is positioned on one side of the cutting element, a baffle is arranged on the machine body, the cutting element is positioned above the cutting element, a cooling mechanism is arranged on the machine body, and a discharging mechanism is arranged on the machine body and below the cutting element.

As an improvement, the same driving device synchronously drives two cutting elements which are coaxially arranged, and a distance is arranged between the two cutting elements.

As a further improvement, the combined structure of the drive means and the cutting elements is provided in at least two sets side by side on the machine body.

As a further improvement, the baffle is provided with a plurality of baffles, and each baffle is the same as the row number on the cut piece and is arranged in one-to-one correspondence.

As a further improvement, the baffle is vertically arranged on an adjusting rod, and the adjusting rod is provided with a first adjusting long hole arranged along the width direction of the machine body; the adjusting rod is arranged on the machine body and corresponds to the adjusting rod, the adjusting seat is provided with at least two second adjusting long holes arranged along the length direction of the machine body, and a fixing element penetrating through the first adjusting long holes and the second adjusting long holes is arranged between the adjusting rod and the adjusting seat.

As a further improvement, the discharging mechanism comprises a material guide plate which is arranged on the machine body and positioned on the side surfaces of the two cutting elements, and the material guide plate is arranged on the machine body and is obliquely arranged; the material receiving plate is obliquely arranged and extends to the discharge hole.

As a further improvement, the cooling mechanism comprises a support arranged on the machine body, a reciprocating linear driving element is arranged on the support, a nozzle is arranged at the driving end of the reciprocating linear driving element, and the nozzle is communicated with a cooling liquid tank arranged at the bottom of the machine body through a pipeline.

After the technical scheme is adopted, the invention has the effects that:

because this cutting device includes the organism, be equipped with drive arrangement driven cutting element on the organism, be equipped with the baffle on the organism that is located cutting element one side, be equipped with cooling body on the organism that is located the cutting element top, be equipped with discharge mechanism on the organism that is located the cutting element below, thereby in operation, come to cut the foundry goods on the piece by the cutting element through drive arrangement driven cutting element, stop the foundry goods in the cutting process through the baffle, prevent the departure, the safety protection effect has been played, cool off the cutting element through cooling body, come to derive the foundry goods after the cutting through discharge mechanism, so that concentrate the collection. In conclusion, the cutting device has the advantages that the mechanical cutting of castings is realized, the working continuity is high, the working efficiency is greatly improved, and the use reliability and the safety are high.

Because same drive arrangement synchronous drive has two cutting element of coaxial setting, is equipped with the interval between two cutting element to will be placed in between two cutting element by the cutting member, cut the foundry goods of being cut a both sides simultaneously through cutting element, further improvement work efficiency.

Because the combined structure of the driving device and the cutting element is provided with at least two sets of the cutting elements side by side on the machine body, the cutting area in a single cutting period is greatly improved through the structure, and the cutting efficiency and the cutting integrity of castings on a cut piece are improved.

Because the baffle is equipped with a plurality ofly, every baffle is the same with the row number on the piece that is cut to the one-to-one setting to realized that every row of foundry goods all has the baffle to block, the comprehensiveness and the integrality that block are high, and then safety protection has obtained further promotion.

The baffle is vertically arranged on the adjusting rod, and the adjusting rod is provided with a first adjusting long hole arranged along the width direction of the machine body; be equipped with the regulation seat on the organism that corresponds the position with adjusting the pole, be equipped with at least two on the regulation seat, and adjust the slot hole along the second that organism length direction set up, adjust the pole and adjust and be equipped with the fixed component who passes first regulation slot hole and second regulation slot hole between the seat, thereby realize adjusting the fixed mounting of pole and baffle on adjusting the seat through fixed component, be convenient for adjust the distance between baffle and the cutting element through first regulation slot hole, be convenient for install a plurality of baffles through the second regulation slot hole, and adjusting the mounted position of baffle.

