CN109366828B - Automatic production line for medical rubber gloves - Google Patents
Automatic production line for medical rubber gloves Download PDFInfo
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- CN109366828B CN109366828B CN201811173842.1A CN201811173842A CN109366828B CN 109366828 B CN109366828 B CN 109366828B CN 201811173842 A CN201811173842 A CN 201811173842A CN 109366828 B CN109366828 B CN 109366828B
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B29—WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
- B29C—SHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
- B29C41/00—Shaping by coating a mould, core or other substrate, i.e. by depositing material and stripping-off the shaped article; Apparatus therefor
- B29C41/34—Component parts, details or accessories; Auxiliary operations
- B29C41/42—Removing articles from moulds, cores or other substrates
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- A—HUMAN NECESSITIES
- A41—WEARING APPAREL
- A41D—OUTERWEAR; PROTECTIVE GARMENTS; ACCESSORIES
- A41D19/00—Gloves
- A41D19/04—Appliances for making gloves; Measuring devices for glove-making
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B29—WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
- B29C—SHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
- B29C41/00—Shaping by coating a mould, core or other substrate, i.e. by depositing material and stripping-off the shaped article; Apparatus therefor
- B29C41/02—Shaping by coating a mould, core or other substrate, i.e. by depositing material and stripping-off the shaped article; Apparatus therefor for making articles of definite length, i.e. discrete articles
- B29C41/14—Dipping a core
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B29—WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
- B29C—SHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
- B29C41/00—Shaping by coating a mould, core or other substrate, i.e. by depositing material and stripping-off the shaped article; Apparatus therefor
- B29C41/34—Component parts, details or accessories; Auxiliary operations
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B29—WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
- B29L—INDEXING SCHEME ASSOCIATED WITH SUBCLASS B29C, RELATING TO PARTICULAR ARTICLES
- B29L2031/00—Other particular articles
- B29L2031/48—Wearing apparel
- B29L2031/4842—Outerwear
- B29L2031/4864—Gloves
Abstract
The invention discloses an automatic production line for medical rubber gloves, which comprises a conveying chain, a cleaning area, a dipping area, a baking area, a flanging area, a demoulding area and a collecting area, wherein the conveying chain is arranged in the cleaning area, the dipping area, the baking area, the flanging area and the collecting area to circulate, the cleaning area, the dipping area, the baking area, the demoulding area and the collecting area are positioned on a lower layer, the flanging area and the flanging area are positioned on an upper layer, a plurality of connecting pieces are hinged on the conveying chain, the other ends of the connecting pieces are rotatably connected with glove molds, an adjusting belt for adjusting the placement angles of the glove molds is arranged on one side of the conveying chain, and one ends of the connecting pieces, which are connected with the glove molds, are placed on the adjusting belt. Compared with the prior art, the invention has the advantages of reasonable structure, automatic flow operation, tight connection of all process steps, high efficiency and quality and labor consumption saving.
Description
Technical Field
The invention relates to the technical field of production of medical rubber gloves, in particular to an automatic production line of medical rubber gloves.
Background
The medical rubber gloves are one kind of gloves, can be used as industries such as families, industry, medical treatment, cosmetology and the like, and are necessary hand protection articles, hand mold frames are mostly adopted to fix hand molds in the prior art, the hand molds are soaked in a rubber hopper for gum dipping, then the gloves are manually carried to other equipment for other process steps, manual gum dipping is adopted, the gum dipping time and degree are not well controlled, the manual operation efficiency is very low, the temperature change is easy to be large in the transfer process, the defective rate of products is increased, each section of process is separated, the production efficiency is low, and more manpower is consumed.
Disclosure of Invention
The technical problem to be solved by the invention is to overcome the technical defects and provide an automatic production line for medical rubber gloves, which is in flow operation, is tightly connected in each process and has high production efficiency.
In order to solve the technical problems, the technical scheme provided by the invention is as follows: medical rubber gloves automatic production line, including transfer chain, washing district, dip in the material district, toast the district, the limit district, the district that turns over, demoulding district and collecting region, the transfer chain sets up in the washing district, dip in the material district, toasts the district, the limit district, the district that turns over, demoulding district and collecting region inner loop, wash the district, dip in the material district, toast the district, demoulding district and collecting region are located the lower floor, limit district and the district that turns over are located the upper strata, the articulated a plurality of connecting pieces that are equipped with on the transfer chain, the other end of connecting piece rotates connects the gloves mould, transfer chain one side is equipped with the regulation and control gloves mould and places the regulation band of angle, the one end that the connecting piece was connected the gloves mould is placed on the regulation band.
Compared with the prior art, the invention has the advantages that: the glove mold is characterized in that each process required by the design of the medical rubber gloves is placed in different areas, the conveying chains are connected in series for cyclic production, the consumption of human resources is reduced, the production efficiency is improved, each process step is set through inspection, the production quality is effectively guaranteed, the defective rate is reduced, the glove mold is connected with the conveying chains through the connecting pieces, the connecting pieces are connected with the glove mold in a rotating mode, the glove mold can be enabled to rotate along with the friction effect of the connecting pieces and the adjusting belts in the conveying process of the conveying chains, and the surfaces of the glove mold can be evenly stressed in each process step.
As an improvement, the cleaning area comprises a cleaning pool, wherein symmetrically-arranged rotating discs are arranged on the cleaning pool, the cleaning area comprises a cleaning pool, the symmetrically-arranged rotating discs are arranged on the cleaning pool, bristles are arranged on the opposite end faces of the rotating discs, the other ends of the rotating discs are respectively connected with a first rotating shaft, the other ends of the rotating shafts are connected with a first motor, the first motor drives the rotating discs to rotate, so that the glove mold can be cleaned through the bristles on the rotating discs when passing through the cleaning area, and the cleanliness of the surface of the glove mold is kept.
As an improvement, the dipping area comprises a chemical water tank and a glue tank, the chemical water tank and the glue tank are separated by a baffle, the surface of a clean glove mold is not easy to be glued, the glue tank is placed after the chemical water tank is coated, the chemical coating is reacted with glue solution to form gel, and the subsequent process flow is convenient to carry out.
As the improvement, the baking zone includes the oven, the oven includes oven and lower oven, go up the oven and be equipped with the stoving cavity that the gloves mould of being convenient for carried the stoving down between the oven, the gloves mould is along with the conveying chain through the oven zone time, and the frictional action of connecting piece and regulation band makes the rotation that the gloves mould did not stop, and the oven zone provides upper portion zone of heating and lower part zone of heating for gloves mould surface glue solution distributes more evenly.
As an improvement, the hemming area comprises a bearing base, a first driven wheel, a first driving wheel, an auxiliary conveying device and a hemming roller, a fixed frame is arranged outside the bearing base, a second motor is installed on the fixed frame through bolts, the output end of the second motor is connected with a universal joint transmission device, the universal joint transmission device comprises a universal joint, a transmission shaft and an intermediate support, one end, far away from the second motor, of the universal joint transmission device is connected with the hemming roller, a first mounting plate is welded on the top end face of the fixed frame, a first chute is formed in the center of the first mounting plate, matched first bearing sliding blocks are arranged in the first chute, hydraulic lifting columns are welded on the bottom end face of the first bearing sliding blocks, the fixed frame, the first mounting plate, the first bearing sliding blocks, the first chute and the hydraulic lifting columns are symmetrically arranged in two groups, and the hemming roller is rotatably connected between, the bearing base is arranged on two sides of the first driven wheel and the first driving wheel, the first driving wheel is connected with the first driven wheel through a first belt, a third motor is arranged on one side of the bearing base connected with the first driving wheel, the output end of the third motor is connected with a second driving wheel, a connecting shaft of the first driving wheel extends to the outer side of the bearing base, a second driven wheel is arranged on the extending end of the connecting shaft of the first driving wheel, the second driving wheel is connected with the second driven wheel through a second belt, an auxiliary conveying device is welded between the first driving wheel and the first driven wheel and comprises auxiliary wheels and belt bearing connecting rods, the auxiliary wheels and the belt bearing connecting rods are correspondingly arranged in two groups respectively, and supporting rods are welded between the two groups of belt bearing connecting rods and the four groups of bearing bases, the glove mold is characterized in that four groups of support rods are welded correspondingly, support wheels are rotatably connected between two groups of belt bearing connecting rods, the support wheels are rotatably connected with N groups of auxiliary wheels, two groups of auxiliary wheels are rotatably connected with two groups of belt bearing connecting rods, the two groups of auxiliary wheels are connected through flat-top chain plates, a tightness adjusting device is arranged between the belt bearing connecting rods and the first belt, the tightness adjusting device comprises a ratchet wheel and a first spring, the inner side of each belt bearing connecting rod is fixedly provided with the ratchet wheel, the central shaft of the ratchet wheel is rotatably connected with a rocker, the rocker is rotatably connected with a pawl matched with the ratchet wheel, one end of the rocker, far away from the ratchet wheel, is rotatably connected with a first roller, the rocker is connected with the belt bearing connecting rods through the first spring, the glove mold is transmitted on the support wheels under the action of a, the hemming rollers above the supporting wheels continuously act on the surface of the glove mold, so that the gloves on the glove mold are gradually hemmed.
As an improvement, the flanging zone includes a base, a rotating motor, an adjusting unit, a top frame, a bottom frame, a fixing plate and a hair roller, the base is rectangular, two sets of bottom frames are fixed in parallel to one side of the base away from the ground, the bottom frames are L-shaped, one end of a horizontal section of the bottom frames is fixed and welded on the base, a fixing groove is formed in the horizontal section of the bottom frames, the fixing groove is long circular, a sliding plate is fixed on the fixing groove through a bolt, a sliding plate is installed on the horizontal section of the bottom frames, the top frame is installed on the sliding plate, a sliding groove second for a sliding block first is formed on one side of the top frame, one end of the fixing plate is provided with a sliding block first through one integrally, the sliding block first is installed in a sliding groove second of the top frame, the other end of the sliding plate first is provided with a fitting plate first, a mounting plate second is fixed through a bolt, a mounting plate second is provided with a shaft sleeve for mounting a rotating shaft second mounting glove on the hair roller, the hair roller is installed on the shaft sleeve, a rotating shaft sleeve for mounting the glove, a rotating, a chain wheel is installed on the adjusting plate, a chain adjusting plate is installed on the bottom frame, a chain adjusting plate is installed on a chain adjusting plate, a.