The discharging mechanism comprises a material guide plate which is arranged on the machine body and positioned on the side surfaces of the two cutting elements, and the material guide plate is arranged on the machine body and is obliquely arranged; the cutting element is obliquely arranged and extends to the discharge port, so that after a casting is cut off by the cutting element, the casting is guided to the receiving plate through the guide plate and then discharged through the discharge port so as to be collected in a centralized manner, and the cutting element is simple in structure and good in material receiving effect; simultaneously, the stock guide can also play the effect of stopping the foundry goods that falls to on the material receiving plate and kick-back, and then avoided the foundry goods that kick-backs to collide with cutting element and cause the problem of damage or emergence potential safety hazard.

Because cooling body is including setting up the support on the organism, be equipped with reciprocating type linear drive component on the support, reciprocating type linear drive component's drive end is equipped with the shower nozzle, the shower nozzle through the pipeline with set up in the coolant liquid case intercommunication of organism bottom to provide the coolant liquid to the shower nozzle through the coolant liquid case, later through the shower nozzle spray realize cutting element's cooling, simple structure arranges rationally, good to cutting element's cooling effect.

Drawings

The invention is further illustrated with reference to the following figures and examples.

FIG. 1 is a schematic structural view of the present invention;

wherein, 1-organism; 2-a cutting element; 3, a motor; 4-a baffle plate; 5-a material guide plate; 6-material receiving plate; 7-a scaffold; 8-reciprocating linear drive element; 9-a coolant tank; 10-adjusting the rod; 11-a first adjustment slot; 12-an adjusting seat; 13-second adjustment slot.

Detailed Description

The present invention is described in further detail below with reference to specific examples.

As shown in fig. 1, a casting cutting device comprises a machine body 1, wherein two sets of cutting elements 2 driven by a driving device are arranged side by side on the machine body 1, in the scheme, the cutting elements 2 are saw blades, the power device is a rotating shaft driven by a motor 3, the cutting elements 2 are arranged on the rotating shaft, the rotating shaft is rotatably arranged on a shaft seat, the shaft seat is arranged on the machine body 1, and a belt transmission mechanism is arranged between the rotating shaft and the motor; the machine body 1 positioned on one side of the cutting element 2 is provided with a baffle 4, the machine body 1 positioned above the cutting element 2 is provided with a cooling mechanism, and the machine body 1 positioned below the cutting element 2 is provided with a discharging mechanism.

Preferably, the same driving device synchronously drives two cutting elements 2 which are coaxially arranged, and a space is arranged between the two cutting elements 2; the number of the baffles 4 is the same as that of the rows of the cut pieces and the baffles 4 are arranged in a one-to-one correspondence manner, in the scheme, the baffles 4 are vertically arranged on an adjusting rod 10, and the adjusting rod 10 is provided with a first adjusting long hole 11 arranged along the width direction of the machine body 1; an adjusting seat 12 is provided on the machine body 1 at a position corresponding to the adjusting rod 10, at least two second adjusting long holes 13 are provided on the adjusting seat 12 and are arranged along the length direction of the machine body 1, and a fixing element (not shown in the figure) passing through the first adjusting long holes 11 and the second adjusting long holes 13 is provided between the adjusting rod 10 and the adjusting seat 12.

The discharging mechanism comprises a material guide plate 5 which is arranged on the machine body 1 and positioned on the side surfaces of the two cutting elements 2, and the material guide plate 5 is arranged on the machine body 1 and is obliquely arranged; the material receiving device also comprises a discharge port arranged on one side of the machine body 1 and a material receiving plate 6 arranged corresponding to the material guide plate 5, wherein the material receiving plate 6 is obliquely arranged and extends to the discharge port.

The cooling mechanism comprises a support 7 arranged on the machine body 1, a reciprocating linear driving element 8 is arranged on the support 7, the reciprocating linear driving element 8 is an air cylinder or an oil cylinder, a nozzle is arranged at the driving end of the reciprocating linear driving element 8, and the nozzle is communicated with a cooling liquid tank 9 arranged at the bottom of the machine body 1 through a pipeline.

The above-mentioned embodiments are merely descriptions of the preferred embodiments of the present invention, and are not intended to limit the scope of the present invention, and various modifications and alterations made to the technical solution of the present invention without departing from the spirit of the present invention are intended to fall within the scope of the present invention defined by the claims.

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