The glove box comprises a glove box body, a glove box cover, a glove box cover, a glove box cover, a glove box, a cover, a glove box, a door, a glove box, a cover, a glove box, a door, a glove box, a cover, a door.
As an improvement, the collecting region includes the conveyer belt, the conveyer belt top is equipped with the symmetry and sets up two semicircle rollers, the global of semicircle roller is the concave-convex face, only with the gloves mould that gloves finger position is connected through the semicircle roller, cliies gloves under the semicircle roller cooperation that the symmetry set up and makes it drop completely from the gloves mould, later drops on the conveyer belt of semicircle roller below, is convenient for collect.
Drawings
FIG. 1 is a schematic view of the structure flow of the production line of the automatic production line for medical rubber gloves of the present invention;
FIG. 2 is a schematic view of a structure of a conveyor chain matching with an adjusting belt of the automatic production line for medical rubber gloves of the present invention;
FIG. 3 is a schematic view of the structure of the cleaning area of the automatic production line for medical rubber gloves of the present invention;
FIG. 4 is a schematic view of the hemmed area of the automatic production line for medical rubber gloves of the present invention;
FIG. 5 is a schematic view of the auxiliary conveying device in the crimping zone of the automatic production line for medical rubber gloves according to the present invention;
FIG. 6 is a schematic structural view of a tightness adjusting device in the crimping zone of the automatic production line of the medical rubber gloves;
FIG. 7 is a schematic view of the structure of the mounting plate of the crimping zone of the automatic production line for medical rubber gloves of the present invention;
FIG. 8 is a structural diagram of the flanging area of the automatic production line for medical rubber gloves of the present invention;
FIG. 9 is a schematic structural view of a sectional view of an adjusting unit in the flanging area of the automatic production line for medical rubber gloves of the present invention;
FIG. 10 is a schematic structural view of a cross-sectional view of a telescopic device in a flanging area of an automatic production line for medical rubber gloves according to the present invention;
FIG. 11 is a schematic view of a connecting structure of a top frame and a fixing plate in a flanging area of an automatic production line for medical rubber gloves according to the present invention;
FIG. 12 is a schematic structural view of the demolding area of the automatic production line for medical rubber gloves of the present invention;
FIG. 13 is a schematic view showing the internal structure of the demolding section of the automatic production line for medical rubber gloves according to the present invention;
FIG. 14 is a schematic view of the connection structure of a second matching plate and a movable base in the demolding area of the automatic production line for medical rubber gloves of the present invention;
FIG. 15 is a schematic structural view of a second matching plate in the demolding area of the automatic production line for medical rubber gloves of the present invention;
FIG. 16 is a schematic view of the structure of a movable base of the demolding area of the automatic production line for medical rubber gloves of the present invention;
FIG. 17 is a schematic structural diagram of a top view of a track of a demolding area of the automatic production line for medical rubber gloves, according to the invention;
FIG. 18 is a schematic view of a vertical rod structure of a demoulding area of the automatic production line for medical rubber gloves of the invention;
FIG. 19 is a schematic view showing the structure of a tray of the demolding area of the automatic production line for medical rubber gloves of the present invention.
In the figure: 1-a conveyor chain; 2-a washing area; 3-a dipping area; 4-a baking zone; 5-a crimping zone; 6-flanging area; 7-a demoulding zone; 8-a collection zone; 9-a connector; 10-glove mold; 11-an adjustment band; 2.1-washing pool; 2.2-rotating disc; 2.3-bristles; 2.4-rotating shaft one; 2.5-motor one; 3.1-chemical water pool; 3.2-glue pool; 3.3-baffle; 4.1-putting in a drying oven; 4.2-placing in a drying oven; 4.3-baking the cavity; 5.1-bearing seat; 5.2-auxiliary conveying means; 5.3-hemming rollers; 5.4-driving wheel one; 5.5-driven wheel one; 5.6-leather belt I; 5.7-Motor three; 5.8-driving wheel II; 5.9-driven wheel two; 5.10-leather belt II; 5.11-auxiliary wheel; 5.12-connecting rod with bearing; 5.13-support wheels; 5.14-support bar; 5.15-tightness adjusting device; 5.16-ratchet wheel; 5.17-rocker; 5.18-roller one; 5.19-pawl; 5.20-spring one; 5.21-flat-top chain plate; 5.22-fixing frame; 5.23-mounting the plate I; 5.24-with bearing slide block; 5.25-chute one; 5.26-hydraulic lifting column; 5.27-cardan drive; 5.28-Motor two; 6.1-base; 6.2-rotating the motor; 6.3-sprocket plate; 6.4-adjustment unit; 6.4.1-adjusting the housing; 6.4.2-rotating wheels; 6.4.3-Pulley one; 6.5-chain; 6.6-chain wheel; 6.7-rotating shaft two; 6.8-mounting plate II; 6.9-roughing roller; 6.10-fixing plate; 6.11-screw mandrel; 6.12-adjusting plate; 6.13-rotating handle; 6.14-underframe; 6.15-sliding plate; 6.16-top frame; 6.17-mating plate one; 6.18-telescoping device; 6.18.1-spring two; 6.18.2-telescoping outer shell; 6.18.3-telescoping rod; 6.19-first slide block; 6.20-chute two; 7.1-bracket; 7.1.1-crossbar one; 7.1.2-support column; 7.1.3-Cross bar two; 7.2-hand grip; 7.3-gas cylinder; 7.4-vertical rod; 7.5-clamping jaw; 7.6-moment arm; 7.7-roller two; 7.8-connecting rod; 7.8.1-a limiting block; 7.9-spring three; 7.10-bottom plate; 7.11-vertical plate; 7.12-sliding block two; 7.13-sliding rail; 7.14-guide post; 7.15-Pulley III; 7.16-mating plate two; 7.17-card slot; 7.18-protective plate; 7.19-mating grooves; 7.20-through groove; 7.21-top plate; 7.22-triangular part; 7.23-Pulley two; 7.24-first track; 7.25-second track; 7.26-third track; 7.27-fourth track; 7.28-locating piece; 7.29-lifting section; 7.30-inflection point; 7.31-correction points; 7.32-pipes; 7.32.1-air tap; 7.33-chute three; 7.34-reinforcing ribs; 7.35-first mating hole; 7.36-bolt mating holes; 7.37-fixing bolt; 7.38-rotating bearing; 7.39-second mating hole; 7.40-opening; 7.41-spacing groove; 7.42-threaded limit holes; 7.43-mounting groove; 7.44-connecting block; 7.45-rotating shaft III; 7.46-third mating hole; 8.1-conveyor belt; 8.2-semicircular roller.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
Referring to fig. 1 and 2, an automatic production line for medical rubber gloves comprises a conveying chain 1, a cleaning area 2, a dipping area 3, a baking area 4, a curling area 5, a flanging area 6, a demoulding area 7 and a collecting area 8, wherein the conveying chain 1 is arranged in the cleaning area 2, the dipping area 3, the baking area 4, the curling area 5, the flanging area 6, the demoulding area 7 and the collecting area 8 are internally circulated, the cleaning area 2, the dipping area 3, the baking area 4, the demoulding area 7 and the collecting area 8 are arranged on a lower layer, the curling area 5 and the flanging area 6 are arranged on an upper layer, a plurality of connecting pieces 9 are hinged on the conveying chain 1, the other ends of the connecting pieces 9 are rotatably connected with glove molds 10, an adjusting belt 11 for adjusting the placement angle of the glove molds 10 is arranged on one side of the conveying chain 1, one end of each connecting piece 9, which is connected with the glove molds 10, is arranged on the adjusting belt 11, the glove molds 10 are adjusted in corresponding processing areas under, or the conveying chain 1 is horizontally or obliquely or vertically arranged, so that the flow operation of production and processing is facilitated, and the continuous working progress is facilitated by connecting all the areas in series through internal circulation.
Combine fig. 3, wash district 2 including wasing pond 2.1, it is equipped with the carousel 2.2 that the symmetry was placed on the pond 2.1 to wash, be equipped with brush hair 2.3 on the relative terminal surface of carousel 2.2, pivot 2.4 is connected respectively to the carousel 2.2 other end, the other end connection of pivot is equipped with motor 2.5, it has shown that gloves advance at first to wash the operation carrying out the in-process of production, glove mold 10 passes through washing district 2 under the effect of conveying chain 1, glove mold 10 is placed perpendicularly and is passed through between two carousel 2.2 under the cooperation of adjusting band 11, accomplish the cleanness of gloves mould 10 through brush hair 2.3.
Referring to fig. 1, the dipping area 3 includes a chemical water tank 3.1 and a glue tank 3.2, the chemical water tank 3.1 is separated from the glue tank 3.2 by a baffle 3.3, the baking area 4 includes a baking oven including an upper baking oven 4.1 and a lower baking oven 4.2, a baking cavity 4.3 for facilitating the glove mold 10 to convey and bake is arranged between the upper baking oven 4.1 and the lower baking oven 4.2, the cleaned glove mold 10 is dipped into the dipping area 3 under the action of the conveyor chain 1, the glove mold 10 is vertically placed under the action of the adjusting belt 11 when passing through the chemical water tank 3.1 and the glue tank 3.2, firstly passes through the chemical water tank 3.1, so that the glove mold 10 forms a chemical coating on the surface and then enters the glue tank 3.2, the liquid latex in the glue tank 3.2 is attached to the surface of the glove mold 10, and then enters the baking area 4 along with the conveyor chain 1, the glove mold 10 is horizontally placed under the action of the adjusting belt 11, and passes through the baking cavity 4.3 while rotating, so that the liquid latex adhered to the surface of the glove mold 10 is uniformly dried into a glove blank.
With reference to fig. 4-7, the hemming area 5 includes a bearing base 5.1, a driven wheel 5.5, a driving wheel 5.4, an auxiliary transmission device 5.2 and a hemming roller 5.3, a fixed mount 5.22 is provided outside the bearing base 5.1, a motor 5.28 is mounted on the fixed mount 5.22 by bolts, an output end of the motor 5.28 is connected with a universal joint transmission device 5.27, the universal joint transmission device 5.27 includes a universal joint, a transmission shaft and an intermediate support, one end of the universal joint transmission device 5.27 far away from the motor 5.28 is connected with the hemming roller 5.3, a mounting plate 5.23 is welded on the top end surface of the fixed mount 5.22, a chute 5.25 is provided at the center position of the mounting plate 5.23, a matched slide block with a bearing 5.24 is provided in the chute 5.25, a hydraulic lifting column 5.26 is welded on the bottom end surface of the slide block with a bearing 5.24, the mounting plate 5.23, a slide block with a slide block 5.24, a slide block with a slide bearing 5.25 and a hydraulic lifting column 5.26 are symmetrically connected between, a driven wheel I5.5 and a driving wheel I5.4 are both arranged at the top end of a bearing base 5.1, the bearing base 5.1 is provided with a motor III 5.7 at two sides of the driven wheel I5.5 and the driving wheel I5.4, the driving wheel I5.4 is connected with the driven wheel I5.5 through a belt I5.6, one side of the bearing base 5.1 connected with the driving wheel I5.4 is provided with a motor III 5.7, the output end of the motor III 5.7 is connected with a driving wheel II 5.8, a connecting shaft of the driving wheel I5.4 extends to the outer side of the bearing base 5.1, a driven wheel II 5.9 is arranged at the extending end of the connecting shaft of the driving wheel I5.4, the driving wheel II 5.8 is connected with the driven wheel II 5.9 through a belt II 5.10, an auxiliary conveying device 5.2 is welded between the driving wheel I5.4 and the driven wheel I5.5, the auxiliary conveying device 5.2 comprises an auxiliary wheel II 5.11 and a belt bearing connecting rod 5.12, the auxiliary wheel II 5.11 and two groups of belt bearing connecting rods 5, four groups of support rods 5.14 are correspondingly welded, two groups of belt bearing connecting rods 5.12 are rotatably connected with support wheels 5.13, the support wheels 5.13 are rotatably connected with N groups, two groups of auxiliary wheels 5.11 are rotatably connected with two groups of belt bearing connecting rods 5.12, the two groups of auxiliary wheels 5.11 are connected through flat-top chain plates 5.21, a tightness adjusting device 5.15 is arranged between the belt bearing connecting rods 5.12 and a belt I5.6, the tightness adjusting device 5.15 comprises a ratchet wheel 5.16 and a spring I5.20, the inner side of the belt bearing connecting rod 5.12 is fixedly provided with the ratchet wheel 5.16, a central shaft of the ratchet wheel 5.16 is rotatably connected with a rocker 5.17, the rocker 5.17 is rotatably connected with a pawl 5.19 matched with the ratchet wheel 5.16, one end of the rocker 5.17 far away from the ratchet wheel 5.16 is rotatably connected with a roller I5.18, the rocker 5.17 is connected with the belt bearing connecting rod 5.12 through the spring I5.20, a motor III 5.7 drives a driving wheel II 5.8, a driven wheel II 5.9 and a belt II 5.10 to drive, the first belt 5.6 is tightly attached to the first flat-top chain plate 5.21, the first flat-top chain plate 5.21 is driven to rotate by friction, through the design of the first flat-top chain plate 5.21, the first belt 5.21 supports the first belt 5.6, the contact surface of the glove mold 10 and the first belt 5.6 is flat, uneven edge curling of the hemming roller 5.3 is prevented, the second motor 5.28 drives the universal joint transmission device 5.27 to operate, the universal joint transmission device 5.27 drives the hemming roller 5.3 to operate, the glove mold 10 operates on the first belt 5.6, the effect of more uniform edge curling is achieved, when the first belt 5.6 is loosened, the first spring 5.20 pulls the rocker 5.17 to move, the pawl 5.19 is clamped with the ratchet 5.16, and through the design of the ratchet 5.16 and the pawl 5.19, when the first belt 5.6 is loosened, the rocker 5.17 drives the first roller 5.18 to be fastened, and the effect of preventing the first belt.
The device comprises a base 6.1, a rotating motor 6.2, an adjusting unit 6.4, a top frame 6.16, a bottom frame 6.14, a fixed plate 6.10 and a hair roller 6.9, wherein the base 6.1 is rectangular, two sets of bottom frames 6.14 are fixed on one side of the base 6.1 far from the ground in parallel when the adjusting unit 6.6.6.6.6 is installed on a rotating shaft 6.6.6 through hole of a rotating shaft 6.6.6.6.6.7, a rotating shaft 6.6.6.6.6.6.7 is installed on a rotating shaft 6.6.6.6.6.6.6.6.6.6.6.6.6.6.6, a rotating shaft 6.6.6.6 is installed on a rotating shaft 6.6.6.16, a top frame 6.16 is installed on a top frame 6.6.6.6.6, a sliding block 6.19 is installed in a rotating block 6.6.6.20 of a top frame 6.16, a fixed plate 6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6, a rotating shaft 6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6, a rotating shaft 6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6, a rotating shaft is installed on a rotating shaft, a rotating shaft 6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6, a rotating shaft, a rotating device, a rotating shaft, a rotating device, a rotating shaft 6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.7, a rotating shaft, a rotating device is installed, a rotating shaft 6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6, a rotating shaft, a rotating device, a rotating shaft, a rotating device, a rotating shaft, a rotating shaft 6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6, a rotating shaft, a rotating, a fixed, a rotating, a fixed, a rotating shaft, a rotating, a fixed, a rotating shaft, a fixed, a rotating shaft, a rotating shaft, a rotating shaft, a rotating, a fixed, a rotating shaft, a rotating shaft, a fixed, a rotating shaft, a rotating, a fixed plate.
7.7.7.7.7.7.7.7.8 connecting rod 7.7.7.7.7.7.7.7.7.7.7.7.7.7.7.7.7.7.7.7, 7.7.7.7.7 a glove box 7.7, 7.7.7 a glove box 7.7, 7.7 a glove box 7, 7.7.8, 7.7.7.7, 7.7.7, 7.7, 7.7.7, 7.7.7.7, 7.7.7.7.7.7.7, 7.7.7.7 a glove box 7.7.7.7, 7.7.7.7.7, 7.7 a glove box 7.7.7.7.7.7.7.7, 7 a glove box 7.7, 7, 7.7.7.7.7.7.7 a glove box 7.7, 7.7.7.7.7.7.7, 7.7.7, 7, 7.7.7.7 a glove box 7.7.7.7.7.7.7, 7.7.7.7 a glove box, 7.7, 7.7.7, 7, 7.7, 7, 7.7.7, 7, 7.7.7.7, 7.7, 7.7.7.7.7, 7.7.7.7.7.7.7.7, 7.7, 7, 7.7.7.7.7, 7.7.7.7.7.7.7.7.7.7, 7.7, 7, 7.7.7, 7, 7.7.7.7.7, 7.7.7.7, 7, 7.7.7.7 a glove box, 7.7, 7, 7.7 a glove box, 7.7, 7.7.7, 7, 7.7.7.7, 7, 7.7, 7, 7.7.7, 7.7, 7, 7.7.7, 7, 7.7, 7, 7.7.7, 7, 7.7, 7, 7.7.7, 7, 7.7.7.7.7, 7, a glove box, 7, a glove box, 7, a glove box, a glove box, a glove box, a glove box, a glove box, a.
Combine figure 1, collecting region 8 includes conveyer belt 8.1, conveyer belt 8.1 top is equipped with two semicircle rollers 8.2 that the symmetry was placed, semicircle roller 8.2 global is the corrugated surface, be connected with gloves through the fingertip position on the glove mold 10 after 7 drawing of patterns in demoulding district, glove mold 10 is getting into the collecting region in conveying chain 1's drive, pass through two semicircle rollers 8.2 tops, semicircle roller 8.2 only grasps the gloves that glove mold 10 connects in the rotation in-process, smooth glove mold 10 of following goes down gloves, later drop to collect on the conveyer belt 8.1 of semicircle roller 8.2 below and concentrate.
Finally, it should be noted that the above-mentioned contents are only used for illustrating the technical solutions of the present invention, and not for limiting the protection scope of the present invention, and that the simple modifications or equivalent substitutions of the technical solutions of the present invention by those of ordinary skill in the art can be made without departing from the spirit and scope of the technical solutions of the present invention.
Claims (5)
1. The utility model provides a medical rubber gloves automatic production line which characterized in that: comprises a conveying chain (1), a cleaning area (2), a dipping area (3), a baking area (4), a curling area (5), a flanging area (6), a demoulding area (7) and a collecting area (8), wherein the conveying chain (1) is arranged in the cleaning area (2), the dipping area (3), the baking area (4), the curling area (5), the flanging area (6), the demoulding area (7) and the collecting area (8) for internal circulation, the cleaning area (2), the dipping area (3), the baking area (4), the demoulding area (7) and the collecting area (8) are arranged on a lower layer, the curling area (5) and the flanging area (6) are arranged on an upper layer, a plurality of connecting pieces (9) are hinged on the conveying chain (1), the other end of each connecting piece (9) is rotatably connected with a glove mold (10), one side of the conveying chain (1) is provided with an adjusting belt (11) for adjusting and controlling the angle of the glove mold (10), one end of the connecting piece (9) connected with the glove mold (10) is placed on the adjusting belt (11);
the hemming area (5) comprises a bearing base (5.1), a driven wheel I (5.5), a driving wheel I (5.4), an auxiliary conveying device (5.2) and a hemming roller (5.3), a fixing frame (5.22) is arranged on the outer side of the bearing base (5.1), a motor II (5.28) is installed on the fixing frame (5.22) through bolts, the output end of the motor II (5.28) is connected with a universal joint transmission device (5.27), the universal joint transmission device (5.27) comprises a universal joint, a transmission shaft and an intermediate support, the universal joint transmission device (5.27) is far away from one end of the motor II (5.28) and connected with the hemming roller (5.3), a mounting plate I (5.23) is welded on the top end face of the fixing frame (5.22), a sliding groove I (5.25) is arranged at the central position of the mounting plate I (5.23), a matched bearing sliding block (5.24) with the bearing is arranged in the sliding groove I (5.25), a hydraulic lifting column (5.26) is welded on the bottom end face of the bearing sliding block, the fixing frame (5.22), the first mounting plate (5.23), the first bearing sliding block (5.24), the first sliding groove (5.25) and the hydraulic lifting column (5.26) are symmetrically arranged in two groups, the hemming roller (5.3) is rotatably connected between the two groups of bearing sliding blocks (5.24), the first driven wheel (5.5) and the first driving wheel (5.4) are both arranged on the top end of the bearing base (5.1), the bearing base (5.1) is arranged on two sides of the first driven wheel (5.5) and the first driving wheel (5.4), the first driving wheel (5.4) and the first driven wheel (5.5) are connected through the first belt (5.6), the third motor (5.7) is arranged on one side of the bearing base (5.1) for connecting the first driving wheel (5.4), the output end of the third motor (5.7) is connected with the second driving wheel (5.8), the connecting shaft of the first driving wheel (5.4) extends to the outer side of the bearing base (5.1), and the second driving wheel (5.9) extends to the end of the second driving wheel (5.4), the driving wheel II (5.8) and the driven wheel II (5.9) are connected through a belt II (5.10), the driving wheel I (5.4) and the driven wheel I (5.5) are welded with an auxiliary conveying device (5.2), the auxiliary conveying device (5.2) comprises an auxiliary wheel (5.11) and a belt bearing connecting rod (5.12), the auxiliary wheel (5.11) and the belt bearing connecting rod (5.12) are correspondingly provided with two sets of supporting rods (5.14) respectively, the supporting rods (5.14) are welded between the bearing bases (5.1) and correspond to four sets of supporting rods, the belt bearing connecting rod (5.12) is connected with a supporting wheel (5.13) in a rotating manner, the supporting wheel (5.13) is connected with an N set in a rotating manner, the auxiliary wheel (5.11) and the belt bearing connecting rod (5.12) are connected in a rotating manner, and the auxiliary wheel (5.11) are connected with a flat top through a chain plate (5.21), a tightness adjusting device (5.15) is arranged between the first belt (5.6) and the connecting rod with a bearing (5.12), the tightness adjusting device (5.15) comprises a ratchet wheel (5.16) and a first spring (5.20), the ratchet wheel (5.16) is fixedly installed on the inner side of the connecting rod with a bearing (5.12), a central shaft of the ratchet wheel (5.16) is rotatably connected with a rocker (5.17), the rocker (5.17) is rotatably connected with a pawl (5.19) matched with the ratchet wheel (5.16), one end, far away from the ratchet wheel (5.16), of the rocker (5.17) is rotatably connected with a first roller (5.18), and the rocker (5.17) is connected with the connecting rod with a bearing (5.12) through the first spring (5.20);
the edge turning area (6) comprises a base (6.1), a rotating motor (6.2), an adjusting unit (6.4), a top frame (6.16), a bottom frame (6.14), a fixed plate (6.10) and a hair roller (6.9), the base (6.1) is rectangular, two sets of bottom frames (6.14) are fixed on one side of the base (6.1) far away from the ground in parallel, a bottom frame (6.14) is L-shaped, one end of a vertical section of the bottom frame (6.14) far away from a horizontal section is fixedly welded on the base (6.1), a fixed groove is formed on a horizontal section of the bottom frame (6.14) through a screw rod (6.7) and a rotating shaft (6.6.7) of the adjusting unit (6.6.6.7), a sliding plate (6.15) is fixed with a screw rod (6.6.6.6.7) through a through hole, a through adjusting plate (6.6.7) and a through hole (6.6.6.7), a through hole (6.7) of a mounting plate (6.6.6.6.6.6.6.6.6.7), a mounting plate (6.6.6.6.6.6.6.6.7) and a mounting plate (6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.7), a mounting plate (6.6.6.6.6.6.6.6.6.6.6.6.6.6.7), a mounting plate (6.6.6.6.6.6.6.6.6.6.6.6.6.7) is mounted on a mounting plate, a mounting plate (6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.7) is mounted on a mounting plate, a screw rod mounting plate (6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.7) is mounted on a screw rod mounting plate, a screw rod mounting plate is mounted on a screw rod mounting plate, a mounting plate is mounted on a mounting plate, a mounting plate (6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.6.7) is mounted on a mounting plate, a screw rod mounting plate, a screw shaft, a mounting plate, a screw shaft, a mounting plate is mounted on a mounting plate, a mounting plate is mounted in a screw shaft, a mounting plate, a screw shaft, a mounting plate, a screw shaft, a mounting plate is mounted in a screw shaft, a mounting plate, a screw shaft;
the clamp comprises a clamp release area (7) and a clamp handle (7) and a gas cylinder (7.3), the clamp handle is provided with a mounting block (7.7) and a mounting block (7.7), the clamp handle is provided with a mounting block (7.7), the mounting block (7.7) and a mounting block (7.7) are provided with a mounting rail (7.7), the mounting block (7.7) and a mounting rail (7.7) are provided with a mounting rail (7.7), the mounting block (7.7) is provided with a mounting rail 7.7.7.7.7.7) and a mounting head plate (7.7.7.7) and a mounting plate (7.7.7.7.7.7.7.7) through a mounting head plate 7.7.7.7.7.7), the mounting rail 7.7.7.7.7, the mounting head plate 7.7.7.7) and a mounting rail 7.7.7.7.7, the mounting head plate 7.7.7.7.7.7.7.7.7, the mounting block 7.7.7.7 is provided with a mounting rail 7, the mounting rail 7.7.7.7, the mounting rail 7.7.7.7.7.7, the mounting rail 7.7.7.7.7, the mounting head plate 7 is provided with a mounting head plate 7.7.7.7.7.7.7.7.7.7.7.7.7.7.7.7.7.7.7.7, the mounting rail 7.7.7.7.7.7.7.7.7.7, the mounting rail 7.7.7.7.7.7.7.7.7.7.7.7, the mounting rail 7.7.7.7.7.7.7.7, the mounting rail 7 is provided with a mounting rail 7, the mounting rail 7.7, the mounting rail 7.7.7.7.7.7, the mounting rail 7 is provided with a mounting rail 7.7.7.7, the mounting head plate 7, the mounting head plate 7.7.7.7.7.7.7.7.7.7.7.7.7.7.7.7.7.7.7.7.7.7.7.7.7.7.7.7.7.7.7.7.7.7.7.7.7.7.7.7.7.7.7, the mounting head plate 7.7.7.7.7.7.7, the mounting rail 7, the mounting head plate 7.7.7, the mounting rail 7, the mounting head plate 7.7.7.7, the mounting plate 7.7.7.7.7 is provided with a mounting rail 7.7.7.7.7.7.7.7.7.7.7.7.7, the mounting rail 7.7.7.7.7.7, the mounting rail 7, the mounting head plate 7, the mounting plate 7.7.7.7.7.7.7.7.7.7.7.7.7.7.7.7.7.7 is provided with a mounting rail 7.7.7.7.7.7.7, the mounting rail 7.7.7.7.7.7, the mounting rail 7, the mounting rail 7 includes a mounting head plate 7, the mounting rail 7.7.7.7.7.7.7.7.7, the mounting rail, the mounting plate 7.7.7.7.7.7.7.7.7.7.7.7.7, the mounting rail 7, the mounting plate 7.7.7.7.7.7.7.7.7.7.7, the mounting head plate 7.7.7.7.7.7.7.7.7.7.7.7.7.7.7.7.7.7.7.7.7.7.7.7.7, the two end mounting plate 7, the mounting rail, the mounting head plate 7.7.7.7, the mounting plate 7, the mounting head plate 7, the mounting plate 7 includes a mounting rail, the mounting plate 7, the mounting rail, the mounting head plate 7 includes a mounting plate 7, the mounting head plate 7, the mounting plate 7, the guide rail 7, the guide rail 7 includes a guide rail 7, the guide rail 7.7.7.7.7.7.7.7.7.7.7, the guide rail 7, the guide rail 7.7.7.7, the guide rail 7.7, the guide rail, 7, the guide rail, 7, the guide rail, the.
2. The automatic production line of the medical rubber gloves according to claim 1, characterized in that: wash district (2) including wasing pond (2.1), be equipped with carousel (2.2) that the symmetry was placed on washing pond (2.1), be equipped with brush hair (2.3) on carousel (2.2) the relative terminal surface, pivot (2.4) are connected respectively to carousel (2.2) other end, the other end connection of pivot is equipped with motor (2.5).
3. The automatic production line of the medical rubber gloves according to claim 1, characterized in that: the dipping material area (3) comprises a chemical water pool (3.1) and a glue pool (3.2), and the chemical water pool (3.1) and the glue pool (3.2) are separated by a baffle (3.3).
4. The automatic production line of the medical rubber gloves according to claim 1, characterized in that: the baking area (4) comprises an oven, the oven comprises an upper oven (4.1) and a lower oven (4.2), and a baking cavity (4.3) convenient for conveying and baking the glove mold (10) is arranged between the upper oven (4.1) and the lower oven (4.2).
5. The automatic production line of the medical rubber gloves according to claim 1, characterized in that: the collecting region (8) comprises a conveyor belt (8.1), two semicircular rollers (8.2) which are symmetrically arranged are arranged above the conveyor belt (8.1), and the circumferential surface of each semicircular roller (8.2) is a concave-convex surface.
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